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Spatial genetic analysis of roe deer from the northern Serbian Province of Vojvodina

机译:塞尔维亚北部伏伊伏丁那省of的空间遗传分析

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Ecological and evolutionary processes responsible for genetic variation are affected by geographical distribution of samples, therefore combined analysis of genetic and spatial information can help to a better understanding of these processes. Mitochondrial DNA control region was sequenced in 103 individuals from 11 different localities crossing Northern Serbian Province of Vojvodina. Sixteen haplotypes were detected, with high haplotype diversity values (0.898 ± 0.012), that were clustered in two spatially and genetically differentiated groups named: East and West. The haplotype diversity was higher in East group, while nucleotide diversity and average number of nucleotide differences were higher in West group. Conservation plans and management strategies should always take into consideration genetic data that helps to understand spatial genetic patterns and/or effect of landscape features in dispersal between animal populations.
机译:造成基因变异的生态和进化过程受样本地理分布的影响,因此,遗传和空间信息的综合分析有助于更好地理解这些过程。线粒体DNA控制区在来自塞尔维亚北部伏伊伏丁那省的11个不同地区的103个个体中进行了测序。检测到16个单倍型,具有较高的单倍型多样性值(0.898±0.012),它们聚集在两个空间和遗传分化的组中,分别命名为East和West。东部组单体型多样性较高,而西部组单体核苷酸多样性和平均核苷酸差异数较高。保护计划和管理策略应始终考虑有助于理解空间遗传模式和/或景观特征在动物种群之间传播的影响的遗传数据。

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