Genome‐wide identification and characterization of aquaporins in mangrove plant Kandelia obovata and its role in response to the intertidal environment

水通道蛋白 生物 潮间带 红树林 转录组 脱落酸 拟南芥 植物 水运 基因组 酵母 生态学 细胞生物学 基因 生物化学 基因表达 突变体 工程类 水流 环境工程
作者
Ze‐Jun Guo,Dongna Ma,Jing Li,Mingyue Wei,Ludan Zhang,Lichun Zhou,Xiaoxuan Zhou,Shanshan He,Wei Wang,Ying Shen,Qingshun Quinn Li,Hai‐Lei Zheng
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:45 (6): 1698-1718 被引量:22
标识
DOI:10.1111/pce.14286
摘要

Abstract Aquaporins (AQPs) play important roles in plant growth, development and tolerance to environmental stresses. To understand the role of AQPs in the mangrove plant Kandelia obovata , which has the ability to acquire water from seawater, we identified 34 AQPs in the K. obovata genome and analysed their structural features. Phylogenetic analysis revealed that KoAQPs are homologous to AQPs of Populus and Arabidopsis, which are evolutionarily conserved. The key amino acid residues were used to assess water‐transport ability. Analysis of cis ‐acting elements in the promoters indicated that KoAQPs may be stress‐ and hormone‐responsive. Subcellular localization of KoAQPs in yeast showed most KoAQPs function in the membrane system. That transgenic yeast with increased cell volume showed that some KoAQPs have significant water‐transport activity, and the substrate sensitivity assay indicates that some KoAQPs can transport H 2 O 2 . The transcriptome data were used to analyze the expression patterns of KoAQPs in different tissues and developing fruits of K. obovata . In addition, real‐time quantitative PCR analyses combined transcriptome data showed that KoAQPs have complex responses to environmental factors, including salinity, flooding and cold. Collectively, the transport of water and solutes by KoAQPs contributed to the adaptation of K. obovata to the coastal intertidal environment.

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