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2-DE proteomics analysis of drought treated seedlings of Quercus ilex supports a root active strategy for metabolic adaptation in response to water shortage

机译:经干旱处理的栎栎幼苗的2-DE蛋白质组学分析为响应缺水的代谢适应提供了根源主动策略

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摘要

Holm oak is a dominant tree in the western Mediterranean region. Despite being well adapted to dry hot climate, drought is the main cause of mortality post-transplanting in reforestation programs. An active response to drought is critical for tree establishment and survival. Applying a gel-based proteomic approach, dynamic changes in root proteins of drought treated Quercus ilex subsp. Ballota [Desf.] Samp. seedlings were followed. Water stress was applied on 20 day-old holm oak plantlets by water limitation for a period of 10 and 20 days, each followed by 10 days of recovery. Stress was monitored by changes in water status, plant growth, and electrolyte leakage. Contrary to leaves, holm oak roots responded readily to water shortage at physiological level by growth inhibition, changes in water status and membrane stability. Root proteins were extracted using trichloroacetate/acetone/phenol protocol and separated by two-dimensional electrophoresis. Coomassie colloidal stained gel images were analyzed and spot intensity data subjected to multivariate statistical analysis. Selected consistent spots in three biological replicas, presenting significant changes under stress, were subjected to MALDI-TOF mass spectrometry (peptide mass fingerprinting and MS/MS). For protein identification, combined search was performed with MASCOT search engine over NCBInr Viridiplantae and Uniprot databases. Data are available via ProteomeXchange with identifier PXD002484. Identified proteins were classified into functional groups: metabolism, protein biosynthesis and proteolysis, defense against biotic stress, cellular protection against abiotic stress, intracellular transport. Several enzymes of the carbohydrate metabolism decreased in abundance in roots under drought stress while some related to ATP synthesis and secondary metabolism increased. Results point at active metabolic adjustment and mobilization of the defense system in roots to actively counteract drought stress.
机译:橡树栎是地中海西部地区的主要树种。尽管干旱能够很好地适应干燥的炎热气候,但干旱是造林计划中移栽后死亡的主要原因。积极应对干旱对于树木的建立和生存至关重要。应用基于凝胶的蛋白质组学方法,干旱处理过的栎属亚种的根蛋白动态变化。 Ballota [Desf。] Samp。跟随幼苗。通过限制水分将水分胁迫施加于20日龄的圣栎橡树幼苗上,持续10天和20天,随后各恢复10天。通过水状态,植物生长和电解质泄漏的变化来监测胁迫。与叶子相反,圣栎树的根部通过生长抑制,水分状况的变化和膜的稳定性,在生理水平上对缺水反应迅速。使用三氯乙酸盐/丙酮/苯酚方案提取根蛋白,并通过二维电泳分离。分析考马斯胶体染色的凝胶图像,并对斑点强度数据进行多元统计分析。对三个生物复制品中选定的一致斑点进行了MALDI-TOF质谱分析(肽质谱指纹图谱和MS / MS),这些斑点在压力下表现出显着变化。对于蛋白质鉴定,使用MASCOT搜索引擎在NCBInr Viridiplantae和Uniprot数据库上进行组合搜索。数据可通过ProteomeXchange获得,其标识符为PXD002484。鉴定出的蛋白质分为功能组:新陈代谢,蛋白质生物合成和蛋白水解,抗生物胁迫防御,抗非生物胁迫细胞保护,细胞内转运。在干旱胁迫下,根部碳水化合物代谢的几种酶大量减少,而一些与ATP合成和次级代谢有关的酶增加。结果表明,积极的代谢调节和根部防御系统的动员可以积极抵抗干旱胁迫。

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