史敬芳, 张琪, 宋松泉, 刘军. 2022: 磷脂酶及其调控种子活力研究进展. 南方农业学报, 53(9): 2612-2623. DOI: 10.3969/j.issn.2095-1191.2022.09.024
引用本文: 史敬芳, 张琪, 宋松泉, 刘军. 2022: 磷脂酶及其调控种子活力研究进展. 南方农业学报, 53(9): 2612-2623. DOI: 10.3969/j.issn.2095-1191.2022.09.024
SHI Jing-fang, ZHANG Qi, SONG Song-quan, LIU Jun. 2022: Phospholipases and their seed vigor regulation:A review. Journal of Southern Agriculture, 53(9): 2612-2623. DOI: 10.3969/j.issn.2095-1191.2022.09.024
Citation: SHI Jing-fang, ZHANG Qi, SONG Song-quan, LIU Jun. 2022: Phospholipases and their seed vigor regulation:A review. Journal of Southern Agriculture, 53(9): 2612-2623. DOI: 10.3969/j.issn.2095-1191.2022.09.024

磷脂酶及其调控种子活力研究进展

Phospholipases and their seed vigor regulation:A review

  • 摘要: 磷脂酶可水解膜双分子层的主要成分磷脂,在植物生长发育及逆境胁迫响应方面发挥着重要作用。磷脂酶在种子生长发育、贮藏和萌发阶段调控种子活力,影响植物遗传资源保存和农作物产量。文章归纳总结了磷脂酶在种子各阶段对其活力的影响,包括在种子生长发育期间调控淀粉合成影响种子活力的形成,在种子成熟阶段调控膜完整性影响种子的耐脱水能力,在贮藏期间可能调控细胞中的氧化损伤程度影响种子活力,在萌发阶段参与脱落酸(ABA)和赤霉素(GA)信号传导,调控种子的萌发及幼苗建成。然而由于磷脂酶多样且复杂的生物学功能,其调控种子活力的机制仍不明确。利用基因编辑及多组学技术手段,深入研究磷脂酶调控种子活力的生物学功能及调控机制,不仅有助于阐明种子老化的分子机制,还可为种质创新提供有价值的基因资源,具有重要的理论和实践意义。

     

    Abstract: Phospholipases could hydrolyze phospholipids,the main component of membrane bilayer,and played an important role in plant growth,development and stress response. Phospholipase regulated seed activity during seed growth,development,storage and germination,and affected the conservation of plant genetic resources and crop yield.This paper summarized the effects of phospholipase on seed vigor at different stages:phospholipase regulated starch synthesis,thus influencing seed vigor formation during seed growth and development;it regulated membrane integrity,thus influencing seed dehydration tolerance during mature stage;phospholipase might regulate cell oxidative damage during storage;during germination stage,phospholipase participated in ABA and GA signal transduction to regulate seed germination and seedling morphogenesis. However,due to the diverse and complex biological functions of phospholipase,the mechanism of seed vigor regulation remained unclear. Using gene editing and multiomics techniques to investigate biological function and regulation mechanism of phospholipase would not only help clarify the molecular mechanism of seed aging,but also provide valuable gene resources for germplasm innovation,which had important theoretical and practical significance.

     

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