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白菜中 aquaporin 基因的全基因组表达谱赋予对非生物和生物胁迫的响应。

Genome-wide expression profiling of aquaporin genes confer responses to abiotic and biotic stresses in Brassica rapa.

作者信息

Kayum Md Abdul, Park Jong-In, Nath Ujjal Kumar, Biswas Manosh Kumar, Kim Hoy-Taek, Nou Ill-Sup

机构信息

Department of Horticulture, Sunchon National University, 255 Jungang-ro, Suncheon, Jeonnam, 57922, South Korea.

University-Industry Cooperation Foundation, Sunchon National University, 255 Jungang-ro, Suncheon, Jeonnam, 57922, South Korea.

出版信息

BMC Plant Biol. 2017 Jan 25;17(1):23. doi: 10.1186/s12870-017-0979-5.

Abstract

BACKGROUND

Plants contain a range of aquaporin (AQP) proteins, which act as transporter of water and nutrient molecules through living membranes. AQPs also participate in water uptake through the roots and contribute to water homeostasis in leaves.

RESULTS

In this study, we identified 59 AQP genes in the B. rapa database and Br135K microarray dataset. Phylogenetic analysis revealed four distinct subfamilies of AQP genes: plasma membrane intrinsic proteins (PIPs), tonoplast intrinsic proteins (TIPs), NOD26-like intrinsic proteins (NIPs) and small basic intrinsic proteins (SIPs). Microarray analysis showed that the majority of PIP subfamily genes had differential transcript abundance between two B. rapa inbred lines Chiifu and Kenshin that differ in their susceptibility to cold. In addition, all BrPIP genes showed organ-specific expression. Out of 22 genes, 12, 7 and 17 were up-regulated in response to cold, drought and salt stresses, respectively. In addition, 18 BrPIP genes were up-regulated under ABA treatment and 4 BrPIP genes were up-regulated upon F. oxysporum f. sp. conglutinans infection. Moreover, all BrPIP genes showed down-regulation under waterlogging stress, reflecting likely the inactivation of AQPs controlling symplastic water movement.

CONCLUSIONS

This study provides a comprehensive analysis of AQPs in B. rapa and details the expression of 22 members of the BrPIP subfamily. These results provide insight into stress-related biological functions of each PIP gene of the AQP family, which will promote B. rapa breeding programs.

摘要

背景

植物含有一系列水通道蛋白(AQP),这些蛋白作为水和营养分子通过生物膜的转运体。水通道蛋白还参与根系对水分的吸收,并有助于叶片中的水分平衡。

结果

在本研究中,我们在白菜型油菜数据库和Br135K微阵列数据集中鉴定出59个AQP基因。系统发育分析揭示了AQP基因的四个不同亚家族:质膜内在蛋白(PIPs)、液泡膜内在蛋白(TIPs)、NOD26样内在蛋白(NIPs)和小碱性内在蛋白(SIPs)。微阵列分析表明,大多数PIP亚家族基因在两个对寒冷敏感性不同的白菜型油菜自交系Chiifu和Kenshin之间具有不同的转录本丰度。此外,所有BrPIP基因均表现出器官特异性表达。在22个基因中,分别有12、7和17个基因在低温、干旱和盐胁迫下上调表达。此外,18个BrPIP基因在脱落酸处理下上调表达,4个BrPIP基因在尖孢镰刀菌f. sp. conglutinans感染后上调表达。此外,所有BrPIP基因在渍水胁迫下均下调表达,这可能反映了控制共质体水分运输的水通道蛋白的失活。

结论

本研究对白菜型油菜中的水通道蛋白进行了全面分析,并详细阐述了BrPIP亚家族22个成员的表达情况。这些结果为深入了解水通道蛋白家族中每个PIP基因与胁迫相关的生物学功能提供了线索,这将推动白菜型油菜的育种计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a0c/5264328/258acb63eaa3/12870_2017_979_Fig1_HTML.jpg

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