Development of novel microsatellite markers for aquaculture important species, milkfish (Chanos chanos Forsskål, 1775) with implications of conservation and management

IF 0.9 4区 环境科学与生态学 Q4 BIODIVERSITY CONSERVATION Conservation Genetics Resources Pub Date : 2024-04-30 DOI:10.1007/s12686-024-01354-6
Divya Merin Jose, Divya Prema Radhakrishnan, Kuldeep Kumar Lal
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Abstract

A total of 20 polymorphic microsatellites were developed and characterized for a potential aquaculture species, Chanos chanos, utilizing the comprehensive whole genome data of C. chanos obtained from the GenBank database (accession number: LR697106). Using the MIcroSAtellite (MISA) tool, potential microsatellite motifs were identified in the assembled contigs and unigenes and with the PRIMER 3 input software (Version 4.1.0), new primers were developed. The number of alleles per locus in C. chanos varied from 9 to 16, with observed heterozygosities ranging from 0.710 to 0.926, while the expected heterozygosities were within the range of 0.720 to 0.902. Among the 20 microsatellite loci, the majority exhibited PIC values > 0.75. Validation of these microsatellite markers proved that these markers can be used as a significant tool for analysing genetic differentiation as well genetic relationships among C. chanos.

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为重要水产养殖物种虱目鱼(Chanos chanos Forsskål,1775 年)开发新型微卫星标记及其对保护和管理的影响
利用从GenBank数据库(登录号:LR697106)获得的C. chanos全基因组综合数据,为潜在的水产养殖物种Chanos chanos开发并鉴定了20个多态微卫星。利用 MIcroSAtellite(MISA)工具,在组装的等位基因和单基因中确定了潜在的微卫星主题,并利用 PRIMER 3 输入软件(4.1.0 版)开发了新的引物。C. chanos每个位点的等位基因数从9个到16个不等,观察到的杂合度从0.710到0.926不等,而预期杂合度在0.720到0.902之间。在 20 个微卫星位点中,大多数位点的 PIC 值为 0.75。对这些微卫星标记的验证证明,这些标记可作为分析蟾蜍遗传分化和遗传关系的重要工具。
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来源期刊
Conservation Genetics Resources
Conservation Genetics Resources BIODIVERSITY CONSERVATION-GENETICS & HEREDITY
CiteScore
2.90
自引率
9.10%
发文量
42
审稿时长
3-6 weeks
期刊介绍: Conservation Genetics Resources promotes the conservation of genetic diversity and advances the study of conservation genetics by providing rapid publication of technical papers and reviews on methodological innovations or improvements, computer programs, and genomic resources, as well as on the practical application of these resources towards the development of effective conservation policy and practice.
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