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应用于水生自然种群保护与开发的单核苷酸多态性标记

Single Nucleotide Polymorphism Markers with Applications in Conservation and Exploitation of Aquatic Natural Populations.

作者信息

Wenne Roman

机构信息

Institute of Oceanology, Polish Academy of Sciences, Powstańców Warszawy 55, 81-712 Sopot, Poland.

出版信息

Animals (Basel). 2023 Mar 18;13(6):1089. doi: 10.3390/ani13061089.

Abstract

An increasing number of aquatic species have been studied for genetic polymorphism, which extends the knowledge on their natural populations. One type of high-resolution molecular marker suitable for studying the genetic diversity of large numbers of individuals is single nucleotide polymorphism (SNP). This review is an attempt to show the range of applications of SNPs in studies of natural populations of aquatic animals. In recent years, SNPs have been used in the genetic analysis of wild and enhanced fish and invertebrate populations in natural habitats, exploited migratory species in the oceans, migratory anadromous and freshwater fish and demersal species. SNPs have been used for the identification of species and their hybrids in natural environments, to study the genetic consequences of restocking for conservation purposes and the negative effects on natural populations of fish accidentally escaping from culture. SNPs are very useful for identifying genomic regions correlated with phenotypic variants relevant for wildlife protection, management and aquaculture. Experimental size-selective catches of populations created in tanks have caused evolutionary changes in life cycles of fishes. The research results have been discussed to clarify whether the fish populations in natural conditions can undergo changes due to selective harvesting targeting the fastest-growing fishes.

摘要

越来越多的水生物种已被用于遗传多态性研究,这拓展了我们对其自然种群的认识。一种适用于研究大量个体遗传多样性的高分辨率分子标记是单核苷酸多态性(SNP)。本综述旨在展示SNP在水生动物自然种群研究中的应用范围。近年来,SNP已被用于自然栖息地野生和增殖鱼类及无脊椎动物种群的遗传分析、海洋中洄游物种、溯河洄游和淡水鱼类以及底栖物种的研究。SNP已被用于在自然环境中识别物种及其杂种,研究出于保护目的进行放流的遗传后果以及养殖鱼类意外逃逸对自然种群的负面影响。SNP对于识别与野生动物保护、管理及水产养殖相关的表型变异相关的基因组区域非常有用。在水箱中对种群进行的实验性大小选择性捕捞已导致鱼类生命周期的进化变化。已对研究结果进行了讨论,以阐明在自然条件下鱼类种群是否会因针对生长最快的鱼类进行选择性捕捞而发生变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a76/10044284/60ad52ca43f8/animals-13-01089-g001.jpg

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