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Wild and Cultivated Species of Rice Have Distinctive Proteomic Responses to Drought

机译:野生和栽培的米饭对干旱具有独特的蛋白质组学反应

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摘要

Drought often compromises yield in non-irrigated crops such as rainfed rice, imperiling the communities that depend upon it as a primary food source. In this study, two cultivated species (Oryza sativa cv. Nipponbare and Oryza glaberrima cv. CG14) and an endemic, perennial Australian wild species (Oryza australiensis) were grown in soil at 40% field capacity for 7 d (drought). The hypothesis was that the natural tolerance of O. australiensis to erratic water supply would be reflected in a unique proteomic profile. Leaves from droughted plants and well-watered controls were harvested for label-free quantitative shotgun proteomics. Physiological and gene ontology analysis confirmed that O. australiensis responded uniquely to drought, with superior leaf water status and enhanced levels of photosynthetic proteins. Distinctive patterns of protein accumulation in drought were observed across the O. australiensis proteome. Photosynthetic and stress-response proteins were more abundant in drought-affected O. glaberrima than O. sativa, and were further enriched in O. australiensis. In contrast, the level of accumulation of photosynthetic proteins decreased when O. sativa underwent drought, while a narrower range of stress-responsive proteins showed increased levels of accumulation. Distinctive proteomic profiles and the accumulated levels of individual proteins with specific functions in response to drought in O. australiensis indicate the importance of this species as a source of stress tolerance genes.
机译:干旱经常损害非灌溉作物的产量,如雨水,污染依赖于其作为主要食物来源的社区。在这项研究中,两种栽培物种(Oryza Sativa CV。Nipponbare和Oryza Glaberrima CV。CG14)和流行,多年生澳大利亚野生物种(Oryza Australiensis)在土壤中以40%的田间容量为7天(干旱)。假设是O. Australiensis对不稳定供水的自然耐受性将反映在独特的蛋白质组学概况中。从旱植物和浇水的对照中留下了无标记的定量霰弹枪蛋白质组学。生理和基因本体学分析证实了O. Australiensis独特地对干旱进行了响应,具有优越的叶水状况和增强的光合蛋白水平。在O. Australiensis蛋白质组中观察到干旱蛋白质积累的独特模式。光合作用和应激反应蛋白在受干旱影响的O.Glaberrima比O. Sativa更丰富,并进一步富含O. AustraLiensis。相反,当O.苜蓿进行干旱时,光合蛋白的积累水平降低,而较窄的应激响应蛋白范围较窄,则显示出增加的积累水平。独特的蛋白质组学曲线和具有特定功能的个体蛋白质的累积水平,以应对O. Australiensis的干旱表明该物种作为应激耐受基因来源的重要性。

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