-
1
-
-
33645069648
-
Influence of drought, salt stress and abscisic acid on the resistance of tomato to Botrytis cinerea and Oidium neolycopersici
-
COI: 1:CAS:528:DC%2BD28Xkt1Krt70%3D
-
Achuo EA, Prinsen E, Hofte M (2006) Influence of drought, salt stress and abscisic acid on the resistance of tomato to Botrytis cinerea and Oidium neolycopersici. Plant Pathol 55:178–186
-
(2006)
Plant Pathol
, vol.55
, pp. 178-186
-
-
Achuo, E.A.1
Prinsen, E.2
Hofte, M.3
-
2
-
-
58549087805
-
Incremental steps toward incompatibility revealed by Arabidopsis epistatic interactions modulating salicylic acid pathway activation
-
PID: 19106299
-
Alcázar R, García AV, Parker JE, Reymond M (2009) Incremental steps toward incompatibility revealed by Arabidopsis epistatic interactions modulating salicylic acid pathway activation. Proc Natl Acad Sci USA 106:334–339
-
(2009)
Proc Natl Acad Sci USA
, vol.106
, pp. 334-339
-
-
Alcázar, R.1
García, A.V.2
Parker, J.E.3
Reymond, M.4
-
3
-
-
74249108812
-
Effect of salinity on pythium damping-off of cucumber and on the tolerance of Pythium aphanidermatum
-
COI: 1:CAS:528:DC%2BC3cXitlagtbw%3D
-
Al-Sadi AM, Al-Masoudi RS, Al-Habsi N, Al-Said FA, Al-Rawahy SA, Ahmed M, Deadman ML (2010) Effect of salinity on pythium damping-off of cucumber and on the tolerance of Pythium aphanidermatum. Plant Pathol 59:112–120
-
(2010)
Plant Pathol
, vol.59
, pp. 112-120
-
-
Al-Sadi, A.M.1
Al-Masoudi, R.S.2
Al-Habsi, N.3
Al-Said, F.A.4
Al-Rawahy, S.A.5
Ahmed, M.6
Deadman, M.L.7
-
4
-
-
84355162154
-
A rice calcium-dependent protein kinase OsCPK12 oppositely modulates salt-stress tolerance and blast disease resistance
-
COI: 1:CAS:528:DC%2BC38XhtFWnsbg%3D, PID: 21883553
-
Asano T, Hayashi N, Kobayashi M, Aoki N, Miyao A, Mitsuhara I, Ichikawa H, Komatsu S, Hirochika H, Kikuchi S, Ohsugi R (2012) A rice calcium-dependent protein kinase OsCPK12 oppositely modulates salt-stress tolerance and blast disease resistance. Plant J 69:26–36
-
(2012)
Plant J
, vol.69
, pp. 26-36
-
-
Asano, T.1
Hayashi, N.2
Kobayashi, M.3
Aoki, N.4
Miyao, A.5
Mitsuhara, I.6
Ichikawa, H.7
Komatsu, S.8
Hirochika, H.9
Kikuchi, S.10
Ohsugi, R.11
-
5
-
-
84876805819
-
+ homeostasis
-
COI: 1:CAS:528:DC%2BC3sXms1ems7s%3D, PID: 23216099
-
+ homeostasis. Plant Cell Environ 36:1171–1191
-
(2013)
Plant Cell Environ
, vol.36
, pp. 1171-1191
-
-
Asins, M.J.1
Villalta, I.2
Aly, M.M.3
Olías, R.4
Álvarez De Morales, P.5
Huertas, R.6
Li, J.7
Jaime-Pérez, N.8
Haro, R.9
Raga, V.10
Carbonell, E.A.11
Belver, A.12
-
6
-
-
84880985818
-
Identification of genes involved in the response of arabidopsis to simultaneous biotic and abiotic stresses
-
COI: 1:CAS:528:DC%2BC3sXhtlWlt7rE, PID: 23800991
-
Atkinson NJ, Lilley CJ, Urwin PE (2013) Identification of genes involved in the response of arabidopsis to simultaneous biotic and abiotic stresses. Plant Physiol 162:2028–2041
-
(2013)
Plant Physiol
, vol.162
, pp. 2028-2041
-
-
Atkinson, N.J.1
Lilley, C.J.2
Urwin, P.E.3
-
7
-
-
0037304272
-
QTLs for tomato powdery mildew resistance (Oidium lycopersici) in Lycopersicon parviflorum G1.1601 co-localize with two qualitative powdery mildew resistance genes
-
COI: 1:CAS:528:DC%2BD3sXmtFelug%3D%3D, PID: 12575751
-
Bai Y, Huang CC, Van Der Hulst R, Meijer-Dekens F, Bonnema G, Lindhout P (2003) QTLs for tomato powdery mildew resistance (Oidium lycopersici) in Lycopersicon parviflorum G1.1601 co-localize with two qualitative powdery mildew resistance genes. Mol Plant Microbe Interact 16:169–176
-
(2003)
Mol Plant Microbe Interact
, vol.16
, pp. 169-176
-
-
Bai, Y.1
Huang, C.C.2
Van Der Hulst, R.3
Meijer-Dekens, F.4
Bonnema, G.5
Lindhout, P.6
-
9
-
-
28444436598
-
Drought resistance, water-use efficiency, and yield potential—are they compatible, dissonant, or mutually exclusive?
-
Blum A (2005) Drought resistance, water-use efficiency, and yield potential—are they compatible, dissonant, or mutually exclusive? Crop Pasture Sci 56:1159–1168
-
(2005)
Crop Pasture Sci
, vol.56
, pp. 1159-1168
-
-
Blum, A.1
-
10
-
-
0035033203
-
Relationship between tomato fruit growth and fruit osmotic potential under salinity
-
COI: 1:CAS:528:DC%2BD3MXjtFGjurg%3D, PID: 11337072
-
Bolarin MC, Estañ MT, Caro M, Romero-Aranda R, Cuartero J (2001) Relationship between tomato fruit growth and fruit osmotic potential under salinity. Plant Sci 160:1153–1159
-
(2001)
Plant Sci
, vol.160
, pp. 1153-1159
-
-
Bolarin, M.C.1
Estañ, M.T.2
Caro, M.3
Romero-Aranda, R.4
Cuartero, J.5
-
11
-
-
66249109632
-
Proteomic analysis of salt-stressed tomato (Solanum lycopersicum) seedlings: effect of genotype and exogenous application of glycinebetaine
-
COI: 1:CAS:528:DC%2BD1MXmtFSjur0%3D, PID: 19336390
-
Chen S, Gollop N, Heuer B (2009) Proteomic analysis of salt-stressed tomato (Solanum lycopersicum) seedlings: effect of genotype and exogenous application of glycinebetaine. J Exp Bot 60:2005–2019
-
(2009)
J Exp Bot
, vol.60
, pp. 2005-2019
-
-
Chen, S.1
Gollop, N.2
Heuer, B.3
-
12
-
-
84879713263
-
The arabidopsis ETHYLENE RESPONSE FACTOR1 regulates abiotic stress-responsive gene expression by binding to different cis-acting elements in response to different stress signals
-
COI: 1:CAS:528:DC%2BC3sXhtFCmtLbI, PID: 23719892
-
Cheng MC, Liao PM, Kuo WW, Lin TP (2013) The arabidopsis ETHYLENE RESPONSE FACTOR1 regulates abiotic stress-responsive gene expression by binding to different cis-acting elements in response to different stress signals. Plant Physiol 162:1566–1582
-
(2013)
Plant Physiol
, vol.162
, pp. 1566-1582
-
-
Cheng, M.C.1
Liao, P.M.2
Kuo, W.W.3
Lin, T.P.4
-
13
-
-
84864124348
-
Marker2sequence, mine your QTL regions for candidate genes
-
COI: 1:CAS:528:DC%2BC38XhtVSgtr7L, PID: 22628524
-
Chibon P, Schoof H, Visser RG, Finkers R (2012) Marker2sequence, mine your QTL regions for candidate genes. Bioinformatics 28:1921–1922
-
(2012)
Bioinformatics
, vol.28
, pp. 1921-1922
-
-
Chibon, P.1
Schoof, H.2
Visser, R.G.3
Finkers, R.4
-
14
-
-
0032694665
-
Climate change and plant disease management
-
COI: 1:CAS:528:DyaK1MXnt1Wnt7Y%3D, PID: 11701829
-
Coakley SM, Scherm H, Chakraborty S (1999) Climate change and plant disease management. Annu Rev Phytopathol 37:399–426
-
(1999)
Annu Rev Phytopathol
, vol.37
, pp. 399-426
-
-
Coakley, S.M.1
Scherm, H.2
Chakraborty, S.3
-
15
-
-
33645023756
-
Increasing salt tolerance in the tomato
-
COI: 1:CAS:528:DC%2BD28Xis1Glsrc%3D, PID: 16520333
-
Cuartero J, Bolarín MC, Asíns MJ, Moreno V (2006) Increasing salt tolerance in the tomato. J Exp Bot 57:1045–1058
-
(2006)
J Exp Bot
, vol.57
, pp. 1045-1058
-
-
Cuartero, J.1
Bolarín, M.C.2
Asíns, M.J.3
Moreno, V.4
-
16
-
-
84871840877
-
Increasing drought under global warming in observations and models
-
Dai A (2013) Increasing drought under global warming in observations and models. Nat Clim Chang 3:52–58
-
(2013)
Nat Clim Chang
, vol.3
, pp. 52-58
-
-
Dai, A.1
-
17
-
-
84877030788
-
ETHYLENE RESPONSE FACTOR6 acts as a central regulator of leaf growth under water-limiting conditions in Arabidopsis
-
COI: 1:CAS:528:DC%2BC3sXnvVWksb4%3D, PID: 23553636
-
Dubois M, Skirycz A, Claeys H, Maleux K, Dhondt S, De Bodt S, vanden Bossche R, De Milde L, Yoshizumi T, Matsui M, Inzé D (2013) ETHYLENE RESPONSE FACTOR6 acts as a central regulator of leaf growth under water-limiting conditions in Arabidopsis. Plant Physiol 162:319–332
-
(2013)
Plant Physiol
, vol.162
, pp. 319-332
-
-
Dubois, M.1
Skirycz, A.2
Claeys, H.3
Maleux, K.4
Dhondt, S.5
De Bodt, S.6
vanden Bossche, R.7
De Milde, L.8
Yoshizumi, T.9
Matsui, M.10
Inzé, D.11
-
18
-
-
0009663357
-
A multiple comparison procedure for comparing several treatments with a control
-
Dunnett CW (1955) A multiple comparison procedure for comparing several treatments with a control. J Am Stat Assoc 50:1096–1121
-
(1955)
J Am Stat Assoc
, vol.50
, pp. 1096-1121
-
-
Dunnett, C.W.1
-
20
-
-
33846828806
-
Three QTLs for Botrytis cinerea resistance in tomato
-
PID: 17136515
-
Finkers R, Van Den Berg P, Van Berloo R, Ten Have A, Van Heusden AW, Van Kan JAL, Lindhout P (2007a) Three QTLs for Botrytis cinerea resistance in tomato. Theor Appl Genet 114:585–593
-
(2007)
Theor Appl Genet
, vol.114
, pp. 585-593
-
-
Finkers, R.1
Van Den Berg, P.2
Van Berloo, R.3
Ten Have, A.4
Van Heusden, A.W.5
Van Kan, J.A.L.6
Lindhout, P.7
-
21
-
-
34047148818
-
The construction of a Solanum habrochaites LYC4 introgression line population and the identification of QTLs for resistance to Botrytis cinerea
-
PID: 17273845
-
Finkers R, Van Heusden AW, Meijer-Dekens F, Van Kan JAL, Maris P, Lindhout P (2007b) The construction of a Solanum habrochaites LYC4 introgression line population and the identification of QTLs for resistance to Botrytis cinerea. Theor Appl Genet 114:1071–1080
-
(2007)
Theor Appl Genet
, vol.114
, pp. 1071-1080
-
-
Finkers, R.1
Van Heusden, A.W.2
Meijer-Dekens, F.3
Van Kan, J.A.L.4
Maris, P.5
Lindhout, P.6
-
22
-
-
0033399455
-
Comparison of salt tolerance during seed germination and vegetative growth in tomato by QTL mapping
-
COI: 1:CAS:528:DyaK1MXlvVKksbw%3D
-
Foolad MR (1999) Comparison of salt tolerance during seed germination and vegetative growth in tomato by QTL mapping. Genome 42:727–734
-
(1999)
Genome
, vol.42
, pp. 727-734
-
-
Foolad, M.R.1
-
23
-
-
84859705465
-
Expression of LeNHX isoforms in response to salt stress in salt sensitive and salt tolerant tomato species
-
PID: 22153246
-
Gálvez FJ, Baghour M, Hao G, Cagnac O, Rodríguez-Rosales MP, Venema K (2012) Expression of LeNHX isoforms in response to salt stress in salt sensitive and salt tolerant tomato species. Plant Physiol Biochem 51:109–115
-
(2012)
Plant Physiol Biochem
, vol.51
, pp. 109-115
-
-
Gálvez, F.J.1
Baghour, M.2
Hao, G.3
Cagnac, O.4
Rodríguez-Rosales, M.P.5
Venema, K.6
-
24
-
-
33748938408
-
Climate change effects on plant disease: genomes to ecosystems
-
COI: 1:CAS:528:DC%2BD28XhtVylsLfM, PID: 16722808
-
Garrett KA, Dendy SP, Frank EE, Rouse MN, Travers SE (2006) Climate change effects on plant disease: genomes to ecosystems. Annu Rev Phytopathol 44:489–509
-
(2006)
Annu Rev Phytopathol
, vol.44
, pp. 489-509
-
-
Garrett, K.A.1
Dendy, S.P.2
Frank, E.E.3
Rouse, M.N.4
Travers, S.E.5
-
25
-
-
34249012056
-
Adaptive versus non-adaptive phenotypic plasticity and the potential for contemporary adaptation in new environments
-
Ghalambor CK, McKay JK, Carroll SP, Reznick DN (2007) Adaptive versus non-adaptive phenotypic plasticity and the potential for contemporary adaptation in new environments. Funct Ecol 21:394–407
-
(2007)
Funct Ecol
, vol.21
, pp. 394-407
-
-
Ghalambor, C.K.1
McKay, J.K.2
Carroll, S.P.3
Reznick, D.N.4
-
26
-
-
43349092023
-
Mapping and characterization of novel parthenocarpy QTLs in tomato
-
PID: 18231773
-
Gorguet B, Eggink PM, Ocaña J, Tiwari A, Schipper D, Finkers R, Visser RGF, Van Heusden AW (2008) Mapping and characterization of novel parthenocarpy QTLs in tomato. Theor Appl Genet 116:755–767
-
(2008)
Theor Appl Genet
, vol.116
, pp. 755-767
-
-
Gorguet, B.1
Eggink, P.M.2
Ocaña, J.3
Tiwari, A.4
Schipper, D.5
Finkers, R.6
Visser, R.G.F.7
Van Heusden, A.W.8
-
27
-
-
84879017929
-
Solanum sect
-
Grandillo S, Chetelat R, Knapp S, Spooner D, Peralta I, Cammareri M, Perez O, Termolino P, Tripodi P, Chiusano ML, Ercolano MR, Frusciante L, Monti L, Pignone D (2011) Solanum sect. Lycopersicon. Wild crop relatives: genomic and breeding resources, vegetables: 129–215
-
(2011)
Lycopersicon. Wild crop relatives: genomic and breeding resources, vegetables
, pp. 129-215
-
-
Grandillo, S.1
Chetelat, R.2
Knapp, S.3
Spooner, D.4
Peralta, I.5
Cammareri, M.6
Perez, O.7
Termolino, P.8
Tripodi, P.9
Chiusano, M.L.10
Ercolano, M.R.11
Frusciante, L.12
Monti, L.13
Pignone, D.14
-
28
-
-
0037150708
-
Climate warming and disease risks for terrestrial and marine biota
-
COI: 1:CAS:528:DC%2BD38XkvFGhsLo%3D, PID: 12077394
-
Harvell CD, Mitchell CE, Ward JR, Altizer S, Dobson AP, Ostfeld RS, Samuel MD (2002) Climate warming and disease risks for terrestrial and marine biota. Science 296:2158–2162
-
(2002)
Science
, vol.296
, pp. 2158-2162
-
-
Harvell, C.D.1
Mitchell, C.E.2
Ward, J.R.3
Altizer, S.4
Dobson, A.P.5
Ostfeld, R.S.6
Samuel, M.D.7
-
29
-
-
0034464146
-
Characterization and mapping of resistance to Oidium lycopersicum in two Lycopersicon hirsutum accessions: evidence for close linkage of two Ol-genes on chromosome 6 of tomato
-
COI: 1:CAS:528:DC%2BD3MXitlSjt7Y%3D, PID: 11240617
-
Huang CC, Hoefs-van de Putte PM, Haanstra-van der Meer JG, Meijer-Dekens F, Lindhout P (2000) Characterization and mapping of resistance to Oidium lycopersicum in two Lycopersicon hirsutum accessions: evidence for close linkage of two Ol-genes on chromosome 6 of tomato. Heredity 85:511–520
-
(2000)
Heredity
, vol.85
, pp. 511-520
-
-
Huang, C.C.1
Hoefs-van de Putte, P.M.2
Haanstra-van der Meer, J.G.3
Meijer-Dekens, F.4
Lindhout, P.5
-
30
-
-
84863533106
-
Overexpression of SlSOS2 (SlCIPK24) confers salt tolerance to transgenic tomato
-
COI: 1:CAS:528:DC%2BC38Xhtlehtr%2FI, PID: 22390672
-
Huertas R, Olías R, Eljakaoui Z, Gálvez FJ, Li J, De Morales PA, Belver A, Rodríguez-Rosales MP (2012) Overexpression of SlSOS2 (SlCIPK24) confers salt tolerance to transgenic tomato. Plant Cell Environ 35:1467–1482
-
(2012)
Plant Cell Environ
, vol.35
, pp. 1467-1482
-
-
Huertas, R.1
Olías, R.2
Eljakaoui, Z.3
Gálvez, F.J.4
Li, J.5
De Morales, P.A.6
Belver, A.7
Rodríguez-Rosales, M.P.8
-
31
-
-
0035666360
-
The tomato powdery mildew fungus Oidium neolycopersici
-
COI: 1:STN:280:DC%2BC3crnvVWhsw%3D%3D, PID: 20573019
-
Jones H, Whipps JM, Gurr SJ (2001) The tomato powdery mildew fungus Oidium neolycopersici. Mol Plant Pathol 2:303–309
-
(2001)
Mol Plant Pathol
, vol.2
, pp. 303-309
-
-
Jones, H.1
Whipps, J.M.2
Gurr, S.J.3
-
32
-
-
85067738749
-
The role of edaphic factors in disease development. In: Proceedings of the consultative group discussion on research needs and strategies for control of Sorghum root and stalk rot diseases
-
Jordan WR, Clark RB, Seetharama N (1984) The role of edaphic factors in disease development. In: Proceedings of the consultative group discussion on research needs and strategies for control of Sorghum root and stalk rot diseases, pp 81–97
-
(1984)
Pp 81–97
-
-
Jordan, W.R.1
Clark, R.B.2
Seetharama, N.3
-
33
-
-
84902299964
-
Enhancing crop resilience to combined abiotic and biotic stress through the dissection of physiological and molecular crosstalk
-
PID: 24904607
-
Kissoudis C, van de Wiel C, Visser RGF, Van Der Linden G (2014) Enhancing crop resilience to combined abiotic and biotic stress through the dissection of physiological and molecular crosstalk. Front Plant Sci 5:207
-
(2014)
Front Plant Sci
, vol.5
, pp. 207
-
-
Kissoudis, C.1
van de Wiel, C.2
Visser, R.G.F.3
Van Der Linden, G.4
-
34
-
-
34548050678
-
Biochemical and molecular mechanisms involved in monogenic resistance responses to tomato powdery mildew
-
COI: 1:CAS:528:DC%2BD2sXpsVGkurs%3D, PID: 17849718
-
Li C, Bonnema G, Che D, Dong L, Lindhout P, Visser R, Bai Y (2007) Biochemical and molecular mechanisms involved in monogenic resistance responses to tomato powdery mildew. Mol Plant Microbe Interact 20:1161–1172
-
(2007)
Mol Plant Microbe Interact
, vol.20
, pp. 1161-1172
-
-
Li, C.1
Bonnema, G.2
Che, D.3
Dong, L.4
Lindhout, P.5
Visser, R.6
Bai, Y.7
-
35
-
-
79952190883
-
Seedling salt tolerance in tomato
-
Li J, Liu L, Bai Y, Zhang P, Finkers R, Du Y, Visser RGF, van Heusden AW (2011) Seedling salt tolerance in tomato. Euphytica 178:403–414
-
(2011)
Euphytica
, vol.178
, pp. 403-414
-
-
Li, J.1
Liu, L.2
Bai, Y.3
Zhang, P.4
Finkers, R.5
Du, Y.6
Visser, R.G.F.7
van Heusden, A.W.8
-
36
-
-
84855738133
-
Characterization of polygenic resistance to powdery mildew in tomato at cytological, biochemical and gene expression level
-
COI: 1:CAS:528:DC%2BC38Xjt1WltLo%3D, PID: 21883866
-
Li C, Faino L, Dong L, Fan J, Kiss L, de Giovanni C, Lebeda A, Scott J, Matsuda Y, Toyoda H, Lindhout P, Visser RGF, Bonnema G, Bai Y (2012) Characterization of polygenic resistance to powdery mildew in tomato at cytological, biochemical and gene expression level. Mol Plant Pathol 13:148–159
-
(2012)
Mol Plant Pathol
, vol.13
, pp. 148-159
-
-
Li, C.1
Faino, L.2
Dong, L.3
Fan, J.4
Kiss, L.5
de Giovanni, C.6
Lebeda, A.7
Scott, J.8
Matsuda, Y.9
Toyoda, H.10
Lindhout, P.11
Visser, R.G.F.12
Bonnema, G.13
Bai, Y.14
-
37
-
-
33846220619
-
Salt stress response in tomato beyond the salinity tolerance threshold
-
COI: 1:CAS:528:DC%2BD2sXntlChuw%3D%3D
-
Maggio A, Raimondi G, Martino A, De Pascale S (2007) Salt stress response in tomato beyond the salinity tolerance threshold. Environ Exp Bot 59:276–282
-
(2007)
Environ Exp Bot
, vol.59
, pp. 276-282
-
-
Maggio, A.1
Raimondi, G.2
Martino, A.3
De Pascale, S.4
-
38
-
-
84860146512
-
Abscisic acid deficiency antagonizes high-temperature inhibition of disease resistance through enhancing nuclear accumulation of resistance proteins SNC1 and RPS4 in Arabidopsis
-
COI: 1:CAS:528:DC%2BC38Xmsl2jtb4%3D, PID: 22454454
-
Mang HG, Qian W, Zhu Y, Qian J, Kang HG, Klessig DF, Hua J (2012) Abscisic acid deficiency antagonizes high-temperature inhibition of disease resistance through enhancing nuclear accumulation of resistance proteins SNC1 and RPS4 in Arabidopsis. Plant Cell 24:1271–1284
-
(2012)
Plant Cell
, vol.24
, pp. 1271-1284
-
-
Mang, H.G.1
Qian, W.2
Zhu, Y.3
Qian, J.4
Kang, H.G.5
Klessig, D.F.6
Hua, J.7
-
39
-
-
30144445464
-
Abiotic stress, the field environment and stress combination
-
COI: 1:CAS:528:DC%2BD28XjvVKjsw%3D%3D, PID: 16359910
-
Mittler R (2006) Abiotic stress, the field environment and stress combination. Trends Plant Sci 11:15–19
-
(2006)
Trends Plant Sci
, vol.11
, pp. 15-19
-
-
Mittler, R.1
-
40
-
-
43149090878
-
Mechanisms of salinity tolerance
-
COI: 1:CAS:528:DC%2BD1cXntFaqtrw%3D, PID: 18444910
-
Munns R, Tester M (2008) Mechanisms of salinity tolerance. Annu Rev Plant Biol 59:651–681
-
(2008)
Annu Rev Plant Biol
, vol.59
, pp. 651-681
-
-
Munns, R.1
Tester, M.2
-
41
-
-
78649632298
-
Plant phenotypic plasticity in a changing climate
-
COI: 1:CAS:528:DC%2BC3cXhsVyht73K, PID: 20970368
-
Nicotra AB, Atkin OK, Bonser SP, Davidson AM, Finnegan EJ, Mathesius U, Poot P, Purugganan MD, Richards CL, Valladares F, van Kleunen M (2010) Plant phenotypic plasticity in a changing climate. Trends Plant Sci 15:684–692
-
(2010)
Trends Plant Sci
, vol.15
, pp. 684-692
-
-
Nicotra, A.B.1
Atkin, O.K.2
Bonser, S.P.3
Davidson, A.M.4
Finnegan, E.J.5
Mathesius, U.6
Poot, P.7
Purugganan, M.D.8
Richards, C.L.9
Valladares, F.10
van Kleunen, M.11
-
42
-
-
55749092453
-
Trichome exudates of Lycopersicon pennellii form a chemical barrier to suppress leaf-surface germination of Oidium neolycopersici conidia
-
COI: 1:CAS:528:DC%2BD1cXhtlyktL3L
-
Nonomura T, Xu L, Wada M, Kawamura S, Miyajima T, Nishitomi A, Kakutani K, Takikawa Y, Matsuda Y, Toyoda H (2009) Trichome exudates of Lycopersicon pennellii form a chemical barrier to suppress leaf-surface germination of Oidium neolycopersici conidia. Plant Sci 176:31–37
-
(2009)
Plant Sci
, vol.176
, pp. 31-37
-
-
Nonomura, T.1
Xu, L.2
Wada, M.3
Kawamura, S.4
Miyajima, T.5
Nishitomi, A.6
Kakutani, K.7
Takikawa, Y.8
Matsuda, Y.9
Toyoda, H.10
-
45
-
-
84880993165
-
Simultaneous application of heat, drought, and virus to Arabidopsis plants reveals significant shifts in signaling networks
-
COI: 1:CAS:528:DC%2BC3sXhtlWlt73I, PID: 23753177
-
Prasch CM, Sonnewald U (2013) Simultaneous application of heat, drought, and virus to Arabidopsis plants reveals significant shifts in signaling networks. Plant Physiol 162:1849–1866
-
(2013)
Plant Physiol
, vol.162
, pp. 1849-1866
-
-
Prasch, C.M.1
Sonnewald, U.2
-
46
-
-
66149162790
-
Drought tolerance in Arabidopsis is controlled by the OCP3 disease resistance regulator
-
PID: 19175769
-
Ramírez V, Coego A, López A, Agorio A, Flors V, Vera P (2009) Drought tolerance in Arabidopsis is controlled by the OCP3 disease resistance regulator. Plant J 58:578–591
-
(2009)
Plant J
, vol.58
, pp. 578-591
-
-
Ramírez, V.1
Coego, A.2
López, A.3
Agorio, A.4
Flors, V.5
Vera, P.6
-
47
-
-
84866242196
-
The tomato genome: implications for plant breeding, genomics and evolution
-
PID: 22943138
-
Ranjan A, Ichihashi Y, Sinha NR (2012) The tomato genome: implications for plant breeding, genomics and evolution. Genome Biol 13:167
-
(2012)
Genome Biol
, vol.13
, pp. 167
-
-
Ranjan, A.1
Ichihashi, Y.2
Sinha, N.R.3
-
48
-
-
84874800091
-
Relationship between survival and yield related traits in Solanum pimpinellifolium under salt stress
-
Rao ES, Kadirvel P, Symonds RC, Ebert AW (2013) Relationship between survival and yield related traits in Solanum pimpinellifolium under salt stress. Euphytica 190:215–228
-
(2013)
Euphytica
, vol.190
, pp. 215-228
-
-
Rao, E.S.1
Kadirvel, P.2
Symonds, R.C.3
Ebert, A.W.4
-
49
-
-
84875741316
-
Transcriptome responses to combinations of stresses in Arabidopsis
-
COI: 1:CAS:528:DC%2BC3sXmt1ygsLg%3D, PID: 23447525
-
Rasmussen S, Barah P, Suarez-Rodriguez MC, Bressendorff S, Friis P, Costantino P, Bones AM, Nielsen HB, Mundy J (2013) Transcriptome responses to combinations of stresses in Arabidopsis. Plant Physiol 161:1783–1794
-
(2013)
Plant Physiol
, vol.161
, pp. 1783-1794
-
-
Rasmussen, S.1
Barah, P.2
Suarez-Rodriguez, M.C.3
Bressendorff, S.4
Friis, P.5
Costantino, P.6
Bones, A.M.7
Nielsen, H.B.8
Mundy, J.9
-
50
-
-
70249145110
-
Episodic abiotic stress as a potential contributing factor to onset and severity of disease caused by Phytophthora ramorum in Rhododendron and Viburnum
-
Roubtsova TV, Bostock RM (2009) Episodic abiotic stress as a potential contributing factor to onset and severity of disease caused by Phytophthora ramorum in Rhododendron and Viburnum. Plant Dis 93:912–918
-
(2009)
Plant Dis
, vol.93
, pp. 912-918
-
-
Roubtsova, T.V.1
Bostock, R.M.2
-
51
-
-
1642407561
-
Response of chile pepper to Phytophthora capsici in relation to soil salinity
-
Sanogo S (2004) Response of chile pepper to Phytophthora capsici in relation to soil salinity. Plant Dis 88:205–209
-
(2004)
Plant Dis
, vol.88
, pp. 205-209
-
-
Sanogo, S.1
-
52
-
-
84863693752
-
The tomato genome sequence provides insights into fleshy fruit evolution
-
COI: 1:CAS:528:DC%2BC38XnvVymtrw%3D
-
Sato S, Tabata S, Hirakawa H, Asamizu E, Shirasawa K, Isobe S, Kaneko T, Nakamura Y, Shibata D, Aoki K, Egholm M, Knight J, Bogden R, Li C, Shuang Y, Xu X, Pan S, Cheng S, Liu X, Ren Y, Wang J, Albiero A, Dal Pero F, Todesco S, Van Eck J, Buels RM, Bombarely A, Gosselin JR, Huang M, Leto JA, Menda N, Strickler S, Mao L, Gao S, Tecle IY, York T, Zheng Y, Vrebalov JT, Lee J, Zhong S, Mueller LA, Stiekema WJ, Ribeca P, Alioto T, Yang W, Huang S, Du Y, Zhang Z, Gao J, Guo Y, Wang X, Li Y, He J, Cheng Z, Zuo J, Ren J, Zhao J, Yan L, Jiang H, Wang B, Li H, Li Z, Fu F, Chen B, Han B, Feng Q, Fan D, Wang Y, Ling H, Xue Y, Ware D, McCombie WR, Lippman ZB, Chia JM, Jiang K, Pasternak S, Gelley L, Kramer M, Anderson LK, Chang SB, Royer SM, Shearer LA, Stack SM, Rose JKC, Xu Y, Eannetta N, Matas AJ, McQuinn R, Tanksley SD, Camara F, Guigó R, Rombauts S, Fawcett J, Van De Peer Y, Zamir D, Liang C, Spannagl M, Gundlach H, Bruggmann R, Mayer K, Jia Z, Zhang J, Ye Z, Bishop GJ, Butcher S, Lopez-Cobollo R, Buchan D, Filippis I, Abbott J, Dixit IR, Singh M, Singh A, Pal JK, Pandit A, Singh PK, Mahato AK, Dogra V, Gaikwad K, Sharma TR, Mohapatra T, Singh NK, Causse M, Rothan C, Noirot C, Bellec A, Klopp C, Delalande C, Berges H, Mariette J, Frasse P, Vautrin S, Zouine TM, Latché A, Rousseau C, Regad F, Pech JC, Philippot M, Bouzayen M, Pericard P, Osorio S, Del Carmen AF, Monforte A, Granell A, Fernandez-Muñoz R, Conte M, Lichtenstein G, Carrari F, De Bellis G, Fuligni F, Peano C, Grandillo S, Termolino P, Pietrella M, Fantini E, Falcone G, Fiore A, Giuliano G, Lopez L, Facella P, Perrotta G, Daddiego L, Bryan G, Orozco BM, Pastor X, Torrents D, Van Schriek MGM, Feron RMC, Van Oeveren J, De Heer P, Da Ponte L, Jacobs-Oomen S, Cariaso M, Prins M, Van Eijk MJT, Janssen A, Van Haaren JJ, HwanJo S, Kim J, Kwon SY, Kim S, Koo DH, Lee S, Clouser C, Rico A, Hallab A, Gebhardt C, Klee K, Jöcker A, Warfsmann J, Göbel U, Kawamura S, Yano E, Sherman JD, Fukuoka H, Negoro S, Bhutty S, Chowdhury P, Chattopadhyay D, Datema E, Smit S, Schijlen EGWM, Van De Belt J, Van Haarst JC, Peters SA, Van Staveren MJ, Henkens MHC, Mooyman PJW, Hesselink T, Van Ham RCHJ, Jiang G, Droege M, Choi D, Kang BC, Kim BD, Park M, Yeom SI, Lee YH, Choi YD, Li G, Liu Y, Fernandez-Pedrosa V, Collado C, Zuñ Iga S, Wang G, Cade R, Dietrich RA, Rogers J, Knapp S, Fei Z, White RA, Thannhauser TW, Giovannoni JJ, Botella MA, Gilbert L, Gonzalez FR, Goicoechea JL, Yu Y, Kudrna D, Collura K, Wissotski M, Wing R, Meyers BC, Gurazada AB, Green PJ, Mathur S, Vyas S, Solanke AU, Kumar R, Gupta V, Sharma AK, Khurana P, Khurana JP, Tyagi AK, Dalmay T, Mohorianu I, Walts B, Chamala S, Barbazuk WB, Li J, Guo H, Lee TH, Zhang D, Paterson AH, Tang H, Barone A, Chiusano ML, Ercolano MR, D’Agostino N, Di Filippo M, Traini A, Sanseverino W, Frusciante L, Seymour GB, Elharam M, Fu Y, Hua A, Kenton S, Lewis J, Lin S, Najar F, Lai H, Qin B, Shi R, Qu C, White D, White J, Xing Y, Yang K, Yi J, Yao Z, Zhou L, Roe BA, Vezzi A, D’Angelo M, Zimbello R, Schiavon R, Caniato E, Rigobello C, Campagna D, Vitulo N, Valle G, Nelson DR, De Paoli E, Szinay D, De Jong HH, Bai Y, Visser RGF, Lankhorst RK, Beasley H, McLaren K, Nicholson C, Riddle C, Gianese G (2012) The tomato genome sequence provides insights into fleshy fruit evolution. Nature 485:635–641
-
(2012)
Nature
, vol.485
, pp. 635-641
-
-
Sato, S.1
Tabata, S.2
Hirakawa, H.3
Asamizu, E.4
Shirasawa, K.5
Isobe, S.6
Kaneko, T.7
Nakamura, Y.8
Shibata, D.9
Aoki, K.10
Egholm, M.11
Knight, J.12
Bogden, R.13
Li, C.14
Shuang, Y.15
Xu, X.16
Pan, S.17
Cheng, S.18
Liu, X.19
Ren, Y.20
Wang, J.21
Albiero, A.22
Dal Pero, F.23
Todesco, S.24
Van Eck, J.25
Buels, R.M.26
Bombarely, A.27
Gosselin, J.R.28
Huang, M.29
Leto, J.A.30
Menda, N.31
Strickler, S.32
Mao, L.33
Gao, S.34
Tecle, I.Y.35
York, T.36
Zheng, Y.37
Vrebalov, J.T.38
Lee, J.39
Zhong, S.40
Mueller, L.A.41
Stiekema, W.J.42
Ribeca, P.43
Alioto, T.44
Yang, W.45
Huang, S.46
Du, Y.47
Zhang, Z.48
Gao, J.49
Guo, Y.50
Wang, X.51
Li, Y.52
He, J.53
Cheng, Z.54
Zuo, J.55
Ren, J.56
Zhao, J.57
Yan, L.58
Jiang, H.59
Wang, B.60
Li, H.61
Li, Z.62
Fu, F.63
Chen, B.64
Han, B.65
Feng, Q.66
Fan, D.67
Wang, Y.68
Ling, H.69
Xue, Y.70
Ware, D.71
McCombie, W.R.72
Lippman, Z.B.73
Chia, J.M.74
Jiang, K.75
Pasternak, S.76
Gelley, L.77
Kramer, M.78
Anderson, L.K.79
Chang, S.B.80
Royer, S.M.81
Shearer, L.A.82
Stack, S.M.83
Rose, J.K.C.84
Xu, Y.85
Eannetta, N.86
Matas, A.J.87
McQuinn, R.88
Tanksley, S.D.89
Camara, F.90
Guigó, R.91
Rombauts, S.92
Fawcett, J.93
Van De Peer, Y.94
Zamir, D.95
Liang, C.96
Spannagl, M.97
Gundlach, H.98
Bruggmann, R.99
Mayer, K.100
Jia, Z.101
Zhang, J.102
Ye, Z.103
Bishop, G.J.104
Butcher, S.105
Lopez-Cobollo, R.106
Buchan, D.107
Filippis, I.108
Abbott, J.109
Dixit, I.R.110
Singh, M.111
Singh, A.112
Pal, J.K.113
Pandit, A.114
Singh, P.K.115
Mahato, A.K.116
Dogra, V.117
Gaikwad, K.118
Sharma, T.R.119
Mohapatra, T.120
Singh, N.K.121
Causse, M.122
Rothan, C.123
Noirot, C.124
Bellec, A.125
Klopp, C.126
Delalande, C.127
Berges, H.128
Mariette, J.129
Frasse, P.130
Vautrin, S.131
Zouine, T.M.132
Latché, A.133
Rousseau, C.134
Regad, F.135
Pech, J.C.136
Philippot, M.137
Bouzayen, M.138
Pericard, P.139
Osorio, S.140
Del Carmen, A.F.141
Monforte, A.142
Granell, A.143
Fernandez-Muñoz, R.144
Conte, M.145
Lichtenstein, G.146
Carrari, F.147
De Bellis, G.148
Fuligni, F.149
Peano, C.150
Grandillo, S.151
Termolino, P.152
Pietrella, M.153
Fantini, E.154
Falcone, G.155
Fiore, A.156
Giuliano, G.157
Lopez, L.158
Facella, P.159
Perrotta, G.160
Daddiego, L.161
Bryan, G.162
Orozco, B.M.163
Pastor, X.164
Torrents, D.165
Van Schriek, M.G.M.166
Feron, R.M.C.167
Van Oeveren, J.168
De Heer, P.169
Da Ponte, L.170
Jacobs-Oomen, S.171
Cariaso, M.172
Prins, M.173
Van Eijk, M.J.T.174
Janssen, A.175
Van Haaren, J.J.176
HwanJo, S.177
Kim, J.178
Kwon, S.Y.179
Kim, S.180
Koo, D.H.181
Lee, S.182
Clouser, C.183
Rico, A.184
Hallab, A.185
Gebhardt, C.186
Klee, K.187
Jöcker, A.188
Warfsmann, J.189
Göbel, U.190
Kawamura, S.191
Yano, E.192
Sherman, J.D.193
Fukuoka, H.194
Negoro, S.195
Bhutty, S.196
Chowdhury, P.197
Chattopadhyay, D.198
Datema, E.199
Smit, S.200
Schijlen, E.G.W.M.201
Van De Belt, J.202
Van Haarst, J.C.203
Peters, S.A.204
Van Staveren, M.J.205
Henkens, M.H.C.206
Mooyman, P.J.W.207
Hesselink, T.208
Van Ham, R.C.H.J.209
Jiang, G.210
Droege, M.211
Choi, D.212
Kang, B.C.213
Kim, B.D.214
Park, M.215
Yeom, S.I.216
Lee, Y.H.217
Choi, Y.D.218
Li, G.219
Liu, Y.220
Fernandez-Pedrosa, V.221
Collado, C.222
Zuñ Iga, S.223
Wang, G.224
Cade, R.225
Dietrich, R.A.226
Rogers, J.227
Knapp, S.228
Fei, Z.229
White, R.A.230
Thannhauser, T.W.231
Giovannoni, J.J.232
Botella, M.A.233
Gilbert, L.234
Gonzalez, F.R.235
Goicoechea, J.L.236
Yu, Y.237
Kudrna, D.238
Collura, K.239
Wissotski, M.240
Wing, R.241
Meyers, B.C.242
Gurazada, A.B.243
Green, P.J.244
Mathur, S.245
Vyas, S.246
Solanke, A.U.247
Kumar, R.248
Gupta, V.249
Sharma, A.K.250
Khurana, P.251
Khurana, J.P.252
Tyagi, A.K.253
Dalmay, T.254
Mohorianu, I.255
Walts, B.256
Chamala, S.257
Barbazuk, W.B.258
Li, J.259
Guo, H.260
Lee, T.H.261
Zhang, D.262
Paterson, A.H.263
Tang, H.264
Barone, A.265
Chiusano, M.L.266
Ercolano, M.R.267
D’Agostino, N.268
Di Filippo, M.269
Traini, A.270
Sanseverino, W.271
Frusciante, L.272
Seymour, G.B.273
Elharam, M.274
Fu, Y.275
Hua, A.276
Kenton, S.277
Lewis, J.278
Lin, S.279
Najar, F.280
Lai, H.281
Qin, B.282
Shi, R.283
Qu, C.284
White, D.285
White, J.286
Xing, Y.287
Yang, K.288
Yi, J.289
Yao, Z.290
Zhou, L.291
Roe, B.A.292
Vezzi, A.293
D’Angelo, M.294
Zimbello, R.295
Schiavon, R.296
Caniato, E.297
Rigobello, C.298
Campagna, D.299
Vitulo, N.300
Valle, G.301
Nelson, D.R.302
De Paoli, E.303
Szinay, D.304
De Jong, H.H.305
Bai, Y.306
Visser, R.G.F.307
Lankhorst, R.K.308
Beasley, H.309
McLaren, K.310
Nicholson, C.311
Riddle, C.312
Gianese, G.313
more..
-
53
-
-
47149088244
-
Potassium transport and plant salt tolerance
-
COI: 1:CAS:528:DC%2BD1cXps1Oit70%3D, PID: 18724408
-
Shabala S, Cuin TA (2008) Potassium transport and plant salt tolerance. Physiol Plant 133:651–669
-
(2008)
Physiol Plant
, vol.133
, pp. 651-669
-
-
Shabala, S.1
Cuin, T.A.2
-
54
-
-
0031715087
-
Effect of saline environment on yield and smut disease severity of different corn genotypes (Zea mays L.)
-
COI: 1:CAS:528:DyaK1cXjvFartbg%3D
-
Soliman MF, Kostandi SF (1998) Effect of saline environment on yield and smut disease severity of different corn genotypes (Zea mays L.). J Phytopathol 146:185–189
-
(1998)
J Phytopathol
, vol.146
, pp. 185-189
-
-
Soliman, M.F.1
Kostandi, S.F.2
-
56
-
-
28044447389
-
Development of crown and root rot disease of tomato under irrigation with saline water
-
PID: 18943555
-
Triky-Dotan S, Yermiyahu U, Katan J, Gamliel A (2005) Development of crown and root rot disease of tomato under irrigation with saline water. Phytopathology 95:1438–1444
-
(2005)
Phytopathology
, vol.95
, pp. 1438-1444
-
-
Triky-Dotan, S.1
Yermiyahu, U.2
Katan, J.3
Gamliel, A.4
-
57
-
-
41149088184
-
GGT 2.0: versatile software for visualization and analysis of genetic data
-
PID: 18222930
-
Van Berloo R (2008) GGT 2.0: versatile software for visualization and analysis of genetic data. J Hered 99:232–236
-
(2008)
J Hered
, vol.99
, pp. 232-236
-
-
Van Berloo, R.1
-
58
-
-
39749129634
-
Grafting tomato (Solanum lycopersicum) onto the rootstock of a high-altitude accession of Solanum habrochaites improves suboptimal-temperature tolerance
-
Venema JH, Dijk BE, Bax JM, van Hasselt PR, Elzenga JTM (2008) Grafting tomato (Solanum lycopersicum) onto the rootstock of a high-altitude accession of Solanum habrochaites improves suboptimal-temperature tolerance. Environ Exp Bot 63:359–367
-
(2008)
Environ Exp Bot
, vol.63
, pp. 359-367
-
-
Venema, J.H.1
Dijk, B.E.2
Bax, J.M.3
van Hasselt, P.R.4
Elzenga, J.T.M.5
-
59
-
-
34047110197
-
Comparative QTL analysis of salinity tolerance in terms of fruit yield using two solanum populations of F7 lines
-
COI: 1:CAS:528:DC%2BD2sXjs1eks7g%3D, PID: 17394031
-
Villalta I, Bernet GP, Carbonell EA, Asins MJ (2007) Comparative QTL analysis of salinity tolerance in terms of fruit yield using two solanum populations of F7 lines. Theor Appl Genet 114:1001–1017
-
(2007)
Theor Appl Genet
, vol.114
, pp. 1001-1017
-
-
Villalta, I.1
Bernet, G.P.2
Carbonell, E.A.3
Asins, M.J.4
-
60
-
-
43349103349
-
+ concentrations in leaf and stem as physiological components of salt tolerance in tomato
-
COI: 1:CAS:528:DC%2BD1cXkvFyjsbc%3D, PID: 18251001
-
+ concentrations in leaf and stem as physiological components of salt tolerance in tomato. Theor Appl Genet 116:869–880
-
(2008)
Theor Appl Genet
, vol.116
, pp. 869-880
-
-
Villalta, I.1
Reina-Sánchez, A.2
Bolarín, M.C.3
Cuartero, J.4
Belver, A.5
Venema, K.6
Carbonell, E.A.7
Asins, M.J.8
-
61
-
-
84878105487
-
Tomato breeding in the genomics era: insights from a SNP array
-
PID: 23711327
-
Víquez-Zamora M, Vosman B, van de Geest H, Bovy A, Visser RGF, Finkers R, van Heusden AW (2013) Tomato breeding in the genomics era: insights from a SNP array. BMC Genomics 14:354
-
(2013)
BMC Genomics
, vol.14
, pp. 354
-
-
Víquez-Zamora, M.1
Vosman, B.2
van de Geest, H.3
Bovy, A.4
Visser, R.G.F.5
Finkers, R.6
van Heusden, A.W.7
-
63
-
-
4944247397
-
Induction of pathogen resistance in barley by abiotic stress
-
COI: 1:CAS:528:DC%2BD2cXpsVSjt7k%3D
-
Wiese J, Kranz T, Schubert S (2004) Induction of pathogen resistance in barley by abiotic stress. Plant Biol (Stuttg) 6:529–536
-
(2004)
Plant Biol (Stuttg)
, vol.6
, pp. 529-536
-
-
Wiese, J.1
Kranz, T.2
Schubert, S.3
-
64
-
-
57749091909
-
Antagonistic interaction between systemic acquired resistance and the abscisic acid-mediated abiotic stress response in Arabidopsis
-
COI: 1:CAS:528:DC%2BD1cXpvVOisbs%3D, PID: 18586869
-
Yasuda M, Ishikawa A, Jikumaru Y, Seki M, Umezawa T, Asami T, Maruyama-Nakashita A, Kudo T, Shinozaki K, Yoshida S, Nakashita H (2008) Antagonistic interaction between systemic acquired resistance and the abscisic acid-mediated abiotic stress response in Arabidopsis. Plant Cell 20:1678–1692
-
(2008)
Plant Cell
, vol.20
, pp. 1678-1692
-
-
Yasuda, M.1
Ishikawa, A.2
Jikumaru, Y.3
Seki, M.4
Umezawa, T.5
Asami, T.6
Maruyama-Nakashita, A.7
Kudo, T.8
Shinozaki, K.9
Yoshida, S.10
Nakashita, H.11
-
65
-
-
82955239970
-
Salinity drives host reaction in Phaseolus vulgaris (common bean) to Macrophomina phaseolina
-
COI: 1:CAS:528:DC%2BC3MXhsFKktLvI
-
You MP, Colmer TD, Barbetti MJ (2011) Salinity drives host reaction in Phaseolus vulgaris (common bean) to Macrophomina phaseolina. Funct Plant Biol 38:984–992
-
(2011)
Funct Plant Biol
, vol.38
, pp. 984-992
-
-
You, M.P.1
Colmer, T.D.2
Barbetti, M.J.3
-
66
-
-
77956668954
-
Enzymatic functions of wild tomato methylketone synthases 1 and 2
-
COI: 1:CAS:528:DC%2BC3cXhsVKrtbzM, PID: 20605911
-
Yu G, Nguyen TTH, Guo Y, Schauvinhold I, Auldridge ME, Bhuiyan N, Ben-Israel I, Iijima Y, Fridman E, Noel JP, Pichersky E (2010) Enzymatic functions of wild tomato methylketone synthases 1 and 2. Plant physiol 154:67–77
-
(2010)
Plant physiol
, vol.154
, pp. 67-77
-
-
Yu, G.1
Nguyen, T.T.H.2
Guo, Y.3
Schauvinhold, I.4
Auldridge, M.E.5
Bhuiyan, N.6
Ben-Israel, I.7
Iijima, Y.8
Fridman, E.9
Noel, J.P.10
Pichersky, E.11
-
67
-
-
77955874644
-
Drought-induced reduction in global terrestrial net primary production from 2000 through 2009
-
COI: 1:CAS:528:DC%2BC3cXhtVaqur%2FE, PID: 20724633
-
Zhao MS, Running SW (2010) Drought-induced reduction in global terrestrial net primary production from 2000 through 2009. Science 329:940–943
-
(2010)
Science
, vol.329
, pp. 940-943
-
-
Zhao, M.S.1
Running, S.W.2
|