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Proteomic changes of Citrus roots in response to long-term manganese toxicity

机译:锰对长期锰毒性反应的蛋白质组学变化

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Fifty-three and thirty-nine differentially expressed protein spots were isolated from Mn-toxic Citrus sinensis and Citrus grandis roots, respectively. Mn-toxicity-induced changes in protein profiles greatly differed between the two species. Limited information is available on the manganese (Mn)-toxicity-responsive proteins in plant roots. 'Sour pummelo' (Citrus grandis) and 'Xuegan' (Citrus sinensis) seedlings were irrigated for 17 weeks with 2 (control) or 600 mu M (Mn-toxic) MnSO4. C. sinensis displayed more tolerance to Mn-toxicity than C. grandis, which may be related to more Mn accumulation in roots and less Mn distribution in shoots. Using two-dimensional electrophoresis (2-DE), we isolated 11 up-regulated and 42 down-regulated protein spots from Mn-toxic C. sinensis roots, and 25 up-regulated and 14 down-regulated protein spots from Mn-toxic C. grandis roots. This indicated more metabolic flexibility in C. sinensis roots, thus contributing to the Mn-tolerance of C. sinensis. According to the biological functional properties, these differentially expressed proteins in the two species were classified into the following categories: protein metabolism, nucleic acid metabolism, carbohydrate and energy metabolism, stress responses, cell wall and cytoskeleton, cell transport, signal transduction and fatty acid metabolism. Under Mn-toxicity, proteins involved in nucleic acid metabolism, glycolysis and cell transport were up-regulated in nontolerant C. grandis roots, and down-regulated in tolerant C. sinensis roots. The notable down-regulation of proteins in Mn-toxic C. sinensis roots with less accumulation of carbohydrates may provide an advantage to the net carbon balance by lowering related metabolic processes, and enhancing the Mn-tolerance of C. sinensis. To conclude, there are many important differences in Mn-toxicity-induced changes in protein profiles and metabolic responses between the two species
机译:从具有锰毒性的中华柑桔和大柑桔根中分别分离出53个和39个差异表达的蛋白斑点。锰毒性诱导的蛋白质谱变化在两个物种之间有很大差异。关于植物根中锰(Mn)毒性反应蛋白的信息有限。用2个(对照)或600μM(对锰有毒)的MnSO4灌溉'Sum pummelo'(柑桔)和'Xuegan'(柑桔)幼苗17周。 C. sinensis比C. grandis表现出更高的Mn毒性耐受性,这可能与根中更多的Mn积累和芽中的Mn分布较少有关。使用二维电泳(2-DE),我们从Mn毒性中华绒螯蟹根中分离了11个上调和42个下调蛋白质点,并从Mn毒性中华绒螯蟹中分离了25个上调和14个下调蛋白质点。格兰迪根。这表明中华绒螯蟹根部具有更多的代谢灵活性,从而有助于中华绒螯蟹的耐锰性。根据生物学功能特性,在两个物种中这些差异表达的蛋白质分为以下几类:蛋白质代谢,核酸代谢,碳水化合物和能量代谢,应激反应,细胞壁和细胞骨架,细胞转运,信号转导和脂肪酸代谢。在Mn毒性下,参与核酸代谢,糖酵解和细胞转运的蛋白质在耐性大grand根中上调,而在耐性中华。根中下调。 Mn毒性的中华梭菌根中蛋白质的显着下调,碳水化合物的积累较少,可通过降低相关的代谢过程并增强中华梭菌的Mn耐性来提供净碳平衡的优势。总而言之,两种物种在锰毒性诱导的蛋白质谱和代谢反应变化方面存在许多重要差异

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