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性腺表达谱揭示了温度对大鳞副泥鳅(Paramisgurnus dabryanus)性别决定影响的潜在机制。

Gonadal expression profiles reveal the underlying mechanisms of temperature effects on sex determination in the large-scale loach (Paramisgurnus dabryanus).

作者信息

Zhang Lei, Fang Yutong, Shi Mijuan, Ren Keyi, Guan Xin, Younas Waqar, Cheng Yingyin, Zhang Wanting, Wang Yaping, Xia Xiao-Qin

机构信息

Key Laboratory of Breeding Biotechnology and Sustainable Aquaculture (CAS), Hubei Hongshan Laboratory, Key Laboratory of Aquaculture Disease Control, Ministry of Agriculture and Rural Affairs, The Innovation Academy of Seed Design, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China; College of Advanced Agricultural Sciences, University of Chinese Academy of Sciences, Beijing, China.

Key Laboratory of Breeding Biotechnology and Sustainable Aquaculture (CAS), Hubei Hongshan Laboratory, Key Laboratory of Aquaculture Disease Control, Ministry of Agriculture and Rural Affairs, The Innovation Academy of Seed Design, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China; College of Fisheries and Life Science, Dalian Ocean University, Dalian 116023, China.

出版信息

Anim Reprod Sci. 2025 Jan;272:107661. doi: 10.1016/j.anireprosci.2024.107661. Epub 2024 Nov 30.

Abstract

The sex determination mechanism in large-scale loach (Paramisgurnus dabryanus) follows a ZZ/ZW system, with sexual differentiation regulated by both genotypic factors and temperature effects (GSD+TSD), where elevated temperatures result in a higher proportion of males. Currently, research on the sex determination mechanisms in large-scale loach is limited, and the specific gene expression profiles and the role of temperature in influencing sex remain largely unknown. This study investigated the impact of temperature on the sex ratio in cultured populations of the large-scale loach, and then identified a female-specific genetic marker by whole genome sequencing, facilitating the distinguishing of females, males, and pseudo-males within this population. Transcriptomic analysis was subsequently performed on these groups, and the data revealed a similar expression pattern between pseudo-males and true-males. The research combined differential expression analysis with WGCNA to construct a regulatory network of nine sex differentiation-related genes (SDG) (map3k4, trpv4, hsd17b12a, wt1, ar, dmrt1, bcar1, sox9a, cyp17a1), indicating that sex differentiation in large-scale loach is probably driven by the regulation of male-related genes. The transcriptomic analysis suggested that temperature significantly modified the expression of SDG in the ovaries, while in the testes, it predominantly affects metabolism-related pathways. We established a temperature-sensitive gene network in females, based on the correlation between gene expression and temperature, as well as the number of co-regulated genes in female data. We propose that, with increasing temperature, wt1 serves as a central regulator, leading to the down-regulation of foxl2a, cyp19a1a, and the cholesterol biosynthesis-related gene sqlea, ultimately resulting in the development of pseudo-males.

摘要

大鳞副泥鳅(Paramisgurnus dabryanus)的性别决定机制遵循ZZ/ZW系统,性别分化受基因型因素和温度效应(GSD+TSD)共同调控,温度升高会导致雄性比例增加。目前,关于大鳞副泥鳅性别决定机制的研究有限,具体的基因表达谱以及温度对性别的影响作用在很大程度上仍不清楚。本研究调查了温度对大鳞副泥鳅养殖群体性别比例的影响,然后通过全基因组测序鉴定出一个雌性特异性遗传标记,便于区分该群体中的雌性、雄性和伪雄性。随后对这些群体进行了转录组分析,数据显示伪雄性和真雄性之间存在相似的表达模式。该研究结合差异表达分析和WGCNA构建了9个性别分化相关基因(SDG)(map3k4、trpv4、hsd17b12a、wt1、ar、dmrt1、bcar1、sox9a、cyp17a1)的调控网络,表明大鳞副泥鳅的性别分化可能是由雄性相关基因的调控驱动的。转录组分析表明,温度显著改变了卵巢中SDG的表达,而在睾丸中,它主要影响与代谢相关的途径。基于基因表达与温度之间的相关性以及雌性数据中共同调控基因的数量,我们在雌性中建立了一个温度敏感基因网络。我们提出,随着温度升高,wt1作为中心调节因子,导致foxl2a、cyp19a1a和胆固醇生物合成相关基因sqlea的下调,最终导致伪雄性的发育。

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