越南孔岛和富国岛两个大鳍礁乌贼种群的遗传多样性、变异和结构。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal, genetic engineering & biotechnology Pub Date : 2023-11-13 DOI:10.1186/s43141-023-00573-y
Le Ngoc Trieu, Thai Thach Bich, Nguyen Van Ket, Nguyen Van Long
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The start codon targeted polymorphism (SCoT) and CAAT box-derived polymorphism (CBDP) techniques were used to generate DNA fingerprinting data to analyze the genetic diversity, variation, and structure of the two populations in the waters surrounding Phu Quoc and Con Dao islands together with mitochondrial cytochrome C oxidase subunit I (COI) gene sequence data.</p><p><strong>Results: </strong>Con Dao population possessed a higher diversity [expected heterozygosity (H<sub>e</sub>) = 0.2254, Shannon index (I) = 0.3459, percentage of polymorphic bands (PPB) = 80.14%, nucleotide diversity (π) = 0.0336, haplotype diversity (h) = 0.910 with 16 haplotypes] than Phu Quoc population (H<sub>e</sub> = 0.1854, I = 0.2873, PPB = 70.38%, π = 0.0246, h = 0.838 with 14 haplotypes). The genetic diversity at species level in the investigated region was at level of H<sub>e</sub> = 0.2169, I = 0.3399, PPB = 86.41, π = 0.0289, and h = 0.892 with 24 haplotypes. 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引用次数: 0

摘要

背景:大鳍鱿鱼是越南渔业中具有重要经济价值的海鲜资源之一,孔岛和富国岛附近海域是该物种被积极开发的两个主要渔场。采用起始密码子靶向多态性(SCoT)和CAAT盒源多态性(CBDP)技术生成DNA指纹图谱,结合线粒体细胞色素C氧化酶亚基I (COI)基因序列数据,分析了富国岛和孔岛周围海域两个种群的遗传多样性、变异和结构。结果:孔道群体的预期杂合度(He) = 0.2254, Shannon指数(I) = 0.3459,多态性频带百分比(PPB) = 80.14%,核苷酸多样性(π) = 0.0336,单倍型多样性(h) = 0.910,有16个单倍型)高于富国群体(He = 0.1854, I = 0.2873, PPB = 70.38%, π = 0.0246, h = 0.838,有14个单倍型)。研究区共有24个单倍型,物种水平上的遗传多样性水平为He = 0.2169, I = 0.3399, PPB = 86.41, π = 0.0289, h = 0.892。DNA指纹图谱分析表明,孔岛群体个体间的遗传相似性系数平均为0.7977,低于富国群体的0.8316。根据线粒体COI数据,孔岛种群个体间的成对遗传距离(平均0.0361)高于富国种群(平均0.0263)。基于DNA指纹图谱和COI基因序列数据,两个调查群体间的基因分化(GST)分别为0.0316和0.0310,遗传距离分别为0.0573和0.0213,群体间的基因流量分别为8.2209和11.4700迁移/代。两个居群的个体内遗传变异在调查区域种水平上的总遗传变异中起关键作用。结论:调查区域大鳍礁乌贼种群中,孔岛种群的遗传多样性高于富国种群,两者之间存在着低至中等程度的遗传分化,并通过基因流进行遗传交换。DNA指纹图谱较好地揭示了两个被调查群体的遗传分化,而线粒体COI基因序列数据可以显示被调查个体与东南亚海洋地区其他个体的系统发育关系。在此基础上,提出了对该物种的保护和可持续开发的渔业管理策略。
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Genetic diversity, variation, and structure of two populations of bigfin reef squid (Sepioteuthis lessoniana d'Orbigny) in Con Dao and Phu Quoc islands, Vietnam.

Background: Bigfin squid is one of the economically important seafood resources in Vietnam's fisheries and the waters around Con Dao and Phu Quoc islands are two major fishing grounds where this species has been actively exploited. The start codon targeted polymorphism (SCoT) and CAAT box-derived polymorphism (CBDP) techniques were used to generate DNA fingerprinting data to analyze the genetic diversity, variation, and structure of the two populations in the waters surrounding Phu Quoc and Con Dao islands together with mitochondrial cytochrome C oxidase subunit I (COI) gene sequence data.

Results: Con Dao population possessed a higher diversity [expected heterozygosity (He) = 0.2254, Shannon index (I) = 0.3459, percentage of polymorphic bands (PPB) = 80.14%, nucleotide diversity (π) = 0.0336, haplotype diversity (h) = 0.910 with 16 haplotypes] than Phu Quoc population (He = 0.1854, I = 0.2873, PPB = 70.38%, π = 0.0246, h = 0.838 with 14 haplotypes). The genetic diversity at species level in the investigated region was at level of He = 0.2169, I = 0.3399, PPB = 86.41, π = 0.0289, and h = 0.892 with 24 haplotypes. Based on DNA fingerprinting data, the pairwise genetic similarity coefficients among individuals of the Con Dao population were lower (average of 0.7977) than the Phu Quoc population (average of 0.8316). Based on mitochondrial COI data, the pairwise genetic distances among individuals of the Con Dao population were higher (average of 0.0361) than the Phu Quoc population (average of 0.0263). Gene differentiation (GST) between two investigated populations was 0.0316 and 0.0310 leading to the genetic distance was 0.0573 and 0.0213 and the gene flow between them was Nm = 8.2209 and 11.4700 migrants per generation among populations based on DNA fingerprinting and based on COI gene sequence data, respectively. Genetic variation within individuals of both populations (WP) played the key role in total genetic variation at species level in surveyed region.

Conclusions: For the bigfin reef squid species in the surveyed region, the Con Dao population had the higher genetic diversity than the Phu Quoc population, between them existed a low to moderate genetic differentiation and a genetic exchange via gene flow. The DNA fingerprinting data better revealed the genetic differentiation between the two surveyed populations while the mitochondrial COI gene sequence data could show the phylogenetic relationship among the surveyed individuals and the other from the sea regions in Southeast Asia. Based on the results obtained, fisheries management strategies are suggested toward the conservation and sustainable exploitation of this species.

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