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基于全基因组重测序的拟鳄龟遗传多样性及遗传结构分析

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[目的]从全基因组水平开展拟鳄龟养殖群体遗传多样性及群体遗传结构分析,评估养殖拟鳄龟的种质资源状况,为拟鳄龟种质资源的开发与利用及促进其养殖产业健康发展提供参考依据。[方法]分别从肇庆高要市活道镇荣杰龟鳖专业合作社(RJ)、肇庆市滋源龟鳖养殖专业合作社(ZY)和肇庆市四会肇庆盛科农业发展有限公司(SK)各采集30只拟鳄龟,通过对3个拟鳄龟养殖群体90个样本进行基因组重测序,基于全基因组单核苷酸多态性(SNP)进行系统发育进化树分析和主成分分析,从基因组水平评估养殖拟鳄龟遗传多样性及群体遗传结构。[结果]基于形态性状比例参数的聚类分析结果显示,3个拟鳄龟养殖群体分为两大分支,SK群体与RJ群体先聚类在一起,然后与ZY群体聚合。在3个拟鳄龟养殖群体中共检测出708112个SNPs位点,过滤筛选后获得220950个高质量纯合SNPs位点和440435个高质量杂合SNPs位点。3个拟鳄龟养殖群体的单核苷酸密度均为0。01 SNP/kb,核苷酸多样性(π)为0。00166~0。00171,多态信息含量(PIC)为0。151~0。154,观测杂合度(Ho)为0。171~0。205,近交系数(FHOM)分布在0。0571~0。1110;不同群体间的遗传分化系数(Fst)在0。0056~0。0138,基因流(Nm)在-0。2486~-0。2466。基于全基因组SNP构建的系统发育进化树显示,3个拟鳄龟养殖群体整体上可分为两大分支,第一分支主要由RJ群体和SK群体组成,第二分支主要由ZY群体组成,与形态聚类分析结果基本一致。主成分分析也发现,3个拟鳄龟养殖群体间的相互距离较近,且存在相互交叉现象。[结论]3个拟鳄龟养殖群体遗传多态性较低,遗传背景不够丰富,群体间遗传分化程度低,推测具有相似的遗传背景,来源于同一引种群体。因此,在今后的育种工作亟需引入新的种质资源,为种质创新提供更丰富的遗传基础。
Genetic diversity and structural analysis of Chelydra serpentina based on whole genome resequencing
[Objective]The genetic diversity and genetic structure of the breeding population of Chelydra serpentina were analyzed from the whole genome level,and the germplasm resources of C.serpentina were evaluated,so as to pro-vide reference for the development and utilization of germplasm resources of C.serpentina and promote the healthy deve-lopment of the breeding industry of C.serpentina.[Method]A total of 30 C.serpentina were collected from Rongjie Turtle Breeding Professional Cooperative(RJ)in Huandao Town,Gaoyao City,Zhaoqing City,Ziyuan Turtle Breeding Profes-sional Cooperative in Zhaoqing City(ZY)and Sihui Zhaoqing Shengke Agricultural Development Co.,Ltd.in Zhaoqing City(SK)respectively,and 90 samples from 3 C.serpentina groups were resequenced.Phylogenetic tree analysis and principal component analysis were conducted based on whole genome single nucleotide polymorphisms(SNP)to evalua-te the genetic diversity and population genetic structure of cultured C.serpentina at the genome level.[Result]The re-sults of cluster analysis based on morphological trait proportion parameters showed that the 3 groups were divided into 2 branches,SK group and RJ group were first clustered together,and then aggregated with ZY group.A total of 708112 SNPs loci were detected in the 3 groups,and 220950 high quality homozygous SNPs loci and 440435 high quality hetero-zygous SNPs loci were obtained after filtering.The single nucleotide density,single nucleotide polymorphism(π),poly-morphism information content(PIC)and observed heterozygosity(Ho)of the 3 groups of C.serpentina were 0.01 SNP/kb,0.00166-0.00171,0.151-0.154 and 0.171-0.205.The inbreeding coefficient(FHOM)ranged from 0.0571 to 0.1110.The coefficient of genetic differentiation(Fst)and gene flow(Nm)ranged from 0.0056 to 0.0138 and from-0.2486 to-0.2466.The phylogenetic tree constructed on the basis of the whole genome SNP showed that the 3 groups of C.serpen-tina could be divided into 2 branches as a whole.The first branch was mainly composed of RJ group and SK group,and the second branch was mainly composed of ZY group,which was basically consistent with the results of morphological cluster analysis.The principal component analysis also found that the distance between the 3 groups of C.serpentina was relatively close,and there was cross-over phenomenon.[Conclusion]The genetic polymorphism 3 groups of C.serpen-tina is low,the genetic background is not rich enough,and the degree of genetic differentiation between the groups is low,so it is presumed that they had similar genetic background and come from the same introduced population.There-fore,it is urgent to introduce new germplasm resources in future breeding work to provide a richer genetic basis for germ-plasm innovation.

Chelydra serpentinawhole genome resequencinggenetic diversitygenetic structureSNP locus

杨华琳、李伟、纪利芹、朱新平、洪孝友

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浙江海洋大学水产学院,浙江 舟山 316022

中国水产科学研究院珠江水产研究所/农业农村部热带亚热带水产资源利用与养殖重点实验室,广东 广州 510380

拟鳄龟 全基因组重测序 遗传多样性 遗传结构 SNP位点

2024

南方农业学报
广西壮族自治区农业科学院

南方农业学报

CSTPCD北大核心
影响因子:0.83
ISSN:2095-1191
年,卷(期):2024.55(11)