团头鲂水通道蛋白家族基因鉴定及其在盐度胁迫下的功能
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作者单位:

1.上海海洋大学, 农业农村部团头鲂遗传育种中心, 上海 201306 ; 2.上海海洋大学, 农业农村部淡水水产种质资源重点实验室, 上海 201306 ; 3.上海海洋大学, 水产科学国家级实验教学示范中心, 上海 201306

作者简介:

李姗姗(1999-),硕士,研究方向为水产动物遗传育种.E-mail:lishanshan9910@163.com

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中图分类号:

S917

基金项目:

国家重点研发计划项目(2022YFD2400600-2); 国家自然科学基金项目(32273100); 上海市农委科技兴农重点项目(2022-02-08-00-12-F01179).


Identification of aquaporin family genes and expression study under salinity stress in the blunt snout bream, Megalobrama amblycephala
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Affiliation:

1.Genetics and Breeding Center for Blunt Snout Bream, Ministry of Agriculture and Rural Affairs,Shanghai Ocean University, Shanghai 201306 , China ; 2.Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Affairs , Shanghai Ocean University, Shanghai 201306 , China ; 3.National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai 201306 , China

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    摘要:

    为深入研究团头鲂(Megalobrama amblycephala)水通道蛋白(aquaporin, AQP)的结构、功能及水通道蛋白在盐度胁迫下在鳃组织中的适应性特征, 本研究首先通过生物信息学方法在团头鲂全基因组中鉴定出19个AQP基因, 它们不均匀分布在12 条不同染色体上。分子系统发育分析将团头鲂AQP基因分为4个亚家族; 基因结构和保守基序的结果分析表明团头鲂AQPs在进化上高度保守。qRT-PCR研究显示, 19个AQPs在团头鲂不同组织中具有不同的表达模式, 其中在负责渗透压调节的鳃组织中AQP3b表达量最高。在2~4盐度胁迫下, 在胁迫初期相邻鳃小片间ILCM逐渐脱落, 体积减小。随着胁迫时间的延长, 团头鲂逐渐适应环境, ILCM体积恢复, 表明团头鲂在盐度胁迫下会发生“鳃重塑”, 以维持体内渗透压平衡。在盐度胁迫过程中, 团头鲂鳃组织 AQP3b 基因相对表达量显著降低后逐渐恢复。本研究结果表明团头鲂AQP 基因在进化过程中高度保守, 在盐度胁迫条件下团头鲂鳃 AQP3b发挥重要作用, 为进一步探究团头鲂AQPs基因功能及团头鲂在盐度胁迫下的生理机制提供分子基础。

    Abstract:

    Aquaporin (AQP) is a transmembrane transport protein that plays an important role in biological processes such as water balance and osmotic pressure regulation. The blunt snout bream (Megalobrama amblycephala) is a unique herbivorous freshwater economic fish species in China that presents limited growth at a salinity of 2. To further investigate the structure and function of AQPs in the blunt snout bream and its adaptive characteristics under salinity stress, 19 AQP genes were identified throughout the entire genome of the blunt snout bream using bioinformatics methods, which showed that they were unevenly distributed on 12 different chromosomes. According to the phylogenetic relationships, gene structure, and motif analysis, the AQP of the blunt snout bream can be divided into four subfamilies. Moreover, the gene structure, motif composition, and sequence of the same subfamily were relatively similar. Multiple sequence alignment of the AQP protein sequences of the blunt head bream with other bony fish and higher vertebrates was performed, and a phylogenetic tree was constructed. The results revealed that the AQP of the blunt head bream was highly conserved during the evolutionary process, which is of great significance for further research on the role of the blunt head bream AQPs. The qRT PCR study showed that the expression of 19 AQPs was generally low in 10 tissues, including the gills, kidneys, intestines, and liver of the pufferfish. Among them, only the expression of AQP3b was highest in the gill tissue responsible for osmotic pressure regulation. AQP8a.2 was highly expressed in the intestine, while AQP12 was highly expressed in the liver tissue. Further research has shown that under salinity stress of 2–4, there is a positive correlation between the volume change of interlayer cell clusters (ILCM) in the gill tissue and the expression level of AQP3b in the gills of the blunt snout bream. In the initial stage of salt stress, the expression level of AQP3b gene significantly decreased with the increase of stress time (P<0.05), but gradually recovered after adapting to salt stress.This indicates that the blunt snout bream undergoes gill remodeling under salinity stress to maintain osmotic pressure balance within the body. This research result indicates that AQP3b plays an important role in salinity adaptation and osmotic pressure regulation in the gill tissue of blunt snout bream. The systematic study and analysis on the AQPs of the blunt snout bream revealed that members of the family of AQPs exhibit evolutionary and functional conservation. The study on the morphology of the gill tissue and expression level of AQP3b in the gills of the blunt snout bream showed that tissue and gene coordination occurs in response to salinity stress and has positive regulatory effects on osmotic pressure changes, thereby helping the fish to adapt to environmental changes more quickly. The results of this study provide a molecular basis for further research on the adaptation mechanism of blunt snout bream.

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引用本文

李姗姗,余欣欣,郑国栋,邹曙明.团头鲂水通道蛋白家族基因鉴定及其在盐度胁迫下的功能[J].中国水产科学,2025,32(8):1057-1067
LI Shanshan, YU Xinxin, ZHENG Guodong, ZOU Shuming. Identification of aquaporin family genes and expression study under salinity stress in the blunt snout bream, Megalobrama amblycephala[J]. Journal of Fishery Sciences of China,2025,32(8):1057-1067

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  • 收稿日期:2024-07-07
  • 最后修改日期:2024-08-25
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  • 在线发布日期: 2025-11-03
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