研究论文

基于全基因组重测序的辽宁海域东亚江豚遗传特性研究

  • 高祥刚 ,
  • 王震 ,
  • 鹿志创 ,
  • 杜静 ,
  • 邢衍阔 ,
  • 韩家波 ,
  • 田甲申
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  • 1 辽宁省海洋水产科学研究院, 大连 116023;
    2 大连市濒危海洋哺乳动物保护生物学重点实验室, 大连 116023
高祥刚(1980-),男,研究员,主要从事水生动物种质资源保护与利用研究.

收稿日期: 2025-03-24

  修回日期: 2025-08-13

  网络出版日期: 2025-08-13

基金资助

中国海油海洋环境与生态保护公益基金(CF-MEEC/TR/2024-3)

Genetic characteristics of Neophocaena sunameri in Liaoning coastal waters based on whole genome resequencing

  • GAO Xianggang ,
  • WANG Zhen ,
  • LU Zhichuang ,
  • DU Jing ,
  • XING Yankuo ,
  • HAN Jiabo ,
  • TIAN Jiashen
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  • 1 Liaoning Ocean and Fisheries Science Research Institute, Dalian 116023, China;
    2 Dalian Key Laboratory of Conservation Biology for Endangered Marine Mammals, Dalian 116023, China

Received date: 2025-03-24

  Revised date: 2025-08-13

  Online published: 2025-08-13

摘要

为更好地了解分布于辽宁海域的东亚江豚(Neophocaena sunameri)群体结构和遗传差异,为物种保护提供科学依据,本研究采集来源于辽宁海域的47头东亚江豚北方群体(NSN)的肌肉组织用于全基因组重测序,测序深度为10 ×。随后,从NCBI数据库下载来源于长江口临近海域的东亚江豚南方群体(NSS)、来源于长江流域的长江江豚(N.asiaeorientalis)群体(NA)及来源于福建等海域的印太江豚(N.phocaenoides)群体(NP)的江豚序列数据。使用上述4个群体的测序数据进行遗传多样性分析、遗传结构分析、主成分分析和系统进化树构建,以及遗传分化指数、基因流和遗传距离分析。结果显示,辽宁海域东亚江豚的观测杂合度(Ho)和期望杂合度(He)分别为0.312 3和0.321 0,是江豚4个群体中杂合度较高的群体,说明分布于我国辽宁海域的江豚遗传多样性不低,属于一个大而稳定的种群。系统发育树分析、主成分分析结果和遗传结构分析较一致,皆能区分不同群体,总体上4个群体可以分为3个类群:类群Ⅰ,印太江豚群体(NP);类群Ⅱ,长江江豚群体(NA);类群Ⅲ,东亚江豚群体,包括东亚江豚北方群体(NSN)与东亚江豚南方群体(NSS)。NSN与NP的遗传分化指数为0.178 0,与NA的遗传分化指数为0.047 8;NSN与NSS的遗传分化指数最小(0.023 1),遗传距离最小(0.031 9),基因流最大(10.554 5)。综上所述,分布于辽宁海域的东亚江豚遗传多样性较好,与长江口邻近海域的东亚江豚南方群体同属东亚江豚,基因交流充分,遗传分化较低,可以作为一个管理单位进行保护。

本文引用格式

高祥刚 , 王震 , 鹿志创 , 杜静 , 邢衍阔 , 韩家波 , 田甲申 . 基于全基因组重测序的辽宁海域东亚江豚遗传特性研究[J]. 兽类学报, 2026 , 46(4) : 575 -585 . DOI: 10.16829/j.slxb.151080

Abstract

In order to better understand the population structure and genetic differences of the East Asian finless porpoise (Neophocaena sunameri) distributed in Liaoning coastal waters, and to provide scientific basis for species conservation, this study collected muscle tissues from 47 individuals of the northern population of N. sunameri (NSN) from Liaoning coastal waters for whole genome resequencing, with a sequencing depth of 10×. Subsequently, the sequence data of finless porpoises from the southern population of N. sunameri (NSS) from the Yangtze River estuary, the population of N. asiaeorientalis (NA) from the Yangtze River basin, and the population of N. phocaenoides (NP) from the Fujian sea area were downloaded from the NCBI database. Genetic diversity analysis, genetic structure analysis, principal component analysis, phylogenetic tree construction, genetic differentiation index, gene flow, and genetic distance analysis were conducted using sequencing data from the four populations. The observed heterozygosity (Ho) and expected heterozygosity (He) of the population in Liaoning coastal waters were 0. 312 3 and 0. 321 0, respectively, indicating that the genetic diversity of the finless porpoise distributed in the Liaoning oastal waters is not low and represents a large and stable population. The results of phylogenetic tree analysis, principal component analysis, and genetic structure analysis were consistent, all of which can distinguish different populations. Overall, the four populations can be divided into three groups. Group I includes NP population, Group II represents NA population and Group III represents the East Asian finless porpoise population, including the MSN and NSS populations. The genetic differentiation index between NSN and NP was 0. 178 0, the genetic differentiation index between NSN and NA was 0. 047 8, the genetic differentiation index between NSN and NSS was 0. 023 1, the genetic distance was 0. 031 9, and the gene flow was 10. 554 5. In summary, East Asian finless porpoises distributed in the Liaoning coastal waters exhibit relatively high genetic diversity. They belong to the same species as NSS, with sufficient gene exchange and low genetic differentiation, and can be protected as a management unit.

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