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印度半岛特有鲶鱼——近危物种杜氏胡鲶(瓦朗谢讷,1840年)的基因组测序与组装

Genome sequencing and assembly of near threatened Clarias dussumieri (Valenciennes, 1840), an endemic catfish of peninsular India.

作者信息

Mohindra Vindhya, Chowdhury Labrechai Mog, Charan Ravi, Basheer Valaparambil Saidumohammad, Jena Joykrushna

机构信息

ICAR-National Bureau of Fish Genetic Resources, Canal Ring Road, Dilkusha, Lucknow, 226002, Uttar Pradesh, India.

Centre for Peninsular Aquatic Genetic Resources, ICAR-National Bureau of Fish Genetic Resources, CMFRI Campus, Kochi, 682018, Kerala, India.

出版信息

Sci Data. 2024 Dec 19;11(1):1406. doi: 10.1038/s41597-024-04272-2.

Abstract

Clarias dussumieri, a near threatened freshwater catfish, is endemic to peninsular India and has aquaculture potential. Unlike its sister species, C. magur, the male fish needs not be sacrificed during captive breeding. Thus, the generation of genomic information of this species becomes significant for effective genome mining through the bioprospecting of novel genes for important production traits. In this study, the genome assembly was undertaken to address this gap by generating high quality chromosome level genome assembly using PacBio long reads and Hi-C scaffolding. The total assembled genome was found to be 918.72 Mb in size and showed 95.23% completeness. Its characterization exhibited 41.46% repeats, 1,174,725 SSRs and 25,369 predicted genes with functional annotations. The Single copy orthologs analysis placed C. dussumieri in a distinct position with C. magur. The comprehensive genomic information offers resources for comparative genomics with other Clarias species for improvement of economic traits.

摘要

杜氏胡鲶是一种近危淡水鲶鱼,原产于印度半岛,具有水产养殖潜力。与它的姐妹物种——胡子鲶不同,在圈养繁殖过程中,雄性杜氏胡鲶无需被牺牲。因此,通过对重要生产性状的新基因进行生物勘探来有效挖掘基因组,该物种基因组信息的生成就变得意义重大。在本研究中,通过使用PacBio长读长和Hi-C支架构建高质量染色体水平的基因组组装,以填补这一空白。组装后的基因组总大小为918.72 Mb,完整性为95.23%。其特征显示有41.46%的重复序列、1,174,725个简单序列重复(SSR)和25,369个具有功能注释的预测基因。单拷贝直系同源基因分析将杜氏胡鲶与胡子鲶置于不同的位置。这些全面的基因组信息为与其他胡鲶物种进行比较基因组学研究以改善经济性状提供了资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8747/11659475/314e3e83b727/41597_2024_4272_Fig1_HTML.jpg

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