首页> 外文期刊>Evolution: International Journal of Organic Evolution >THE INFLUENCE OF INTRASPECIFIC VARIATION IN DISPERSAL STRATEGIES ON THE GENETIC STRUCTURE OF PLANTHOPPER POPULATIONS [Review]
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THE INFLUENCE OF INTRASPECIFIC VARIATION IN DISPERSAL STRATEGIES ON THE GENETIC STRUCTURE OF PLANTHOPPER POPULATIONS [Review]

机译:种群内策略的种内变异对虫种群遗传结构的影响[综述]

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The hypothesis that levels of gene flow among populations are correlated with dispersal ability has typically been tested by comparing gene flow among species that differ in dispersal abilities, an approach that potentially confounds dispersal ability with other species-specific differences. In this study, we take advantage of geographic variation in the dispersal strategies of two wing-dimorphic planthopper species, Prokelisia marginata and P. dolus, to examine for the first time whether levels of gene flow among populations are correlated with intraspecific variation in dispersal ability. We found that in both of these coastal salt marsh-inhabiting species, population-genetic subdivision, as assessed using allozyme electrophoresis, parallels geographic variation in the proportion of flight-capable adults (macropters) in a population; in regions where levels of macroptery are high, population genetic subdivision is less than in regions where levels of macroptery are low. We found no evidence that geographic variation in dispersal capability influences the degree tl, which gene flow declines with distance in either species. Thus, both species provided evidence that intraspecific variation in dispersal strategies influences the genetic structure of populations, and that this effect is manifested in population-genetic structure at the scale of large, coastal regions, rather than in genetic isolation by distance within a region. This conclusion was supported by interspecific comparisons revealing that: (1) population-genetic structure (G(ST)) of the two Prokelisia species correlated negatively with the mean proportion of flight-capable adults within a region; and (2) there was no evidence that the degree of isolation by distance increased with decreasing dispersal capability. Populations of the relatively sedentary P. dolus clustered by geographic region (using Nei's distances), but this was not the case for the more mobile P. marginata. Furthermore, gene flow among the two major regions we surveyed (Atlantic and Gulf Coasts) has been substantial in P. marginata, but relatively less in P. dolus. The results for P. marginata suggest that differences in the dispersal strategies of Atlantic and Gulf Coast populations occur despite extensive gene flow. We argue that gene flow is biased from Atlantic to Gulf Coast populations, indicating that selection favoring a reduction in flight cal,ability must be intense along the Gulf. Together, the results of this study provide the first rigorous evidence of a negative relationship within a species between dispersal ability and the genetic structure of populations. Furthermore, regional variation in dispersal ability is apparently maintained by selective differences that outweigh high levels of gene flow among regions. [References: 103]
机译:通常通过比较分散能力不同的物种之间的基因流来检验种群之间基因流动水平与分散能力相关的假设,这种方法可能会将分散能力与其他物种特异性差异混淆。在这项研究中,我们利用地理上的变异,在两个翅形变态飞虱物种Prokelisia marginata和P. dolus的扩散策略中,首次检查了种群之间的基因流水平是否与种内物种的扩散能力相关。我们发现,在这两种沿海盐沼栖息物种中,通过同工酶电泳评估的种群遗传细分都与人口中能够飞行的成年成年人(微翅目)的比例具有地理差异。在大型活动水平较高的地区,人口遗传细分比在大型活动水平较低的地区要小。我们没有发现证据表明分散能力的地理变化会影响程度tl,这两种物种中的基因流量都随着距离的增加而下降。因此,这两个物种都提供了证据,即散布策略中的种内变异会影响种群的遗传结构,而且这种影响体现在沿海大区域的种群遗传结构中,而不是通过区域内的距离进行遗传隔离。种间比较表明,这一结论得到了支持:(1)两种Prokelisia物种的种群遗传结构(G(ST))与一个区域内能够飞行的成年成年人的平均比例呈负相关; (2)没有证据表明距离的隔离度会随着分散能力的降低而增加。相对久坐的P. dolus的种群按地理区域聚类(使用Nei的距离),但活动性更强的P. marginata并非如此。此外,在我们调查的两个主要地区(大西洋和墨西哥湾沿岸)之间的基因流动在边际体育中相当大,而在体育中却相对较少。 P. marginata的结果表明,尽管有大量基因流,大西洋和墨西哥湾沿岸种群的扩散策略仍存在差异。我们认为,从大西洋到墨西哥湾沿岸人口的基因流是有偏差的,这表明在墨西哥湾沿岸的选择倾向于降低飞行校准能力。总之,这项研究的结果提供了第一个严格的证据,证明物种内部的扩散能力和种群的遗传结构之间存在负相关关系。此外,分散能力的区域差异显然是由选择性差异所维持的,选择性差异超过了区域之间高水平的基因流动。 [参考:103]

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