Enhanced lignin and cellulose metabolism promote cell wall synthesis and growth of wild soybean HRA under alkali stress.

IF 3.6 2区 生物学 Q1 PLANT SCIENCES
Yunan Hu, Yongjun Hu, Shujuan Gao, Zhihui Luan, Tao Zhang, Jixun Guo, Lianxuan Shi
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引用次数: 0

Abstract

Background and aims: Soil salinization adversely threatens plant survival and food production globally. The mobilization of storage reserves in cotyledons and establishment of the hypocotyl/root axis (HRA) structure and function are crucial to the growth of dicotyledonous plants during the post-germination growth period. Here, we report the adaptive mechanisms of wild and cultivated soybeans in response to alkali stress in soil during the post-germination growth period.

Methods: Diferences in physiological parameters, microstructure, and the types, amounts and metabolic pathways of small molecule metabolites and gene expression were compared and multi-omics integration analysis was performed between wild and cultivated soybean under sufcient and artifcially simulated alkali stress during the post-germination growth period in this study.

Key results: Structural analysis showed that the cell wall thickness of wild soybean under alkali stress increased, whereas cultivated soybeans were severely damaged. A comprehensive analysis of small molecule metabolites and gene expression revealed that protein breakdown in wild soybean cotyledons under alkali stress was enhanced, and transport of amino acids and sucrose increased. Additionally, lignin and cellulose synthesis in wild soybean HRA under alkali stress were enhanced.

Conclusions: verall, protein decomposition and transport of amino acids and sucrose increased in wild soybean cotyledons under alkali stress, which in turn, promotes HRA growth. Similarly, lignin and cellulose synthesis in wild soybean HRA enhanced, which subsequently, enhanced cell wall synthesis, thereby maintaining the stability and functionality of HRA under alkali stress. This study presents important practical implications for the utilization of wild plant resources and sustainable development of agriculture.

木质素和纤维素代谢的增强促进了野生大豆 HRA 在碱胁迫下细胞壁的合成和生长。
背景和目的:土壤盐碱化对全球植物的生存和粮食生产造成了不利威胁。子叶中储藏储备的调动以及下胚轴/根轴(HRA)结构和功能的建立对双子叶植物在发芽后生长期的生长至关重要。在此,我们报告了野生大豆和栽培大豆在发芽后生长期对土壤中碱胁迫的适应机制:方法:本研究比较了野生大豆和栽培大豆在发芽后生长期的生理参数、微观结构、小分子代谢物的种类、数量和代谢途径以及基因表达的差异,并对野生大豆和栽培大豆在发芽后生长期的生理参数、微观结构、小分子代谢物的种类、数量和代谢途径以及基因表达进行了多组学整合分析:结构分析表明,野生大豆在碱胁迫下细胞壁厚度增加,而栽培大豆细胞壁受损严重。对小分子代谢物和基因表达的综合分析表明,野生大豆子叶在碱胁迫下蛋白质分解增强,氨基酸和蔗糖的运输增加。结论:总之,野生大豆子叶在碱胁迫下蛋白质分解、氨基酸和蔗糖转运增加,进而促进了 HRA 的生长。同样,野生大豆 HRA 中木质素和纤维素的合成增加,细胞壁的合成也随之增加,从而保持了 HRA 在碱胁迫下的稳定性和功能性。这项研究对野生植物资源的利用和农业的可持续发展具有重要的现实意义。
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来源期刊
Annals of botany
Annals of botany 生物-植物科学
CiteScore
7.90
自引率
4.80%
发文量
138
审稿时长
3 months
期刊介绍: Annals of Botany is an international plant science journal publishing novel and rigorous research in all areas of plant science. It is published monthly in both electronic and printed forms with at least two extra issues each year that focus on a particular theme in plant biology. The Journal is managed by the Annals of Botany Company, a not-for-profit educational charity established to promote plant science worldwide. The Journal publishes original research papers, invited and submitted review articles, ''Research in Context'' expanding on original work, ''Botanical Briefings'' as short overviews of important topics, and ''Viewpoints'' giving opinions. All papers in each issue are summarized briefly in Content Snapshots , there are topical news items in the Plant Cuttings section and Book Reviews . A rigorous review process ensures that readers are exposed to genuine and novel advances across a wide spectrum of botanical knowledge. All papers aim to advance knowledge and make a difference to our understanding of plant science.
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