异源表达
超量积累植物
生物
互补DNA
拟南芥
酵母
酿酒酵母
基因
异源的
拟南芥
镉
生物化学
遗传学
分子生物学
化学
植物修复
重组DNA
有机化学
突变体
污染
生态学
作者
Catherine Bernard,Nancy H. C. Roosens,Pierre Czernic,Michel Lebrun,Nathalie Verbruggen
出处
期刊:FEBS Letters
[Wiley]
日期:2004-06-07
卷期号:569 (1-3): 140-148
被引量:243
标识
DOI:10.1016/j.febslet.2004.05.036
摘要
Thlaspi caerulescens exhibits a unique capacity for cadmium tolerance and accumulation. We investigated the molecular basis of this exceptional Cd 2+ tolerance by screening for T. caerulescens genes, which alleviate Cd 2+ toxicity upon expression in Saccharomyces cerevisiae . This allowed for the isolation of a cDNA encoding a peptide with homology to the C‐terminal part of a heavy metal ATPase. The corresponding TcHMA4 full‐length sequence was isolated from T. caerulescens and compared to its homolog from Arabidopsis thaliana ( AtHMA4 ). Expression of TcHMA4 and AtHMA4 cDNAs conferred Cd sensitivity in yeast, while expression of TcHMA4‐C and AtHMA4‐C cDNAs encoding the C‐termini of, respectively, TcHMA4 and AtHMA4 conferred Cd tolerance. Moreover, heterologous expression in yeast suggested a higher Cd binding capacity of TcHMA4‐C compared to AtHMA4‐C. In planta, both HMA4 genes were expressed at a higher level in roots than in shoots. However, TcHMA4 shows a much higher constitutive expression than AtHMA4 . Our data indicate that HMA4 could be involved in Cd 2+ transport and possibly in the Cd hyperaccumulation character.
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