首页> 外文期刊>Journal of Experimental Botany >Rice DEP1, encoding a highly cysteine-rich G protein gamma subunit, confers cadmium tolerance on yeast cells and plants.
【24h】

Rice DEP1, encoding a highly cysteine-rich G protein gamma subunit, confers cadmium tolerance on yeast cells and plants.

机译:水稻DEP1编码高度富含半胱氨酸的G蛋白γ亚基,赋予酵母细胞和植物以镉耐受性。

获取原文
获取原文并翻译 | 示例
           

摘要

A rice cDNA, OsDEP1, encoding a highly cysteine (Cys)-rich G protein gamma subunit, was initially identified as it conferred cadmium (Cd) tolerance on yeast cells. Of the 426 aa constituting OsDEP1, 120 are Cys residues (28.2%), of which 88 are clustered in the C-terminal half region (aa 170-426). To evaluate the independent effects of these two regions, two truncated versions of the OsDEP1-expressing plasmids pOsDEP1(1-169) and pOsDEP1(170-426) were used to examine their effects on yeast Cd tolerance. Although OsDEP1(170-426) conferred a similar level of Cd tolerance as the intact OsDEP1, OsDEP1(1-169) provided no such tolerance, indicating that the tolerance effect is localized to the aa 170-426 C-terminal peptide region. The Cd responses of transgenic Arabidopsis plants constitutively expressing OsDEP1, OsDEP1(1-169) or OsDEP1(170-426), were similar to the observations in yeast cells, with OsDEP1 and OsDEP1(170-426) transgenic plants displaying Cd tolerance but OsDEP1(1-169) plants showing no such tolerance. In addition, a positive correlation between the transcript levels of OsDEP1 or OsDEP1(170-426) in the transgenics and the Cd content of these plants upon Cd application was observed. As several Arabidopsis loss-of-function heterotrimeric G protein beta and gamma subunit gene mutants did not show differences in their Cd sensitivity compared with wild-type plants, we propose that the Cys-rich region of OsDEP1 may function directly as a trap for Cd ions.
机译:最初鉴定出水稻cDNA OsDEP1,它编码高度富含半胱氨酸(Cys)的G蛋白γ亚基,因为它赋予了酵母细胞对镉(Cd)的耐受性。在构成OsDEP1的426个氨基酸中,有120个是Cys残基(占28.2%),其中88个聚集在C末端的一半区域(aa 170-426)。为了评估这两个区域的独立作用,使用了两个截短版本的表达OsDEP1的质粒pOsDEP1(1-169)和pOsDEP1(170-426)来检查它们对酵母Cd耐受性的影响。尽管OsDEP1(170-426)赋予的Cd耐受性水平与完整的OsDEP1相似,但OsDEP1(1-169)没有提供这种耐受性,表明耐受性作用仅限于氨基酸170-426 C端肽区域。组成型表达OsDEP1,OsDEP1(1-169)或OsDEP1(170-426)的转基因拟南芥植物对Cd的反应与酵母细胞中的观察结果相似,其中OsDEP1和OsDEP1(170-426)转基因植物显示出Cd耐受性,但OsDEP1 (1-169)植物没有这种耐受性。此外,观察到转基因植物中OsDEP1或OsDEP1(170-426)的转录水平与这些植物施用镉后的镉含量呈正相关。由于与野生型植物相比,几个拟南芥功能丧失的异源三聚体G蛋白β和γ亚基基因突变体在Cd敏感性方面未显示差异,因此我们建议OsDEP1的Cys富集区可能直接充当Cd的陷阱离子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号