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利用非靶向代谢组学方法解析盐响应代谢物和代谢途径,并阐明盐生植物盐角草的耐盐机制。

Unraveling salt responsive metabolites and metabolic pathways using non-targeted metabolomics approach and elucidation of salt tolerance mechanisms in the xero-halophyte Haloxylon salicornicum.

机构信息

Plant Omics Division, CSIR- Central Salt and Marine Chemicals Research Institute (CSIR-CSMCRI), Gijubhai Badheka Marg, Bhavnagar, 364002, Gujarat, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad-201002, India.

Plant Omics Division, CSIR- Central Salt and Marine Chemicals Research Institute (CSIR-CSMCRI), Gijubhai Badheka Marg, Bhavnagar, 364002, Gujarat, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad-201002, India.

出版信息

Plant Physiol Biochem. 2021 Jan;158:284-296. doi: 10.1016/j.plaphy.2020.11.012. Epub 2020 Nov 16.

Abstract

Haloxylon salicornicum is a xero-halophyte growing in saline and arid regions of the world. Metabolite profiling was carried out in shoot of both control and salinity treated (400 mM NaCl) samples by GC-QTOF-MS and HPLC-DAD analysis to decipher the salinity tolerance mechanism in this xero-halophyte. The present study investigates the alteration in metabolite profile of H. salicornicum that support the salinity tolerance of the plant. The metabolomic analysis of H. salicornicum shoot identified 56 metabolites, of which 47 metabolites were significantly changed in response to salinity. These metabolites were mainly included in the category of amino acids, organic acids, amines, sugar alcohols, sugars, fatty acids, alkaloids, and phytohormones. In response to salinity, most of the amino acids were down-regulated except alanine, phenylalanine, lysine, and tyramine, which were up-regulated in H. salicornicum. In contrast to amino acids, most sugars and organic acids were up-regulated in response to salinity. Correlation and pathway enrichment analysis identified important biological pathways playing significant roles in conferring salt tolerance of H. salicornicum. These biological pathways include amino sugar and nucleotide sugar metabolism, citrate cycle (TCA cycle), starch and sucrose metabolism, phenylalanine metabolism, cysteine, methionine, glycine, serine, and threonine metabolism, etc. The data presented here suggest that the modulations of various metabolic pathways facilitate H. salicornicum to survive and grow optimally even under high salinity condition. This study offers comprehensive information on metabolic adaptations and overall salt tolerance mechanisms in H. salicornicum. The information gained through this study will provide guidance to plant breeders and molecular biologists to develop salinity tolerant crop varieties.

摘要

盐角草是一种生长在世界范围内盐渍和干旱地区的旱生盐生植物。通过 GC-QTOF-MS 和 HPLC-DAD 分析对对照和盐处理(400 mM NaCl)样品的茎进行代谢物分析,以破译这种旱生盐生植物的耐盐机制。本研究调查了支持盐生植物耐盐性的盐角草代谢物谱的变化。盐角草茎的代谢组学分析确定了 56 种代谢物,其中 47 种代谢物对盐度变化有显著影响。这些代谢物主要包括氨基酸、有机酸、胺、糖醇、糖、脂肪酸、生物碱和植物激素。对盐度的响应,大多数氨基酸下调,除了丙氨酸、苯丙氨酸、赖氨酸和酪胺上调。与氨基酸相反,大多数糖和有机酸对盐度上升呈上调趋势。相关性和途径富集分析确定了在赋予盐角草耐盐性方面发挥重要作用的重要生物学途径。这些生物学途径包括氨基糖和核苷酸糖代谢、柠檬酸循环(TCA 循环)、淀粉和蔗糖代谢、苯丙氨酸代谢、半胱氨酸、蛋氨酸、甘氨酸、丝氨酸和苏氨酸代谢等。这里提出的数据表明,各种代谢途径的调节有助于盐角草即使在高盐条件下也能最佳地生存和生长。本研究提供了盐角草代谢适应和整体耐盐机制的全面信息。通过这项研究获得的信息将为植物育种家和分子生物学家开发耐盐作物品种提供指导。

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