World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
64
Citations
14968
World Ranking
9649
National Ranking
297

Overview

Jinghua Xiao is affiliated with Huazhong Agricultural University in China. Their research primarily focuses on Agricultural and Biological Sciences, with significant contributions to Biochemistry, Genetics, and Molecular Biology.

The main subfields of study include Plant Science, Genetics, and Molecular Biology, alongside work in Computer Networks and Communications, as well as Nutrition and Dietetics.

The key research topics Jinghua Xiao has contributed to are:

  • Genetic Mapping and Diversity in Plants and Animals
  • Rice Cultivation and Yield Improvement
  • GABA and Rice Research
  • Plant-Microbe Interactions and Immunity
  • Plant Nutrient Uptake and Metabolism
  • Plant Molecular Biology Research
  • Plant Reproductive Biology

Jinghua Xiao's recent publications include:

  • Consumer resource integration and service innovation in social commerce: the role of social media influencers, 2022, Journal of the Academy of Marketing Science
  • From Green Super Rice to green agriculture: Reaping the promise of functional genomics research, 2021, Molecular Plant
  • The versatile functions of OsALDH2B1 provide a genic basis for growth-defense trade-offs in rice, 2020, Proceedings of the National Academy of Sciences
  • The origin of Wxla provides new insights into the improvement of grain quality in rice, 2020, Journal of Integrative Plant Biology
  • OsHOX1 and OsHOX28 Redundantly Shape Rice Tiller Angle by Reducing HSFA2D Expression and Auxin Content, 2020, PLANT PHYSIOLOGY

Publication venues frequently featuring Jinghua Xiao's research are:

  • Molecular Plant (6 publications)
  • Molecular Breeding (4 publications)
  • Proceedings of the National Academy of Sciences (2 publications)
  • Journal of Integrative Plant Biology (2 publications)
  • PLANT PHYSIOLOGY (2 publications)

Frequent collaborators include:

  • Xianghua Li (21 co-authored works)
  • Qinglu Zhang (19 co-authored works)
  • Qifa Zhang (15 co-authored works)
  • Yuqing He (10 co-authored works)
  • Yidan Ouyang (10 co-authored works)

Best Publications

  • Natural variation in GS5 plays an important role in regulating grain size and yield in rice

    Yibo Li;Chuchuan Fan;Yongzhong Xing;Yunhe Jiang

  • A long noncoding RNA regulates photoperiod-sensitive male sterility, an essential component of hybrid rice.

    Jihua Ding;Qing Lu;Yidan Ouyang;Hailiang Mao

  • Chalk5 encodes a vacuolar H + -translocating pyrophosphatase influencing grain chalkiness in rice

    Yibo Li;Chuchuan Fan;Yongzhong Xing;Peng Yun

  • Constitutive Activation of Transcription Factor OsbZIP46 Improves Drought Tolerance in Rice

    Ning Tang;Hua Zhang;Xianghua Li;Jinghua Xiao

  • A GH3 family member, OsGH3-2, modulates auxin and abscisic acid levels and differentially affects drought and cold tolerance in rice

    Hao Du;Nai Wu;Jing Fu;Shiping Wang

  • A dynamic gene expression atlas covering the entire life cycle of rice

    Lei Wang;Weibo Xie;Ying Chen;Weijiang Tang

  • A G-protein pathway determines grain size in rice

    Shengyuan Sun;Lei Wang;Hailiang Mao;Lin Shao

  • Gains in QTL Detection Using an Ultra-High Density SNP Map Based on Population Sequencing Relative to Traditional RFLP/SSR Markers

    Huihui Yu;Weibo Xie;Jia Wang;Yongzhong Xing

  • Characterization of the β-Carotene Hydroxylase Gene DSM2 Conferring Drought and Oxidative Stress Resistance by Increasing Xanthophylls and Abscisic Acid Synthesis in Rice

    Hao Du;Nili Wang;Fei Cui;Xianghua Li

  • OsWRKY45 alleles play different roles in abscisic acid signalling and salt stress tolerance but similar roles in drought and cold tolerance in rice

    Zeng Tao;Yanjun Kou;Hongbo Liu;Xianghua Li

  • Manipulating Broad-Spectrum Disease Resistance by Suppressing Pathogen-Induced Auxin Accumulation in Rice

    Jing Fu;Hongbo Liu;Yu Li;Huihui Yu

  • Genetic composition of yield heterosis in an elite rice hybrid.

    Gang Zhou;Ying Chen;Wen Yao;Chengjun Zhang

  • Gradual Increase of miR156 Regulates Temporal Expression Changes of Numerous Genes during Leaf Development in Rice

    Kabin Xie;Jianqiang Shen;Xin Hou;Jialing Yao

  • Overexpressed glutamine synthetase gene modifies nitrogen metabolism and abiotic stress responses in rice

    Hongmei Cai;Ying Zhou;Jinghua Xiao;Xianghua Li

  • OsAAP6 functions as an important regulator of grain protein content and nutritional quality in rice.

    Bo Peng;Huili Kong;Yibo Li;Lingqiang Wang

  • PMS1T, producing phased small-interfering RNAs, regulates photoperiod-sensitive male sterility in rice.

    Yourong Fan;Jiangyi Yang;Sandra M. Mathioni;Jinsheng Yu

  • A paralog of the MtN3/saliva family recessively confers race‐specific resistance to Xanthomonas oryzae in rice

    Qinsong Liu;Meng Yuan;Yan Zhou;Xianghua Li

  • A convenient method for simultaneous quantification of multiple phytohormones and metabolites: application in study of rice-bacterium interaction

    Hongbo Liu;Xianghua Li;Jinghua Xiao;Shiping Wang

  • Grain Number, Plant Height, and Heading Date7 Is a Central Regulator of Growth, Development, and Stress Response

    Xiaoyu Weng;Lei Wang;Jia Wang;Yong Hu

  • Coordinated regulation of vegetative and reproductive branching in rice.

    Lei Wang;Shengyuan Sun;Jiye Jin;Debao Fu

Frequent Co-Authors

Xianghua Li
Xianghua Li Huazhong Agricultural University
Shiping Wang
Shiping Wang Huazhong Agricultural University
Qifa Zhang
Qifa Zhang Huazhong Agricultural University
Caiguo Xu
Caiguo Xu Huazhong Agricultural University
Weibo Xie
Weibo Xie Huazhong Agricultural University
Yongzhong Xing
Yongzhong Xing Huazhong Agricultural University
Lizhong Xiong
Lizhong Xiong Huazhong Agricultural University
Xingming Lian
Xingming Lian Huazhong Agricultural University
Sibin Yu
Sibin Yu Huazhong Agricultural University
Honghong Hu
Honghong Hu Huazhong Agricultural University

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