Suppr超能文献

ZmMs33 介导的质体脂质生物合成维持的绒毡层叶绿体的正常结构和功能对玉米花药发育至关重要。

Normal Structure and Function of Endothecium Chloroplasts Maintained by ZmMs33-Mediated Lipid Biosynthesis in Tapetal Cells Are Critical for Anther Development in Maize.

机构信息

Zhongzhi International Institute of Agricultural Biosciences, Biology and Agriculture Research Center of USTB, University of Science and Technology Beijing (USTB), Beijing 100024, China; Beijing Engineering Laboratory of Main Crop Bio-Tech Breeding, Beijing International Science and Technology Cooperation Base of Bio-Tech Breeding, Beijing Solidwill Sci-Tech Co. Ltd., Beijing 100192, China.

Risk Assessment Laboratory for Bee Products Quality and Safety of Ministry of Agriculture, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100093, China.

出版信息

Mol Plant. 2020 Nov 2;13(11):1624-1643. doi: 10.1016/j.molp.2020.09.013. Epub 2020 Sep 19.

Abstract

Genic male sterility (GMS) is critical for heterosis utilization and hybrid seed production. Although GMS mutants and genes have been studied extensively in plants, it has remained unclear whether chloroplast-associated photosynthetic and metabolic activities are involved in the regulation of anther development. In this study, we characterized the function of ZmMs33/ZmGPAT6, which encodes a member of the glycerol-3-phosphate acyltransferase (GPAT) family that catalyzes the first step of the glycerolipid synthetic pathway. We found that normal structure and function of endothecium (En) chloroplasts maintained by ZmMs33-mediated lipid biosynthesis in tapetal cells are crucial for maize anther development. ZmMs33 is expressed mainly in the tapetum at early anther developmental stages and critical for cell proliferation and expansion at late stages. Chloroplasts in En cells of wild-type anthers function as starch storage sites before stage 10 but as photosynthetic factories since stage 10 to enable starch metabolism and carbohydrate supply. Loss of ZmMs33 function inhibits the biosynthesis of glycolipids and phospholipids, which are major components of En chloroplast membranes, and disrupts the development and function of En chloroplasts, resulting in the formation of abnormal En chloroplasts containing numerous starch granules. Further analyses reveal that starch synthesis during the day and starch degradation at night are greatly suppressed in the mutant anthers, leading to carbon starvation and low energy status, as evidenced by low trehalose-6-phosphate content and a reduced ATP/AMP ratio. The energy sensor and inducer of autophagy, SnRK1, was activated to induce early and excessive autophagy, premature PCD, and metabolic reprogramming in tapetal cells, finally arresting the elongation and development of mutant anthers. Taken together, our results not only show that ZmMs33 is required for normal structure and function of En chloroplasts but also reveal that starch metabolism and photosynthetic activities of En chloroplasts at different developmental stages are essential for normal anther development. These findings provide novel insights for understanding how lipid biosynthesis in the tapetum, the structure and function of En chloroplasts, and energy and substance metabolism are coordinated to maintain maize anther development.

摘要

基因雄性不育(GMS)对于杂种优势利用和杂交种子生产至关重要。尽管在植物中已经广泛研究了 GMS 突变体和基因,但仍不清楚质体相关的光合和代谢活动是否参与调控花药发育。在这项研究中,我们对编码甘油-3-磷酸酰基转移酶(GPAT)家族成员的ZmMs33/ZmGPAT6 的功能进行了表征,该酶催化甘油脂质合成途径的第一步。我们发现,由质体中 ZmMs33 介导的脂质生物合成维持的绒毡层(En)质体的正常结构和功能对于玉米花药发育至关重要。ZmMs33 在早期花药发育阶段主要在绒毡层中表达,对于后期细胞增殖和扩张至关重要。在 stage 10 之前,En 细胞中的质体作为淀粉储存场所发挥作用,但在 stage 10 之后作为光合工厂发挥作用,以实现淀粉代谢和碳水化合物供应。ZmMs33 功能丧失会抑制质体膜中主要组成部分的糖脂和磷脂的生物合成,并破坏 En 质体的发育和功能,导致形成含有大量淀粉粒的异常 En 质体。进一步的分析表明,突变体花药中白天的淀粉合成和夜间的淀粉降解受到极大抑制,导致碳饥饿和低能量状态,表现为海藻糖-6-磷酸含量低和 ATP/AMP 比值降低。自噬的能量传感器和诱导剂 SnRK1 被激活,诱导早期和过度自噬、绒毡层过早的程序性细胞死亡(PCD)和代谢重编程,最终导致突变体花药的伸长和发育停止。总之,我们的研究结果不仅表明 ZmMs33 对于 En 质体的正常结构和功能是必需的,而且揭示了不同发育阶段 En 质体中的淀粉代谢和光合作用对于正常花药发育是必不可少的。这些发现为理解绒毡层中的脂质生物合成、En 质体的结构和功能以及能量和物质代谢如何协调以维持玉米花药发育提供了新的见解。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验