Shixiang Yao

ORCID: 0000-0002-3768-6734
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About
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Research Areas
  • Postharvest Quality and Shelf Life Management
  • Plant Gene Expression Analysis
  • Plant-Microbe Interactions and Immunity
  • Plant Pathogens and Fungal Diseases
  • Plant biochemistry and biosynthesis
  • Plant Physiology and Cultivation Studies
  • Polysaccharides and Plant Cell Walls
  • Protein Hydrolysis and Bioactive Peptides
  • Plant Disease Resistance and Genetics
  • Advanced Proteomics Techniques and Applications
  • Plant Pathogens and Resistance
  • Antioxidant Activity and Oxidative Stress
  • Plant Surface Properties and Treatments
  • Plant tissue culture and regeneration
  • Antimicrobial Peptides and Activities
  • Plant Micronutrient Interactions and Effects
  • Genetic Mapping and Diversity in Plants and Animals
  • Biochemical and biochemical processes
  • Nanocomposite Films for Food Packaging
  • Fungal Biology and Applications
  • Horticultural and Viticultural Research
  • Allelopathy and phytotoxic interactions
  • Yeasts and Rust Fungi Studies
  • Banana Cultivation and Research
  • Biochemical and Structural Characterization

Southwest University
2016-2025

Citrus Research Institute
2022-2025

Guangzhou Medical University
2023

Jiangsu Academy of Agricultural Sciences
2016-2022

University of Ottawa
2018

China National Rice Research Institute
2016

Tsinghua University
2014

The First Affiliated Hospital, Sun Yat-sen University
2012

Sun Yat-sen University
2012

Xinjiang University
2009-2011

Background and AimsChenopodium album is well-known as a serious weed salt-tolerant species inhabiting semi-arid light-saline environments in Xinjiang, China. It produces large amounts of heteromorphic (black brown) seeds. The primary aims the present study were to compare germination characteristics seeds, diversity plant growth seed proliferation pattern resulting plants, correlation between NaCl stress variation heteromorphism.

10.1093/aob/mcq060 article EN Annals of Botany 2010-05-25

Penicillium digitatum causes serious losses in postharvest citrus fruit. Exogenous salicylic acid (SA) can induce fruit resistance against various pathogens, but the mechanism remains unclear. Herein, a transcriptome-based approach was used to investigate underlying of SA-induced P. digitatum. We found that CsWRKY70 and genes related methyl salicylate (MeSA) biosynthesis (salicylate carboxymethyltransferase, SAMT) were induced by exogenous SA. Moreover, significant MeSA accumulation detected...

10.1038/s41438-020-00377-y article EN cc-by Horticulture Research 2020-10-01

WRKY transcription factors (TFs) play crucial roles in the regulation of biotic stress. Citrus is most productive fruit world. It great value to investigate regulatory molecular mechanism WRKYs improving disease resistance. In this research, level CsWRKY25 was upregulated P. digitatum infected citrus peel, and activated expression three target genes (RbohB, RbohD, PR10). Besides, Agrobacterium-mediated transient overexpression has also been shown enhance resistance citrus, caused...

10.3389/fpls.2021.818198 article EN cc-by Frontiers in Plant Science 2022-01-10
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