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首页> 外文期刊>PLoS One >Identification and functional analysis of the CorA/MGT/MRS2-type magnesium transporter in banana
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Identification and functional analysis of the CorA/MGT/MRS2-type magnesium transporter in banana

机译:香蕉科拉/ MGT / MRS2型镁转运蛋白的鉴定和功能分析

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摘要

Magnesium (Mg) plays an irreplaceable role in plant growth and development. Mg transporters, especially CorA/MGT/MRS2 family proteins, played a vital role in regulating Mg content in plant cells. Although extensive work has been conducted in model crops, such as Arabidopsis, rice, and maize, the relevant information is scarce in tropical crops. In this study, 10 MaMRS2 genes in banana ( Musa acuminata ) were isolated from its genome and classified into five distinct clades. The putative physiochemical properties, chromosome location, gene structure, cis-acting elements, and duplication relationships in between these members were analyzed. Complementary experiments revealed that three MaMRS2 gene members ( MaMRS2-1 , MaMRS2-4 , MaMRS2-7 ), from three distinct phylogenetic branches, were capable of restoring the function of Mg transport in Salmonella typhimurium mutants. Semi-quantitative RT-PCR showed that MaMRS2 genes were differentially expressed in banana cultivar ‘Baxijiao’ ( Musa spp . AAA Cavendish ) seedlings. The result was confirmed by real-time PCR analysis, in addition to tissue specific expression, expression differences among MaMRS2 members were also observed under Mg deficiency conditions. These results showed that Mg transporters may play a versatile role in banana growth and development, and our work will shed light on the functional analysis of Mg transporters in banana.
机译:镁(MG)在植物生长和发展中起着不可替代的作用。 Mg转运蛋白,尤其是Cora / Mgt / MRS2家族蛋白在调节植物细胞中的Mg含量方面发挥了至关重要的作用。虽然在模型作物中进行了广泛的工作,如拟南芥,米饭和玉米,但相关信息在热带作物中稀缺。在这项研究中,香蕉(Musa Acuminata)中的10个MamRS2基因与其基因组分离,分为五个不同的枝条。分析了这些构件之间的推定的理化性质,染色体位置,基因结构,顺式作用元件和重复关系。互补实验表明,来自三个不同的系统发育分支的三个MAMRS2基因成员(MAMRS2-1,MAMRS2-4,MAMRS2-7)能够恢复沙门氏菌毛孢菌突变体中MG输送的功能。半定量RT-PCR显示MAMRS2基因在香蕉品种“Baxijiao”(Musa SPP)差异表达。通过实时PCR分析证实结果,除了组织特异性表达外,还在MG缺乏条件下观察到MAMRS2成员之间的表达差异。这些结果表明,MG运输司机可能在香蕉增长和发展中发挥多功能作用,我们的工作将在香蕉中的MG运输司机的功能分析中阐明。

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