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Degradation and ecological functions of RubiscoLSU during severe drought stress leaves of Camptotheca acuminata

机译:Camptotheca Acuminata严重干旱胁迫叶片中鲁马伊米溶血的降解与生态功能

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Cultivated C, acuminata was distributed widely in arid area belonging to middle part of China where plant medicinal material industrials were highly developed due to limited wild resources. It was showed that drought situation could result in rapid decrease of leaf RWC lower than 50% after 6 hours of treatment and exerted adverse effects on growth and development of C. acuminata seedlings. In this paper, proteomics was used to investigate protein changes and their ecological adaptation to desiccation with the treatment of 15% PEG_(8000) solute to one-year C. acuminata seedlings. 2-DE was adopted to reflect total protein changes after 0 and 30 min, 3h and 5h of treatment and the different expressing blots was identified using PMF attempting to demonstrate damage mechanism of desiccation to plants and ecologically adapting. The results showed that the degradation of Rubisco large subunit (Rubisco LSU) occurred and HSP70 was implicated in the modulation process within 5 h treatment.
机译:栽培C,Acuminata在属于中国中部的干旱地区广泛分布,植物药材工业因野生资源有限,高度发达。结果表明,在治疗6小时后,干旱情况可能导致叶子RWC的迅速降低,并对C. acuminata幼苗的生长和发育产生不利影响。本文使用蛋白质组学来研究蛋白质变化及其生态适应,以将15%PEG_(8000)溶质溶于一年的煤粉幼苗。采用2-de反映0至30分钟后的总蛋白质变化,使用PMF试图证明植物和生态调整的损伤机制和生态适应的损伤机制和生态适应的损伤机制。结果表明,在5小时治疗中,发生了Rubisco大亚基(Rubisco LSU)的降解和Hsp70在调制过程中涉及。

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