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鲑鱼属(Salmo trutta L.)破碎化种群中存在单向基因流动的证据

Evidence of unidirectional gene flow in a fragmented population of Salmo trutta L.

机构信息

Department of Migratory Fishes, Inland Fisheries Institute, Rutki 49, 83-330, Zukowo, Poland.

Department of Fisheries Resources, National Marine Fisheries Research Institute, Kołłątaja 1, 81-332, Gdynia, Poland.

出版信息

Sci Rep. 2021 Dec 3;11(1):23417. doi: 10.1038/s41598-021-02975-9.

Abstract

Selection, genetic drift, and gene flow affect genetic variation within populations and genetic differences among populations. Both drift and selection tend to decrease variation within populations and increase differences among populations, whereas gene flow increases variation within populations but leads to populations being related. In brown trout (Salmo trutta L.), the most important factor in population fragmentation is disrupted river-segment connectivity. The main goal of the study was to use genetic analysis to estimate the level of gene flow among resident and migratory brown trout in potential hybridization areas located downstream of impassable barriers in one river basin in the southern Baltic Sea region. First, spawning redds were counted in the upper river basin downstream of impassable barriers. Next, samples were collected from juveniles in spawning areas located downstream of barriers and from adults downstream and upstream of barriers. Subsequently, genetic analysis was performed using a panel of 13 microsatellite loci and the Salmo trutta 5 K SNP microarray. The genetic differentiation estimated between the resident form sampled upstream of the barriers and the anadromous specimens downstream of the barriers was high and significant. Analysis revealed that gene flow occurred between the two forms in the hybridization zone investigated and that isolated resident specimens shared spawning grounds with sea trout downstream of the barriers. The brown trout population from the river system investigated was slightly, internally diversified in the area accessible to migration. Simultaneously, the isolated part of the population was very different from that in the rest of the basin. The spawning areas of the anadromous form located downstream of the barriers were in a hybridization zone and gene flow was confirmed to be unidirectional. Although they constituted a small percentage, the genotypes typical upstream of the barriers were admixed downstream of them. The lack of genotypes noted upstream of the barriers among adult anadromous individuals might indicate that migrants of upstream origin and hybrids preferred residency.

摘要

选择、遗传漂变和基因流会影响种群内的遗传变异和种群间的遗传差异。漂变和选择往往会降低种群内的变异,增加种群间的差异,而基因流则会增加种群内的变异,但会导致种群之间存在亲缘关系。在棕鳟(Salmo trutta L.)中,影响种群破碎化的最重要因素是河流片段连通性的中断。本研究的主要目的是利用遗传分析估计位于波罗的海南部一个河流盆地内不可通行障碍物下游潜在杂交区的定居型和洄游型棕鳟之间的基因流动水平。首先,在不可通行障碍物下游的上游流域中计算产卵床的数量。其次,从位于障碍物下游的产卵区的幼鱼和位于障碍物下游和上游的成鱼中采集样本。随后,使用一组 13 个微卫星位点和 Salmo trutta 5K SNP 微阵列进行遗传分析。在取样的定居型和洄游型样本之间估计的遗传分化是高且显著的。分析表明,在所研究的杂交区,两种形式之间存在基因流动,并且隔离的定居型个体与位于障碍物下游的海鳟共享产卵场。在所研究的河流系统中,棕鳟种群在可迁徙区域内略有内部多样化。同时,种群的隔离部分与流域其他部分非常不同。位于障碍物下游的洄游型形式的产卵场位于杂交区,证实存在单向基因流。尽管它们只占很小的比例,但位于障碍物上游的典型基因型在其下游也存在混合。在位于障碍物上游的成鱼个体中没有观察到障碍物上游的基因型,这可能表明来自上游的洄游个体和杂种更喜欢定居。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25ac/8642411/992cfa1b533e/41598_2021_2975_Fig1_HTML.jpg

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