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德克萨斯州圣安东尼奥市圣安东尼奥河高度渠化区域西部食蚊鱼(Gambusia affinis)的种群遗传结构

Population genetic structure of the western mosquitofish, Gambusia affinis, in a highly channelized portion of the San Antonio River in San Antonio, TX.

作者信息

Roark S A, Andrews J F, Guttman S I

机构信息

Department of Zoology, Miami University, Oxford, OH 45056, USA.

出版信息

Ecotoxicology. 2001 Aug;10(4):223-7. doi: 10.1023/a:1016669427624.

DOI:10.1023/a:1016669427624
PMID:11501432
Abstract

Population genetic assessments were performed on populations of the mosquitofish, Gambusia affinis, sampled at seven sites along a 10 km reach of the upper San Antonio River in San Antonio, TX. Mosquitofish populations were sampled from the downtown area, known as the "Riverwalk", where the river is concrete lined, deeply pooled, and receives heavy tour boat traffic. Populations were also sampled from sites upstream and downstream from the Riverwalk. Allozyme electrophoresis was performed on approximately 50 individuals from each site. Five of 12 loci surveyed were polymorphic (95% criterion). Exact tests over all loci for all populations indicated that allele frequencies differed significantly among sites. Allele frequencies of the upstream population were significantly different from the Riverwalk populations. Differences resulted primarily from significant decreases in frequencies of rare alleles at MDH-2* and two GPI* loci in the downtown area. Mean dissolved oxygen measurements were also significantly lower at Riverwalk sites. These results suggest that selective forces such as non-point source runoff or low dissolved oxygen, perhaps in combination with limited migration due to numerous dams, have reduced genetic diversity of populations in the downtown area.

摘要

对食蚊鱼(盖氏食蚊鱼)种群进行了群体遗传学评估,这些食蚊鱼样本采自德克萨斯州圣安东尼奥市圣安东尼奥河上游10公里河段沿线的7个地点。食蚊鱼种群样本采自市中心区域,即所谓的“河畔步道”,那里的河道是混凝土衬砌的,有深潭,且游船往来频繁。种群样本还采自河畔步道上游和下游的地点。对每个地点约50个个体进行了等位酶电泳分析。在检测的12个基因座中,有5个呈多态性(95%标准)。对所有种群的所有基因座进行的精确检验表明,各地点的等位基因频率存在显著差异。上游种群的等位基因频率与河畔步道种群的显著不同。差异主要源于市中心区域MDH - 2和两个GPI基因座稀有等位基因频率的显著下降。河畔步道各地点的平均溶解氧测量值也显著较低。这些结果表明,诸如非点源径流或低溶解氧等选择压力,可能与众多水坝导致的有限迁移相结合,降低了市中心区域种群的遗传多样性。

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