首页> 美国卫生研究院文献>Journal of Experimental Botany >Functional characterization of BjCET3 and BjCET4 two new cation-efflux transporters from Brassica juncea L.
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Functional characterization of BjCET3 and BjCET4 two new cation-efflux transporters from Brassica juncea L.

机译:BjCET3和BjCET4的功能表征这是来自芥菜油菜的两个新的阳离子外向转运蛋白。

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摘要

Brassica juncea is promising for metal phytoremediation, but little is known about the functional role of most metal transporters in this plant. The functional characterization of two B. juncea cation-efflux family proteins BjCET3 and BjCET4 is reported here. The two proteins are closely related to each other in amino acid sequence, and are members of Group III of the cation-efflux transporters. Heterologous expression of BjCET3 and BjCET4 in yeast confirmed their functions in exporting Zn, and possibly Cd, Co, and Ni. Yeast transformed with BjCET4 showed higher metal resistance than did BjCET3 transformed. The two BjCET–GFP fusion proteins were localized to the plasma membrane in the roots when expressed in tobacco, and significantly enhanced the plants’ Cd tolerance ability. Under Cd stress, tobacco plants transformed with BjCET3 accumulated significant amounts of Cd in shoots, while maintaining similar shoot biomass production with vector-control subjects. Transformed BjCET4 tobacco plants showed significantly enhanced shoot biomass production with markedly decreased shoot Cd content. The two transporter genes have a lower basal transcript expression in B. juncea seedling tissues when grown in normal conditions than under metal-stress, however, their transcripts levels could be substantially increased by Zn, Cd, NaCl or PEG, suggesting that BjCET3 and BjCET4 may play roles in several stress conditions, roles which appear to be different from those of previous characterized cation-efflux transporters, for example, AtMTP1, BjCET2, and BjMTP1.
机译:芸苔芥有望用于金属植物修复,但是对于大多数金属转运蛋白在该植物中的功能作用知之甚少。这里报道了两个芥菜芽孢杆菌阳离子外排家族蛋白BjCET3和BjCET4的功能表征。这两种蛋白质在氨基酸序列上彼此紧密相关,并且是阳离子外排转运蛋白的第III族成员。 BjCET3和BjCET4在酵母中的异源表达证实了它们在输出Zn以及可能输出Cd,Co和Ni中的功能。用BjCET4转化的酵母显示出比BjCET3转化的更高的金属抗性。当在烟草中表达时,这两种BjCET-GFP融合蛋白位于根的质膜上,并显着增强了植物对Cd的耐受能力。在Cd胁迫下,用BjCET3转化的烟草植株在茎中积累了大量的Cd,同时保持了与载体控制对象相似的茎生物量生产。转化的BjCET4烟草植物显示出芽生物量的生产显着增强,且茎中Cd含量明显降低。在正常条件下生长时,这两个转运蛋白基因在芥菜芽孢杆菌幼苗组织中的基础转录本表达均比在金属胁迫下低,但是,Zn,Cd,NaCl或PEG可以显着提高其转录本水平,这表明BjCET3和BjCET4可能在几种应激条件下发挥作用,这些作用似乎不同于以前表征的阳离子外排转运蛋白,例如AtMTP1,BjCET2和BjMTP1。

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