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CONTRIBUTIONS FROM POPULATION GENETICS TO ECOTOXICOLOGY AND STRESS ECOLOGY IN LIGHT OF TRANSFORMATION TO THE POPULATION GENOMIC ERA

机译:从人口遗传学到人口遗传学时代的转变,从人口遗传学到生态学和胁迫生态学的贡献

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With the advent of the genomic era, which has partly been driven by advances in stress ecology, there is enormous growth in molecular and computer simulation techniques. Here we propose combining some of these techniques to give more elaborate risk assessments that include the effects of population variation in genotypes, phenotypes, and the way they link to aspects of life history and adaptive potential. We focused on ways to ascertain whether phenotypic plasticity or evolutionary responses constitute the basis for observed stress responses, as well as on the extrapolation problem, i.e. how do responses under controlled conditions correspond to those observed in natural ecological populations or in evolutionary end-points of interest? Additionally, we discuss the ways to integrate environmental variability into risk analysis and pest control predictions that include gene-environment interactions, focusing also on the importance of erosion of genetic diversity by toxic stressors to the risk of population extinction.
机译:随着基因组学时代的到来,部分是由于应激生态学的进步,分子和计算机模拟技术得到了极大的发展。在这里,我们建议结合这些技术中的一些来进行更详细的风险评估,包括基因型,表型中的种群变异影响以及它们与生活史和适应潜能方面的联系方式。我们关注于确定表型可塑性或进化反应是否构成观察到的应激反应的基础的方法,以及外推问题,即在受控条件下的反应如何对应于自然生态种群或进化终点中观察到的反应。利益?此外,我们讨论了将环境变异性纳入风险分析和病虫害防治预测(包括基因与环境相互作用)的方法,还着重讨论了有毒胁迫对遗传多样性的侵蚀对种群灭绝风险的重要性。

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