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中国北部湾沿岸[物种名称未给出]全基因组插入/缺失标记的开发及遗传多样性研究

Development of genome-wide insertion/deletion markers and genetic diversity in along the Beibu Gulf of China.

作者信息

Ni Yuzhu, Han Chunli, Liu Yating, Li Manman, He Weijie, Yang Jialin, Zou Jie, Peng Huijing, Wang Pengliang

机构信息

Guangxi Key Laboratory of Marine Environment Change and Disaster in Beibu Gulf, Beibu Gulf University, Qinzhou, Guangxi, China.

Guangxi Institute of Oceanology, Beihai, China.

出版信息

Front Genet. 2025 Apr 10;16:1542287. doi: 10.3389/fgene.2025.1542287. eCollection 2025.

Abstract

, a marine species of substantial medicinal and commercial importance, requires genetic enhancement to boost its production yield. However, progress in genetic research and selective breeding has been constrained by two critical limitations: the scarcity of available molecular markers and the absence of systematic genetic diversity assessments across China's Beibu Gulf. To address these challenges, our genome-wide investigation identified 168,771 InDel variations, from which we developed 25,558 primer pairs. Experimental validation showed 82 out of 85 synthesized primers (96.47%) successfully amplified target regions, with 81 demonstrating polymorphism. Sixteen high polymorphic markers were subsequently employed to analyze 153 samples collected along the Beibu Gulf coastline, revealing 142 distinct alleles. The number of alleles, effective number of alleles, observed heterozygosity, expected heterozygosity, Shannon's index and polymorphic information content ranged from 4 to 15 (mean of 8.875), 2.110 to 6.009 (mean of 4.110), 0.009 to 0.768 (mean of 0.232), 0.526 to 0.834 (mean of 0.734), 0.919 to 2.085 (mean of 1.576), and 0.440 to 0.816 (mean of 0.692), respectively. Population structure analysis revealed four genetically distinct subpopulations within the Beibu Gulf population. This delineation of population substructure provides critical insights for optimizing selective breeding programs and formulating germplasm conservation strategies in .

摘要

作为一种具有重大药用和商业价值的海洋物种,需要进行基因改良以提高其产量。然而,基因研究和选择性育种的进展受到两个关键限制:可用分子标记的稀缺以及中国北部湾地区缺乏系统的遗传多样性评估。为应对这些挑战,我们的全基因组研究鉴定出168,771个InDel变异,从中开发了25,558对引物。实验验证表明,85对合成引物中有82对(96.47%)成功扩增了目标区域,其中81对表现出多态性。随后,16个高多态性标记被用于分析沿北部湾海岸线采集的153个样本,共揭示出142个不同的等位基因。等位基因数量、有效等位基因数量、观察杂合度、期望杂合度、香农指数和多态信息含量分别为4至15(平均8.875)、2.110至6.009(平均4.110)、0.009至0.768(平均0.232)、0.526至0.834(平均0.734)、0.919至2.085(平均1.576)以及0.440至0.816(平均0.692)。群体结构分析揭示了北部湾群体内四个遗传上不同的亚群体。这种群体亚结构的划分对于优化选择性育种计划和制定种质保护策略提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a096/12020434/62c6562e1f39/fgene-16-1542287-g001.jpg

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