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液泡膜定位的 OsTIP2;1 参与了水稻中的铝解毒。

The tonoplast-localized OsTIP2;1 is involved in aluminum detoxification in rice.

机构信息

School of Environmental Science and Engineering, Guangzhou University, Guangzhou, Guangdong, China; School of Life Sciences, Guangzhou University, Guangzhou, Guangdong, China.

Institute of Biotechnology, Fujian Academy of Agricultural Sciences, Fuzhou, Fujian, China.

出版信息

Plant Physiol Biochem. 2024 Oct;215:109063. doi: 10.1016/j.plaphy.2024.109063. Epub 2024 Aug 22.

Abstract

Aluminum (Al) stress is a significant issue in acidic soils, severely affecting crop growth and yield. Rice is notably resilient to Al toxicity, yet the internal tolerance mechanisms remain inadequately addressed. Here, we examined the role of OsTIP2;1, a tonoplast-bound intrinsic protein (TIP), in rice's internal Al detoxification. Our findings reveal that OsTIP2;1 expression was quickly and explicitly activated by Al ions in roots but not in shoots. The OsTIP2;1-GFP protein localizes to the tonoplast in plant and yeast cells. Non-functional ostip2;1 rice mutants were more vulnerable to Al toxicity. In the roots, the ostip2;1 mutants exhibited considerably lower levels of Al in the cell sap, primarily the vacuolar contents, than in the wild-type plant. Moreover, the ostip2;1 mutants showed reduced Al accumulation in the roots but increased translocation to the shoots. Heterologous expression of tonoplast-localized OsTIP2;1 in yeast led to enhanced Al tolerance, suggesting that OsTIP2;1 facilitates Al sequestration to the vacuole. These findings indicate that OsTIP2;1 mediates internal detoxification by transporting Al into the vacuole in the root and restricting its transport to above-ground tissues, thus contributing to Al resistance in rice.

摘要

铝(Al)胁迫是酸性土壤中的一个重大问题,严重影响作物的生长和产量。水稻对铝毒性具有显著的抗性,但内部耐受机制仍未得到充分解决。在这里,我们研究了液泡膜结合内在蛋白(TIP)OsTIP2;1 在水稻内部铝解毒中的作用。我们的研究结果表明,OsTIP2;1 表达在根中而不在茎中被 Al 离子快速而明确地激活。OsTIP2;1-GFP 蛋白在植物和酵母细胞中定位于液泡膜上。功能丧失的 ostip2;1 水稻突变体对铝毒性更为敏感。在根中,ostip2;1 突变体中的细胞溶质中的 Al 含量明显低于野生型植物,主要是液泡中的 Al 含量。此外,ostip2;1 突变体在根中积累的 Al 减少,但向地上部分的转运增加。液泡定位 OsTIP2;1 在酵母中的异源表达导致对 Al 耐受性增强,表明 OsTIP2;1 将 Al 螯合到液泡中。这些发现表明,OsTIP2;1 通过将 Al 运输到根中的液泡并限制其向地上组织的转运来介导内部解毒,从而有助于水稻对铝的抗性。

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