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Titlebook: Environmental Stress, Adaptation and Evolution; R. Bijlsma,V. Loeschcke Book 1997 Springer Basel AG 1997 Adaptation.Drosophila.Genotyp.Mut

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发表于 2025-3-21 19:17:49 | 显示全部楼层 |阅读模式
书目名称Environmental Stress, Adaptation and Evolution
编辑R. Bijlsma,V. Loeschcke
视频video
丛书名称Experientia Supplementum
图书封面Titlebook: Environmental Stress, Adaptation and Evolution;  R. Bijlsma,V. Loeschcke Book 1997 Springer Basel AG 1997 Adaptation.Drosophila.Genotyp.Mut
描述Most organisms and populations have to cope with hostile environments, threatening their existence. Their ability to respond phenotypically and genetically to these challenges and to evolve adaptive mechanisms is, therefore, crucial. The contributions to this book aim at understanding, from a evolutionary perspective, the impact of stress on biological systems. Scientists, applying different approaches spanning from the molecular and the protein level to individuals, populations and ecosystems, explore how organisms adapt to extreme environments, how stress changes genetic structure and affects life histories, how organisms cope with thermal stress through acclimation, and how environmental and genetic stress induce fluctuating asymmetry, shape selection pressure and cause extinction of populations. Finally, it discusses the role of stress in evolutionary change, from stress induced mutations and selection to speciation and evolution at the geological time scale. The book contains reviews and novel scientific results on the subject. It will be of interest to both researchers and graduate students and may serve as a text for graduate courses.
出版日期Book 1997
关键词Adaptation; Drosophila; Genotyp; Mutation; bacteria; development; environment; evolution; genetic engineerin
版次1
doihttps://doi.org/10.1007/978-3-0348-8882-0
isbn_softcover978-3-0348-9813-3
isbn_ebook978-3-0348-8882-0Series ISSN 1664-431X Series E-ISSN 2504-3692
issn_series 1664-431X
copyrightSpringer Basel AG 1997
The information of publication is updating

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Responses of aquatic organisms to pollutant stress: Theoretical and practical implicationsonary theory can contribute to solving practical problems related to the evaluation of potential chemical hazards (e.g. deciding which aquatic organisms to use in regulatory test systems and developing ecological risk assessment models for aquatic populations). We argue for greater integration betwe
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High-temperature stress and the evolution of thermal resistance in ,her life stages. Furthermore, selection on different life stages showed that a selection response in one life stage did not necessarily result in a correlated response in another. These observations indicate that different mechanisms or genes at least in part are responsible for or are expressed at
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Genetic and environmental stress, and the persistence of populationsironmental stress becomes significantly greater for higher inbreeding levels. This explicitly demonstrates that genetic and environmental stress are not independent but can act synergistically. This apparent interaction may have important consequences for the conservation of endangered species.
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Stress, developmental stability and sexual selectione rise to sexual selection with direct or indirect fitness benefits, as in animals. Sexual selection in animals may result in selection for relatively larger male body size, an overall increase in body size of a lineage and an increased risk of extinction (Cope’s rule). Reduced stress resistance ass
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