Literature DB >> 32198971

Chromosome-level analysis of the Crassostrea hongkongensis genome reveals extensive duplication of immune-related genes in bivalves.

Jinxia Peng1, Qiongzhen Li1, Lian Xu2, Pinyuan Wei1, Pingping He1, Xingzhi Zhang1, Li Zhang1, Junliang Guan1, Xiaojuan Zhang3, Yong Lin1, Jianfang Gui3, Xiaohan Chen1.   

Abstract

Crassostrea hongkongensis is a popular and important native oyster species that is cultured mainly along the coast of the South China Sea. However, the absence of a reference genome has restricted genetic studies and the development of molecular breeding schemes for this species. Here, we combined PacBio and 10 × Genomics technologies to create a C. hongkongensis genome assembly, which has a size of 610 Mb, and is close to that estimated by flow cytometry (~650 Mb). Contig and scaffold N50 are 2.57 and 4.99 Mb, respectively, and BUSCO analysis indicates that 95.8% of metazoan conserved genes are completely represented. Using a high-density linkage map of its closest related species, C. gigas, a total of 521 Mb (85.4%) was anchored to 10 haploid chromosomes. Comparative genomic analyses with other molluscs reveal that several immune- or stress response-related genes extensively expanded in bivalves by tandem duplication, including C1q, Toll-like receptors and Hsp70, which are associated with their adaptation to filter-feeding and sessile lifestyles in shallow sea and/or deep-sea ecosystems. Through transcriptome sequencing, potential genes and pathways related to sex determination and gonad development were identified. The genome and transcriptome of C. hongkongensis provide valuable resources for future molecular studies, genetic improvement and genome-assisted breeding of oysters.
© 2020 John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990Crassostrea hongkongensiszzm321990; adaptation; bivalve; genome; gonad development; transcriptome

Mesh:

Year:  2020        PMID: 32198971     DOI: 10.1111/1755-0998.13157

Source DB:  PubMed          Journal:  Mol Ecol Resour        ISSN: 1755-098X            Impact factor:   7.090


  10 in total

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10.  The expanded inhibitor of apoptosis gene family in oysters possesses novel domain architectures and may play diverse roles in apoptosis following immune challenge.

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  10 in total

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