World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
30
Citations
4210
World Ranking
6358
National Ranking
1533

Best Publications

  • Plants’ Response Mechanisms to Salinity Stress

    Unknown

  • Expression of an Arabidopsis vacuolar H+-pyrophosphatase gene (AVP1) in cotton improves drought- and salt tolerance and increases fibre yield in the field conditions.

    Vijaya Pasapula;Guoxin Shen;Sundaram Kuppu;Julio Paez-Valencia

  • Achieving abiotic stress tolerance in plants through antioxidative defense mechanisms

    Unknown

  • Expression of an Arabidopsis vacuolar sodium/proton antiporter gene in cotton improves photosynthetic performance under salt conditions and increases fiber yield in the field.

    Cixin He;Juqiang Yan;Guoxin Shen;Lianhai Fu

  • AtCHIP functions as an E3 ubiquitin ligase of protein phosphatase 2A subunits and alters plant response to abscisic acid treatment

    Unknown

  • Clp Protease and OR Directly Control the Proteostasis of Phytoene Synthase, the Crucial Enzyme for Carotenoid Biosynthesis in Arabidopsis

    Ralf Welsch;Xiangjun Zhou;Hui Yuan;Daniel Álvarez

  • Water-deficit inducible expression of a cytokinin biosynthetic gene IPT improves drought tolerance in cotton.

    Sundaram Kuppu;Neelam Mishra;Rongbin Hu;Li Sun

  • Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions.

    Neelam Mishra;Li Sun;Xunlu Zhu;Jennifer Smith

  • Expression of an Arabidopsis sodium/proton antiporter gene (AtNHX1) in peanut to improve salt tolerance

    Manoj Banjara;Longfu Zhu;Guoxin Shen;Paxton Payton

  • Co-overexpressing a Plasma Membrane and a Vacuolar Membrane Sodium/Proton Antiporter Significantly Improves Salt Tolerance in Transgenic Arabidopsis Plants

    Necla Pehlivan;Li Sun;Philip Jarrett;Xiaojie Yang

  • The E3 ligase AtCHIP ubiquitylates FtsH1, a component of the chloroplast FtsH protease, and affects protein degradation in chloroplasts

    Guoxin Shen;Zach Adam;Hong Zhang

  • Genetic manipulation for abiotic stress resistance traits in crops

    Unknown

  • ANKYRIN REPEAT-CONTAINING PROTEIN 2A Is an Essential Molecular Chaperone for Peroxisomal Membrane-Bound ASCORBATE PEROXIDASE3 in Arabidopsis

    Unknown

  • Co-overexpression of AVP1 and AtNHX1 in Cotton Further Improves Drought and Salt Tolerance in Transgenic Cotton Plants

    Guoxin Shen;Jia Wei;Xiaoyun Qiu;Rongbin Hu

  • TAP46 Plays a Positive Role in the ABSCISIC ACID INSENSITIVE5-Regulated Gene Expression in Arabidopsis

    Unknown

  • Expression of the Arabidopsis vacuolar H+-pyrophosphatase gene AVP1 in peanut to improve drought and salt tolerance

    Hua Qin;Qiang Gu;Sundaram Kuppu;Li Sun

  • Overexpression of PP2A-C5 that encodes the catalytic subunit 5 of protein phosphatase 2A in Arabidopsis confers better root and shoot development under salt conditions

    Rongbin Hu;Yinfeng Zhu;Jia Wei;Jian Chen

  • The chloroplast protease subunit ClpP4 is a substrate of the E3 ligase AtCHIP and plays an important role in chloroplast function

    Unknown

  • Overexpression of the rice gene OsSIZ1 in Arabidopsis improves drought-, heat-, and salt-tolerance simultaneously

    Unknown

  • Enhancing crop yield by using Rubisco activase to improve photosynthesis under elevated temperatures

    Unknown

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