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Applying Evolutionary Genetics to Developmental Toxicology and Risk Assessment

机译:将进化遗传学应用于发育毒理学和风险评估

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摘要

Evolutionary thinking continues to challenge our views on health and disease. Yet, there is a communication gap between evolutionary biologists and toxicologists in recognizing the connections among developmental pathways, high-throughput screening, and birth defects in humans. To increase our capability in identifying potential developmental toxicants in humans, we propose to apply evolutionary genetics to improve the experimental design and data interpretation with various in vitro and whole-organism models. We review five molecular systems of stress response and update 18 consensual cell-cell signaling pathways that are the hallmark for early development, organogenesis, and differentiation; and revisit the principles of teratology in light of recent advances in high-throughput screening, big data techniques, and systems toxicology. Multiscale systems modeling plays an integral role in the evolutionary approach to cross-species extrapolation. Phylogenetic analysis and comparative bioinformatics are both valuable tools in identifying and validating the molecular initiating events that account for adverse developmental outcomes in humans. The discordance of susceptibility between test species and humans (ontogeny) reflects their differences in evolutionary history (phylogeny). This synthesis not only can lead to novel applications in developmental toxicity and risk assessment, but also can pave the way for applying an evo-devo perspective to the study of developmental origins of health and disease.
机译:进化思维继续挑战我们对健康和疾病的看法。但是,进化生物学家和毒理学家之间在识别人类发育途径,高通量筛选和先天缺陷之间的联系方面存在沟通鸿沟。为了提高我们识别人类潜在的发育毒物的能力,我们建议应用进化遗传学来改进实验设计和各种体外和全生物模型的数据解释。我们审查了应力反应的五个分子系统,并更新了18个共有的细胞信号通路,这些信号通路是早期发育,器官发生和分化的标志。并根据高通量筛选,大数据技术和系统毒理学的最新进展重新审视术语学原理。多尺度系统建模在跨物种外推的进化方法中扮演着不可或缺的角色。系统发育分析和比较生物信息学都是鉴定和验证可解释人类不良发育结果的分子引发事件的宝贵工具。测试物种与人类(个体发育)之间的敏感性差异反映了它们在进化史(系统发育)中的差异。这种合成不仅可以在发育毒性和风险评估中获得新的应用,而且可以为将evo-devo观点应用于健康和疾病的发展起源研究铺平道路。

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