Wu Qingyang, Miao Guidong, Li Xincang, Liu Wenhua, Ikhwanuddin Mhd, Ma Hongyu
Guangdong Provincial Key Laboratory of Marine Biotechnology, Shantou University, 243 Daxue Road, Shantou, 515063, China.
STU-UMT Joint Shellfish Research Laboratory, Shantou University, Shantou, 515063, China.
Mol Biol Rep. 2018 Dec;45(6):1913-1918. doi: 10.1007/s11033-018-4339-9. Epub 2018 Sep 10.
The blue swimming crab (Portunus pelagicus) is a valuable marine fishery resource in Indo-West Pacific Ocean. So far, rare genetic resource of this species is available. In this report, the restriction-site associated DNA (RAD) approach was employed to mine the genomic information and identify molecular markers in P. pelagicus. A total of 0.82 Gbp clean data were generated from the genome of individual "X2A". De novo assembly produced 85,796 contigs with an average length of 339 bp. A total of 45,464 putative SNPs and 17,983 microsatellite loci were identified from the genomes of ten individuals. Furthermore, 31 pairs of primers were successfully designed, with 16 of them exhibiting polymorphism in a wild population. For these polymorphic loci, the expected and observed alleles per locus ranged from 1.064 to 7.314 and from 2 to 11, respectively. The expected and observed heterozygosity per locus ranged from 0.0615 to 0.819 and from 0.0626 to 1.000, respectively. Nine loci showed high informative with polymorphism information content (PIC) > 0.5. Five loci significantly deviated from Hardy-Weinberg equilibrium in the samples analyzed. No linkage disequilibrium was found among the 16 polymorphic microsatellite loci. This study provided massive genetic resource and polymorphic molecular markers that should be helpful for studies on conservation genetics, population dynamics and genetic diversity of P. pelagicus and related crab species.
青蟹(Portunus pelagicus)是印度 - 西太平洋地区一种重要的海洋渔业资源。到目前为止,该物种的稀有遗传资源仍然匮乏。在本报告中,采用了限制性位点关联DNA(RAD)方法来挖掘青蟹的基因组信息并鉴定分子标记。从个体“X2A”的基因组中总共生成了0.82 Gbp的干净数据。从头组装产生了85,796个重叠群,平均长度为339 bp。从十个个体的基因组中总共鉴定出45,464个推定的单核苷酸多态性(SNP)和17,983个微卫星位点。此外,成功设计了31对引物,其中16对在野生种群中表现出多态性。对于这些多态性位点,每个位点的预期等位基因数和观察到的等位基因数分别为1.064至7.314和2至11。每个位点的预期杂合度和观察到的杂合度分别为0.0615至0.819和0.0626至1.000。九个位点具有高信息含量,多态性信息含量(PIC)> 0.5。在分析的样本中,有五个位点显著偏离哈迪 - 温伯格平衡。在16个多态性微卫星位点之间未发现连锁不平衡。本研究提供了大量的遗传资源和多态性分子标记,这将有助于青蟹及相关蟹类物种的保护遗传学、种群动态和遗传多样性研究。