Suppr超能文献

基于转录本测序(Iso-Seq)构建典型的呼吸空气鱼类非洲尖齿胡鲶(Clarias gariepinus)全长转录组资源

Construction of a Full-Length transcriptome resource for the African sharptooth catfish (Clarias gariepinus), a prototypical air-breathing Fish, based on isoform sequencing (Iso-Seq).

机构信息

Jiangsu Key Laboratory of Phylogenomics and Comparative Genomics, School of Life Sciences, Jiangsu Normal University, Xuzhou 221000, China.

Department of Infectious Diseases and Public Health, Jockey Club College of Veterinary Medicine and Life Sciences, City University of Hong Kong, Kowloon Tong, Hong Kong, China.

出版信息

Gene. 2024 Dec 20;930:148802. doi: 10.1016/j.gene.2024.148802. Epub 2024 Jul 31.

Abstract

The African sharptooth catfish (Clarias gariepinus) assumes significance in aquaculture, given its role as a farmed freshwater species with modified gill structures functioning as an air-breathing organ (ABO). To provide a scientific basis for further elucidating the air-breathing formation mechanism and deeply utilizing the genetic resources of Clarias gariepinus, we utilized the PacBio sequencing platform to acquire a comprehensive full-length transcriptome from five juvenile developmental stages and various adult tissues, including the ABO, gills, liver, skin, and muscle. We generated 25,766,688 high-quality reads, with an average length of 2,006 bp and an N50 of 2,241 bp. Following rigorous quality control, 34,890 (97.7 %) of the high-quality isoforms were mapped to the reference genome for gene and transcript annotation, yielding 387 novel isoforms and 14,614 new isoforms. Additionally, we identified 28,582 open reading frames, 48 SNPs, 5,464 variable splices, and 6,141 variable polyadenylation sites, along with 475 long non-coding RNAs. Many DEGs were involved with low oxygen GO terms and KEGG pathways, such as response to stimulus, biological regulation and catalytic activities. Furthermore, it was found that transcription factors such as zf-C2H2, Homeobox, bHLH, and MYB could underpin the African sharptooth catfish's developmental plasticity and its capacity to adapt its morphology and function to its environment. Through the comprehensive analysis of its genomic characteristics, it was found that the African sharptooth catfish has developed a series of unique respiratory adaptive mechanisms during the evolutionary process, These results not only advances the understanding of genetic adaptations to hypoxia in Clarias fish but also provides a valuable framework for future studies aimed at improving aquaculture practices,besides provide important references and inspirations for the evolution of aquatic organisms.

摘要

非洲尖齿胡鲶(Clarias gariepinus)作为一种经过改良的具有呼吸空气器官(ABO)的养殖淡水物种,在水产养殖中具有重要意义。为了为进一步阐明呼吸空气的形成机制和深入利用非洲尖齿胡鲶的遗传资源提供科学依据,我们利用 PacBio 测序平台从五个幼鱼发育阶段和各种成体组织(包括 ABO、鳃、肝、皮肤和肌肉)中获取了全面的全长转录组。我们生成了 25766688 条高质量reads,平均长度为 2006bp,N50 为 2241bp。经过严格的质量控制,34890(97.7%)条高质量的异构体被映射到参考基因组上进行基因和转录本注释,产生了 387 个新的异构体和 14614 个新的异构体。此外,我们鉴定了 28582 个开放阅读框、48 个 SNPs、5464 个可变剪接和 6141 个可变多聚腺苷酸化位点,以及 475 个长非编码 RNA。许多差异表达基因(DEGs)参与了低氧 GO 术语和 KEGG 途径,如对刺激的反应、生物调节和催化活性。此外,发现转录因子如 zf-C2H2、Homeobox、bHLH 和 MYB 可以支撑非洲尖齿胡鲶的发育可塑性及其形态和功能适应环境的能力。通过对其基因组特征的综合分析,发现非洲尖齿胡鲶在进化过程中发展了一系列独特的呼吸适应机制。这些结果不仅推进了对 Clarias 鱼类低氧遗传适应的理解,而且为未来旨在改善水产养殖实践的研究提供了有价值的框架,同时为水生生物的进化提供了重要的参考和启示。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验