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百香果(Passiflora edulis Sims)水通道蛋白基因家族的全基因组鉴定和表达分析,揭示其参与干旱胁迫响应。

Genome-Wide Identification and Expression Analyses of the Aquaporin Gene Family in Passion Fruit (), Revealing to Be Involved in Drought Stress.

机构信息

Key Laboratory of Genetic Improvement of Bananas, Haikou Experimental Station/Hainan Key Laboratory for Biosafety Monitoring and Molecular Breeding in Off-Season Reproduction Regions, Sanya Research Institute of Chinese Academy of Tropical Agricultural Sciences, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China.

Hainan Yazhou Bay Seed Laboratory, Sanya 571101, China.

出版信息

Int J Mol Sci. 2022 May 20;23(10):5720. doi: 10.3390/ijms23105720.

Abstract

Aquaporins (AQPs) in plants can transport water and small molecules, and they play an important role in plant development and abiotic stress response. However, to date, a comprehensive study on AQP family members is lacking. In this study, 27 AQP genes were identified from the passion fruit genome and classified into four groups (NIP, PIP, TIP, SIP) on the basis of their phylogenetic relationships. The prediction of protein interactions indicated that the AQPs of passion fruit were mainly associated with AQP family members and boron protein family genes. Promoter cis-acting elements showed that most PeAQPs contain light response elements, hormone response elements, and abiotic stress response elements. According to collinear analysis, passion fruit is more closely related to Arabidopsis than rice. Furthermore, three different fruit ripening stages and different tissues were analyzed on the basis of the transcriptome sequencing results for passion fruit AQPs under drought, high-salt, cold and high-temperature stress, and the results were confirmed by qRT-PCR. The results showed that the PeAQPs were able to respond to different abiotic stresses, and some members could be induced by and expressed in response to multiple abiotic stresses at the same time. Among the three different fruit ripening stages, 15 AQPs had the highest expression levels in the first stage. AQPs are expressed in all tissues of the passion fruit. One of the passion fruit aquaporin genes, , which was induced by drought stress, was selected and transformed into Arabidopsis. The survival rate of transgenic plants under drought stress treatment is higher than that of wild-type plants. The results indicated that was able to improve the drought resistance of plants. Our discovery lays the foundation for the functional study of AQPs in passion fruit.

摘要

植物中的水通道蛋白 (AQP) 可以运输水和小分子,它们在植物发育和非生物胁迫响应中发挥重要作用。然而,迄今为止,对 AQP 家族成员的综合研究还很缺乏。在这项研究中,从西番莲果基因组中鉴定出 27 个 AQP 基因,并根据系统发育关系将它们分为四个组(NIP、PIP、TIP、SIP)。蛋白质相互作用预测表明,西番莲果的 AQPs 主要与 AQP 家族成员和硼蛋白家族基因相关。启动子顺式作用元件表明,大多数 PeAQPs 含有光反应元件、激素反应元件和非生物胁迫反应元件。根据共线性分析,西番莲果与拟南芥的亲缘关系比水稻更密切。此外,根据西番莲果转录组测序结果,在干旱、高盐、低温和高温胁迫下对不同果实成熟阶段和不同组织的 AQP 进行了分析,并通过 qRT-PCR 进行了验证。结果表明,PeAQPs 能够响应不同的非生物胁迫,一些成员可以同时对多种非生物胁迫产生响应并表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。在三个不同的果实成熟阶段中,15 个 AQP 在第一阶段的表达水平最高。AQPs 在西番莲果的所有组织中都有表达。一个西番莲果水通道蛋白基因 ,在干旱胁迫下被诱导表达,被选择并转化为拟南芥。在干旱胁迫处理下,转基因植物的存活率高于野生型植物。结果表明 能够提高植物的抗旱性。我们的发现为西番莲果 AQP 的功能研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dba6/9146829/6fd2b7308380/ijms-23-05720-g001.jpg

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