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Hybridization and restricted gene flow between native and introduced stocks of Alpine whitefish (Coregonus sp.) across multiple environments

机译:跨多种环境的高山白鲑(Coregonus sp。)原生种群和引进种群之间的杂交和有限的基因流

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摘要

Translocations of Baltic whitefish (Coregonus sp.) into Austrian Alpine lakes have created ‘artificial hybrid zones’, threatening the genetic integrity of native lineages. We evaluate the genetic structure of Coregonus in Austrian lakes and characterize hybridization and introgression between native and introduced lineages. Fifteen populations (N= 747) were assessed for allelic variation at eight microsatellite loci and a reduced set (N= 253) for variation across two mtDNA genes (cyt b and NADH-3). Bayesian approaches were used to estimate individual admixture proportions (q-values) and classify genotypes as native, introduced or hybrids. q-value distributions varied among populations highlighting differential hybridization and introgression histories. Many lakes revealed a clear distinction between native and introduced genotypes despite hybridization, whereas some locations revealed hybrid swarms. Genetic structure among lakes was congruent with morphological divergence and novelty raising speculation of multiple taxa, including a population south of the Alps, outside the putative native range of Coregonus. Although statistically congruent with inferences based on nuclear markers, mitochondrial haplotype data was not diagnostic with respect to native and non-native lineages, supporting that the Alpine region was colonized post-glacially by an admixture of mtDNA lineages, which coalesce >1 Ma. Mechanisms promoting or eroding lineage isolation are discussed, as well as a high potential to conserve native Alpine lineages despite the extensive historical use of introduced Baltic stocks.
机译:将波罗的海白鲑(Coregonus sp。)转移到奥地利高山湖泊中已经形成了“人工杂交区”,从而威胁了本地血统的遗传完整性。我们评估了奥地利湖泊中Coregonus的遗传结构,并表征了本地血统和引进血统之间的杂交和渗入。评估了十五个种群(N = 747)在八个微卫星基因座的等位基因变异,以及在两个mtDNA基因(cyt b和NADH-3)之间变异的简化集(N = 253)。贝叶斯方法用于估计各个混合物的比例(q值)并将基因型分类为天然,引入或杂交。 q值分布在人群之间变化,突出了差异杂交和渗入历史。尽管发生了杂交,但许多湖泊仍显示出原生基因型和引进基因型之间的明显区别,而某些地区则显示出杂交群。湖泊之间的遗传结构与形态多样性和新奇的推测相吻合,推测了多个分类单元,包括在阿尔卑斯山脉以南的人口,在假定的本土范围之外。尽管在统计学上与基于核标记的推论一致,但线粒体单倍型数据不能针对天然和非天然谱系进行诊断,这支持了冰川后通过融合> 1 Ma的mtDNA谱系的混合物来定居高山地区。讨论了促进或侵蚀世袭隔离的机制,以及尽管在历史上广泛使用了波罗的海种群,但仍具有保存本地高山世袭的巨大潜力。

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