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Ecotoxicology and population genetics: the emergence of 'phylogeographic and evolutionary ecotoxicology'.

机译:生态毒理学和种群遗传学:“植物地理学和进化生态毒理学”的出现。

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摘要

Genetics of ecotoxicology has recently emerged as a priority research field. The advent of polymerase chain reaction and molecular population genetics has made it possible to examine the genetics in even the smallest individuals. Although a potentially powerful technique, current approaches oversimplify the relationship of change in gene frequency to contaminant exposure. Many of these approaches cannot control for random correlation or accessory abiotic factors that impinge on the system tested. Indeed, the gestalt approaches of laboratory exposure or natural field experiments may ignore significant genome-level interactions that are important within a given system. At the very least, these approaches would benefit by a biogeographic survey of genetic variation to understand geographic microevolutionary patterns, or phylogeography, within a species to reduce spurious correlations and erroneous conclusions. Other single locus approaches can be chosen to enhance this approach if genetic/environmental interactions have been characterized for laboratory populations or for other model systems.
机译:生态毒理学的遗传学最近已成为优先研究领域。聚合酶链式反应和分子种群遗传学的出现使检查最小的个体的遗传学成为可能。尽管这是一种潜在的强大技术,但当前的方法过分简化了基因频率变化与污染物暴露之间的关系。这些方法中的许多方法都无法控制影响测试系统的随机相关性或非生物因素。确实,实验室暴露或自然野外实验的格式塔方法可能会忽略在给定系统中重要的重要基因组水平相互作用。至少,这些方法将从遗传变异的生物地理调查中受益,以了解物种内的地理微进化模式或系统地理学,以减少虚假关联和错误结论。如果已经针对实验室人群或其他模型系统表征了遗传/环境相互作用,则可以选择其他单一基因座方法来增强此方法。

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