Moving to mate? Migration strategy does not predict genetic structure or diversity in bats (Chiroptera)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-22 DOI:10.1093/biolinnean/blae068
Alicia M Korpach, Evelien de Greef, Levi Newediuk, Chloé Schmidt, Colin J Garroway, Matt J Thorstensen
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Abstract

How, when, and where animals move during mating periods directs gene-flow patterns across landscapes. Traits associated with movement, such as movement ability and migratory behaviour, are sometimes correlated with population genetic structure, but this relationship depends on where and when mating occurs relative to annual movements. With their wide diversity in behaviours and life-history strategies, bats provide a testing ground for hypotheses about population structure related to migration and mating. We used a global sample of microsatellite data (N = 233 sampling locations from 17 bat species) associated with published studies to examine links between genetic variation and short-distance, long-distance, or non-migratory strategies that also relate to varied mating strategies. The genetic measures we tested were population-specific differentiation, gene diversity, and allelic richness. Using Bayesian models that accounted for phylogenetic distances among species and spatial autocorrelation, we identified no correlations between migration strategy and genetic variation. Our results suggest that hypotheses about genetic structure being mediated by migration might not hold, in general, for bat species. We discuss the need for continued research into the complex association of ecological, biogeographical, and behavioural factors that facilitate gene flow among populations, especially in species with diverse movement patterns.
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迁徙是为了交配?迁徙策略无法预测蝙蝠(翼手目)的遗传结构或多样性
动物在交配期的移动方式、时间和地点引导着整个地貌的基因流动模式。与运动有关的特征,如运动能力和迁徙行为,有时与种群遗传结构相关,但这种关系取决于交配发生的地点和时间与年度运动的关系。蝙蝠的行为和生活史策略具有广泛的多样性,这为与迁徙和交配相关的种群结构假设提供了一个试验场。我们使用了与已发表研究相关的全球微卫星数据样本(N = 233 个采样点,来自 17 个蝙蝠物种),以检验遗传变异与短距离、长距离或非迁徙策略之间的联系,这些策略也与不同的交配策略有关。我们测试的遗传指标包括种群特异性分化、基因多样性和等位基因丰富度。利用贝叶斯模型,考虑到物种间的系统发育距离和空间自相关性,我们发现迁移策略与遗传变异之间没有相关性。我们的研究结果表明,关于遗传结构受迁徙影响的假设在蝙蝠物种中可能普遍不成立。我们讨论了继续研究促进种群间基因流动的生态、生物地理和行为因素的复杂关联的必要性,特别是在具有不同迁移模式的物种中。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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