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首页> 外文期刊>The Plant Cell >Arabidopsis Transporter MGT6 Mediates Magnesium Uptake and Is Required for Growth under Magnesium Limitation
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Arabidopsis Transporter MGT6 Mediates Magnesium Uptake and Is Required for Growth under Magnesium Limitation

机译:拟南芥转运蛋白MGT6介导镁的吸收,是镁限制下生长所必需的

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摘要

Although magnesium (Mg2+) is the most abundant divalent cation in plant cells, little is known about the mechanism of Mg2+ uptake by plant roots. Here, we report a key function of Magnesium Transport6 (MGT6)/Mitochondrial RNA Splicing2-4 in Mg2+ uptake and low-Mg2+ tolerance in Arabidopsis thaliana. MGT6 is expressed mainly in plant aerial tissues when Mg2+ levels are high in the soil or growth medium. Its expression is highly induced in the roots during Mg2+ deficiency, suggesting a role for MGT6 in response to the low-Mg2+ status in roots. Silencing of MGT6 in transgenic plants by RNA interference (RNAi) resulted in growth retardation under the low-Mg2+ condition, and the phenotype was restored to normal growth after RNAi plants were transferred to Mg2+ -sufficient medium. RNAi plants contained lower levels of Mg2+ compared with wild-type plants under low Mg2+ but not under Mg2+ -sufficient conditions. Further analysis indicated that MGT6 was localized in the plasma membrane and played a key role in Mg2+ uptake by roots under Mg2+ limitation. We conclude that MGT6 mediates Mg2+ uptake in roots and is required for plant adaptation to a low-Mg2+ environment
机译:尽管镁(Mg2 +)是植物细胞中最丰富的二价阳离子,但对植物根部吸收Mg2 +的机理知之甚少。在这里,我们报告镁转运6(MGT6)/线粒体RNA Splicing2-4在拟南芥中对Mg2 +吸收和低Mg2 +耐受性的关键功能。当土壤或生长培养基中的Mg2 +含量较高时,MGT6主要在植物气生组织中表达。在Mg2 +缺乏期间,它的表达在根中被高度诱导,表明MGT6在根中低Mg2 +的状态中起作用。 RNAi干扰(RNAi)使转基因植物中的MGT6沉默,导致在低Mg2 +条件下生长迟缓,将RNAi植物转移到Mg2 +足够的培养基后,表型恢复正常生长。在低Mg2 +的条件下,RNAi植物所含的Mg2 +含量低于野生型植物,而在Mg2 +充足的条件下则不存在。进一步的分析表明,MGT6位于质膜中,并且在Mg2 +限制下根系对Mg2 +的吸收中起关键作用。我们得出的结论是,MGT6介导了根中Mg2 +的吸收,是植物适应低Mg2 +环境所必需的

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