World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
40
Citations
5861
World Ranking
3951
National Ranking
367

Best Publications

  • Engineering of enhanced glycine betaine synthesis improves drought tolerance in maize.

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  • Improved chilling tolerance by transformation with betA gene for the enhancement of glycinebetaine synthesis in maize

    Unknown

  • ZmbZIP4 Contributes to Stress Resistance in Maize by Regulating ABA Synthesis and Root Development

    Haizhen Ma;Can Liu;Zhaoxia Li;Qijun Ran

  • Overexpression of an H^+-PPase Gene from Thellungiella halophila in Cotton Enhances Salt Tolerance and Improves Growth and Photosynthetic Performance

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  • Influence of Water Stress on Endogenous Hormone Contents and Cell Damage of Maize Seedlings

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  • Over-expression of AGPase genes enhances seed weight and starch content in transgenic maize

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  • Increase of glycinebetaine synthesis improves drought tolerance in cotton

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  • Heterologous expression of the TsVP gene improves the drought resistance of maize.

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  • Enhancing auxin accumulation in maize root tips improves root growth and dwarfs plant height.

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  • Enhanced expression of phospholipase C 1 ( ZmPLC1 ) improves drought tolerance in transgenic maize

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  • Overexpression of transcription factor ZmPTF1 improves low phosphate tolerance of maize by regulating carbon metabolism and root growth

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  • Overexpression of Thellungiella halophila H+-PPase (TsVP) in cotton enhances drought stress resistance of plants

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  • The bHLH family member ZmPTF1 regulates drought tolerance in maize by promoting root development and abscisic acid synthesis.

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  • Proteomic analysis of roots growth and metabolic changes under phosphorus deficit in maize (Zea mays L.) plants

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  • Comparative proteome analyses of phosphorus responses in maize (Zea mays L.) roots of wild-type and a low-P-tolerant mutant reveal root characteristics associated with phosphorus efficiency.

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  • Overexpression of the phosphatidylinositol synthase gene (ZmPIS) conferring drought stress tolerance by altering membrane lipid composition and increasing ABA synthesis in maize.

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  • Effects of maize organ-specific drought stress response on yields from transcriptome analysis.

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  • Improving freezing tolerance of transgenic tobacco expressing sucrose: sucrose 1-fructosyltransferase gene from Lactuca sativa

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  • ZmNF-YB16 Overexpression Improves Drought Resistance and Yield by Enhancing Photosynthesis and the Antioxidant Capacity of Maize Plants

    Unknown

  • TsNAC1 Is a Key Transcription Factor in Abiotic Stress Resistance and Growth.

    Unknown

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