首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Phylogenetic and expression analysis of the magnesium transporter family in pear, and functional verification of PbrMGT7 in pear pollen
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Phylogenetic and expression analysis of the magnesium transporter family in pear, and functional verification of PbrMGT7 in pear pollen

机译:梨花镁转运蛋白家族的系统发育及表达分析,梨花花粉中PBRMGT7的功能验证

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摘要

The magnesium ion (Mg2+) is the most abundant divalent cation in living cells, and it plays essential roles in various cellular functions. Mg2+ homeostasis in plant cells is crucial for plant growth. The MRS2/MGT family of proteins localise to various membranes, and they function during Mg2+ transport in plants, but their functions are largely unknown in fruit trees. In this study, we performed a genome-wide analysis to identify the MGT gene family members in the pear Pyrus bretschneideri. Sixteen MGT genes were identified. Analysis of the activity of pear pollen showed that a low-concentration magnesium ion treatment was beneficial for pollen germination and pollen tube growth. None of the 16 MGT genes were expressed in any unique tissue, including pollen, and their expression in magnesium-treated pollen varied greatly, where PbrMGT7 was the most sensitive and it was tested as a representative. PbrMGT7 could functionally complement a bacterial strain deficient in Mg2+, thereby indicating a role in magnesium transport. A co-localisation experiment confirmed that PbrMGT7 was localised in the mitochondria, which suggests that PbrMGT7 could mediate Mg-trafficking between the mitochondria and cytosol. Overall, these results suggest that PbrMGT7 is related to Mg2+ homeostasis during pear pollen tube growth.
机译:镁离子(Mg2+)是活细胞中含量最丰富的二价阳离子,在各种细胞功能中发挥着重要作用。植物细胞内Mg2+稳态对植物生长至关重要。MRS2/MGT家族的蛋白质定位于不同的膜,在植物中的Mg2+转运过程中发挥作用,但在果树中其功能基本未知。在这项研究中,我们进行了全基因组分析,以确定梨中的MGT基因家族成员。共鉴定出16个MGT基因。梨花粉活性分析表明,低浓度镁离子处理有利于花粉萌发和花粉管生长。这16个MGT基因均未在任何独特的组织(包括花粉)中表达,它们在镁处理的花粉中的表达差异很大,其中PbrMGT7最为敏感,并作为代表进行了测试。PbrMGT7可以在功能上补充缺乏Mg2+的菌株,从而表明其在镁转运中的作用。共定位实验证实PbrMGT7定位于线粒体,这表明PbrMGT7可以介导线粒体和细胞质之间的镁转运。总的来说,这些结果表明PbrMGT7与梨花粉管生长期间的Mg2+稳态有关。

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