代谢组
转录组
蛋白质组
硒酸盐
生物
下调和上调
半胱氨酸
化学
生物化学
硒
酶
基因表达
基因
有机化学
代谢物
作者
Shen Rao,Tian Yu,Xin Cong,Xiaozhuo Lai,Jiqian Xiang,Jie Cao,Xiaoli Liao,Yuanyuan Gou,Wei Chao,Hua Xue,Shuiyuan Cheng,Feng Xu
标识
DOI:10.1016/j.jhazmat.2020.124283
摘要
Cardamine violifolia was found here to accumulate selenium (Se) to over 9000 mg kg−1 dry weight. To investigate the mechanism of Se accumulation and tolerance in C. violifolia, metabolome, transcriptome, and proteome technologies were applied to C. violifolia seedlings treated with selenate. Several sulfate transporter (Sultr) genes (Sultr1;1, Sultr1;2, and Sultr2;1) and sulfur assimilatory enzyme genes showed high expression levels in response to selenate. Many calcium protein and cysteine-rich kinase genes of C. violifolia were downregulated, whereas selenium-binding protein 1 (SBP1) and protein sulfur deficiency-induced 2 (SDI2) of C. violifolia were upregulated by selenate. The expression of genes involved in the ribosome and posttranslational modifications and chaperones in C. violifolia were also detected in response to selenate. Based on the results of this study and previous findings, we suggest that the downregulated expression of calcium proteins and cysteine-rich kinases, and the upregulated expression of SBP1 and SDI2, were important contributors to the Se tolerance of C. violifolia. The downregulation of cysteine-rich kinases and calcium proteins would enhance Se tolerance of C. violifolia is a novel proposition that has not been reported on other Se hyperaccumulators. This study provides us novel insights to understand Se accumulation and tolerance in plants.
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