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植物水通道蛋白nodulin 26 样内在蛋白亚家族在番茄中的结构、功能和表达分析。

The structure, function and expression analysis of the nodulin 26-like intrinsic protein subfamily of plant aquaporins in tomato.

机构信息

Collaborative Innovation Center for Efficient and Green Production of Agriculture in Mountainous Areas of Zhejiang Province, College of Horticulture Science, Zhejiang A&F University, Hangzhou, 311300, Zhejiang, China.

出版信息

Sci Rep. 2022 Jun 2;12(1):9180. doi: 10.1038/s41598-022-13195-0.

Abstract

The nodulin 26-like intrinsic protein (NIP) family belonging to a group of aquaporin proteins is unique to plants. NIPs have a wide of transport activities and are involved in developmental processes and stress tolerance. The well reported Lsi1 and Lsi6 belonging to NIP III were characterized as Si transporters. However, except Lsi1 and Lsi6, most NIPs remain unknown. Here, we identified 43 putative aquaporins in tomato. We found there are 12 NIPs, including 8 NIP I proteins, 3 NIP II proteins, and 1 NIP III protein among the 43 aquaporins. Also, there are two Si efflux transporters SlLsi2-1 and SlLsi2-2 identified by using Lsi2 proteins from other species. By analysing the phylogenetic relationships, conserved residues and expression patterns, we propose that three NIP I members (SlNIP-2, SlNIP-3 and SlNIP-11) may transport water, ammonia, urea, and boric acid, and contribute to pollen development. Three NIP II proteins (SlNIP-7, SlNIP-9 and SlNIP-12) may be boric acid facilitators, and affect plant growth and anther development. Overall, the study provides valuable candidates of Si transporters and other NIP proteins to further explore their roles in uptake and transport for silicon, boron, and other substrates in tomato.

摘要

类液泡膜内在蛋白(NIP)家族属于水通道蛋白家族,是植物所特有的。NIPs 具有广泛的运输活性,参与发育过程和应激耐受。报道较多的属于 NIP III 的 Lsi1 和 Lsi6 被表征为 Si 转运体。然而,除了 Lsi1 和 Lsi6,大多数 NIP 仍然未知。在这里,我们在番茄中鉴定了 43 个可能的水通道蛋白。我们发现有 12 个 NIP,包括 8 个 NIP I 蛋白、3 个 NIP II 蛋白和 1 个 NIP III 蛋白。此外,还通过使用来自其他物种的 Lsi2 蛋白鉴定出两个 Si 外排转运体 SlLsi2-1 和 SlLsi2-2。通过分析系统发育关系、保守残基和表达模式,我们提出三个 NIP I 成员(SlNIP-2、SlNIP-3 和 SlNIP-11)可能运输水、氨、尿素和硼酸,并有助于花粉发育。三个 NIP II 蛋白(SlNIP-7、SlNIP-9 和 SlNIP-12)可能是硼酸促进剂,并影响植物生长和花药发育。总的来说,该研究为 Si 转运体和其他 NIP 蛋白提供了有价值的候选蛋白,以进一步探索它们在番茄中对硅、硼和其他底物的吸收和运输中的作用。

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