<noframes id="tfgzv">
    1. <var id="tfgzv"><ul id="tfgzv"><dl id="tfgzv"></dl></ul></var>

    2. 首頁(yè) 園況介紹 科學(xué)研究 園林園藝 環(huán)境教育 黨建文化 紀(jì)檢監(jiān)察 信息公開(kāi) 簡(jiǎn)報(bào)年報(bào)
      首頁(yè) > 科學(xué)研究 > 研究成果 > 論文

      論文

      Application of multiomics analysis to plant flooding response

      論文作者

      Guangya Gui1,2?, Qi Zhang1?, Weiming Hu2* and Fen Liu2*

      刊物Frontiers in Plant Science
      標(biāo)識(shí)符

      10.3389/fpls.2024.1389379

      摘要

      Flooding, as a natural disaster, plays a pivotal role in constraining the growth and development of plants. Flooding stress, including submergence and waterlogging, not only induces oxygen, light, and nutrient deprivation, but also alters soil properties through prolonged inundation, further impeding plant growth and development. However, hypoxia (or anoxia) is the most serious and direct damage to plants caused by flooding. Moreover, flooding disrupts the structural integrity of plant cell walls and compromises endoplasmic reticulum functionality, while hindering nutrient absorption and shifting metabolic processes from normal aerobic respiration to anaerobic respiration. It can be asserted that flooding exerts comprehensive effects on plants encompassing phenotypic changes, transcriptional alterations, protein dynamics, and metabolic shifts. To adapt to flooding environments, plants employ corresponding adaptive mechanisms at the phenotypic level while modulating transcriptomic profiles, proteomic characteristics, and metabolite levels. Hence, this study provides a comprehensive analysis of transcriptomic, proteomic, and metabolomics investigations conducted on flooding stress on model plants and major crops, elucidating their response mechanisms from diverse omics perspectives.


      Application of multiomics analysis to plant flooding response.pdf


      亚洲高清国产拍精品青青草原,亚洲日韩av中文字幕,国产精品一二三区免费播放,日韩专码一区二区
      <noframes id="tfgzv">
      1. <var id="tfgzv"><ul id="tfgzv"><dl id="tfgzv"></dl></ul></var>