首页> 外文期刊>Planta: An International Journal of Plant Biology >Modifications in endopeptidase and 20S proteasome expression and activities in cadmium treated tomato (Solanum lycopersicum L.) plants
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Modifications in endopeptidase and 20S proteasome expression and activities in cadmium treated tomato (Solanum lycopersicum L.) plants

机译:镉处理的番茄(Solanum lycopersicum L.)植物内肽酶和20S蛋白酶体表达及活性的修饰

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The effects of cadmium (Cd) on cellular proteolytic responses were investigated in the roots and leaves of tomato (Solanum lycopersicum L., var Ibiza) plants. Three-week-old plants were grown for 3 and 10 days in the presence of 0.3-300 mu M Cd and compared to control plants grown in the absence of Cd. Roots of Cd treated plants accumulated four to fivefold Cd as much as mature leaves. Although 10 days of culture at high Cd concentrations inhibited plant growth, tomato plants recovered and were still able to grow again after Cd removal. Tomato roots and leaves are not modified in their proteolytic response with low Cd concentrations (<= 3 mu M) in the incubation medium. At higher Cd concentration, protein oxidation state and protease activities are modified in roots and leaves although in different ways. The soluble protein content of leaves decreased and protein carbonylation level increased indicative of an oxidative stress. Conversely, protein content of roots increased from 30 to 50%, but the amount of oxidized proteins decreased by two to threefold. Proteolysis responded earlier in leaves than in root to Cd stress. Additionally, whereas cysteine- and metallo-endopeptidase activities, as well as proteasome chymotrypsin activity and subunit expression level, increased in roots and leaves, serine-endopeptidase activities increased only in leaves. This contrasted response between roots and leaves may reflect differences in Cd compartmentation and/or complexation, antioxidant responses and metabolic sensitivity to Cd between plant tissues. The up-regulation of the 20S proteasome gene expression and proteolytic activity argues in favor of the involvement of the 20S proteasome in the degradation of oxidized proteins in plants.
机译:在番茄(Solanum lycopersicum L.,var Ibiza)植株的根和叶中研究了镉对细胞蛋白水解反应的影响。将三周龄的植物在0.3-300μM Cd的存在下生长3天和10天,并与在没有Cd的条件下生长的对照植物进行比较。镉处理过的植物的根积累的镉是成熟叶片的四到五倍。尽管在高Cd浓度下培养10天会抑制植物生长,但番茄植物恢复了活力,并且在去除Cd之后仍然能够再次生长。在培养液中低浓度Cd(<= 3μM)的番茄根和叶的蛋白水解反应没有改变。在较高的Cd浓度下,虽然以不同的方式改变了根和叶中的蛋白质氧化态和蛋白酶活性。叶片中可溶性蛋白质含量降低,蛋白质羰基化水平提高,表明存在氧化应激。相反,根的蛋白质含量从30%增加到50%,但是氧化蛋白质的数量减少了2到3倍。叶片中的蛋白水解作用比镉对根的响应要早。另外,尽管半胱氨酸和金属内肽酶活性以及蛋白酶体胰凝乳蛋白酶活性和亚基表达水平在根和叶中增加,但是丝氨酸内肽酶活性仅在叶子中增加。根和叶之间这种对比的响应可能反映了植物组织之间Cd分隔和/或复合,抗氧化剂响应以及对Cd的代谢敏感性的差异。 20S蛋白酶体基因表达和蛋白水解活性的上调主张20S蛋白酶体参与植物中氧化蛋白的降解。

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