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Population genetic structure and ecotoxicology.

机译:人口遗传结构和生态毒理学。

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摘要

Electrophoretic analyses of population genetic structure, both in the laboratory and in the field, have documented significant shifts in allozyme genotype frequencies in a variety of aquatic taxa as a result of environmental impacts. Studies are documented which indicate that contaminants may select for individuals with tolerant allozyme genotypes, causing the potential loss of individuals with sensitive genotypes. This may diminish the genetic variability and fitness of affected populations and make them more susceptible to extinction following a subsequent stress. Future research involving population genetic structure and ecotoxicology should focus on determining the mechanism of sensitivity, documenting multigenerational effects of chronic laboratory exposure on population genetic composition, investigating whether previously stressed and genetically impacted populations are more susceptible to further natural and/or anthropogenic stressors, and establishing the utility of population genetic structure as a sensitive monitor of impacts in aquatic systems and their subsequent remediation.
机译:在实验室和现场进行的种群遗传结构的电泳分析表明,由于环境影响,各种水生类群中同工酶基因型频率发生了显着变化。研究记录表明,污染物可能会选择具有耐受性同工酶基因型的个体,从而导致具有敏感基因型个体的潜在损失。这可能会降低受影响人群的遗传变异性和适应性,并使其在随后的压力下更容易灭绝。涉及人群遗传结构和生态毒理学的未来研究应侧重于确定敏感性机制,记录长期实验室暴露对人群遗传组成的多代影响,调查先前受到压力和遗传影响的人群是否更容易受到其他自然和/或人为压力的影响,以及建立种群遗传结构的实用程序,作为对水生系统及其后续补救措施影响的敏感监测器。

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