-
1
-
-
79955612432
-
Signaling network in sensing phosphate availability in plants
-
Chiou T.J., Lin S.I. Signaling network in sensing phosphate availability in plants. Annu Rev Plant Biol 2011, 62:185-206.
-
(2011)
Annu Rev Plant Biol
, vol.62
, pp. 185-206
-
-
Chiou, T.J.1
Lin, S.I.2
-
2
-
-
84895887723
-
Molecular mechanisms underlying phosphate sensing, signaling and adaptation in plants
-
Zhang Z., Liao H., Lucas W.J. Molecular mechanisms underlying phosphate sensing, signaling and adaptation in plants. J Integr Plant Biol 2014, 56:192-220.
-
(2014)
J Integr Plant Biol
, vol.56
, pp. 192-220
-
-
Zhang, Z.1
Liao, H.2
Lucas, W.J.3
-
3
-
-
79957619938
-
Overexpression of transcription factor ZmPTF1 improves low phosphate tolerance of maize by regulating carbon metabolism and root growth
-
Li Z., Gao Q., Liu Y., He C., Zhang X., Zhang J. Overexpression of transcription factor ZmPTF1 improves low phosphate tolerance of maize by regulating carbon metabolism and root growth. Planta 2011, 233:1129-1143.
-
(2011)
Planta
, vol.233
, pp. 1129-1143
-
-
Li, Z.1
Gao, Q.2
Liu, Y.3
He, C.4
Zhang, X.5
Zhang, J.6
-
4
-
-
84860551793
-
OsMYB2P-1, an R2R3 MYB transcription factor, is involved in the regulation of phosphate-starvation responses and root architecture in rice
-
Dai X., Wang Y., Yang A., Zhang W.H. OsMYB2P-1, an R2R3 MYB transcription factor, is involved in the regulation of phosphate-starvation responses and root architecture in rice. Plant Physiol 2012, 159:169-183.
-
(2012)
Plant Physiol
, vol.159
, pp. 169-183
-
-
Dai, X.1
Wang, Y.2
Yang, A.3
Zhang, W.H.4
-
5
-
-
84869088187
-
Overexpression of GbWRKY1 positively regulates the Pi starvation response by alteration of auxin sensitivity in Arabidopsis
-
Xu L., Jin L., Long L., Liu L., He X., Gao W., Zhu L., Zhang X. Overexpression of GbWRKY1 positively regulates the Pi starvation response by alteration of auxin sensitivity in Arabidopsis. Plant Cell Rep 2012, 31:2177-2188.
-
(2012)
Plant Cell Rep
, vol.31
, pp. 2177-2188
-
-
Xu, L.1
Jin, L.2
Long, L.3
Liu, L.4
He, X.5
Gao, W.6
Zhu, L.7
Zhang, X.8
-
6
-
-
84873094027
-
OsARF16, a transcription factor, is required for auxin and phosphate starvation response in rice (Oryza sativa L.)
-
Shen C., Wang S., Zhang S., Xu Y., Qian Q., Qi Y., Jiang D.A. OsARF16, a transcription factor, is required for auxin and phosphate starvation response in rice (Oryza sativa L.). Plant Cell Environ 2013, 36:607-620.
-
(2013)
Plant Cell Environ
, vol.36
, pp. 607-620
-
-
Shen, C.1
Wang, S.2
Zhang, S.3
Xu, Y.4
Qian, Q.5
Qi, Y.6
Jiang, D.A.7
-
7
-
-
84878286754
-
A phosphate starvation response regulator Ta-PHR1 is involved in phosphate signalling and increases grain yield in wheat
-
Wang J., Sun J., Miao J., Guo J., Shi Z., He M., Chen Y., Zhao X., Li B., Han F., et al. A phosphate starvation response regulator Ta-PHR1 is involved in phosphate signalling and increases grain yield in wheat. Ann Bot 2013, 111:1139-1153.
-
(2013)
Ann Bot
, vol.111
, pp. 1139-1153
-
-
Wang, J.1
Sun, J.2
Miao, J.3
Guo, J.4
Shi, Z.5
He, M.6
Chen, Y.7
Zhao, X.8
Li, B.9
Han, F.10
-
8
-
-
84899836670
-
Overexpression of OsMYB4P, an R2R3-type MYB transcriptional activator, increases phosphate acquisition in rice
-
Yang W.T., Baek D., Yun D., Hwang W.H., Park D.S., NamMH, Chung E.S., Chung Y.S., Yi Y.B., Kim D.H. Overexpression of OsMYB4P, an R2R3-type MYB transcriptional activator, increases phosphate acquisition in rice. Plant Physiol Biochem 2014, 1-9.
-
(2014)
Plant Physiol Biochem
, pp. 1-9
-
-
Yang, W.T.1
Baek, D.2
Yun, D.3
Hwang, W.H.4
Park, D.S.5
Chung, E.S.N.6
Chung, Y.S.7
Yi, Y.B.8
Kim, D.H.9
-
9
-
-
79959993580
-
White lupin cluster root acclimation to phosphorus deficiency and root hair development involve unique glycerophosphodiester phosphodiesterase
-
Cheng L., Bucciarelli B., Liu J., Zinn K., Miller S., Patton-Vogt J., Allan D., Shen J., Vance C.P. White lupin cluster root acclimation to phosphorus deficiency and root hair development involve unique glycerophosphodiester phosphodiesterase. Plant Physiol 2011, 156:1131-1148.
-
(2011)
Plant Physiol
, vol.156
, pp. 1131-1148
-
-
Cheng, L.1
Bucciarelli, B.2
Liu, J.3
Zinn, K.4
Miller, S.5
Patton-Vogt, J.6
Allan, D.7
Shen, J.8
Vance, C.P.9
-
10
-
-
79955423321
-
A soybean β-expansin gene GmEXPB2 intrinsically involved in root system architecture responses to abiotic stresses
-
Guo W., Zhao J., Li X., Qin L., Yan X., Liao H. A soybean β-expansin gene GmEXPB2 intrinsically involved in root system architecture responses to abiotic stresses. Plant J 2011, 66:541-552.
-
(2011)
Plant J
, vol.66
, pp. 541-552
-
-
Guo, W.1
Zhao, J.2
Li, X.3
Qin, L.4
Yan, X.5
Liao, H.6
-
11
-
-
79959988694
-
LEAF TIP NECROSIS1 plays a pivotal role in the regulation of multiple phosphate starvation responses in rice
-
Hu B., Zhu C., Li F., Tang J., Wang Y., Lin A., Liu L., Che R., Chu C. LEAF TIP NECROSIS1 plays a pivotal role in the regulation of multiple phosphate starvation responses in rice. Plant Physiol 2011, 156:1101-1115.
-
(2011)
Plant Physiol
, vol.156
, pp. 1101-1115
-
-
Hu, B.1
Zhu, C.2
Li, F.3
Tang, J.4
Wang, Y.5
Lin, A.6
Liu, L.7
Che, R.8
Chu, C.9
-
12
-
-
84865244223
-
The protein kinase Pstol1 from traditional rice confers tolerance of phosphorus deficiency
-
Gamuyao R., Chin J.H., Pariasca-Tanaka J., Pesaresi P., Catausan S., Dalid C., Slamet-Loedin I., Tecson-Mendoza E.M., Wissuwa M., Heuer S. The protein kinase Pstol1 from traditional rice confers tolerance of phosphorus deficiency. Nature 2012, 488:535-539.
-
(2012)
Nature
, vol.488
, pp. 535-539
-
-
Gamuyao, R.1
Chin, J.H.2
Pariasca-Tanaka, J.3
Pesaresi, P.4
Catausan, S.5
Dalid, C.6
Slamet-Loedin, I.7
Tecson-Mendoza, E.M.8
Wissuwa, M.9
Heuer, S.10
-
13
-
-
79959983840
-
Metabolic adaptations of phosphate-starved plants
-
Plaxton W.C., Tran H.T. Metabolic adaptations of phosphate-starved plants. Plant Physiol 2011, 156:1006-1015.
-
(2011)
Plant Physiol
, vol.156
, pp. 1006-1015
-
-
Plaxton, W.C.1
Tran, H.T.2
-
14
-
-
84895866976
-
Comparative genetic analysis of Arabidopsis purple acid phosphatases AtPAP10 AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation to phosphate deprivation
-
Wang L., Lu S., Zhang Y., Li Z., Du X., Liu D. Comparative genetic analysis of Arabidopsis purple acid phosphatases AtPAP10 AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation to phosphate deprivation. J Integr Plant Biol 2014, 56:299-314.
-
(2014)
J Integr Plant Biol
, vol.56
, pp. 299-314
-
-
Wang, L.1
Lu, S.2
Zhang, Y.3
Li, Z.4
Du, X.5
Liu, D.6
-
15
-
-
84861465280
-
Comparative analysis of PvPAP gene family and their functions in response to phosphorus deficiency in common bean
-
Liang C., Sun L., Yao Z., Liao H., Tian J. Comparative analysis of PvPAP gene family and their functions in response to phosphorus deficiency in common bean. PLOS ONE 2012, 7:e38106.
-
(2012)
PLOS ONE
, vol.7
-
-
Liang, C.1
Sun, L.2
Yao, Z.3
Liao, H.4
Tian, J.5
-
16
-
-
84904313810
-
SPX1 is an important component in the phosphorus signalling network of common bean regulating root growth and phosphorus homeostasis
-
Yao Z.F., Liang C.Y., Zhang Q., Chen Z., Xiao B.X., Tian J., Liao H. SPX1 is an important component in the phosphorus signalling network of common bean regulating root growth and phosphorus homeostasis. J Exp Bot 2014, 10.1093/jxb/eru183.
-
(2014)
J Exp Bot
-
-
Yao, Z.F.1
Liang, C.Y.2
Zhang, Q.3
Chen, Z.4
Xiao, B.X.5
Tian, J.6
Liao, H.7
-
17
-
-
84865569878
-
Functional characterization of the rice SPX-MFS family reveals a key role of OsSPX-MFS1 in controlling phosphate homeostasis in leaves
-
Wang C., Huang W., Ying Y., Li S., Secco D., Tyerman S., Whelan J., Shou H. Functional characterization of the rice SPX-MFS family reveals a key role of OsSPX-MFS1 in controlling phosphate homeostasis in leaves. New Phytol 2012, 196:139-148.
-
(2012)
New Phytol
, vol.196
, pp. 139-148
-
-
Wang, C.1
Huang, W.2
Ying, Y.3
Li, S.4
Secco, D.5
Tyerman, S.6
Whelan, J.7
Shou, H.8
-
18
-
-
84894286716
-
The paralogous SPX3 and SPX5 genes redundantly modulate Pi homeostasis in rice
-
Shi J., Hu H., Zhang K., Zhang W., Yu Y., Wu Z., Wu P. The paralogous SPX3 and SPX5 genes redundantly modulate Pi homeostasis in rice. J Exp Bot 2014, 65:859-870.
-
(2014)
J Exp Bot
, vol.65
, pp. 859-870
-
-
Shi, J.1
Hu, H.2
Zhang, K.3
Zhang, W.4
Yu, Y.5
Wu, Z.6
Wu, P.7
-
19
-
-
84888290401
-
Auxin response factor (OsARF12), a novel regulator for phosphate homeostasis in rice (Oryza sativa)
-
Wang S., Zhang S., Sun C., Xu Y., Chen Y., Yu C., Qian Q., Jiang D.A., Qi Y. Auxin response factor (OsARF12), a novel regulator for phosphate homeostasis in rice (Oryza sativa). New Phytol 2014, 201:91-103.
-
(2014)
New Phytol
, vol.201
, pp. 91-103
-
-
Wang, S.1
Zhang, S.2
Sun, C.3
Xu, Y.4
Chen, Y.5
Yu, C.6
Qian, Q.7
Jiang, D.A.8
Qi, Y.9
-
20
-
-
84878620082
-
Improvement of phosphorus efficiency in rice on the basis of understanding phosphate signaling and homeostasis
-
Wu P., Shou H., Xu G., Lian X. Improvement of phosphorus efficiency in rice on the basis of understanding phosphate signaling and homeostasis. Curr Opin Plant Biol 2013, 16:205-212.
-
(2013)
Curr Opin Plant Biol
, vol.16
, pp. 205-212
-
-
Wu, P.1
Shou, H.2
Xu, G.3
Lian, X.4
-
21
-
-
84869884543
-
Bioengineering and management for efficient phosphorus utilization in crops and pastures
-
Tian J., Wang X., Tong Y., Chen X., Liao H. Bioengineering and management for efficient phosphorus utilization in crops and pastures. Curr Opin Biotechnol 2012, 23:866-871.
-
(2012)
Curr Opin Biotechnol
, vol.23
, pp. 866-871
-
-
Tian, J.1
Wang, X.2
Tong, Y.3
Chen, X.4
Liao, H.5
-
22
-
-
84863516883
-
TFT6 and TFT7, two different members of tomato 14-3-3 gene family, play distinct roles in plant adaption to low phosphorus stress
-
Xu W., Shi W., Jia L., Liang J., Zhang J. TFT6 and TFT7, two different members of tomato 14-3-3 gene family, play distinct roles in plant adaption to low phosphorus stress. Plant Cell Environ 2012, 35:1393-1406.
-
(2012)
Plant Cell Environ
, vol.35
, pp. 1393-1406
-
-
Xu, W.1
Shi, W.2
Jia, L.3
Liang, J.4
Zhang, J.5
-
23
-
-
84898058488
-
Phosphate transporters OsPHT1;9 and OsPHT1;10 are involved in phosphate uptake in rice
-
Wang X., Wang Y., Pineros M., Wang Z., Wang W., Li C., Wu Z., Kochian L., Wu P. Phosphate transporters OsPHT1;9 and OsPHT1;10 are involved in phosphate uptake in rice. Plant Cell Environ 2014, 37:1159-1170.
-
(2014)
Plant Cell Environ
, vol.37
, pp. 1159-1170
-
-
Wang, X.1
Wang, Y.2
Pineros, M.3
Wang, Z.4
Wang, W.5
Li, C.6
Wu, Z.7
Kochian, L.8
Wu, P.9
-
24
-
-
84876530201
-
TaPht1;4, a high-affinity phosphate transporter gene in wheat (Triticum aestivum), plays an important role in plant phosphate acquisition under phosphorus deprivation
-
Liu X., Zhao X., Zhang L., Lu W., Li X., Xiao K. TaPht1;4, a high-affinity phosphate transporter gene in wheat (Triticum aestivum), plays an important role in plant phosphate acquisition under phosphorus deprivation. Funct Plant Biol 2013, 40:329-341.
-
(2013)
Funct Plant Biol
, vol.40
, pp. 329-341
-
-
Liu, X.1
Zhao, X.2
Zhang, L.3
Lu, W.4
Li, X.5
Xiao, K.6
-
25
-
-
55949135215
-
Essential role of MYB transcription factor: PvPHR1 and microRNA: PvmiR399 in phosphorus-deficiency signalling in common bean roots
-
Valdés-López O., Arenas-Huertero C., Ramírez M., Girard L., Sánchez F., Vance C.P., Luis Reyes J., Hernández G. Essential role of MYB transcription factor: PvPHR1 and microRNA: PvmiR399 in phosphorus-deficiency signalling in common bean roots. Plant Cell Environ 2008, 31:1834-1843.
-
(2008)
Plant Cell Environ
, vol.31
, pp. 1834-1843
-
-
Valdés-López, O.1
Arenas-Huertero, C.2
Ramírez, M.3
Girard, L.4
Sánchez, F.5
Vance, C.P.6
Luis Reyes, J.7
Hernández, G.8
-
26
-
-
68349143119
-
Characterization of the promoter of phosphate transporter TaPHT1.2 differentially expressed in wheat varieties
-
Miao J., Sun J., Liu D., Li B., Zhang A., Li Z., Tong Y. Characterization of the promoter of phosphate transporter TaPHT1.2 differentially expressed in wheat varieties. J Genet Genomics 2009, 36:455-466.
-
(2009)
J Genet Genomics
, vol.36
, pp. 455-466
-
-
Miao, J.1
Sun, J.2
Liu, D.3
Li, B.4
Zhang, A.5
Li, Z.6
Tong, Y.7
-
27
-
-
84873045250
-
Genome-wide identification of soybean microRNAs and their targets reveals their organ-specificity and responses to phosphate starvation
-
Xu F., Liu Q., Chen L., Kuang J., Walk T., Wang J., Liao H. Genome-wide identification of soybean microRNAs and their targets reveals their organ-specificity and responses to phosphate starvation. BMC Genomics 2013, 14:66.
-
(2013)
BMC Genomics
, vol.14
, pp. 66
-
-
Xu, F.1
Liu, Q.2
Chen, L.3
Kuang, J.4
Walk, T.5
Wang, J.6
Liao, H.7
-
28
-
-
84898742396
-
Arabidopsis WRKY45 transcription factor activates PHT1;1 expression in response to phosphate starvation
-
Wang H., Xu Q., Kong Y.H., Chen Y., Duan J.Y., Wu W.H., Chen Y.F. Arabidopsis WRKY45 transcription factor activates PHT1;1 expression in response to phosphate starvation. Plant Physiol 2014, 164:2020-2029.
-
(2014)
Plant Physiol
, vol.164
, pp. 2020-2029
-
-
Wang, H.1
Xu, Q.2
Kong, Y.H.3
Chen, Y.4
Duan, J.Y.5
Wu, W.H.6
Chen, Y.F.7
-
29
-
-
80052407521
-
OsPHF1 regulates the plasma membrane localization of low- and high-affinity inorganic phosphate transporters and determines inorganic phosphate uptake and translocation in rice
-
Chen J., Liu Y., Ni J., Wang Y., Bai Y., Shi J., Gan J., Wu Z., Wu P. OsPHF1 regulates the plasma membrane localization of low- and high-affinity inorganic phosphate transporters and determines inorganic phosphate uptake and translocation in rice. Plant Physiol 2011, 157:269-278.
-
(2011)
Plant Physiol
, vol.157
, pp. 269-278
-
-
Chen, J.1
Liu, Y.2
Ni, J.3
Wang, Y.4
Bai, Y.5
Shi, J.6
Gan, J.7
Wu, Z.8
Wu, P.9
-
30
-
-
0036670270
-
A chloroplast phosphate transporter PHT2;1, influences allocation of phosphate within the plant and phosphate-starvation responses
-
Versaw W.K., Harrison M.J. A chloroplast phosphate transporter PHT2;1, influences allocation of phosphate within the plant and phosphate-starvation responses. Plant Cell 2002, 14:1751-1766.
-
(2002)
Plant Cell
, vol.14
, pp. 1751-1766
-
-
Versaw, W.K.1
Harrison, M.J.2
-
31
-
-
84870063499
-
Lack of the Golgi phosphate transporter PHT4;6 causes strong developmental defects, constitutively activated disease resistance mechanisms and altered intracellular phosphate compartmentation in Arabidopsis
-
Hassler S., Lemke L., Jung B., Möhlmann T., Krüger F., Schumacher K., Espen L., Martinoia E., Neuhaus H.E. Lack of the Golgi phosphate transporter PHT4;6 causes strong developmental defects, constitutively activated disease resistance mechanisms and altered intracellular phosphate compartmentation in Arabidopsis. Plant J 2012, 72:732-744.
-
(2012)
Plant J
, vol.72
, pp. 732-744
-
-
Hassler, S.1
Lemke, L.2
Jung, B.3
Möhlmann, T.4
Krüger, F.5
Schumacher, K.6
Espen, L.7
Martinoia, E.8
Neuhaus, H.E.9
-
32
-
-
84859880837
-
Diversity in expression of phosphorus (P) responsive genes in Cucumis melo L.
-
Fita A., Bowen H.C., Hayden R.M., Nuez F., Picó B., Hammond J.P. Diversity in expression of phosphorus (P) responsive genes in Cucumis melo L. PLOS ONE 2012, 7:e35387.
-
(2012)
PLOS ONE
, vol.7
-
-
Fita, A.1
Bowen, H.C.2
Hayden, R.M.3
Nuez, F.4
Picó, B.5
Hammond, J.P.6
-
33
-
-
84863730774
-
Differential expression of genes involved in alternative glycolytic pathways, phosphorus scavenging and recycling in response to aluminum and phosphorus interactions in citrus roots
-
Yang L.T., Jiang H.X., Qi Y.P., Chen L.S. Differential expression of genes involved in alternative glycolytic pathways, phosphorus scavenging and recycling in response to aluminum and phosphorus interactions in citrus roots. Mol Biol Rep 2012, 39:6353-6366.
-
(2012)
Mol Biol Rep
, vol.39
, pp. 6353-6366
-
-
Yang, L.T.1
Jiang, H.X.2
Qi, Y.P.3
Chen, L.S.4
-
34
-
-
84867235770
-
Phosphate starvation and membrane lipid remodeling in seed plants
-
Nakamura Y. Phosphate starvation and membrane lipid remodeling in seed plants. Prog Lipid Res 2013, 52:43-50.
-
(2013)
Prog Lipid Res
, vol.52
, pp. 43-50
-
-
Nakamura, Y.1
-
35
-
-
84863069589
-
MRNA-Seq reveals a comprehensive transcriptome profile of rice under phosphate stress
-
Oono Y., Kawahara Y., Kanamori H., Mizuno H., Yamagata H., Yamamoto M., Hosokawa S., Ikawa H., Akahane I., Zhu Z. mRNA-Seq reveals a comprehensive transcriptome profile of rice under phosphate stress. Rice 2011, 4:50-65.
-
(2011)
Rice
, vol.4
, pp. 50-65
-
-
Oono, Y.1
Kawahara, Y.2
Kanamori, H.3
Mizuno, H.4
Yamagata, H.5
Yamamoto, M.6
Hosokawa, S.7
Ikawa, H.8
Akahane, I.9
Zhu, Z.10
-
36
-
-
84868584192
-
Eliminating the purple acid phosphatase AtPAP26 in Arabidopsis thaliana delays leaf senescence and impairs phosphorus remobilization
-
Robinson W.D., Carson I., Ying S., Ellis K., Plaxton W.C. Eliminating the purple acid phosphatase AtPAP26 in Arabidopsis thaliana delays leaf senescence and impairs phosphorus remobilization. New Phytol 2012, 196:1024-1029.
-
(2012)
New Phytol
, vol.196
, pp. 1024-1029
-
-
Robinson, W.D.1
Carson, I.2
Ying, S.3
Ellis, K.4
Plaxton, W.C.5
-
37
-
-
79551615012
-
RNS2, a conserved member of the RNase T2 family, is necessary for ribosomal RNA decay in plants
-
Hillwig M.S., Contento A.L., Meyer A., Ebany D., Bassham D.C., MacIntosh G.C. RNS2, a conserved member of the RNase T2 family, is necessary for ribosomal RNA decay in plants. Proc Natl Acad Sci U S A 2011, 108:1093-1098.
-
(2011)
Proc Natl Acad Sci U S A
, vol.108
, pp. 1093-1098
-
-
Hillwig, M.S.1
Contento, A.L.2
Meyer, A.3
Ebany, D.4
Bassham, D.C.5
MacIntosh, G.C.6
-
38
-
-
79959948521
-
Roles of arbuscular mycorrhizas in plant phosphorus nutrition: interactions between pathways of phosphorus uptake in arbuscular mycorrhizal roots have important implications for understanding and manipulating plant phosphorus acquisition
-
Smith S.E., Jakobsen I., Grønlund M., Smith F.A. Roles of arbuscular mycorrhizas in plant phosphorus nutrition: interactions between pathways of phosphorus uptake in arbuscular mycorrhizal roots have important implications for understanding and manipulating plant phosphorus acquisition. Plant Physiol 2011, 156:1050-1057.
-
(2011)
Plant Physiol
, vol.156
, pp. 1050-1057
-
-
Smith, S.E.1
Jakobsen, I.2
Grønlund, M.3
Smith, F.A.4
-
39
-
-
77953228918
-
Expression pattern suggests a role of MiR399 in the regulation of the cellular response to local Pi increase during arbuscular mycorrhizal symbiosis
-
Branscheid A., Sieh D., Pant B.D., May P., Devers E.A., Elkrog A., Schauser L., Scheible W., Krajinski F. Expression pattern suggests a role of MiR399 in the regulation of the cellular response to local Pi increase during arbuscular mycorrhizal symbiosis. Mol Plant Microbe Interact 2010, 23:915-926.
-
(2010)
Mol Plant Microbe Interact
, vol.23
, pp. 915-926
-
-
Branscheid, A.1
Sieh, D.2
Pant, B.D.3
May, P.4
Devers, E.A.5
Elkrog, A.6
Schauser, L.7
Scheible, W.8
Krajinski, F.9
-
40
-
-
80052581015
-
How does phosphate status influence the development of the arbuscular mycorrhizal symbiosis?
-
Gu M., Chen A., Dai X., Liu W., Xu G. How does phosphate status influence the development of the arbuscular mycorrhizal symbiosis?. Plant Signal Behav 2011, 6:1300-1304.
-
(2011)
Plant Signal Behav
, vol.6
, pp. 1300-1304
-
-
Gu, M.1
Chen, A.2
Dai, X.3
Liu, W.4
Xu, G.5
-
41
-
-
84870659363
-
Nonredundant regulation of rice arbuscular mycorrhizal symbiosis by two members of the PHOSPHATE TRANSPORTER1 gene family
-
Yang S.Y., Grønlund M., Jakobsen I., Grotemeyer M.S., Rentsch D., Miyao A., Hirochik H., Kumar C.S., Sundaresan V., Salamin N., et al. Nonredundant regulation of rice arbuscular mycorrhizal symbiosis by two members of the PHOSPHATE TRANSPORTER1 gene family. Plant Cell 2012, 24:4236-4251.
-
(2012)
Plant Cell
, vol.24
, pp. 4236-4251
-
-
Yang, S.Y.1
Grønlund, M.2
Jakobsen, I.3
Grotemeyer, M.S.4
Rentsch, D.5
Miyao, A.6
Hirochik, H.7
Kumar, C.S.8
Sundaresan, V.9
Salamin, N.10
-
42
-
-
59849105559
-
Mycorrhizal phosphate uptake pathway in tomato is phosphorus-repressible and transcriptionally regulated
-
Nagy R., Drissner D., Amrhein N., Jakobsen I., Bucher M. Mycorrhizal phosphate uptake pathway in tomato is phosphorus-repressible and transcriptionally regulated. New Phytol 2009, 181:950-959.
-
(2009)
New Phytol
, vol.181
, pp. 950-959
-
-
Nagy, R.1
Drissner, D.2
Amrhein, N.3
Jakobsen, I.4
Bucher, M.5
-
43
-
-
84876418117
-
Functional analysis of the novel mycorrhiza-specific phosphate transporter AsPT1 and PHT1 family from Astragalus sinicus during the arbuscular mycorrhizal symbiosis
-
Xie X., Huang W., Liu F., Tang N., Liu Y., Lin H., Zhao B. Functional analysis of the novel mycorrhiza-specific phosphate transporter AsPT1 and PHT1 family from Astragalus sinicus during the arbuscular mycorrhizal symbiosis. New Phytol 2013, 198:836-852.
-
(2013)
New Phytol
, vol.198
, pp. 836-852
-
-
Xie, X.1
Huang, W.2
Liu, F.3
Tang, N.4
Liu, Y.5
Lin, H.6
Zhao, B.7
-
44
-
-
84900541105
-
Mycorrhizal phosphate uptake pathway in maize: vital for growth and cob development on nutrient poor agricultural and greenhouse soils
-
Willmann M., Gerlach N., Buer B., Polatajko A., Nagy R., Koebke E., Jansa J., Flisch R., Bucher M. Mycorrhizal phosphate uptake pathway in maize: vital for growth and cob development on nutrient poor agricultural and greenhouse soils. Front Plant Sci 2013, 4:533.
-
(2013)
Front Plant Sci
, vol.4
, pp. 533
-
-
Willmann, M.1
Gerlach, N.2
Buer, B.3
Polatajko, A.4
Nagy, R.5
Koebke, E.6
Jansa, J.7
Flisch, R.8
Bucher, M.9
-
45
-
-
79551538938
-
Identification of two conserved cis-acting elements MYCS and P1BS, involved in the regulation of mycorrhiza-activated phosphate transporters in eudicot species
-
Chen A.Q., Gu M., Sun S.B., Zhu L.L., Hong S., Xu G.H. Identification of two conserved cis-acting elements MYCS and P1BS, involved in the regulation of mycorrhiza-activated phosphate transporters in eudicot species. New Phytol 2011, 189:1157-1169.
-
(2011)
New Phytol
, vol.189
, pp. 1157-1169
-
-
Chen, A.Q.1
Gu, M.2
Sun, S.B.3
Zhu, L.L.4
Hong, S.5
Xu, G.H.6
-
46
-
-
84864704953
-
The high-affinity phosphate transporter GmPT5 regulates phosphate transport to nodules and nodulation in soybean
-
Qin L., Zhao J., Tian J., Chen L., Sun Z., Guo Y., Lu X., Gu M., Xu G., Liao H. The high-affinity phosphate transporter GmPT5 regulates phosphate transport to nodules and nodulation in soybean. Plant Physiol 2012, 159:1634-1643.
-
(2012)
Plant Physiol
, vol.159
, pp. 1634-1643
-
-
Qin, L.1
Zhao, J.2
Tian, J.3
Chen, L.4
Sun, Z.5
Guo, Y.6
Lu, X.7
Gu, M.8
Xu, G.9
Liao, H.10
-
47
-
-
70350678746
-
Global changes in the transcript and metabolic profiles during symbiotic nitrogen fixation in phosphorus stressed common bean plants
-
Hernández G., Valdès-López O., Ramĺrez M., Goffard N., Weiller G., Aparicio-Fabre R., Fuentes S.I., Erban A., Kopka J., Udvardi M.K., Vance C.P. Global changes in the transcript and metabolic profiles during symbiotic nitrogen fixation in phosphorus stressed common bean plants. Plant Physiol 2009, 151:1221-1238.
-
(2009)
Plant Physiol
, vol.151
, pp. 1221-1238
-
-
Hernández, G.1
Valdès-López, O.2
Ramĺrez, M.3
Goffard, N.4
Weiller, G.5
Aparicio-Fabre, R.6
Fuentes, S.I.7
Erban, A.8
Kopka, J.9
Udvardi, M.K.10
Vance, C.P.11
-
48
-
-
82955170635
-
Identification of differentially expressed proteins in soybean nodules under phosphorus deficiency through proteomic analysis
-
Chen Z., Cui Q., Liang C., Sun L., Tian J., Liao H. Identification of differentially expressed proteins in soybean nodules under phosphorus deficiency through proteomic analysis. Proteomics 2011, 11:4648-4659.
-
(2011)
Proteomics
, vol.11
, pp. 4648-4659
-
-
Chen, Z.1
Cui, Q.2
Liang, C.3
Sun, L.4
Tian, J.5
Liao, H.6
-
49
-
-
84888397809
-
NITROGEN LIMITATION ADAPTATION, a target of MicroRNA827, mediates degradation of plasma membrane-localized phosphate transporters to maintain phosphate homeostasis in Arabidopsis
-
Lin W.Y., Huang T.K., Chiou T.J. NITROGEN LIMITATION ADAPTATION, a target of MicroRNA827, mediates degradation of plasma membrane-localized phosphate transporters to maintain phosphate homeostasis in Arabidopsis. Plant Cell 2013, 25:4061-4074.
-
(2013)
Plant Cell
, vol.25
, pp. 4061-4074
-
-
Lin, W.Y.1
Huang, T.K.2
Chiou, T.J.3
-
50
-
-
84896843618
-
NITROGEN LIMITATION ADAPTATION recruits PHOSPHATE2 to target the phosphate transporter PT2 for degradation during the regulation of Arabidopsis phosphate homeostasis
-
Park B.S., Seo J.S., Chua N.H. NITROGEN LIMITATION ADAPTATION recruits PHOSPHATE2 to target the phosphate transporter PT2 for degradation during the regulation of Arabidopsis phosphate homeostasis. Plant Cell 2014, 26:454-464.
-
(2014)
Plant Cell
, vol.26
, pp. 454-464
-
-
Park, B.S.1
Seo, J.S.2
Chua, N.H.3
-
51
-
-
84901406283
-
SPX4 negatively regulates phosphate signaling and homeostasis through its interaction with PHR2 in rice
-
Lv Q., Zhong Y., Wang Y., Wang Z., Zhang L., Shi J., Wu Z., Liu Y., Mao C., Yi K., Wu P. SPX4 negatively regulates phosphate signaling and homeostasis through its interaction with PHR2 in rice. Plant Cell 2014, 26:1586-1597.
-
(2014)
Plant Cell
, vol.26
, pp. 1586-1597
-
-
Lv, Q.1
Zhong, Y.2
Wang, Y.3
Wang, Z.4
Zhang, L.5
Shi, J.6
Wu, Z.7
Liu, Y.8
Mao, C.9
Yi, K.10
Wu, P.11
|