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首页> 外文期刊>Russian Journal of Developmental Biology >Physiological and molecular biological mechanisms underlying diapause in aquatic invertebrates
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Physiological and molecular biological mechanisms underlying diapause in aquatic invertebrates

机译:水生无脊椎动物滞育的生理和分子生物学机制

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摘要

The review considers the published data, as well as its own, which demonstrate the abundance and evolutionary conservation of the mechanism of diapause in invertebrates. The ecological reasons for the emergence of diapause in life cycles of hydrobionts are analyzed. The specific physiological features of invertebrate diapausing organisms and the hormonal control of diapause are briefed. The molecular genetic mechanism of diapause is demonstrated by the example of a model species, Caenorhabditis elegans. Recent fundamental discoveries in molecular genetics related to the joint effect of genes and environmental factors on the basic metabolism, choice between the development-diapause alternative, and many other seasonal adaptations in multicellular organisms are discussed. The near discovery of the functional role of daf genes in hydrobionts is postulated. These studies will lead to a deeper understanding of the fine mechanism that underlies photoperiodism and the wider application of diapause phenomenon in theory and practice.
机译:该评价考虑了已发表的数据及其本身的数据,这些数据证明了无脊椎动物滞育机理的丰富性和进化保守性。分析了水生生物生命周期滞育出现的生态原因。简要介绍了无脊椎动物滞育生物的特定生理特征和滞育的激素控制。滞育的分子遗传机制由模型物种秀丽隐杆线虫证明。讨论了分子遗传学中与基因和环境因素对基本代谢的联合作用有关的最新基本发现,在发育-停滞替代之间的选择以及多细胞生物中的许多其他季节性适应问题。推测daf基因在水合生物中的功能作用几乎被发现。这些研究将导致对光周期基础的精细机制有更深入的了解,以及滞育现象在理论和实践中的广泛应用。

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