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Proteome quantification of cotton xylem sap suggests the mechanisms of potassium-deficiency-induced changes in plant resistance to environmental stresses

机译:棉木质部树液的蛋白质组学定量表明钾缺乏诱导植物抗环境胁迫变化的机制

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摘要

Proteomics was employed to investigate the molecular mechanisms of apoplastic response to potassium(K)-deficiency in cotton. Low K (LK) treatment significantly decreased the K and protein contents of xylem sap. Totally, 258 peptides were qualitatively identified in the xylem sap of cotton seedlings, of which, 90.31% were secreted proteins. Compared to the normal K (NK), LK significantly decreased the expression of most environmental-stress-related proteins and resulted in a lack of protein isoforms in the characterized proteins. For example, the contents of 21 Class Ш peroxidase isoforms under the LK were 6 to 44% of those under the NK and 11 its isoforms were lacking under the LK treatment; the contents of 3 chitinase isoforms under LK were 11–27% of those under the NK and 2 its isoforms were absent under LK. In addition, stress signaling and recognizing proteins were significantly down-regulated or disappeared under the LK. In contrast, the LK resulted in at least 2-fold increases of only one peroxidase, one protease inhibitor, one non-specific lipid-transfer protein and histone H4 and in the appearance of H2A. Therefore, K deficiency decreased plant tolerance to environmental stresses, probably due to the significant and pronounced decrease or disappearance of a myriad of stress-related proteins.
机译:蛋白质组学被用来研究棉花对钾(K)缺乏的质外性反应的分子机制。低钾(LK)处理显着降低了木质部汁液的钾和蛋白质含量。在棉花幼苗的木质部汁液中定性鉴定了258个肽,其中90.31%是分泌的蛋白质。与正常K(NK)相比,LK显着降低了大多数与环境压力相关的蛋白质的表达,并导致表征的蛋白质缺乏蛋白质同工型。例如,在LK处理下21种Ш类过氧化物酶同工型的含量是NK下的6-44%,而在LK处理下缺少11种过氧化物酶同工型; LK下3种几丁质酶同工型的含量为NK下11-27%,LK下2种同工酶的同工型。此外,在LK下,应激信号和识别蛋白显着下调或消失。相反,LK导致仅一种过氧化物酶,一种蛋白酶抑制剂,一种非特异性脂质转移蛋白和组蛋白H4至少增加了2倍,并且出现了H2A。因此,钾缺乏降低了植物对环境胁迫的耐受性,这可能是由于大量与胁迫相关的蛋白质显着减少或消失所致。

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