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脱落酸介导的糖响应对于苔藓植物叶苔的营养干燥耐受性至关重要。

Abscisic acid-mediated sugar responses are essential for vegetative desiccation tolerance in the liverwort Marchantia polymorpha.

机构信息

Graduate School of Science and Engineering, Saitama University, Saitama, Japan.

Department of Bioscience, Faculty of Life Sciences, Tokyo University of Agriculture, Tokyo, Japan.

出版信息

Physiol Plant. 2023 Mar;175(2):e13898. doi: 10.1111/ppl.13898.

Abstract

Low-molecular-weight sugars serve as protectants for cellular membranes and macromolecules under the condition of dehydration caused by environmental stress such as desiccation and freezing. These sugars also affect plant growth and development by provoking internal signaling pathways. We previously showed that both sugars and the stress hormone abscisic acid (ABA) enhance desiccation tolerance of gemma, a dormant propagule of the liverwort Marchantia polymorpha. To determine the role of ABA in sugar responses in liverworts, we generated genome-editing lines of M. polymorpha ABA DEFICIENT 1 (MpABA1) encoding zeaxanthin epoxidase, which catalyzes the initial reaction toward ABA biosynthesis. The generated Mpaba1 lines that accumulated only a trace amount of endogenous ABA showed reduced desiccation tolerance and reduced sugar responses. RNA-seq analysis of sucrose-treated gemmalings of M. polymorpha revealed that expression of a large part of sucrose-induced genes was reduced in Mpaba1 compared to the wild-type. Furthermore, Mpaba1 accumulated smaller amounts of low-molecular-weight sugars in tissues upon sucrose treatment than the wild-type, with reduced expression of genes for sucrose synthesis, sugar transporters, and starch-catabolizing enzymes. These results indicate that endogenous ABA plays a role in the regulation of the positive feedback loop for sugar-induced sugar accumulation in liverworts, enabling the tissue to have desiccation tolerance.

摘要

低分子量糖在环境胁迫(如干燥和冷冻)导致的脱水条件下作为细胞膜和大分子的保护剂。这些糖还通过引发内部信号通路来影响植物的生长和发育。我们之前表明,糖和应激激素脱落酸(ABA)都能增强地钱休眠繁殖体芽胞的干燥耐受性。为了确定 ABA 在苔藓中糖反应中的作用,我们生成了编码玉米黄质环氧化酶的拟南芥 ABA 缺陷型 1(MpABA1)的基因组编辑系,该酶催化 ABA 生物合成的初始反应。仅积累痕量内源性 ABA 的生成的 Mpaba1 系表现出降低的干燥耐受性和降低的糖反应。Mpaba1 与野生型相比,在蔗糖处理的地钱芽胞中蔗糖诱导基因的大部分表达减少。此外,Mpaba1 在组织中处理蔗糖时积累的低分子量糖较少,蔗糖合成、糖转运体和淀粉分解酶的基因表达降低。这些结果表明,内源性 ABA 在调节苔藓中蔗糖诱导糖积累的正反馈环中发挥作用,使组织具有干燥耐受性。

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