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在渗透胁迫和盐胁迫下,质膜水通道蛋白介导黄瓜幼苗水分运输的差异响应。

Differential responses of plasma membrane aquaporins in mediating water transport of cucumber seedlings under osmotic and salt stresses.

机构信息

Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, Guangdong, 510650, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Plant Cell Environ. 2015 Mar;38(3):461-73. doi: 10.1111/pce.12319. Epub 2014 Apr 14.

Abstract

It has long been recognized that inhibition of plant water transport by either osmotic stress or salinity is mediated by aquaporins (AQPs), but the function and regulation of AQPs are highly variable among distinct isoforms and across different species. In this study, cucumber seedlings were subjected to polyethylene glycol (PEG) or NaCl stress for duration of 2 h or 24 h. The 2 h treatment with PEG or NaCl had non-significant effect on the expression of plasma membrane AQP (CsPIPs) in roots, indicating the decrease in hydraulic conductivity of roots (Lpr ) and root cells (Lprc ) measured in these conditions were due to changes in AQP activity. After both 2 h and 24 h PEG or NaCl exposure, the decrease in hydraulic conductivity of leaves (Kleaf ) and leaf cells (Lplc ) could be attributed to a down-regulation of the two most highly expressed isoforms, CsPIP1;2 and CsPIP2;4. In roots, both Lpr and Lprc were further reduced after 24 h PEG exposure, but partially recovered after 24 h NaCl treatment, which were consistent with changes in the expression of CsPIP genes. Overall, the results demonstrated differential responses of CsPIPs in mediating water transport of cucumber seedlings, and the regulatory mechanisms differed according to applied stresses, stress durations and specific organs.

摘要

长期以来,人们一直认为植物水运输的抑制是由水通道蛋白(AQP)介导的,无论是渗透胁迫还是盐胁迫,但 AQP 的功能和调节在不同的同工型和不同的物种中变化很大。在这项研究中,黄瓜幼苗分别用聚乙二醇(PEG)或氯化钠(NaCl)处理 2 小时或 24 小时。PEG 或 NaCl 处理 2 小时对根系质膜 AQP(CsPIPs)的表达没有显著影响,表明在这些条件下测量的根系水力传导率(Lpr)和根细胞水力传导率(Lprc)的降低是由于 AQP 活性的变化。PEG 或 NaCl 处理 2 小时和 24 小时后,叶片(Kleaf)和叶细胞(Lplc)水力传导率的降低可以归因于两种表达量最高的同工型 CsPIP1;2 和 CsPIP2;4 的下调。在根系中,PEG 处理 24 小时后 Lpr 和 Lprc 进一步降低,但 NaCl 处理 24 小时后部分恢复,这与 CsPIP 基因表达的变化一致。总的来说,结果表明 CsPIPs 在调节黄瓜幼苗水分运输方面存在差异反应,调节机制根据施加的胁迫、胁迫持续时间和特定器官而不同。

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