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Trojan Genes and Transparent Genomes: Sexual Selection, Regulatory Evolution and the Real Hopeful Monsters

机译:特洛伊基因和透明基因组:性选择、调控进化和真正有希望的怪物

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Potential impacts of genetically modified (GM) animals in natural environments are explored in a framework of regulatory evolution. Transgenic growth hormone animals express remarkable alterations and plasticity in development, physiology and behavior in response to environmental factors (nutrition, temperature, photoperiod), suggesting that standard laboratory assessments are likely to underestimate their evolutionary potential. Sexual selection is examined in the context of female self-referent appraisal of male fitness that reflects performance in the species-specific niche. Wild-type females may recognize and discriminate against GM males (the Transparent Genome Hypothesis) but if accepted as mates, pleiotropic disruption associated with GMs may reduce fitness of the natural population (the Trojan Gene Hypothesis). Alternatively, facilitation of regulatory evolution by sexual reproduction (recombination and segregation) may derive modifier selection, masking, integration, or niche shifts. Other aspects explored include mutation theory, purging, pleiotropy, epigenetics and plasticity, behavior and the Bruce effect, and mismatch of genetic or epigenetic background between GM stock and natural populations.
机译:转基因动物在自然环境中的潜在影响是在监管进化的框架内探索的。转基因生长激素动物在发育、生理和行为方面表现出显着的改变和可塑性,以响应环境因素(营养、温度、光周期),这表明标准的实验室评估可能低估了它们的进化潜力。性选择是在女性对男性适应性的自我指涉评估的背景下进行的,该评估反映了物种特定生态位的表现。野生型雌性可能会识别和歧视转基因雄性(透明基因组假说),但如果被接受为配偶,与转基因相关的多效性破坏可能会降低自然种群的适应性(特洛伊基因假说)。或者,通过有性生殖(重组和分离)促进调节进化可能会衍生出修饰物选择、掩蔽、整合或生态位转移。探索的其他方面包括突变理论、清除、多效性、表观遗传学和可塑性、行为和布鲁斯效应,以及转基因种群与自然种群之间的遗传或表观遗传背景不匹配。

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