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Copper excess promotes propagation and induces proteomic change in root cultures of Hyoscyamus albus L.

机译:铜过量促进了天仙子根系培养的繁殖并诱导蛋白质组学变化

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摘要

Hyoscyamus albus L. seedlings respond positively to copper (Cu) excess. In the present study, to understand how roots cope with Cu excess, propagation and proteome composition in the presence of Cu were examined using a root culture system. When H. albus roots were cultured in a medium without Cu, root growth deteriorated. However, in the presence of Cu, root growth increased in a concentration-dependent manner, and vigorous lateral root development was observed at 200 μM Cu. Cu accumulation in the roots increased with the Cu supply. Subcellular fractionation revealed that the highest amount of Cu was present in the cell wall-containing fraction, followed by the soluble fraction. However, the highest specific incorporation of Cu, in terms of fresh weight, was in the mitochondria-rich fraction. High Cu levels enhanced respiration activity. Comparative proteomic analysis revealed that proteins involved in carbohydrate metabolism, de novo protein synthesis, cell division, and ATP synthesis increased in abundance, whereas the proteasome decreased. These results indicate that Cu promotes propagation of H. albus roots through the activation of the energy supply and anabolism. Newly propagated root tissues and newly generated proteins that bind to Cu may provide space and reservoirs for deposition of additional Cu.
机译:Hyoscyamus albus L.幼苗对铜(Cu)过量有积极反应。在本研究中,要了解使用根培养系统检查了根在铜存在下如何应对铜过量,繁殖和蛋白质组组成。当在不含Cu的培养基中培养白bus根时,根生长恶化。但是,在铜的存在下,根的生长以浓度依赖性的方式增加,并且在200μMCu下观察到剧烈的侧根发育。根中的铜积累随铜供应的增加而增加。亚细胞分级分离显示,在含细胞壁的级分中存在最高量的Cu,其次是可溶性级分。然而,就鲜重而言,Cu的最高比掺入率是线粒体富集率。高铜含量可增强呼吸活动。比较蛋白质组学分析显示,参与碳水化合物代谢,从头蛋白质合成,细胞分裂和ATP合成的蛋白质大量增加,而蛋白酶体减少。这些结果表明,铜通过能量供应和合成代谢的激活促进黄连木根的繁殖。新近繁殖的根组织和新生成的与铜结合的蛋白质可能会为额外的铜沉积提供空间和储藏空间。

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