首页> 美国卫生研究院文献>PLoS Genetics >Variation in Molybdenum Content Across Broadly Distributed Populations of Arabidopsis thaliana Is Controlled by a Mitochondrial Molybdenum Transporter (MOT1)
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Variation in Molybdenum Content Across Broadly Distributed Populations of Arabidopsis thaliana Is Controlled by a Mitochondrial Molybdenum Transporter (MOT1)

机译:拟南芥广泛分布种群中钼含量的变化是由线粒体钼转运蛋白(MOT1)控制的。

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摘要

Molybdenum (Mo) is an essential micronutrient for plants, serving as a cofactor for enzymes involved in nitrate assimilation, sulfite detoxification, abscisic acid biosynthesis, and purine degradation. Here we show that natural variation in shoot Mo content across 92 Arabidopsis thaliana accessions is controlled by variation in a mitochondrially localized transporter (Molybdenum Transporter 1 - MOT1) that belongs to the sulfate transporter superfamily. A deletion in the MOT1 promoter is strongly associated with low shoot Mo, occurring in seven of the accessions with the lowest shoot content of Mo. Consistent with the low Mo phenotype, MOT1 expression in low Mo accessions is reduced. Reciprocal grafting experiments demonstrate that the roots of Ler-0 are responsible for the low Mo accumulation in shoot, and GUS localization demonstrates that MOT1 is expressed strongly in the roots. MOT1 contains an N-terminal mitochondrial targeting sequence and expression of MOT1 tagged with GFP in protoplasts and transgenic plants, establishing the mitochondrial localization of this protein. Furthermore, expression of MOT1 specifically enhances Mo accumulation in yeast by 5-fold, consistent with MOT1 functioning as a molybdate transporter. This work provides the first molecular insight into the processes that regulate Mo accumulation in plants and shows that novel loci can be detected by association mapping.
机译:钼(Mo)是植物必需的微量营养素,可作为参与硝酸盐吸收,亚硫酸盐解毒,脱落酸生物合成和嘌呤降解的酶的辅助因子。在这里,我们显示了跨越92个拟南芥种质的芽Mo含量的自然变化是由属于硫酸盐转运蛋白超家族的线粒体定位转运蛋白(钼转运蛋白1-MOT1)的变化控制的。 MOT1启动子中的缺失与低芽Mo密切相关,发生在7个最低Mo含量的种质中。与低Mo表型一致,低Mo质种中MOT1的表达减少。相互的嫁接实验表明,Ler-0的根是引起芽中低Mo积累的原因,而GUS的定位表明,MOT1在根中强烈表达。 MOT1包含一个N端线粒体靶向序列,并用GFP标记的MOT1在原生质体和转基因植物中表达,从而确立了该蛋白的线粒体定位。此外,MOT1的表达可将Mo在酵母中的蓄积提高5倍,这与MOT1作为钼酸盐转运蛋白的功能一致。这项工作为调节植物中Mo积累的过程提供了第一个分子见解,并表明可以通过缔合作图检测到新的基因座。

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