前臀鮡上颌和胸鳍特化皮肤组织结构特征和基因表达调控
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1华中农业大学水产学院/农业农村部淡水生物繁育重点实验室/长江经济带大宗水生生物 产业绿色发展教育部工程研究中心,武汉 430070;2湖北洪山实验室,武汉 430070;3华电金沙江上游水电开发有限公司叶巴滩分公司,甘孜 627153

作者简介:

王聪,E-mail:hzauwc@webmail.hzau.edu.cn

通讯作者:

万世明,E-mail:wansm@mail.hzau.edu.cn

中图分类号:

Q959.4;Q785;Q75

基金项目:

国家自然科学基金面上项目(32473145);华电集团金沙江上游远期放流鱼种人工繁育技术研究项目(T-2022-04)


Structural characteristics and gene expression regulation of skin specialization in Pareuchiloglanis anteanalis
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1College of Fisheries, Huazhong Agricultural University/Key Lab of Freshwater Animal Breeding, Ministry of Agriculture and Rural Affairs/Engineering Research Center of Green Development for Conventional Aquatic Biological Industry in the Yangtze River Economic Belt, Ministry of Education, Wuhan 430070, China;2Hubei Hongshan Laboratory, Wuhan 430070, China;3Yebatan Branch of Huadian Jinshajiang Upstream Hydropower Development Co., Ltd., Ganzi 627153, China

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    摘要:

    前臀鮡(Pareuchiloglanis anteanalis)是长江上游特有的濒危土著鱼类,在长期的高原激流环境条件下,其上颌及鳍条部位皮肤结构发生了特化。为解析前臀鮡特化的调控基础,本研究对其皮肤特化组织结构进行观察,并通过其上颌、胸鳍部位特化的皮肤组织与鳍条部位非特化皮肤组织的转录组比较分析,筛选鉴定皮肤特化相关基因。结果显示,上颌、胸鳍部位特化的皮肤表皮形成密集沟回与感觉芽结构,有助于提升其吸附能力,并且在组织溯源图中产生相邻的聚类,基因表达谱高度相似,同源性高。与非特化皮肤组织的鳍条相比,上颌、胸鳍共筛选到251个共同的差异表达基因,包括146个上调基因和105个下调基因。差异表达基因的KEGG富集分析显示,显著富集通路主要为嘌呤代谢(ko00230)、TGF-β信号通路(ko04350)和钙信号通路(ko04020)。qRT-PCR 验证结果显示,adcy5基因在特化皮肤中显著上调表达(P<0.05)。综上所述,前臀鮡通过在上颌与胸鳍形成密集沟回和感觉芽结构来提升吸附能力,以适应高原激流环境。该皮肤特化过程主要受细胞突起组装与胶原代谢等关键通路的共同驱动,且adcy5基因表达的显著上调表明其在皮肤特化中发挥着潜在调控作用。

    Abstract:

    Pareuchiloglanis anteanalis is an endangered endemic species native to the upper Yangtze River.To adapt to fast-flowing highland river environment, the skin structures in its upper jaw and fin-ray regions have undergone specialization, providing strong adhesive capabilities.To elucidate the regulatory basis of this specialization, we examined the histological features of the specialized skin, performed comparative transcriptomic analyses between specialized skin (from the upper jaw and pectoral fin) and non-specialized skin (from the fin-ray region), screened and identified genes associated with skin specialization.The results showed that the specialized epidermis of the upper jaw and pectoral fin develops dense ridges, grooves and sensory bud structures, which enhance adhesion.Tissue-origin mapping showed that these specialized tissues formed adjacent clusters with highly similar gene expression profiles and strong homology.Compared to the non-specialized skin from the fin-ray region, the upper jaw and pectoral fin shared 251 differentially expressed genes (DEGs), including 146 upregulated and 105 downregulated genes.KEGG enrichment analysis indicated that the significantly enriched pathways were primarily purine metabolism (ko00230), TGF-β signaling pathway (ko04350), and calcium signaling pathway (ko04020).qRT-PCR validation confirmed that adcy5 was significantly upregulated in the specialized skin (P<0.05).In summary, P. anteanalis develops dense epidermal ridge-groove structures and sensory buds in the upper jaw and pectoral fin to enhance adhesion, adapting to the fast-flowing highland river environment.This skin specialization process is primarily driven by key pathways such as cell projection assembly and collagen metabolism, and the significant upregulation of adcy5 suggests its potential regulatory role in skin specialization.

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王聪,李顺尧,熊雪梅,杨瑞斌,高泽霞,熊皓,赵恒,万世明.前臀鮡上颌和胸鳍特化皮肤组织结构特征和基因表达调控[J].华中农业大学学报,2026,45(2):37-44

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  • 收稿日期:2025-05-30
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  • 在线发布日期: 2026-04-07
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