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Evidence for high dispersal ability and mito-nuclear discordance in the small brownplanthopper Laodelphax striatellus

机译:小棕褐色具有高分散能力和线粒体核不和谐的证据稻飞虱(Laodelphax striatellus)

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摘要

Understanding dispersal ability in pest species is critical for both theoretical aspects of evolutionary and population biology and from a practical standpoint, such as implementing effective forecasting systems. The small brown planthopper (SBPH), Laodelphax striatellus (Fallén), is an economically important pest, but few data exist on its dispersal ability. Here, we used mitochondrial and nuclear markers to elucidate the population genetic structure of SBPH and of the parasitic bacterium Wolbachia throughout temperate and subtropical China. Our results showed that the SBPH populations in China lack significant differences in genetic structure, suggesting extensive gene flow. Multilocus sequence typing revealed that Wolbachia infection was systematic and due to the same strain (wStri) within and across populations. However, the mtDNA haplogroups had a nonrandom distribution across the sampling localities, which correlated to latitudinal and climatic gradients. We explain this mito-nuclear discordance as a result of historical population recolonization or mitochondria adaptation to climate.
机译:从进化论和种群生物学的理论方面以及从实践的角度(例如实施有效的预测系统)来看,了解有害生物中的扩散能力都是至关重要的。小褐飞虱(SBPH)Laodelphax striatellus(Fallén)是一种经济上重要的害虫,但关于其传播能力的数据很少。在这里,我们使用线粒体和核标记物阐明了整个温带和亚热带地区SBPH和寄生细菌Wolbachia的种群遗传结构。我们的结果表明,中国的SBPH种群在遗传结构上没有显着差异,表明广泛的基因流。多基因座序列分型显示,Wolbachia感染是系统性的,并且是由于种群内和种群间存在相同的毒株(wStri)。但是,mtDNA单倍群在整个采样地点均具有非随机分布,这与纬度和气候梯度有关。我们解释了由于历史人口重新定殖或线粒体对气候的适应而导致的这种核-核不和谐。

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