首页> 外文OA文献 >The genetic structure of endangered populations in the Cranberry Fritillary, Boloria aquilonaris (Lepidoptera, Nymphalidae): RAPDs vs allozymes.
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The genetic structure of endangered populations in the Cranberry Fritillary, Boloria aquilonaris (Lepidoptera, Nymphalidae): RAPDs vs allozymes.

机译:蔓越莓贝母,Boloria aquilonaris(鳞翅目,Nymphalidae)中濒危种群的遗传结构:RAPD与同工酶。

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摘要

The genetic population structure of the Cranberry Fritillary Boloria aquilonaris was studied using both RAPDs (random amplified polymorphic DNA) and allozymes. In Belgium, B. aquilonaris has a naturally fragmented distribution that has been accentuated due to human activity during the last century. The genetic population structure of this butterfly was analysed at the regional (several Ardenne uplands) and at the landscape level (several populations within an Ardenne upland). Both population genetic markers confirmed results from a previous CMR study at the landscape scale. At the regional scale however, important incongruences were observed between RAPDs and allozymes. The average gene diversity for the RAPD data was twice that of the allozyme data. The degree of population subdivision was also much greater for RAPDs than for allozymes. The UPGMA clusters produced by each of these markers differed significantly. We believe that, given the higher rate of mutation of RAPDs and the greater number of loci assayed by this method, RAPDs reveal a more accurate and recent population genetic structure than allozymes.
机译:使用RAPD(随机扩增多态性DNA)和同工酶研究了蔓越莓贝母Boloria aquilonaris的遗传种群结构。在比利时,B。aquilonaris的分布自然分散,由于上个世纪的人类活动而加剧。在区域(几个Ardenne高地)和地貌水平(一个Ardenne高地内的几个种群)分析了这种蝴蝶的遗传种群结构。两种种群遗传标记都证实了先前在景观尺度上进行的CMR研究的结果。然而,在区域范围内,在RAPD和同工酶之间发现了重要的不一致。 RAPD数据的平均基因多样性是同工酶数据的两倍。 RAPD的人口细分程度也比同工酶大得多。这些标记中的每一个产生的UPGMA簇明显不同。我们相信,鉴于RAPD的突变率更高且通过此方法测定的基因座数量更多,RAPD揭示了比同工酶更准确和最新的种群遗传结构。

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