首页> 美国卫生研究院文献>Journal of Experimental Botany >The role of VuMATE1 expression in aluminium-inducible citrate secretion in rice bean (Vigna umbellata) roots
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The role of VuMATE1 expression in aluminium-inducible citrate secretion in rice bean (Vigna umbellata) roots

机译:VuMATE1表达在稻豆(Vigna umbellata)根中铝诱导的柠檬酸盐分泌中的作用

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摘要

Aluminium (Al)-activated citrate secretion plays an important role in Al resistance in a number of plant species, such as rice bean (Vigna umbellata). This study further characterized the regulation of VuMATE1, an aluminium-activated citrate transporter. Al stress induced VuMATE1 expression, followed by the secretion of citrate. Citrate secretion was specific to Al stress, whereas VuMATE1 expression was not, which could be explained by a combined regulation of VuMATE1 expression and Al-specific activation of VuMATE1 protein. Pre-treatment with a protein translation inhibitor suppressed VuMATE1 expression, indicating that de novo biosynthesis of proteins is required for gene expression. Furthermore, post-treatment with a protein translation inhibitor inhibited citrate secretion, indicating that post-transcriptional regulation of VuMATE1 is critical for citrate secretion. Protein kinase and phosphatase inhibitor studies showed that reversible phosphorylation was important not only for transcriptional regulation of VuMATE1 expression but also for post-translational regulation of VuMATE1 protein activity. These results suggest that citrate secretion is dependent on both transcriptional and post-transcriptional regulation of VuMATE1. Additionally, VuMATE1 promoter–β-glucuronidase fusion lines revealed that VuMATE1 expression was restricted to the root apex and was entirely Al induced, indicating the presence of cis-acting elements regulating root tip-specific and Al-inducible gene expression, which will be an important resource for genetic improvement of plant Al resistance.
机译:铝(Al)激活的柠檬酸盐分泌在许多植物物种(例如稻豆(Vigna umbellata))的抗铝性中起重要作用。这项研究进一步表征了铝激活的柠檬酸盐转运蛋白VuMATE1的调控。 Al胁迫诱导VuMATE1表达,随后分泌柠檬酸盐。柠檬酸盐的分泌对Al胁迫具有特异性,而VuMATE1的表达并非如此,这可以通过VuMATE1表达的结合调节和VuMATE1蛋白的Al特异性激活来解释。用蛋白质翻译抑制剂预处理可抑制VuMATE1表达,这表明基因表达需要从头进行生物合成。此外,用蛋白质翻译抑制剂进行的后处理抑制了柠檬酸盐的分泌,这表明VuMATE1的转录后调控对于柠檬酸盐的分泌至关重要。蛋白激酶和磷酸酶抑制剂的研究表明,可逆的磷酸化不仅对于VuMATE1表达的转录调节很重要,而且对VuMATE1蛋白活性的翻译后调节也很重要。这些结果表明,柠檬酸盐的分泌依赖于VuMATE1的转录和转录后调控。此外,VuMATE1启动子–β-葡萄糖醛酸苷酶融合细胞系显示,VuMATE1表达仅限于根尖,并且完全被铝诱导,表明存在调控根尖特异性和铝诱导基因表达的顺式作用元件,这将是是植物抗铝性遗传改良的重要资源。

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