首页> 外文期刊>Plant Cell Reports >Molecular cloning and characterization of a Brassica juncea yellow stripe-like gene, BjYSL7, whose overexpression increases heavy metal tolerance of tobacco.
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Molecular cloning and characterization of a Brassica juncea yellow stripe-like gene, BjYSL7, whose overexpression increases heavy metal tolerance of tobacco.

机译:芥菜黄条状基因BjYSL7的分子克隆和鉴定,其过度表达提高了烟草的重金属耐受性。

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Heavy metal transporters play a key role in regulating metal accumulation and transport in plants. In this study, we isolated a novel member of the yellow stripe-like (YSL) gene family BjYSL7 from the hyperaccumulator Brassica juncea. BjYSL7 is composed of 688 amino acids with 12 putative transmembrane domains and is over 90% identical to TcYSL7 and AtYSL7. Real-time PCR analysis revealed that BjYSL7 mRNA was mainly expressed in the stem under normal condition. The expression of BjYSL7 was found to be up-regulated by 127.1-, 12.7-, and 3.4-fold in roots and 6.5-, 4.3-, and 2.8-fold in shoots under FeSO4, NiCl2, and CdCl2 stresses, respectively. We have demonstrated that BjYSL7 is a Fe(II)-NA influx transporter by yeast functional complementation. Moreover, a BjYSL7::enhanced green fluorescent protein (EGFP) fusion localized to the plasma membrane of onion epidermal cells. The BjYSL7-overexpressing transgenic tobacco plants exhibited longer root lengths, lower relative inhibition rate of lengths and superior root hair development compared to that of wild-type (WT) plants in the presence of CdCl2 and NiCl2. Furthermore, the concentrations of Cd and Ni in shoots of BjYSL7-overexpressing plants are significantly higher than that of WT plants. Compared with WT plants, BjYSL7-overexpressing plants exhibited Fe concentrations that were higher in the shoots and seeds and lower in the roots. Taken together, these results suggest that BjYSL7 might be involved in the transport of Fe, Cd and Ni to the shoot and improving heavy metal resistance in plants.
机译:重金属转运蛋白在调节植物中金属的积累和运输中起着关键作用。在这项研究中,我们从超级蓄积芥菜中分离出黄色条纹状(YSL)基因家族BjYSL7的新成员。 BjYSL7由688个氨基酸组成,具有12个推定的跨膜结构域,与TcYSL7和AtYSL7的同源性超过90%。实时PCR分析显示,正常情况下BjYSL7 mRNA主要在茎中表达。在FeSO4,NiCl 2 下,BjYSL7在根中的表达上调了127.1-,12.7-和3.4-倍,在苗中的上调了6.5-,4.3-和2.8-倍。和CdCl 2 应力。我们已经证明BjYSL7是通过酵母功能互补的Fe(II)-NA流入转运蛋白。此外,BjYSL7 ::增强型绿色荧光蛋白(EGFP)融合位于洋葱表皮细胞的质膜上。与存在CdCl 2 和NiCl <的野生型(WT)植物相比,过表达BjYSL7的转基因烟草植物具有更长的根长,更低的长度相对抑制率和更好的根毛发育。 sub> 2 。此外,过表达BjYSL7的植物的芽中Cd和Ni的浓度显着高于野生植物。与野生型植物相比,过表达BjYSL7的植物在茎和种子中显示出更高的铁浓度,而在根部显示出更低的铁浓度。综上所述,这些结果表明BjYSL7可能参与铁,镉和镍向枝条的运输,并提高植物对重金属的抗性。

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