The Whole-Genome and Transcriptome of the Manila Clam (Ruditapes philippinarum)

花帘蛤属 生物 基因组 水产养殖 基因组学 转录组 全基因组测序 遗传学 进化生物学 渔业 基因 基因表达
作者
Seyoung Mun,Yun‐Ji Kim,Kesavan Markkandan,Wonseok Shin,Sumin Oh,Jiyoung Woo,Jongsu Yoo,Hyesuck An,Kyudong Han
出处
期刊:Genome Biology and Evolution [Oxford University Press]
卷期号:9 (6): 1487-1498 被引量:71
标识
DOI:10.1093/gbe/evx096
摘要

The manila clam, Ruditapes philippinarum, is an important bivalve species in worldwide aquaculture including Korea. The aquaculture production of R. philippinarum is under threat from diverse environmental factors including viruses, microorganisms, parasites, and water conditions with subsequently declining production. In spite of its importance as a marine resource, the reference genome of R. philippinarum for comprehensive genetic studies is largely unexplored. Here, we report the de novo whole-genome and transcriptome assembly of R. philippinarum across three different tissues (foot, gill, and adductor muscle), and provide the basic data for advanced studies in selective breeding and disease control in order to obtain successful aquaculture systems. An approximately 2.56 Gb high quality whole-genome was assembled with various library construction methods. A total of 108,034 protein coding gene models were predicted and repetitive elements including simple sequence repeats and noncoding RNAs were identified to further understanding of the genetic background of R. philippinarum for genomics-assisted breeding. Comparative analysis with the bivalve marine invertebrates uncover that the gene family related to complement C1q was enriched. Furthermore, we performed transcriptome analysis with three different tissues in order to support genome annotation and then identified 41,275 transcripts which were annotated. The R. philippinarum genome resource will markedly advance a wide range of potential genetic studies, a reference genome for comparative analysis of bivalve species and unraveling mechanisms of biological processes in molluscs. We believe that the R. philippinarum genome will serve as an initial platform for breeding better-quality clams using a genomic approach.

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