-
1
-
-
77951539714
-
Transcriptome characterization for Salvia miltiorrhiza using 454 GS FLX
-
(in Chinese)
-
Li Y, Sun C, Luo HM, Li XW, Niu YY, Chen SL. Transcriptome characterization for Salvia miltiorrhiza using 454 GS FLX. Acta Pharm Sin (Yao Xue Xue Bao) 2010; 45(4): 524-529 (in Chinese)
-
(2010)
Acta Pharm Sin (Yao Xue Xue Bao)
, vol.45
, Issue.4
, pp. 524-529
-
-
Li, Y.1
Sun, C.2
Luo, H.M.3
Li, X.W.4
Niu, Y.Y.5
Chen, S.L.6
-
2
-
-
74549123642
-
The genetic map of Artemisia annua L. identifies loci affecting yield of the antimalarial drug artemisinin
-
Graham IA, Besser K, Blumer S, Branigan CA, Czechowski T, Elias L, Guterman I, Harvey D, Isaac PG, Khan AM, Larson TR, Li Y, Pawson T, Penfield T, Rae AM, Rathbone DA, Reid S, Ross J, Smallwood MF, Segura V, Townsend T, Vyas D, Winzer T, Bowles D. The genetic map of Artemisia annua L. identifies loci affecting yield of the antimalarial drug artemisinin. Science 2010; 327(5963): 328-331
-
(2010)
Science
, vol.327
, Issue.5963
, pp. 328-331
-
-
Graham, I.A.1
Besser, K.2
Blumer, S.3
Branigan, C.A.4
Czechowski, T.5
Elias, L.6
Guterman, I.7
Harvey, D.8
Isaac, P.G.9
Khan, A.M.10
Larson, T.R.11
Li, Y.12
Pawson, T.13
Penfield, T.14
Rae, A.M.15
Rathbone, D.A.16
Reid, S.17
Ross, J.18
Smallwood, M.F.19
Segura, V.20
Townsend, T.21
Vyas, D.22
Winzer, T.23
Bowles, D.24
more..
-
3
-
-
77951605029
-
EST analysis reveals putative genes involved in glycyrrhizin biosynthesis
-
Li Y, Luo HM, Sun C, Song JY, Sun YZ, Wu Q, Wang N, Yao H, Steinmetz A, Chen SL. EST analysis reveals putative genes involved in glycyrrhizin biosynthesis. BMC Genomics 2010; 11(1): 268
-
(2010)
BMC Genomics
, vol.11
, Issue.1
, pp. 268
-
-
Li, Y.1
Luo, H.M.2
Sun, C.3
Song, J.Y.4
Sun, Y.Z.5
Wu, Q.6
Wang, N.7
Yao, H.8
Steinmetz, A.9
Chen, S.L.10
-
4
-
-
77951121533
-
De novo sequencing and analysis of the American ginseng root transcriptome using a GS FLX Titanium platform to discover putative genes involved in ginsenoside biosynthesis
-
Sun C, Li Y, Wu Q, Luo HM, Sun YZ, Song JY, Lui EMK, Chen SL. De novo sequencing and analysis of the American ginseng root transcriptome using a GS FLX Titanium platform to discover putative genes involved in ginsenoside biosynthesis. BMC Genomics 2010; 11(1): 262
-
(2010)
BMC Genomics
, vol.11
, Issue.1
, pp. 262
-
-
Sun, C.1
Li, Y.2
Wu, Q.3
Luo, H.M.4
Sun, Y.Z.5
Song, J.Y.6
Lui, E.M.K.7
Chen, S.L.8
-
5
-
-
77956463809
-
Strategies of the study on Herb Genome Program
-
(in Chinese)
-
Chen SL, Sun YZ, Xu J, Luo HM, Sun C, He L, Cheng XL, Zhang BL, Xiao PG. Strategies of the study on Herb Genome Program. Acta Pharm Sin (Yao Xue Xue Bao) 2010; 45(7): 807-812 (in Chinese)
-
(2010)
Acta Pharm Sin (Yao Xue Xue Bao)
, vol.45
, Issue.7
, pp. 807-812
-
-
Chen, S.L.1
Sun, Y.Z.2
Xu, J.3
Luo, H.M.4
Sun, C.5
He, L.6
Cheng, X.L.7
Zhang, B.L.8
Xiao, P.G.9
-
6
-
-
74549221016
-
Genome sequence of the palaeopolyploid soybean
-
Schmutz J, Cannon SB, Schlueter J, Ma J, Mitros T, Nelson W, Hyten DL, Song Q, Thelen JJ, Cheng J, Xu D, Hellsten U, May GD, Yu Y, Sakurai T, Umezawa T, Bhattacharyya MK, Sandhu D, Valliyodan B, Lindquist E, Peto M, Grant D, Shu S, Goodstein D, Barry K, Futrell-Griggs M, Abernathy B, Du J, Tian Z, Zhu L, Gill N, Joshi T, Libault M, Sethuraman A, Zhang XC, Shinozaki K, Nguyen HT, Wing RA, Cregan P, Specht J, Grimwood J, Rokhsar D, Stacey G, Shoemaker RC, Jackson SA. Genome sequence of the palaeopolyploid soybean. Nature 2010; 463(7278): 178-183
-
(2010)
Nature
, vol.463
, Issue.7278
, pp. 178-183
-
-
Schmutz, J.1
Cannon, S.B.2
Schlueter, J.3
Ma, J.4
Mitros, T.5
Nelson, W.6
Hyten, D.L.7
Song, Q.8
Thelen, J.J.9
Cheng, J.10
Xu, D.11
Hellsten, U.12
May, G.D.13
Yu, Y.14
Sakurai, T.15
Umezawa, T.16
Bhattacharyya, M.K.17
Sandhu, D.18
Valliyodan, B.19
Lindquist, E.20
Peto, M.21
Grant, D.22
Shu, S.23
Goodstein, D.24
Barry, K.25
Futrell-Griggs, M.26
Abernathy, B.27
Du, J.28
Tian, Z.29
Zhu, L.30
Gill, N.31
Joshi, T.32
Libault, M.33
Sethuraman, A.34
Zhang, X.C.35
Shinozaki, K.36
Nguyen, H.T.37
Wing, R.A.38
Cregan, P.39
Specht, J.40
Grimwood, J.41
Rokhsar, D.42
Stacey, G.43
Shoemaker, R.C.44
Jackson, S.A.45
more..
-
7
-
-
76749150030
-
Genome sequencing and analysis of the model grass Brachypodium distachyon
-
International Brachypodium Initiative
-
International Brachypodium Initiative. Genome sequencing and analysis of the model grass Brachypodium distachyon. Nature 2010; 463(7282): 763-768
-
(2010)
Nature
, vol.463
, Issue.7282
, pp. 763-768
-
-
-
8
-
-
77957560949
-
The genome of the domesticated apple (Malus × domestica Borkh.)
-
Velasco R, Zharkikh A, Affourtit J, Dhingra A, Kalyanaraman A, Fontana P, Bhatnagar SK, Troggio M, Pruss D, Salvi S, Pindo M, Baldi P, Castelletti S, Cavaiuolo M, Coppola G, Costa F, Cova V, Ri AD, Goremykin V, Komjanc M, Longhi S, Magnago P, Malacarne G, Malnoy M, Moretto M, Perazzolli M, Si-Ammour A, Vezzulli S, Zini E, Eldredge G, Fitzgerald LM, Gutin N, Lanchbury J, Macalma T, Mitchell JT, Reid J, Wardell B, Kodira C, Chen ZT, Desany B, Niazi F, Palmer M, Koepke T, Jiwan D, Schaeffer S, Krishnan V, Wu CJ, Chu VT, King ST, Vick J, Tao QT, Mraz A, Stormo A, Stormo K, Bogden R, Ederle D, Stella A, Vecchietti A, Kater MM, Masiero S, Lasserre P, Lespinasse Y, Allan AC, Bus V, Chagné D, Crowhurst RN, Gleave AP, Lavezzo E, Fawcett JA, Proost S, Rouzé P, Sterck L, Toppo S, Lazzari B, Hellens RP, Durel CE, Gutin A, Bumgarner RE, Gardiner SE, Skolnick M, Egholm M, Peer YV, Salamini F, Viola R. The genome of the domesticated apple (Malus × domestica Borkh.) Nature Genetics 2010; 42: 833-839
-
(2010)
Nature Genetics
, vol.42
, pp. 833-839
-
-
Velasco, R.1
Zharkikh, A.2
Affourtit, J.3
Dhingra, A.4
Kalyanaraman, A.5
Fontana, P.6
Bhatnagar, S.K.7
Troggio, M.8
Pruss, D.9
Salvi, S.10
Pindo, M.11
Baldi, P.12
Castelletti, S.13
Cavaiuolo, M.14
Coppola, G.15
Costa, F.16
Cova, V.17
Ri, A.D.18
Goremykin, V.19
Komjanc, M.20
Longhi, S.21
Magnago, P.22
Malacarne, G.23
Malnoy, M.24
Moretto, M.25
Perazzolli, M.26
Si-Ammour, A.27
Vezzulli, S.28
Zini, E.29
Eldredge, G.30
Fitzgerald, L.M.31
Gutin, N.32
Lanchbury, J.33
McAlma, T.34
Mitchell, J.T.35
Reid, J.36
Wardell, B.37
Kodira, C.38
Chen, Z.T.39
Desany, B.40
Niazi, F.41
Palmer, M.42
Koepke, T.43
Jiwan, D.44
Schaeffer, S.45
Krishnan, V.46
Wu, C.J.47
Chu, V.T.48
King, S.T.49
Vick, J.50
Tao, Q.T.51
Mraz, A.52
Stormo, A.53
Stormo, K.54
Bogden, R.55
Ederle, D.56
Stella, A.57
Vecchietti, A.58
Kater, M.M.59
Masiero, S.60
Lasserre, P.61
Lespinasse, Y.62
Allan, A.C.63
Bus, V.64
Chagné, D.65
Crowhurst, R.N.66
Gleave, A.P.67
Lavezzo, E.68
Fawcett, J.A.69
Proost, S.70
Rouzé, P.71
Sterck, L.72
Toppo, S.73
Lazzari, B.74
Hellens, R.P.75
Durel, C.E.76
Gutin, A.77
Bumgarner, R.E.78
Gardiner, S.E.79
Skolnick, M.80
Egholm, M.81
Peer, Y.V.82
Salamini, F.83
Viola, R.84
more..
-
9
-
-
77956656511
-
Draft genome sequence of the oilseed species Ricinus communis
-
Chan AP, Crabtree J, Zhao Q, Lorenzi H, Orvis J, Puiu D, Melake-Berhan A, Jones KM, Redman J, Chen G, Cahoon EB, Gedil M, Stanke M, Haas BJ, Wortman JR, Fraser-Liggett CM, Ravel J, Rabinowicz PD. Draft genome sequence of the oilseed species Ricinus communis. Nat Biotechnol 2010; 28(9): 951-956
-
(2010)
Nat Biotechnol
, vol.28
, Issue.9
, pp. 951-956
-
-
Chan, A.P.1
Crabtree, J.2
Zhao, Q.3
Lorenzi, H.4
Orvis, J.5
Puiu, D.6
Melake-Berhan, A.7
Jones, K.M.8
Redman, J.9
Chen, G.10
Cahoon, E.B.11
Gedil, M.12
Stanke, M.13
Haas, B.J.14
Wortman, J.R.15
Fraser-Liggett, C.M.16
Ravel, J.17
Rabinowicz, P.D.18
-
10
-
-
79251636555
-
The genome of woodland strawberry (Fragaria vesca)
-
Shulaev V, Sargent DJ, Crowhurst RN, Mockler TC, Folkerts O, Delcher AL, Jaiswal P, Mockaitis K, Liston A, Mane SP, Burns P, Davis TM, Slovin JP, Bassil N, Hellens RP, Evans C, Harkins T, Kodira C, Desany B, Crasta OR, Jensen RV, Allan AC, Michael TP, Setubal JC, Celton JM, Rees DJ, Williams KP, Holt SH, Ruiz Rojas JJ, Chatterjee M, Liu B, Silva H, Meisel L, Adato A, Filichkin SA, Troggio M, Viola R, Ashman TL, Wang H, Dharmawardhana P, Elser J, Raja R, Priest HD, Bryant DW Jr, Fox SE, Givan SA, Wilhelm LJ, Naithani S, Christoffels A, Salama DY, Carter J, Lopez Girona E, Zdepski A, Wang W, Kerstetter RA, Schwab W, Korban SS, Davik J, Monfort A, Denoyes-Rothan B, Arus P, Mittler R, Flinn B, Aharoni A, Bennetzen JL, Salzberg SL, Dickerman AW, Velasco R, Borodovsky M, Veilleux RE, Folta KM. The genome of woodland strawberry (Fragaria vesca). Nat Genet 2011; 43(2): 109-116
-
(2011)
Nat Genet
, vol.43
, Issue.2
, pp. 109-116
-
-
Shulaev, V.1
Sargent, D.J.2
Crowhurst, R.N.3
Mockler, T.C.4
Folkerts, O.5
Delcher, A.L.6
Jaiswal, P.7
Mockaitis, K.8
Liston, A.9
Mane, S.P.10
Burns, P.11
Davis, T.M.12
Slovin, J.P.13
Bassil, N.14
Hellens, R.P.15
Evans, C.16
Harkins, T.17
Kodira, C.18
Desany, B.19
Crasta, O.R.20
Jensen, R.V.21
Allan, A.C.22
Michael, T.P.23
Setubal, J.C.24
Celton, J.M.25
Rees, D.J.26
Williams, K.P.27
Holt, S.H.28
Ruiz Rojas, J.J.29
Chatterjee, M.30
Liu, B.31
Silva, H.32
Meisel, L.33
Adato, A.34
Filichkin, S.A.35
Troggio, M.36
Viola, R.37
Ashman, T.L.38
Wang, H.39
Dharmawardhana, P.40
Elser, J.41
Raja, R.42
Priest, H.D.43
Bryant Jr., D.W.44
Fox, S.E.45
Givan, S.A.46
Wilhelm, L.J.47
Naithani, S.48
Christoffels, A.49
Salama, D.Y.50
Carter, J.51
Lopez Girona, E.52
Zdepski, A.53
Wang, W.54
Kerstetter, R.A.55
Schwab, W.56
Korban, S.S.57
Davik, J.58
Monfort, A.59
Denoyes-Rothan, B.60
Arus, P.61
Mittler, R.62
Flinn, B.63
Aharoni, A.64
Bennetzen, J.L.65
Salzberg, S.L.66
Dickerman, A.W.67
Velasco, R.68
Borodovsky, M.69
Veilleux, R.E.70
Folta, K.M.71
more..
-
11
-
-
79251632958
-
The genome of Theobroma cacao
-
Argout X, Salse J, Aury JM, Guiltinan MJ, Droc G, Gouzy J, Allegre M, Chaparro C, Legavre T, Maximova SN, Abrouk M, Murat F, Fouet O, Poulain J, Ruiz M, Roguet Y, Rodier-Goud M, Barbosa-Neto JF, Sabot F, Kudrna D, Ammiraju JS, Schuster SC, Carlson JE, Sallet E, Schiex T, Dievart A, Kramer M, Gelley L, Shi Z, Bérard A, Viot C, Boccara M, Risterucci AM, Guignon V, Sabau X, Axtell MJ, Ma Z, Zhang Y, Brown S, Bourge M, Golser W, Song X, Clement D, Rivallan R, Tahi M, Akaza JM, Pitollat B, Gramacho K, D'Hont A, Brunel D, Infante D, Kebe I, Costet P, Wing R, McCombie WR, Guiderdoni E, Quetier F, Panaud O, Wincker P, Bocs S, Lanaud C. The genome of Theobroma cacao. Nat Genet 2011; 43(2): 101-108
-
(2011)
Nat Genet
, vol.43
, Issue.2
, pp. 101-108
-
-
Argout, X.1
Salse, J.2
Aury, J.M.3
Guiltinan, M.J.4
Droc, G.5
Gouzy, J.6
Allegre, M.7
Chaparro, C.8
Legavre, T.9
Maximova, S.N.10
Abrouk, M.11
Murat, F.12
Fouet, O.13
Poulain, J.14
Ruiz, M.15
Roguet, Y.16
Rodier-Goud, M.17
Barbosa-Neto, J.F.18
Sabot, F.19
Kudrna, D.20
Ammiraju, J.S.21
Schuster, S.C.22
Carlson, J.E.23
Sallet, E.24
Schiex, T.25
Dievart, A.26
Kramer, M.27
Gelley, L.28
Shi, Z.29
Bérard, A.30
Viot, C.31
Boccara, M.32
Risterucci, A.M.33
Guignon, V.34
Sabau, X.35
Axtell, M.J.36
Ma, Z.37
Zhang, Y.38
Brown, S.39
Bourge, M.40
Golser, W.41
Song, X.42
Clement, D.43
Rivallan, R.44
Tahi, M.45
Akaza, J.M.46
Pitollat, B.47
Gramacho, K.48
D'Hont, A.49
Brunel, D.50
Infante, D.51
Kebe, I.52
Costet, P.53
Wing, R.54
McCombie, W.R.55
Guiderdoni, E.56
Quetier, F.57
Panaud, O.58
Wincker, P.59
Bocs, S.60
Lanaud, C.61
more..
-
12
-
-
70450202132
-
The B73 maize genome: Complexity, diversity, and dynamics
-
Schnable PS, Ware D, Fulton RS, Stein JC, Wei F, Pasternak S, Liang C, Zhang J, Fulton L, Graves TA, Minx P, Reily AD, Courtney L, Kruchowski SS, Tomlinson C, Strong C, Delehaunty K, Fronick C, Courtney B, Rock SM, Belter E, Du F, Kim K, Abbott RM, Cotton M, Levy A, Marchetto P, Ochoa K, Jackson SM, Gillam B, Chen W, Yan L, Higginbotham J, Cardenas M, Waligorski J, Applebaum E, Phelps L, Falcone J, Kanchi K, Thane T, Scimone A, Thane N, Henke J, Wang T, Ruppert J, Shah N, Rotter K, Hodges J, Ingenthron E, Cordes M, Kohlberg S, Sgro J, Delgado B, Mead K, Chinwalla A, Leonard S, Crouse K, Collura K, Kudrna D, Currie J, He R, Angelova A, Rajasekar S, Mueller T, Lomeli R, Scara G, Ko A, Delaney K, Wissotski M, Lopez G, Campos D, Braidotti M, Ashley E, Golser W, Kim H, Lee S, Lin J, Dujmic Z, Kim W, Talag J, Zuccolo A, Fan C, Sebastian A, Kramer M, Spiegel L, Nascimento L, Zutavern T, Miller B, Ambroise C, Muller S, Spooner W, Narechania A, Ren L, Wei S, Kumari S, Faga B, Levy MJ, McMahan L, Van Buren P, Vaughn MW, Ying K, Yeh CT, Emrich SJ, Jia Y, Kalyanaraman A, Hsia AP, Barbazuk WB, Baucom RS, Brutnell TP, Carpita NC, Chaparro C, Chia JM, Deragon JM, Estill JC, Fu Y, Jeddeloh JA, Han Y, Lee H, Li P, Lisch DR, Liu S, Liu Z, Nagel DH, McCann MC, SanMiguel P, Myers AM, Nettleton D, Nguyen J, Penning BW, Ponnala L, Schneider KL, Schwartz DC, Sharma A, Soderlund C, Springer NM, Sun Q, Wang H, Waterman M, Westerman R, Wolfgruber TK, Yang L, Yu Y, Zhang L, Zhou S, Zhu Q, Bennetzen JL, Dawe RK, Jiang J, Jiang N, Presting GG, Wessler SR, Aluru S, Martienssen RA, Clifton SW, McCombie WR, Wing RA, Wilson RK. The B73 maize genome: complexity, diversity, and dynamics. Science 2009; 326(5956): 1112-1115
-
(2009)
Science
, vol.326
, Issue.5956
, pp. 1112-1115
-
-
Schnable, P.S.1
Ware, D.2
Fulton, R.S.3
Stein, J.C.4
Wei, F.5
Pasternak, S.6
Liang, C.7
Zhang, J.8
Fulton, L.9
Graves, T.A.10
Minx, P.11
Reily, A.D.12
Courtney, L.13
Kruchowski, S.S.14
Tomlinson, C.15
Strong, C.16
Delehaunty, K.17
Fronick, C.18
Courtney, B.19
Rock, S.M.20
Belter, E.21
du, F.22
Kim, K.23
Abbott, R.M.24
Cotton, M.25
Levy, A.26
Marchetto, P.27
Ochoa, K.28
Jackson, S.M.29
Gillam, B.30
Chen, W.31
Yan, L.32
Higginbotham, J.33
Cardenas, M.34
Waligorski, J.35
Applebaum, E.36
Phelps, L.37
Falcone, J.38
Kanchi, K.39
Thane, T.40
Scimone, A.41
Thane, N.42
Henke, J.43
Wang, T.44
Ruppert, J.45
Shah, N.46
Rotter, K.47
Hodges, J.48
Ingenthron, E.49
Cordes, M.50
Kohlberg, S.51
Sgro, J.52
Delgado, B.53
Mead, K.54
Chinwalla, A.55
Leonard, S.56
Crouse, K.57
Collura, K.58
Kudrna, D.59
Currie, J.60
He, R.61
Angelova, A.62
Rajasekar, S.63
Mueller, T.64
Lomeli, R.65
Scara, G.66
Ko, A.67
Delaney, K.68
Wissotski, M.69
Lopez, G.70
Campos, D.71
Braidotti, M.72
Ashley, E.73
Golser, W.74
Kim, H.75
Lee, S.76
Lin, J.77
Dujmic, Z.78
Kim, W.79
Talag, J.80
Zuccolo, A.81
Fan, C.82
Sebastian, A.83
Kramer, M.84
Spiegel, L.85
Nascimento, L.86
Zutavern, T.87
Miller, B.88
Ambroise, C.89
Muller, S.90
Spooner, W.91
Narechania, A.92
Ren, L.93
Wei, S.94
Kumari, S.95
Faga, B.96
Levy, M.J.97
more..
-
13
-
-
70649085835
-
The genome of the cucumber, Cucumis sativus L
-
Huang SW, Li RQ, Zhang ZH, Li L, Gu X, Fan W, Lucas WJ, Wang X, Xie B, Ni P, Ren Y, Zhu H, Li J, Lin K, Jin W, Fei Z, Li G, Staub J, Kilian A, van der Vossen EA, Wu Y, Guo J, He J, Jia Z, Ren Y, Tian G, Lu Y, Ruan J, Qian W, Wang M, Huang Q, Li B, Xuan Z, Cao J, Asan, Wu Z, Zhang J, Cai Q, Bai Y, Zhao B, Han Y, Li Y, Li X, Wang S, Shi Q, Liu S, Cho WK, Kim JY, Xu Y, Heller-Uszynska K, Miao H, Cheng Z, Zhang S, Wu J, Yang Y, Kang H, Li M, Liang H, Ren X, Shi Z, Wen M, Jian M, Yang H, Zhang G, Yang Z, Chen R, Liu S, Li J, Ma L, Liu H, Zhou Y, Zhao J, Fang X, Li G, Fang L, Li Y, Liu D, Zheng H, Zhang Y, Qin N, Li Z, Yang G, Yang S, Bolund L, Kristiansen K, Zheng H, Li S, Zhang X, Yang H, Wang J, Sun R, Zhang B, Jiang S, Wang J, Du Y, Li S. The genome of the cucumber, Cucumis sativus L. Nat Genet 2009; 41(12): 1275-1281
-
(2009)
Nat Genet
, vol.41
, Issue.12
, pp. 1275-1281
-
-
Huang, S.W.1
Li, R.Q.2
Zhang, Z.H.3
Li, L.4
Gu, X.5
Fan, W.6
Lucas, W.J.7
Wang, X.8
Xie, B.9
Ni, P.10
Ren, Y.11
Zhu, H.12
Li, J.13
Lin, K.14
Jin, W.15
Fei, Z.16
Li, G.17
Staub, J.18
Kilian, A.19
van der Vossen, E.A.20
Wu, Y.21
Guo, J.22
He, J.23
Jia, Z.24
Ren, Y.25
Tian, G.26
Lu, Y.27
Ruan, J.28
Qian, W.29
Wang, M.30
Huang, Q.31
Li, B.32
Xuan, Z.33
Cao, J.34
Asan, W.Z.35
Zhang, J.36
Cai, Q.37
Bai, Y.38
Zhao, B.39
Han, Y.40
Li, Y.41
Li, X.42
Wang, S.43
Shi, Q.44
Liu, S.45
Cho, W.K.46
Kim, J.Y.47
Xu, Y.48
Heller-Uszynska, K.49
Miao, H.50
Cheng, Z.51
Zhang, S.52
Wu, J.53
Yang, Y.54
Kang, H.55
Li, M.56
Liang, H.57
Ren, X.58
Shi, Z.59
Wen, M.60
Jian, M.61
Yang, H.62
Zhang, G.63
Yang, Z.64
Chen, R.65
Liu, S.66
Li, J.67
Ma, L.68
Liu, H.69
Zhou, Y.70
Zhao, J.71
Fang, X.72
Li, G.73
Fang, L.74
Li, Y.75
Liu, D.76
Zheng, H.77
Zhang, Y.78
Qin, N.79
Li, Z.80
Yang, G.81
Yang, S.82
Bolund, L.83
Kristiansen, K.84
Zheng, H.85
Li, S.86
Zhang, X.87
Yang, H.88
Wang, J.89
Sun, R.90
Zhang, B.91
Jiang, S.92
Wang, J.93
Du, Y.94
Li, S.95
more..
-
14
-
-
58449137410
-
The Sorghum bicolor genome and the diversification of grasses
-
Paterson AH, Bowers JE, Bruggmann R, Dubchak I, Grimwood J, Gundlach H, Haberer G, Hellsten U, Mitros T, Poliakov A, Schmutz J, Spannagl M, Tang H, Wang X, Wicker T, Bharti AK, Chapman J, Feltus FA, Gowik U, Grigoriev IV, Lyons E, Maher CA, Martis M, Narechania A, Otillar RP, Penning BW, Salamov AA, Wang Y, Zhang L, Carpita NC, Freeling M, Gingle AR, Hash CT, Keller B, Klein P, Kresovich S, McCann MC, Ming R, Peterson DG, Mehboob-ur-Rahman, Ware D, Westhoff P, Mayer KF, Messing J, Rokhsar DS. The Sorghum bicolor genome and the diversification of grasses. Nature 2009; 457(7229): 551-556
-
(2009)
Nature
, vol.457
, Issue.7229
, pp. 551-556
-
-
Paterson, A.H.1
Bowers, J.E.2
Bruggmann, R.3
Dubchak, I.4
Grimwood, J.5
Gundlach, H.6
Haberer, G.7
Hellsten, U.8
Mitros, T.9
Poliakov, A.10
Schmutz, J.11
Spannagl, M.12
Tang, H.13
Wang, X.14
Wicker, T.15
Bharti, A.K.16
Chapman, J.17
Feltus, F.A.18
Gowik, U.19
Grigoriev, I.V.20
Lyons, E.21
Maher, C.A.22
Martis, M.23
Narechania, A.24
Otillar, R.P.25
Penning, B.W.26
Salamov, A.A.27
Wang, Y.28
Zhang, L.29
Carpita, N.C.30
Freeling, M.31
Gingle, A.R.32
Hash, C.T.33
Keller, B.34
Klein, P.35
Kresovich, S.36
McCann, M.C.37
Ming, R.38
Peterson, D.G.39
Mehboob-ur-Rahman40
Ware, D.41
Westhoff, P.42
Mayer, K.F.43
Messing, J.44
Rokhsar, D.S.45
more..
-
15
-
-
37849032457
-
The Physcomitrella genome reveals evolutionary insights into the conquest of land by plants
-
Rensing SA, Lang D, Zimmer AD, Terry A, Salamov A, Shapiro H, Nishiyama T, Perroud PF, Lindquist EA, Kamisugi Y, Tanahashi T, Sakakibara K, Fujita T, Oishi K, Shin-I T, Kuroki Y, Toyoda A, Suzuki Y, Hashimoto S, Yamaguchi K, Sugano S, Kohara Y, Fujiyama A, Anterola A, Aoki S, Ashton N, Barbazuk WB, Barker E, Bennetzen JL, Blankenship R, Cho SH, Dutcher SK, Estelle M, Fawcett JA, Gundlach H, Hanada K, Heyl A, Hicks KA, Hughes J, Lohr M, Mayer K, Melkozernov A, Murata T, Nelson DR, Pils B, Prigge M, Reiss B, Renner T, Rombauts S, Rushton PJ, Sanderfoot A, Schween G, Shiu SH, Stueber K, Theodoulou FL, Tu H, Van de Peer Y, Verrier PJ, Waters E, Wood A, Yang L, Cove D, Cuming AC, Hasebe M, Lucas S, Mishler BD, Reski R, Grigoriev IV, Quatrano RS, Boore JL. The Physcomitrella genome reveals evolutionary insights into the conquest of land by plants. Science 2008; 319(5859): 64-69
-
(2008)
Science
, vol.319
, Issue.5859
, pp. 64-69
-
-
Rensing, S.A.1
Lang, D.2
Zimmer, A.D.3
Terry, A.4
Salamov, A.5
Shapiro, H.6
Nishiyama, T.7
Perroud, P.F.8
Lindquist, E.A.9
Kamisugi, Y.10
Tanahashi, T.11
Sakakibara, K.12
Fujita, T.13
Oishi, K.14
Shin, I.T.15
Kuroki, Y.16
Toyoda, A.17
Suzuki, Y.18
Hashimoto, S.19
Yamaguchi, K.20
Sugano, S.21
Kohara, Y.22
Fujiyama, A.23
Anterola, A.24
Aoki, S.25
Ashton, N.26
Barbazuk, W.B.27
Barker, E.28
Bennetzen, J.L.29
Blankenship, R.30
Cho, S.H.31
Dutcher, S.K.32
Estelle, M.33
Fawcett, J.A.34
Gundlach, H.35
Hanada, K.36
Heyl, A.37
Hicks, K.A.38
Hughes, J.39
Lohr, M.40
Mayer, K.41
Melkozernov, A.42
Murata, T.43
Nelson, D.R.44
Pils, B.45
Prigge, M.46
Reiss, B.47
Renner, T.48
Rombauts, S.49
Rushton, P.J.50
Sanderfoot, A.51
Schween, G.52
Shiu, S.H.53
Stueber, K.54
Theodoulou, F.L.55
Tu, H.56
van de Peer, Y.57
Verrier, P.J.58
Waters, E.59
Wood, A.60
Yang, L.61
Cove, D.62
Cuming, A.C.63
Hasebe, M.64
Lucas, S.65
Mishler, B.D.66
Reski, R.67
Grigoriev, I.V.68
Quatrano, R.S.69
Boore, J.L.70
more..
-
16
-
-
42949157236
-
The draft genome of the transgenic tropical fruit tree papaya (Carica papaya Linnaeus)
-
Ming R, Hou SB, Feng Y, Yu Q, Dionne-Laporte A, Saw JH, Senin P, Wang W, Ly BV, Lewis KL, Salzberg SL, Feng L, Jones MR, Skelton RL, Murray JE, Chen C, Qian W, Shen J, Du P, Eustice M, Tong E, Tang H, Lyons E, Paull RE, Michael TP, Wall K, Rice DW, Albert H, Wang ML, Zhu YJ, Schatz M, Nagarajan N, Acob RA, Guan P, Blas A, Wai CM, Ackerman CM, Ren Y, Liu C, Wang J, Wang J, Na JK, Shakirov EV, Haas B, Thimmapuram J, Nelson D, Wang X, Bowers JE, Gschwend AR, Delcher AL, Singh R, Suzuki JY, Tripathi S, Neupane K, Wei H, Irikura B, Paidi M, Jiang N, Zhang W, Presting G, Windsor A, Navajas-Pérez R, Torres MJ, Feltus FA, Porter B, Li Y, Burroughs AM, Luo MC, Liu L, Christopher DA, Mount SM, Moore PH, Sugimura T, Jiang J, Schuler MA, Friedman V, Mitchell-Olds T, Shippen DE, dePamphilis CW, Palmer JD, Freeling M, Paterson AH, Gonsalves D, Wang L, Alam M. The draft genome of the transgenic tropical fruit tree papaya (Carica papaya Linnaeus). Nature 2008; 452(7190): 991-996
-
(2008)
Nature
, vol.452
, Issue.7190
, pp. 991-996
-
-
Ming, R.1
Hou, S.B.2
Feng, Y.3
Yu, Q.4
Dionne-Laporte, A.5
Saw, J.H.6
Senin, P.7
Wang, W.8
Ly, B.V.9
Lewis, K.L.10
Salzberg, S.L.11
Feng, L.12
Jones, M.R.13
Skelton, R.L.14
Murray, J.E.15
Chen, C.16
Qian, W.17
Shen, J.18
Du, P.19
Eustice, M.20
Tong, E.21
Tang, H.22
Lyons, E.23
Paull, R.E.24
Michael, T.P.25
Wall, K.26
Rice, D.W.27
Albert, H.28
Wang, M.L.29
Zhu, Y.J.30
Schatz, M.31
Nagarajan, N.32
Acob, R.A.33
Guan, P.34
Blas, A.35
Wai, C.M.36
Ackerman, C.M.37
Ren, Y.38
Liu, C.39
Wang, J.40
Wang, J.41
Na, J.K.42
Shakirov, E.V.43
Haas, B.44
Thimmapuram, J.45
Nelson, D.46
Wang, X.47
Bowers, J.E.48
Gschwend, A.R.49
Delcher, A.L.50
Singh, R.51
Suzuki, J.Y.52
Tripathi, S.53
Neupane, K.54
Wei, H.55
Irikura, B.56
Paidi, M.57
Jiang, N.58
Zhang, W.59
Presting, G.60
Windsor, A.61
Navajas-Pérez, R.62
Torres, M.J.63
Feltus, F.A.64
Porter, B.65
Li, Y.66
Burroughs, A.M.67
Luo, M.C.68
Liu, L.69
Christopher, D.A.70
Mount, S.M.71
Moore, P.H.72
Sugimura, T.73
Jiang, J.74
Schuler, M.A.75
Friedman, V.76
Mitchell-Olds, T.77
Shippen, D.E.78
dePamphilis, C.W.79
Palmer, J.D.80
Freeling, M.81
Paterson, A.H.82
Gonsalves, D.83
Wang, L.84
Alam, M.85
more..
-
17
-
-
34848886909
-
The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla
-
Jaillon O, Aury JM, Noel B, Policriti A, Clepet C, Casagrande A, Choisne N, Aubourg S, Vitulo N, Jubin C, Vezzi A, Legeai F, Hugueney P, Dasilva C, Horner D, Mica E, Jublot D, Poulain J, Bruyère C, Billault A, Segurens B, Gouyvenoux M, Ugarte E, Cattonaro F, Anthouard V, Vico V, Del Fabbro C, Alaux M, Di Gaspero G, Dumas V, Felice N, Paillard S, Juman I, Moroldo M, Scalabrin S, Canaguier A, Le Clainche I, Malacrida G, Durand E, Pesole G, Laucou V, Chatelet P, Merdinoglu D, Delledonne M, Pezzotti M, Lecharny A, Scarpelli C, Artiguenave F, Pè ME, Valle G, Morgante M, Caboche M, Adam-Blondon AF, Weissenbach J, Quétier F, Wincker P. The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla. Nature 2007; 449(7161): 463-467
-
(2007)
Nature
, vol.449
, Issue.7161
, pp. 463-467
-
-
Jaillon, O.1
Aury, J.M.2
Noel, B.3
Policriti, A.4
Clepet, C.5
Casagrande, A.6
Choisne, N.7
Aubourg, S.8
Vitulo, N.9
Jubin, C.10
Vezzi, A.11
Legeai, F.12
Hugueney, P.13
Dasilva, C.14
Horner, D.15
Mica, E.16
Jublot, D.17
Poulain, J.18
Bruyère, C.19
Billault, A.20
Segurens, B.21
Gouyvenoux, M.22
Ugarte, E.23
Cattonaro, F.24
Anthouard, V.25
Vico, V.26
del Fabbro, C.27
Alaux, M.28
Di Gaspero, G.29
Dumas, V.30
Felice, N.31
Paillard, S.32
Juman, I.33
Moroldo, M.34
Scalabrin, S.35
Canaguier, A.36
Le Clainche, I.37
Malacrida, G.38
Durand, E.39
Pesole, G.40
Laucou, V.41
Chatelet, P.42
Merdinoglu, D.43
Delledonne, M.44
Pezzotti, M.45
Lecharny, A.46
Scarpelli, C.47
Artiguenave, F.48
Pè, M.E.49
Valle, G.50
Morgante, M.51
Caboche, M.52
Adam-Blondon, A.F.53
Weissenbach, J.54
Quétier, F.55
Wincker, P.56
more..
-
18
-
-
33748760611
-
The genome of black cottonwood, Populus trichocarpa (Torr. & Gray)
-
Tuskan GA, Difazio S, Jansson S, Bohlmann J, Grigoriev I, Hellsten U, Putnam N, Ralph S, Rombauts S, Salamov A, Schein J, Sterck L, Aerts A, Bhalerao RR, Bhalerao RP, Blaudez D, Boerjan W, Brun A, Brunner A, Busov V, Campbell M, Carlson J, Chalot M, Chapman J, Chen GL, Cooper D, Coutinho PM, Couturier J, Covert S, Cronk Q, Cunningham R, Davis J, Degroeve S, Déjardin A, Depamphilis C, Detter J, Dirks B, Dubchak I, Duplessis S, Ehlting J, Ellis B, Gendler K, Goodstein D, Gribskov M, Grimwood J, Groover A, Gunter L, Hamberger B, Heinze B, Helariutta Y, Henrissat B, Holligan D, Holt R, Huang W, Islam-Faridi N, Jones S, Jones-Rhoades M, Jorgensen R, Joshi C, Kangasjärvi J, Karlsson J, Kelleher C, Kirkpatrick R, Kirst M, Kohler A, Kalluri U, Larimer F, Leebens-Mack J, Leplé JC, Locascio P, Lou Y, Lucas S, Martin F, Montanini B, Napoli C, Nelson DR, Nelson C, Nieminen K, Nilsson O, Pereda V, Peter G, Philippe R, Pilate G, Poliakov A, Razumovskaya J, Richardson P, Rinaldi C, Ritland K, Rouzé P, Ryaboy D, Schmutz J, Schrader J, Segerman B, Shin H, Siddiqui A, Sterky F, Terry A, Tsai CJ, Uberbacher E, Unneberg P, Vahala J, Wall K, Wessler S, Yang G, Yin T, Douglas C, Marra M, Sandberg G, Van de Peer Y, Rokhsar D. The genome of black cottonwood, Populus trichocarpa (Torr. & Gray). Science 2006; 313(5793): 1596-1604
-
(2006)
Science
, vol.313
, Issue.5793
, pp. 1596-1604
-
-
Tuskan, G.A.1
Difazio, S.2
Jansson, S.3
Bohlmann, J.4
Grigoriev, I.5
Hellsten, U.6
Putnam, N.7
Ralph, S.8
Rombauts, S.9
Salamov, A.10
Schein, J.11
Sterck, L.12
Aerts, A.13
Bhalerao, R.R.14
Bhalerao, R.P.15
Blaudez, D.16
Boerjan, W.17
Brun, A.18
Brunner, A.19
Busov, V.20
Campbell, M.21
Carlson, J.22
Chalot, M.23
Chapman, J.24
Chen, G.L.25
Cooper, D.26
Coutinho, P.M.27
Couturier, J.28
Covert, S.29
Cronk, Q.30
Cunningham, R.31
Davis, J.32
Degroeve, S.33
Déjardin, A.34
Depamphilis, C.35
Detter, J.36
Dirks, B.37
Dubchak, I.38
Duplessis, S.39
Ehlting, J.40
Ellis, B.41
Gendler, K.42
Goodstein, D.43
Gribskov, M.44
Grimwood, J.45
Groover, A.46
Gunter, L.47
Hamberger, B.48
Heinze, B.49
Helariutta, Y.50
Henrissat, B.51
Holligan, D.52
Holt, R.53
Huang, W.54
Islam-Faridi, N.55
Jones, S.56
Jones-Rhoades, M.57
Jorgensen, R.58
Joshi, C.59
Kangasjärvi, J.60
Karlsson, J.61
Kelleher, C.62
Kirkpatrick, R.63
Kirst, M.64
Kohler, A.65
Kalluri, U.66
Larimer, F.67
Leebens-Mack, J.68
Leplé, J.C.69
Locascio, P.70
Lou, Y.71
Lucas, S.72
Martin, F.73
Montanini, B.74
Napoli, C.75
Nelson, D.R.76
Nelson, C.77
Nieminen, K.78
Nilsson, O.79
Pereda, V.80
Peter, G.81
Philippe, R.82
Pilate, G.83
Poliakov, A.84
Razumovskaya, J.85
Richardson, P.86
Rinaldi, C.87
Ritland, K.88
Rouzé, P.89
Ryaboy, D.90
Schmutz, J.91
Schrader, J.92
Segerman, B.93
Shin, H.94
Siddiqui, A.95
Sterky, F.96
Terry, A.97
more..
-
19
-
-
84907150192
-
The map-based sequence of the rice genome
-
International Rice Genome Sequencing Project
-
International Rice Genome Sequencing Project. The map-based sequence of the rice genome. Nature 2005; 436(7052): 793-800
-
(2005)
Nature
, vol.436
, Issue.7052
, pp. 793-800
-
-
-
20
-
-
0037023384
-
A draft sequence of the rice genome (Oryza sativa L. ssp. indica)
-
Yu J, Hu SN, Wang J, Wong GK, Li S, Liu B, Deng Y, Dai L, Zhou Y, Zhang X, Cao M, Liu J, Sun J, Tang J, Chen Y, Huang X, Lin W, Ye C, Tong W, Cong L, Geng J, Han Y, Li L, Li W, Hu G, Huang X, Li W, Li J, Liu Z, Li L, Liu J, Qi Q, Liu J, Li L, Li T, Wang X, Lu H, Wu T, Zhu M, Ni P, Han H, Dong W, Ren X, Feng X, Cui P, Li X, Wang H, Xu X, Zhai W, Xu Z, Zhang J, He S, Zhang J, Xu J, Zhang K, Zheng X, Dong J, Zeng W, Tao L, Ye J, Tan J, Ren X, Chen X, He J, Liu D, Tian W, Tian C, Xia H, Bao Q, Li G, Gao H, Cao T, Wang J, Zhao W, Li P, Chen W, Wang X, Zhang Y, Hu J, Wang J, Liu S, Yang J, Zhang G, Xiong Y, Li Z, Mao L, Zhou C, Zhu Z, Chen R, Hao B, Zheng W, Chen S, Guo W, Li G, Liu S, Tao M, Wang J, Zhu L, Yuan L, Yang H. A draft sequence of the rice genome (Oryza sativa L. ssp. indica). Science 2002; 296(5565): 79-92
-
(2002)
Science
, vol.296
, Issue.5565
, pp. 79-92
-
-
Yu, J.1
Hu, S.N.2
Wang, J.3
Wong, G.K.4
Li, S.5
Liu, B.6
Deng, Y.7
Dai, L.8
Zhou, Y.9
Zhang, X.10
Cao, M.11
Liu, J.12
Sun, J.13
Tang, J.14
Chen, Y.15
Huang, X.16
Lin, W.17
Ye, C.18
Tong, W.19
Cong, L.20
Geng, J.21
Han, Y.22
Li, L.23
Li, W.24
Hu, G.25
Huang, X.26
Li, W.27
Li, J.28
Liu, Z.29
Li, L.30
Liu, J.31
Qi, Q.32
Liu, J.33
Li, L.34
Li, T.35
Wang, X.36
Lu, H.37
Wu, T.38
Zhu, M.39
Ni, P.40
Han, H.41
Dong, W.42
Ren, X.43
Feng, X.44
Cui, P.45
Li, X.46
Wang, H.47
Xu, X.48
Zhai, W.49
Xu, Z.50
Zhang, J.51
He, S.52
Zhang, J.53
Xu, J.54
Zhang, K.55
Zheng, X.56
Dong, J.57
Zeng, W.58
Tao, L.59
Ye, J.60
Tan, J.61
Ren, X.62
Chen, X.63
He, J.64
Liu, D.65
Tian, W.66
Tian, C.67
Xia, H.68
Bao, Q.69
Li, G.70
Gao, H.71
Cao, T.72
Wang, J.73
Zhao, W.74
Li, P.75
Chen, W.76
Wang, X.77
Zhang, Y.78
Hu, J.79
Wang, J.80
Liu, S.81
Yang, J.82
Zhang, G.83
Xiong, Y.84
Li, Z.85
Mao, L.86
Zhou, C.87
Zhu, Z.88
Chen, R.89
Hao, B.90
Zheng, W.91
Chen, S.92
Guo, W.93
Li, G.94
Liu, S.95
Tao, M.96
Wang, J.97
Zhu, L.98
Yuan, L.99
Yang, H.100
more..
-
21
-
-
0037023349
-
A draft sequence of the rice genome (Oryza sativa L. ssp. japonica)
-
Goff SA, Ricke D, Lan TH, Presting G, Wang R, Dunn M, Glazebrook J, Sessions A, Oeller P, Varma H, Hadley D, Hutchison D, Martin C, Katagiri F, Lange BM, Moughamer T, Xia Y, Budworth P, Zhong J, Miguel T, Paszkowski U, Zhang S, Colbert M, Sun WL, Chen L, Cooper B, Park S, Wood TC, Mao L, Quail P, Wing R, Dean R, Yu Y, Zharkikh A, Shen R, Sahasrabudhe S, Thomas A, Cannings R, Gutin A, Pruss D, Reid J, Tavtigian S, Mitchell J, Eldredge G, Scholl T, Miller RM, Bhatnagar S, Adey N, Rubano T, Tusneem N, Robinson R, Feldhaus J, Macalma T, Oliphant A, Briggs S. A draft sequence of the rice genome (Oryza sativa L. ssp. japonica). Science 2002; 296(5565): 92-100
-
(2002)
Science
, vol.296
, Issue.5565
, pp. 92-100
-
-
Goff, S.A.1
Ricke, D.2
Lan, T.H.3
Presting, G.4
Wang, R.5
Dunn, M.6
Glazebrook, J.7
Sessions, A.8
Oeller, P.9
Varma, H.10
Hadley, D.11
Hutchison, D.12
Martin, C.13
Katagiri, F.14
Lange, B.M.15
Moughamer, T.16
Xia, Y.17
Budworth, P.18
Zhong, J.19
Miguel, T.20
Paszkowski, U.21
Zhang, S.22
Colbert, M.23
Sun, W.L.24
Chen, L.25
Cooper, B.26
Park, S.27
Wood, T.C.28
Mao, L.29
Quail, P.30
Wing, R.31
Dean, R.32
Yu, Y.33
Zharkikh, A.34
Shen, R.35
Sahasrabudhe, S.36
Thomas, A.37
Cannings, R.38
Gutin, A.39
Pruss, D.40
Reid, J.41
Tavtigian, S.42
Mitchell, J.43
Eldredge, G.44
Scholl, T.45
Miller, R.M.46
Bhatnagar, S.47
Adey, N.48
Rubano, T.49
Tusneem, N.50
Robinson, R.51
Feldhaus, J.52
McAlma, T.53
Oliphant, A.54
Briggs, S.55
more..
-
22
-
-
0034649566
-
Analysis of the genome sequence of the flowering plant Arabidopsis thaliana
-
Arabidopsis Genome Initiative
-
Arabidopsis Genome Initiative. Analysis of the genome sequence of the flowering plant Arabidopsis thaliana. Nature 2000; 408(6814): 796-815
-
(2000)
Nature
, vol.408
, Issue.6814
, pp. 796-815
-
-
-
23
-
-
0037464588
-
A vision for the future of genomics research
-
Collins FS, Green ED, Guttmacher AE, Guyer MS. A vision for the future of genomics research. Nature 2003; 422(6934): 835-847
-
(2003)
Nature
, vol.422
, Issue.6934
, pp. 835-847
-
-
Collins, F.S.1
Green, E.D.2
Guttmacher, A.E.3
Guyer, M.S.4
-
24
-
-
0034659898
-
Genomics, gene expression and DNA arrays
-
Lockhart DJ, Winzeler EA. Genomics, gene expression and DNA arrays. Nature 2000; 405(6788): 827-836
-
(2000)
Nature
, vol.405
, Issue.6788
, pp. 827-836
-
-
Lockhart, D.J.1
Winzeler, E.A.2
-
25
-
-
77956487660
-
Salviae miltiorrhiza: A model organism for Chinese traditional medicine genomic studies
-
(in Chinese)
-
Wang QH, Chen AH, Zhang BL. Salviae miltiorrhiza: a model organism for Chinese traditional medicine genomic studies. Acta Chin Med Pharmacol (Zhong Yi Yao Xue Bao) 2009; 37(4): 1-3 (in Chinese)
-
(2009)
Acta Chin Med Pharmacol (Zhong Yi Yao Xue Bao)
, vol.37
, Issue.4
, pp. 1-3
-
-
Wang, Q.H.1
Chen, A.H.2
Zhang, B.L.3
-
26
-
-
77649108109
-
Validation of the ITS2 region as a novel DNA barcode for identifying medicinal plant species
-
Chen SL, Yao H, Han JP, Liu C, Song JY, Shi LC, Zhu YJ, Ma XY, Gao T, Pang XH, Luo K, Li Y, Li XW, Jia X, Lin Y, Leon C. Validation of the ITS2 region as a novel DNA barcode for identifying medicinal plant species. PLoS ONE 2010; 5(1): e8613
-
(2010)
PLoS ONE
, vol.5
, Issue.1
-
-
Chen, S.L.1
Yao, H.2
Han, J.P.3
Liu, C.4
Song, J.Y.5
Shi, L.C.6
Zhu, Y.J.7
Ma, X.Y.8
Gao, T.9
Pang, X.H.10
Luo, K.11
Li, Y.12
Li, X.W.13
Jia, X.14
Lin, Y.15
Leon, C.16
-
27
-
-
67650671650
-
Identification of Dendrobium species by a candidate DNA barcode sequence: The chloroplast psbA-trnH intergenic region
-
Yao H, Song JY, Ma XY, Liu C, Li Y, Xu HX, Han JP, Duan LS, Chen SL. Identification of Dendrobium species by a candidate DNA barcode sequence: the chloroplast psbA-trnH intergenic region. Planta Med 2009; 75(6): 667-669
-
(2009)
Planta Med
, vol.75
, Issue.6
, pp. 667-669
-
-
Yao, H.1
Song, J.Y.2
Ma, X.Y.3
Liu, C.4
Li, Y.5
Xu, H.X.6
Han, J.P.7
Duan, L.S.8
Chen, S.L.9
-
28
-
-
79952401316
-
Applying plant DNA barcodes for Rosaceae species identification
-
Pang XH, Song JY, Zhu YJ, Xu XH, Huang LF, Chen SL. Applying plant DNA barcodes for Rosaceae species identification. Cladistics 2011; 27(2): 165-170
-
(2011)
Cladistics
, vol.27
, Issue.2
, pp. 165-170
-
-
Pang, X.H.1
Song, J.Y.2
Zhu, Y.J.3
Xu, X.H.4
Huang, L.F.5
Chen, S.L.6
-
29
-
-
77958142499
-
Evaluating the feasibility of using candidate DNA barcodes in discriminating species of the large Asteraceae family
-
Gao T, Yao H, Song JY, Zhu YJ, Liu C, Chen SL. Evaluating the feasibility of using candidate DNA barcodes in discriminating species of the large Asteraceae family. BMC Evol Biol 2010; 10: 324
-
(2010)
BMC Evol Biol
, vol.10
, pp. 324
-
-
Gao, T.1
Yao, H.2
Song, J.Y.3
Zhu, Y.J.4
Liu, C.5
Chen, S.L.6
-
30
-
-
77953810183
-
Identification of medicinal plants in the family Fabaceae using a potential DNA barcode ITS2
-
Gao T, Yao H, Song JY, Liu C, Zhu YJ, Ma XY, Pang XH, Xu HX, Chen SL. Identification of medicinal plants in the family Fabaceae using a potential DNA barcode ITS2. J Ethnopharmacol 2010; 130(1): 116-121
-
(2010)
J Ethnopharmacol
, vol.130
, Issue.1
, pp. 116-121
-
-
Gao, T.1
Yao, H.2
Song, J.Y.3
Liu, C.4
Zhu, Y.J.5
Ma, X.Y.6
Pang, X.H.7
Xu, H.X.8
Chen, S.L.9
-
31
-
-
72849144434
-
Sequencing technologies-the next generation
-
Metzker ML. Sequencing technologies-the next generation. Nat Rev Genet 2010; 11(1): 31-46
-
(2010)
Nat Rev Genet
, vol.11
, Issue.1
, pp. 31-46
-
-
Metzker, M.L.1
-
32
-
-
65449144325
-
Evaluation of next generation sequencing platforms for population targeted sequencing studies
-
Harismendy O, Ng PC, Strausberg RL, Wang X, Stockwell TB, Beeson KY, Schork NJ, Murray SS, Topol EJ, Levy S, Frazer KA. Evaluation of next generation sequencing platforms for population targeted sequencing studies. Genome Biol 2009; 10(3): R32
-
(2009)
Genome Biol
, vol.10
, Issue.3
-
-
Harismendy, O.1
Ng, P.C.2
Strausberg, R.L.3
Wang, X.4
Stockwell, T.B.5
Beeson, K.Y.6
Schork, N.J.7
Murray, S.S.8
Topol, E.J.9
Levy, S.10
Frazer, K.A.11
-
33
-
-
67149116767
-
Genome sequence of the recombinant protein production host Pichia pastoris
-
De Schutter K, Lin YC, Tiels P, Van Hecke A, Glinka S, Weber-Lehmann J, Rouzé P, Van de Peer Y, Callewaert N. Genome sequence of the recombinant protein production host Pichia pastoris. Nat Biotechnol 2009; 27(6): 561-566
-
(2009)
Nat Biotechnol
, vol.27
, Issue.6
, pp. 561-566
-
-
de Schutter, K.1
Lin, Y.C.2
Tiels, P.3
van Hecke, A.4
Glinka, S.5
Weber-Lehmann, J.6
Rouzé, P.7
van de Peer, Y.8
Callewaert, N.9
-
34
-
-
77952886150
-
Assembly algorithms for nextgeneration sequencing data
-
Miller JR, Koren S, Sutton G. Assembly algorithms for nextgeneration sequencing data. Genomics 2010; 95(6): 315-327
-
(2010)
Genomics
, vol.95
, Issue.6
, pp. 315-327
-
-
Miller, J.R.1
Koren, S.2
Sutton, G.3
-
35
-
-
24044455869
-
Genome sequencing in microfabricated high-density picolitre reactors
-
Margulies M, Egholm M, Altman WE, Attiya S, Bader JS, Bemben LA, Berka J, Braverman MS, Chen YJ, Chen Z, Dewell SB, Du L, Fierro JM, Gomes XV, Godwin BC, He W, Helgesen S, Ho CH, Irzyk GP, Jando SC, Alenquer ML, Jarvie TP, Jirage KB, Kim JB, Knight JR, Lanza JR, Leamon JH, Lefkowitz SM, Lei M, Li J, Lohman KL, Lu H, Makhijani VB, McDade KE, McKenna MP, Myers EW, Nickerson E, Nobile JR, Plant R, Puc BP, Ronan MT, Roth GT, Sarkis GJ, Simons JF, Simpson JW, Srinivasan M, Tartaro KR, Tomasz A, Vogt KA, Volkmer GA, Wang SH, Wang Y, Weiner MP, Yu P, Begley RF, Rothberg JM. Genome sequencing in microfabricated high-density picolitre reactors. Nature 2005; 437(7057): 376-380
-
(2005)
Nature
, vol.437
, Issue.7057
, pp. 376-380
-
-
Margulies, M.1
Egholm, M.2
Altman, W.E.3
Attiya, S.4
Bader, J.S.5
Bemben, L.A.6
Berka, J.7
Braverman, M.S.8
Chen, Y.J.9
Chen, Z.10
Dewell, S.B.11
Du, L.12
Fierro, J.M.13
Gomes, X.V.14
Godwin, B.C.15
He, W.16
Helgesen, S.17
Ho, C.H.18
Irzyk, G.P.19
Jando, S.C.20
Alenquer, M.L.21
Jarvie, T.P.22
Jirage, K.B.23
Kim, J.B.24
Knight, J.R.25
Lanza, J.R.26
Leamon, J.H.27
Lefkowitz, S.M.28
Lei, M.29
Li, J.30
Lohman, K.L.31
Lu, H.32
Makhijani, V.B.33
McDade, K.E.34
McKenna, M.P.35
Myers, E.W.36
Nickerson, E.37
Nobile, J.R.38
Plant, R.39
Puc, B.P.40
Ronan, M.T.41
Roth, G.T.42
Sarkis, G.J.43
Simons, J.F.44
Simpson, J.W.45
Srinivasan, M.46
Tartaro, K.R.47
Tomasz, A.48
Vogt, K.A.49
Volkmer, G.A.50
Wang, S.H.51
Wang, Y.52
Weiner, M.P.53
Yu, P.54
Begley, R.F.55
Rothberg, J.M.56
more..
-
36
-
-
0034708758
-
A whole-genome assembly of Drosophila
-
Myers EW, Sutton GG, Delcher AL, Dew IM, Fasulo DP, Flanigan MJ, Kravitz SA, Mobarry CM, Reinert KH, Remington KA, Anson EL, Bolanos RA, Chou HH, Jordan CM, Halpern AL, Lonardi S, Beasley EM, Brandon RC, Chen L, Dunn PJ, Lai Z, Liang Y, Nusskern DR, Zhan M, Zhang Q, Zheng X, Rubin GM, Adams MD, Venter JC. A whole-genome assembly of Drosophila. Science 2000; 287(5461): 2196-2204
-
(2000)
Science
, vol.287
, Issue.5461
, pp. 2196-2204
-
-
Myers, E.W.1
Sutton, G.G.2
Delcher, A.L.3
Dew, I.M.4
Fasulo, D.P.5
Flanigan, M.J.6
Kravitz, S.A.7
Mobarry, C.M.8
Reinert, K.H.9
Remington, K.A.10
Anson, E.L.11
Bolanos, R.A.12
Chou, H.H.13
Jordan, C.M.14
Halpern, A.L.15
Lonardi, S.16
Beasley, E.M.17
Brandon, R.C.18
Chen, L.19
Dunn, P.J.20
Lai, Z.21
Liang, Y.22
Nusskern, D.R.23
Zhan, M.24
Zhang, Q.25
Zheng, X.26
Rubin, G.M.27
Adams, M.D.28
Venter, J.C.29
more..
-
37
-
-
57249105124
-
Aggressive assembly of pyrosequencing reads with mates
-
Miller JR, Delcher AL, Koren S, Venter E, Walenz BP, Brownley A, Johnson J, Li K, Mobarry C, Sutton G. Aggressive assembly of pyrosequencing reads with mates. Bioinformatics 2008; 24(24): 2818-2824
-
(2008)
Bioinformatics
, vol.24
, Issue.24
, pp. 2818-2824
-
-
Miller, J.R.1
Delcher, A.L.2
Koren, S.3
Venter, E.4
Walenz, B.P.5
Brownley, A.6
Johnson, J.7
Li, K.8
Mobarry, C.9
Sutton, G.10
-
38
-
-
77952886150
-
Assembly algorithms for nextgeneration sequencing data
-
Miller JR, Koren S, Sutton G. Assembly algorithms for nextgeneration sequencing data. Genomics 2010; 95(6): 315-327
-
(2010)
Genomics
, vol.95
, Issue.6
, pp. 315-327
-
-
Miller, J.R.1
Koren, S.2
Sutton, G.3
-
39
-
-
77949412665
-
BAC-HAPPY Mapping (BAP Mapping): A new and efficient protocol for physical mapping
-
Vu GTH, Dear PH, Caligari PDS, Wilkinson MJ. BAC-HAPPY Mapping (BAP Mapping): a new and efficient protocol for physical mapping. PLoS ONE 2010; 5(2): e9089
-
(2010)
PLoS ONE
, vol.5
, Issue.2
-
-
Vu, G.T.H.1
Dear, P.H.2
Caligari, P.D.S.3
Wilkinson, M.J.4
-
40
-
-
33748696966
-
Use of HAPPY mapping for the higher order assembly of the Tetrahymena genome
-
Hamilton EP, Dear PH, Rowland T, Saks K, Eisen JA, Orias E. Use of HAPPY mapping for the higher order assembly of the Tetrahymena genome. Genomics 2006; 88(4): 443-451
-
(2006)
Genomics
, vol.88
, Issue.4
, pp. 443-451
-
-
Hamilton, E.P.1
Dear, P.H.2
Rowland, T.3
Saks, K.4
Eisen, J.A.5
Orias, E.6
-
41
-
-
35648988889
-
Optical mapping as a routine tool for bacterial genome sequence Finishing
-
Latreille P, Norton S, Goldman BS, Henkhaus J, Miller N, Barbazuk B, Bode HB, Darby C, Du Z, Forst S, Gaudriault S, Goodner B, Goodrich-Blair H, Slater S. Optical mapping as a routine tool for bacterial genome sequence Finishing. BMC Genomics 2007; 8(1): 321
-
(2007)
BMC Genomics
, vol.8
, Issue.1
, pp. 321
-
-
Latreille, P.1
Norton, S.2
Goldman, B.S.3
Henkhaus, J.4
Miller, N.5
Barbazuk, B.6
Bode, H.B.7
Darby, C.8
Du, Z.9
Forst, S.10
Gaudriault, S.11
Goodner, B.12
Goodrich-Blair, H.13
Slater, S.14
-
42
-
-
0035528185
-
An automated annotation tool for genomic DNA sequences using GeneScan and BLAST
-
Lynn AM, Jain CK, Kosalai K, Barman P, Thakur N, Batra H, Bhattacharya A. An automated annotation tool for genomic DNA sequences using GeneScan and BLAST. J Genet 2001; 80(1): 9-16
-
(2001)
J Genet
, vol.80
, Issue.1
, pp. 9-16
-
-
Lynn, A.M.1
Jain, C.K.2
Kosalai, K.3
Barman, P.4
Thakur, N.5
Batra, H.6
Bhattacharya, A.7
-
43
-
-
0034065724
-
Ab initio gene finding in Drosophila genomic DNA
-
Salamov AA, Solovyev VV. Ab initio gene finding in Drosophila genomic DNA. Genome Res 2000; 10(4): 516-522
-
(2000)
Genome Res
, vol.10
, Issue.4
, pp. 516-522
-
-
Salamov, A.A.1
Solovyev, V.V.2
-
44
-
-
0034800374
-
InterProScan-an integration platform for the signature-recognition methods in InterPro
-
Zdobnov EM, Apweiler R. InterProScan-an integration platform for the signature-recognition methods in InterPro. Bioinformatics 2001; 17(9): 847-848
-
(2001)
Bioinformatics
, vol.17
, Issue.9
, pp. 847-848
-
-
Zdobnov, E.M.1
Apweiler, R.2
-
46
-
-
33644874819
-
From genomics to chemical genomics: New developments in KEGG
-
Kanehisa M, Goto S, Hattori M, Aoki-Kinoshita KF, Itoh M, Kawashima S, Katayama T, Araki M, Hirakawa M. From genomics to chemical genomics: new developments in KEGG. Nucleic Acids Res 2006; 34(9000 Database issue): D354-D357
-
(2006)
Nucleic Acids Res
, vol.34
, Issue.9000 DATABASE ISSUE
-
-
Kanehisa, M.1
Goto, S.2
Hattori, M.3
Aoki-Kinoshita, K.F.4
Itoh, M.5
Kawashima, S.6
Katayama, T.7
Araki, M.8
Hirakawa, M.9
-
47
-
-
0035900382
-
Geraniol 10-hydroxylase, a cytochrome P450 enzyme involved in terpenoid indole alkaloid biosynthesis
-
Collu G, Unver N, Peltenburg-Looman AMG, van der Heijden R, Verpoorte R, Memelink J. Geraniol 10-hydroxylase, a cytochrome P450 enzyme involved in terpenoid indole alkaloid biosynthesis. FEBS Lett 2001; 508(2): 215-220
-
(2001)
FEBS Lett
, vol.508
, Issue.2
, pp. 215-220
-
-
Collu, G.1
Unver, N.2
Peltenburg-Looman, A.M.G.3
van der Heijden, R.4
Verpoorte, R.5
Memelink, J.6
-
48
-
-
52949093520
-
Licorice β-amyrin 11-oxidase, a cytochrome P450 with a key role in the biosynthesis of the triterpene sweetener glycyrrhizin
-
Seki H, Ohyama K, Sawai S, Mizutani M, Ohnishi T, Sudo H, Akashi T, Aoki T, Saito K, Muranaka T. Licorice β-amyrin 11-oxidase, a cytochrome P450 with a key role in the biosynthesis of the triterpene sweetener glycyrrhizin. Proc Natl Acad Sci USA 2008; 105(37): 14204-14209
-
(2008)
Proc Natl Acad Sci USA
, vol.105
, Issue.37
, pp. 14204-14209
-
-
Seki, H.1
Ohyama, K.2
Sawai, S.3
Mizutani, M.4
Ohnishi, T.5
Sudo, H.6
Akashi, T.7
Aoki, T.8
Saito, K.9
Muranaka, T.10
-
49
-
-
33750953227
-
Whole-genome re-sequencing
-
Bentley DR. Whole-genome re-sequencing. Curr Opin Genet Dev 2006; 16(6): 545-552
-
(2006)
Curr Opin Genet Dev
, vol.16
, Issue.6
, pp. 545-552
-
-
Bentley, D.R.1
-
50
-
-
77449121614
-
Target-enrichment strategies for next-generation sequencing
-
Mamanova L, Coffey AJ, Scott CE, Kozarewa I, Turner EH, Kumar A, Howard E, Shendure J, Turner DJ. Target-enrichment strategies for next-generation sequencing. Nat Methods 2010; 7(2): 111-118
-
(2010)
Nat Methods
, vol.7
, Issue.2
, pp. 111-118
-
-
Mamanova, L.1
Coffey, A.J.2
Scott, C.E.3
Kozarewa, I.4
Turner, E.H.5
Kumar, A.6
Howard, E.7
Shendure, J.8
Turner, D.J.9
-
51
-
-
70350134644
-
Complete resequencing of 40 genomes reveals domestication events and genes in silkworm (Bombyx)
-
Xia QY, Guo YR, Zhang Z, Li D, Xuan Z, Li Z, Dai F, Li Y, Cheng D, Li R, Cheng T, Jiang T, Becquet C, Xu X, Liu C, Zha X, Fan W, Lin Y, Shen Y, Jiang L, Jensen J, Hellmann I, Tang S, Zhao P, Xu H, Yu C, Zhang G, Li J, Cao J, Liu S, He N, Zhou Y, Liu H, Zhao J, Ye C, Du Z, Pan G, Zhao A, Shao H, Zeng W, Wu P, Li C, Pan M, Li J, Yin X, Li D, Wang J, Zheng H, Wang W, Zhang X, Li S, Yang H, Lu C, Nielsen R, Zhou Z, Wang J, Xiang Z, Wang J. Complete resequencing of 40 genomes reveals domestication events and genes in silkworm (Bombyx). Science 2009; 326(5951): 433-436
-
(2009)
Science
, vol.326
, Issue.5951
, pp. 433-436
-
-
Xia, Q.Y.1
Guo, Y.R.2
Zhang, Z.3
Li, D.4
Xuan, Z.5
Li, Z.6
Dai, F.7
Li, Y.8
Cheng, D.9
Li, R.10
Cheng, T.11
Jiang, T.12
Becquet, C.13
Xu, X.14
Liu, C.15
Zha, X.16
Fan, W.17
Lin, Y.18
Shen, Y.19
Jiang, L.20
Jensen, J.21
Hellmann, I.22
Tang, S.23
Zhao, P.24
Xu, H.25
Yu, C.26
Zhang, G.27
Li, J.28
Cao, J.29
Liu, S.30
He, N.31
Zhou, Y.32
Liu, H.33
Zhao, J.34
Ye, C.35
Du, Z.36
Pan, G.37
Zhao, A.38
Shao, H.39
Zeng, W.40
Wu, P.41
Li, C.42
Pan, M.43
Li, J.44
Yin, X.45
Li, D.46
Wang, J.47
Zheng, H.48
Wang, W.49
Zhang, X.50
Li, S.51
Yang, H.52
Lu, C.53
Nielsen, R.54
Zhou, Z.55
Wang, J.56
Xiang, Z.57
Wang, J.58
more..
-
52
-
-
77950080740
-
Whole-genome resequencing reveals loci under selection during chicken domestication
-
Rubin CJ, Zody MC, Eriksson J, Meadows JR, Sherwood E, Webster MT, Jiang L, Ingman M, Sharpe T, Ka S, Hallböök F, Besnier F, Carlborg O, Bed'hom B, Tixier-Boichard M, Jensen P, Siegel P, Lindblad-Toh K, Andersson L. Whole-genome resequencing reveals loci under selection during chicken domestication. Nature 2010; 464(7288): 587-591
-
(2010)
Nature
, vol.464
, Issue.7288
, pp. 587-591
-
-
Rubin, C.J.1
Zody, M.C.2
Eriksson, J.3
Meadows, J.R.4
Sherwood, E.5
Webster, M.T.6
Jiang, L.7
Ingman, M.8
Sharpe, T.9
Ka, S.10
Hallböök, F.11
Besnier, F.12
Carlborg, O.13
Bed'hom, B.14
Tixier-Boichard, M.15
Jensen, P.16
Siegel, P.17
Lindblad-Toh, K.18
Andersson, L.19
-
53
-
-
0036910328
-
A high-throughput Arabidopsis reverse genetics system
-
Sessions A, Burke E, Presting G, Aux G, McElver J, Patton D, Dietrich B, Ho P, Bacwaden J, Ko C, Clarke JD, Cotton D, Bullis D, Snell J, Miguel T, Hutchison D, Kimmerly B, Mitzel T, Katagiri F, Glazebrook J, Law M, Goff SA. A high-throughput Arabidopsis reverse genetics system. Plant Cell 2002; 14(12): 2985-2994
-
(2002)
Plant Cell
, vol.14
, Issue.12
, pp. 2985-2994
-
-
Sessions, A.1
Burke, E.2
Presting, G.3
Aux, G.4
McElver, J.5
Patton, D.6
Dietrich, B.7
Ho, P.8
Bacwaden, J.9
Ko, C.10
Clarke, J.D.11
Cotton, D.12
Bullis, D.13
Snell, J.14
Miguel, T.15
Hutchison, D.16
Kimmerly, B.17
Mitzel, T.18
Katagiri, F.19
Glazebrook, J.20
Law, M.21
Goff, S.A.22
more..
-
54
-
-
3843065475
-
High throughput T-DNA insertion mutagenesis in rice: A first step towards in silico reverse genetics
-
Sallaud C, Gay C, Larmande P, Bès M, Piffanelli P, Piégu B, Droc G, Regad F, Bourgeois E, Meynard D, Périn C, Sabau X, Ghesquiére A, Glaszmann JC, Delseny M, Guiderdoni E. High throughput T-DNA insertion mutagenesis in rice: a first step towards in silico reverse genetics. Plant J 2004; 39(3): 450-464
-
(2004)
Plant J
, vol.39
, Issue.3
, pp. 450-464
-
-
Sallaud, C.1
Gay, C.2
Larmande, P.3
Bès, M.4
Piffanelli, P.5
Piégu, B.6
Droc, G.7
Regad, F.8
Bourgeois, E.9
Meynard, D.10
Périn, C.11
Sabau, X.12
Ghesquiére, A.13
Glaszmann, J.C.14
Delseny, M.15
Guiderdoni, E.16
-
55
-
-
77956659870
-
Comparison of 454-ESTs from Huperzia serrata and Phlegmariurus carinatus reveals putative genes involved in lycopodium alkaloid biosynthesis and developmental regulation
-
Luo HM, Li Y, Sun C, Wu Q, Song JY, Sun YZ, Steinmetz A, Chen SL. Comparison of 454-ESTs from Huperzia serrata and Phlegmariurus carinatus reveals putative genes involved in lycopodium alkaloid biosynthesis and developmental regulation. BMC Plant Biol 2010; 10(1): 209
-
(2010)
BMC Plant Biol
, vol.10
, Issue.1
, pp. 209
-
-
Luo, H.M.1
Li, Y.2
Sun, C.3
Wu, Q.4
Song, J.Y.5
Sun, Y.Z.6
Steinmetz, A.7
Chen, S.L.8
-
56
-
-
77951499889
-
Molecular evolution and positive Darwinian selection of the chloroplast maturase matK
-
Hao C, Chen SL, Xiao PG. Molecular evolution and positive Darwinian selection of the chloroplast maturase matK. J Plant Res 2010; 123(2): 241-247
-
(2010)
J Plant Res
, vol.123
, Issue.2
, pp. 241-247
-
-
Hao, C.1
Chen, S.L.2
Xiao, P.G.3
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