Prof. Xingyu  Jiang
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Prof. Xingyu Jiang

Professor
Hainan University, China


Highest Degree
PostDoc. in Biostress from Ben-Gurion University of the Negev, Israel

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Area of Interest:

Plant and Soil Sciences
100%
Plant Stress
62%
Plant Cell Biology
90%
Plant Physiology
75%
Biochemistry
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Zhou, Y., Z. Lai, X. Yin, S. Yu and Y. Xu et al., 2016. Hyperactive mutant of a wheat plasma membrane Na+/H+ antiporter improves the growth and salt tolerance of transgenic tobacco. Plant Sci., 253: 176-186.
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  2. Hao, G., X. Jiang, L. Feng, R. Tao, Y. Li and L. Huang, 2016. Cloning, molecular characterization and functional analysis of a putative R2R3-MYB transcription factor of the phenolic acid biosynthetic pathway in S. miltiorrhiza Bge. f. alba. Plant Cell Tissue Organ Cult., 124: 151-168.
    CrossRef  |  
  3. Zhou, Y., X. Yin, R. Duan, G. Hao, J. Guo and X. Jiang, 2015. SpAHA1 and SpSOS1 coordinate in transgenic yeast to improve salt tolerance. PLoS ONE, Vol. 10. 10.1371/journal.pone.0137447.
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  4. Cong, X., H. Jing, Z. Xia, M. Huang and X.Y. Jiang, 2015. Boron deficiency effects the cellular structure and morphology of Raphanus sativus. Acta Physiol. Plant., 37: 247-256.
  5. Zhai, J., Z. Xia, W. Liu, X. Jiang and X. Huang, 2013. Genomic sequencing globally identifies functional genes and potential virulence-related effectors of Xanthomonas axonopodis pv. Malvacearum. Eur. J. Plant Pathol., 136: 657-663.
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  6. Zhai, J., H. Xu, X. Cong, Y. Deng and Z. Xia et al., 2013. Ca2+/H+ exchange in the plasma membrane of Arabidopsis thaliana leaves. Acta Physiol. Plant., 35: 161-173.
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  7. Xu, Y., Y. Zhou, S. Hong, D.Q. Cui, H.X. Xu and X.Y. Jiang, 2013. Functional characterization of a wheat NHX antiporter gene TaNHX2 that encodes A K+/H+ exchanger. PLoS ONE, Vol. 8. 10.1371/journal.pone.0078098.
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  8. Hong, S., X. Cong, H. Jing, Z. Xia, X. Huang, X. Hu and X. Jiang, 2013. Characterization of Ca2+/H+ exchange in the plasma membrane of Saccharomyces cerevisiae. Arch. Biochem. Biophys., 537: 125-132.
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  9. Hao, G., R. Shi, R. Tao, Q. Fang and X. Jiang et al., 2013. Cloning, molecular characterization and functional analysis of 1-hydroxy-2-methyl-2-(E)-butenyl-4-diphosphate reductase (HDR) gene for diterpenoid tanshinone biosynthesis in Salvia miltiorrhiza Bge. f. alba. Plant Physiol. Biochem., 70: 21-32.
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  10. Xu, H., J. Zhai, Y. Liu, X. Cheng and Z. Xia et al., 2012. The response of Mo-hydroxylases and abscisic acid to salinity in wheat genotypes with differing salt tolerances. Acta Physiol. Plant., 34: 1767-1778.
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  11. Quintero, F., J. Martinez-Atienza, I. Caros, X.Y. Jiang and W.Y. Kim et al., 2011. Activation of the plasma membrane Na/H antiporter SOS1 by phosphorylation of an autoinhibitory carboxy-terminal domain. Proc. Natl. Acad. Sci. USA., 108: 2611-2616.
  12. Jiang, X., E.O. Leidi and J.M. Pardo, 2010. How do vacuolar NHX exchangers function in plant salt tolerance? Plant Signal. Behav., 5: 792-795.
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  13. Oh, D.H., Y. Zhao, E. Leidi, F.J. Quintero and X.Y. Jiang et al., 2009. Loss of halophytism by interference with SOS1 expression. Plant Physiol., 151: 210-222.
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  14. Hernandez, A., X. Jiang, B. Cubero, P.M. Nieto, R.A. Bressan, P.M. Hasegawa and J.M. Pardo, 2009. Mutants of the Arabidopsis thaliana Cation/H+ antiporter AtNHX1 conferring increased salt tolerance in yeast the endosome/prevacuolar compartment is a target for salt toxicity. J. Biol. Chem., 284: 14276-14285.
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  15. Cubero, B., Y. Nakagawa, X.Y. Jiang, K.J. Miura and F. Li et al., 2009. The phosphate transporter PHT4; 6 is a determinant of salt tolerance that is localized to the Golgi apparatus of Arabidopsis. Mol. Plant, 2: 535-552.
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  16. Xu, H., X. Jiang, K. Zhan, X. Cheng, X. Chen, J.M. Pardo and D. Cui, 2008. Functional characterization of a wheat plasma membrane Na+/H+ antiporter in yeast. Arch. Biochem. Biophys., 473: 8-15.
    CrossRef  |  
  17. Rodriguez-Rosales, M.P., X. Jiang, F.J. Galvez, M.N. Aranda, B. Cubero and K. Venema, 2008. Overexpression of the tomato K+/H+ antiporter LeNHX2 confers salt tolerance by improving potassium compartmentalization. New Phytol., 179: 366-377.
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  18. Jiang, X. and C. Wang, 2008. Zinc distribution and zinc-binding forms in Phragmites australis under zinc pollution. J. Plant Physiol., 165: 697-704.
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  19. Martinez-Atienza, J., X. Jiang, B. Garciadeblas, I. Mendoza, J.K. Zhu, J.M. Pardo and F.J. Quintero, 2007. Conservation of the salt overly sensitive pathway in rice. Plant Physiol., 143: 1001-1012.
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  20. Jiang X. and C. Wang, 2007. Cadmium distribution and its effects on molybdate-containing hydroxylases in Phragmites australis. Aquat. Bot., 86: 353-360.
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  21. Jiang, X.Y., R.T. Omarov, S.Z. Yesbergenova and M. Sagi, 2004. The effect of molybdate and tungstate in the growth medium on abscisic acid content and the Mo-hydroxylases activities in barley (Hordeum vulgare L.). Plant Sci., 167: 297-304.
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  22. Jiang, X., 2004. Cyclic AMP: A second messenger during cucumber pollen tube growth? Israel J. Plant Sci., 52: 99-102.
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  23. Kefu, Z., F. Hai, J. Xingyu and Z. San, 2002. Critical day-length and photoinductive cycles for the induction of flowering in halophyte Suaeda salsa. Plant Sci., 162: 27-31.
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