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Low-Molecular-Weightt Polysaccharides From Pyropia yezoensis Enhance Tolerance of Wheat Seedlings (Triticum aestivum L.) to Salt Stress

机译:低分子拟南芥的低分子量多糖增强了小麦幼苗对盐胁迫的耐受性

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摘要

Soil salinity is one of the major issues worldwide that affects plant growth and reduces agricultural productivity. Seaweed polysaccharides have been shown to promote crop growth and improve the resistance of plant to abiotic stresses. Pyropia yezoensis is a commercially important edible red alga in Southeast Asia. However, there is little research on the application of polysaccharides from P. yezoensis in agriculture. The molecular weight (MW) of polysaccharides influences their properties. Therefore, in this study, four representative polysaccharides from P. yezoensis (PP) with different MWs (MW: 3.2, 10.5, 29.0, and 48.8 kDa) were prepared by microwave-assisted acid hydrolysis. The relationship between the degradation of polysaccharides from P. yezoensis (DPP) and their effects on plant salt tolerance was investigated. The results showed that exogenous PP and DPPs increased wheat seedling shoot and root lengths, and fresh and dry weights, alleviated membrane lipid peroxidation, increased the chlorophyll content and enhanced antioxidant activities. The expression level examination analysis of several Na+/K+ transporter genes suggested that DPPs could protect plants from the damage of salt stress by coordinating the efflux and compartmentation of Na+. The results demonstrated that polysaccharides could regulate antioxidant enzyme activities and modulate intracellular ion concentration, thereby to protect plants from salt stress damage. Furthermore, there was a significant correlation between the tolerance of wheat seedlings to salt stress and MW of polysaccharides. The results suggested that the lower-MW samples (DPP1, 3.2 kDa) most effectively protect wheat seedlings against salt stress.
机译:土壤盐分是世界范围内影响植物生长并降低农业生产力的主要问题之一。海藻多糖已显示出促进作物生长并改善植物对非生物胁迫的抗性。 yezoensis Pyropia是一种在东南亚具有重要商业意义的可食用红藻。但是,关于紫叶假单胞菌多糖在农业中的应用研究很少。多糖的分子量(MW)影响其性能。因此,在这项研究中,通过微波辅助酸水解制备了四种具有不同分子量(MW:3.2、10.5、29.0和48.8 kDa)的假单胞菌(PP)代表性多糖。研究了夜蛾假单胞菌(DPP)多糖降解与其对植物耐盐性的影响之间的关系。结果表明,外源PP和DPPs增加了小麦幼苗的茎和根长度,鲜重和干重,减轻了膜脂过氧化,增加了叶绿素含量,增强了抗氧化活性。对几种Na + / K + 转运蛋白基因的表达水平检测分析表明,DPPs通过协调Na + 。结果表明,多糖可以调节抗氧化酶的活性,调节细胞内离子的浓度,从而保护植物免受盐胁迫的伤害。此外,小麦幼苗对盐胁迫的耐受性与多糖的分子量之间存在显着的相关性。结果表明,低分子量样品(DPP1,3.2 kDa)最有效地保护了小麦幼苗免受盐胁迫。

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