首页> 外文期刊>Journal of Experimental Botany >Cadmium tolerance and phytochelatin content of Arabidopsis seedlings over-expressing the phytochelatin synthase gene AtPCS1.
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Cadmium tolerance and phytochelatin content of Arabidopsis seedlings over-expressing the phytochelatin synthase gene AtPCS1.

机译:超表达植物螯合素合酶基因 AtPCS1 的拟南芥幼苗对镉的耐受性和植物螯合素含量。

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摘要

Previous studies demonstrated that expression of the Arabidopsis phytochelatin (PC) biosynthetic gene AtPCS1 in Nicotiana tabacum plants increases the Cd tolerance in the presence of exogenous glutathione (GSH). In this paper, the Cd tolerance of Arabidopsis plants over-expressing AtPCS1 (AtPCSox lines) has been analysed and the differences between Arabidopsis and tobacco are shown. Based on the analysis of seedling fresh weight, primary root length, and alterations in root anatomy, evidence is provided that, at relatively low Cd concentrations, the Cd tolerance of AtPCSox lines is lower than the wild type, while AtPCS1 over-expressing tobacco is more tolerant to Cd than the wild type. At higher Cd concentrations, Arabidopsis AtPCSox seedlings are more tolerant to Cd than the wild type, while tobacco AtPCS1 seedlings are as sensitive as the wild type. Exogenous GSH, in contrast to what was observed in tobacco, did not increase the Cd tolerance of AtPCSox lines. The PC content in wild-type Arabidopsis at low Cd concentrations is more than three times higher than in tobacco and substantial differences were also found in the PC chain lengths. These data indicate that the differences in Cd tolerance and in its dependence on exogenous GSH between Arabidopsis and tobacco are due to species-specific differences in the endogenous content of PCs and GSH and may be in the relative abundance of PCs of different length.
机译:先前的研究表明,在外来谷胱甘肽存在下,烟草中的拟南芥植物螯合素(PC)生物合成基因 AtPCS1 的表达增加了对镉的耐受性。 (GSH)。本文分析了过量表达 AtPCS1 (AtPCSox系)的拟南芥植物对Cd的耐受性,并分析了拟南芥和烟草之间的差异。如图所示。通过对幼苗鲜重,初级根长和根部解剖结构变化的分析,有证据表明,在相对较低的Cd浓度下,AtPCSox品系对Cd的耐受性低于野生型,而 AtPCS1 过表达烟草比野生烟草对镉的耐受性更高。在较高的Cd浓度下,拟南芥AtPCSox幼苗比野生型对Cd的耐受性更高,而烟草AtiPCS1 幼苗与野生型一样敏感。与烟草中观察到的相反,外源谷胱甘肽并没有增加AtPCSox品系对Cd的耐受性。在低Cd浓度下,野生型拟南芥PC中的PC含量是烟草中PC含量的三倍以上,并且PC链长度也存在很大差异。这些数据表明,拟南芥和烟草之间对镉的耐受性及其对外源GSH的依赖性的差异是由于PCs和GSH内源性含量的物种特异性差异造成的,并且可能是由于不同长度的PC。

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