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拟南芥 NIP3;1 在亚砷酸盐胁迫条件下砷的吸收和根到梢的转运中发挥重要作用。

Arabidopsis NIP3;1 Plays an Important Role in Arsenic Uptake and Root-to-Shoot Translocation under Arsenite Stress Conditions.

机构信息

Key Laboratory of Plant Resources, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

Key Laboratory of Plant Resources, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

出版信息

Mol Plant. 2015 May;8(5):722-33. doi: 10.1016/j.molp.2015.01.005. Epub 2015 Jan 13.

Abstract

In Arabidopsis, the nodulin 26-like intrinsic protein (NIP) subfamily of aquaporin proteins consists of nine members, five of which (NIP1;1, NIP1;2, NIP5;1, NIP6;1, and NIP7;1) were previously identified to be permeable to arsenite. However, the roles of NIPs in the root-to-shoot translocation of arsenite in plants remain poorly understood. In this study, using reverse genetic strategies, Arabidopsis NIP3;1 was identified to play an important role in both the arsenic uptake and root-to-shoot distribution under arsenite stress conditions. The nip3;1 loss-of-function mutants displayed obvious improvements in arsenite tolerance for aboveground growth and accumulated less arsenic in shoots than those of the wild-type plants, whereas the nip3;1 nip1;1 double mutant showed strong arsenite tolerance and improved growth of both roots and shoots under arsenite stress conditions. A promoter-β-glucuronidase analysis revealed that NIP3;1 was expressed almost exclusively in roots (with the exception of the root tips), and heterologous expression in the yeast Saccharomyces cerevisiae demonstrated that NIP3;1 was able to mediate arsenite transport. Taken together, our results suggest that NIP3;1 is involved in arsenite uptake and root-to-shoot translocation in Arabidopsis, probably as a passive and bidirectional arsenite transporter.

摘要

在拟南芥中,水孔蛋白家族的 nodulin 26 样内在蛋白(NIP)亚家族由 9 个成员组成,其中 5 个(NIP1;1、NIP1;2、NIP5;1、NIP6;1 和 NIP7;1)先前被鉴定为对亚砷酸盐具有通透性。然而,NIP 在植物中亚砷酸盐从根部到地上部的转运中的作用仍知之甚少。在这项研究中,通过反向遗传学策略,鉴定出拟南芥 NIP3;1 在亚砷酸盐胁迫条件下,对砷的吸收和从根部到地上部的分布都起着重要作用。 nip3;1 功能丧失突变体在地上部生长的亚砷酸盐耐受性和地上部砷积累方面表现出明显的改善,而 nip3;1 nip1;1 双突变体在亚砷酸盐胁迫条件下对亚砷酸盐具有很强的耐受性,并改善了根和地上部的生长。启动子-β-葡萄糖醛酸酶分析表明,NIP3;1 几乎只在根部(根尖除外)表达,在酵母酿酒酵母中的异源表达表明 NIP3;1 能够介导亚砷酸盐的转运。综上所述,我们的结果表明,NIP3;1 参与了拟南芥中亚砷酸盐的吸收和从根部到地上部的转运,可能作为一种被动的双向亚砷酸盐转运体。

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