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Proteomic changes in different growth periods of ginseng roots

机译:人参根不同生长时期的蛋白质组学变化

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For the first time, proteomics and biochemical variables have been employed to unravel the growth strategies for the different root growth periods of ginseng (Panax ginseng CA May., Araliaceae). Enzymatic activities and cellular contents, except for starch, related to defence and metabolism were significantly increased in the slow-growth period but decreased in the fast-growth period. Proteomic characterisation by two-dimensional gel electrophoresis (2DE) showed 83 differentially expressed spots; 62 spots were up-regulated and 21 spots were down-regulated in the slow-growth period when compared to the fast-growth period. The identification of these spots indicated that the major groups of differential proteins were associated with energy metabolism (37%) and defence (17%), which was consistent with the changes observed in the biochemical measurements. These results clearly demonstrate that ginseng stores energy during its fast-growth period to promote root elongation, whereas it expends energy to improve the synthesis of secondary metabolites and stress resistance during its slow-growth period. The levels of many proteins were changed during the conversion period from fast to slow growth, providing new insights into ginseng proteome evolution. The proposed hypothetical model explains the interaction of metabolic proteins associated with the growth strategies of ginseng.
机译:蛋白质组学和生化变量首次被用于揭示人参不同根生长期的生长策略(Panax ginseng CA May。,Araliaceae)。防御和代谢相关的酶活性和细胞含量(除淀粉外)在缓慢生长时期显着增加,而在快速生长时期则降低。通过二维凝胶电泳(2DE)进行蛋白质组学表征显示了83个差异表达的斑点。与快速增长时期相比,在缓慢增长时期有62个点上调,而有21个斑点下调。这些斑点的鉴定表明,主要的差异蛋白组与能量代谢(37%)和防御(17%)有关,这与在生化测量中观察到的变化一致。这些结果清楚地表明,人参在其快速生长期间储存能量以促进根伸长,而人参则在其缓慢生长期间消耗能量以改善次生代谢产物的合成和抗逆性。在转换期间,许多蛋白质的水平从快速增长变为缓慢增长,从而为人参蛋白质组进化提供了新见识。提出的假设模型解释了与人参生长策略相关的代谢蛋白的相互作用。

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