Genome survey and high-density genetic map construction provide genomic and genetic resources for the Pacific White Shrimp Litopenaeus vannamei

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作者
Yang Yu
Xiaojun Zhang
Jianbo Yuan
Fuhua Li
Xiaohan Chen
Yongzhen Zhao
Long Huang
Hongkun Zheng
Jianhai Xiang
机构
[1] Key Laboratory of Experimental Marine Biology,
[2] Institute of Oceanology,undefined
[3] Chinese Academy of Sciences,undefined
[4] Guangxi Key Laboratory of Aquatic Genetic Breeding and Healthy Aquaculture,undefined
[5] Guangxi Academy of Fishery Sciences,undefined
[6] Biomarker Technologies Corporation,undefined
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The Pacific white shrimp Litopenaeus vannamei is the dominant crustacean species in global seafood mariculture. Understanding the genome and genetic architecture is useful for deciphering complex traits and accelerating the breeding program in shrimp. In this study, a genome survey was conducted and a high-density linkage map was constructed using a next-generation sequencing approach. The genome survey was used to identify preliminary genome characteristics and to generate a rough reference for linkage map construction. De novo SNP discovery resulted in 25,140 polymorphic markers. A total of 6,359 high-quality markers were selected for linkage map construction based on marker coverage among individuals and read depths. For the linkage map, a total of 6,146 markers spanning 4,271.43 cM were mapped to 44 sex-averaged linkage groups, with an average marker distance of 0.7 cM. An integration analysis linked 5,885 genome scaffolds and 1,504 BAC clones to the linkage map. Based on the high-density linkage map, several QTLs for body weight and body length were detected. This high-density genetic linkage map reveals basic genomic architecture and will be useful for comparative genomics research, genome assembly and genetic improvement of L. vannamei and other penaeid shrimp species.
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