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草酸转运蛋白基因, 通过调节草酸外排增强 对铝的耐受性。

An Oxalate Transporter Gene, , Enhances Aluminum Tolerance in by Regulating Oxalate Efflux.

机构信息

Hainan Danzhou Agro-Ecosystem National Observation and Research Station, Rubber Research Institute of Chinese Academy of Tropical Agricultural Sciences, Danzhou 571737, China.

College of Tropical Crops, Hainan University, Haikou 570228, China.

出版信息

Int J Mol Sci. 2023 Feb 24;24(5):4516. doi: 10.3390/ijms24054516.

Abstract

Secretion and efflux of oxalic acid from roots is an important aluminum detoxification mechanism for various plants; however, how this process is completed remains unclear. In this study, the candidate oxalate transporter gene , encoding 287 amino acids, was cloned and identified from . was upregulated in response to aluminum stress at the transcriptional level, which was closely related to aluminum treatment concentration and time. The root growth of was inhibited after knocking out , and this effect was amplified by aluminum stress. Yeast cells expressing enhanced oxalic acid resistance and aluminum tolerance, which was closely correlated with the secretion of oxalic acid by membrane vesicle transport. Collectively, these results underline an external exclusion mechanism of oxalate involving to enhance oxalic acid resistance and aluminum tolerance.

摘要

从根系分泌和排出草酸盐是各种植物重要的铝解毒机制;然而,这个过程是如何完成的仍然不清楚。在这项研究中,从 中克隆并鉴定出候选草酸转运基因 ,该基因编码 287 个氨基酸。在转录水平上, 对铝胁迫响应上调,这与铝处理浓度和时间密切相关。 敲除后, 的根生长受到抑制,而这种效应在铝胁迫下被放大。表达 的酵母细胞增强了草酸抗性和铝耐受性,这与膜囊泡运输分泌草酸密切相关。总的来说,这些结果强调了一种涉及 的外排机制,以增强草酸抗性和铝耐受性。

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