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Salinity-Induced Effects in the Halophyte Suaeda salsa Using NMR-based Metabolomics

机译:使用基于NMR的代谢组学研究盐碱蓬盐沼中的盐度诱导效应

摘要

Suaeda salsa is a native halophyte in saline soils. Salinity is the most important environmental constraint for plant productivity in the Yellow River Delta. In this work, we investigated the salt-induced effects in root of S. salsa exposed to two environmentally relevant salinities for 1 week and 1 month using nuclear magnetic resonance-based metabolomics. Our results indicated that salt stress inhibited the growth of S. salsa and induced significant metabolic responses including decreased amino acids, lactate, 4-aminobutyrate, malate, choline, phosphocholine, and increased betaine, sucrose, and allantoin in root tissues of S. salsa. In addition, salinity exposures upregulated the activities of superoxide dismutase, glutathione S-transferases, peroxidase, catalase, and glutathione peroxidase in the aboveground part of seedlings of S. salsa after exposures. Overall, these results demonstrated the osmotic and oxidative stresses, disturbances in protein biosynthesis/degradation, and energy metabolism in S. salsa exposed to salinities.
机译:Suaeda salsa是盐渍土壤中的原生盐生植物。盐分是黄河三角洲植物生产力最重要的环境制约因素。在这项工作中,我们使用基于核磁共振的代谢组学,研究了盐胁迫下的沙门氏菌根部暴露于两种与环境相关的盐分下1周和1个月的盐诱导效应。我们的结果表明,盐胁迫抑制了莎莎草的生长,并诱导了显着的代谢反应,包括莎莎草根组织中氨基酸,乳酸,4-氨基丁酸,苹果酸,胆碱,磷酸胆碱的减少,以及甜菜碱,蔗糖和尿囊素的增加。 。此外,盐分暴露后,S。salsa幼苗地上部分的超氧化物歧化酶,谷胱甘肽S-转移酶,过氧化物酶,过氧化氢酶和谷胱甘肽过氧化物酶的活性上调。总体而言,这些结果表明暴露于盐度下的莎莎沙门氏菌的渗透压和氧化应激,蛋白质生物合成/降解的紊乱以及能量代谢。

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