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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Introduction. Antarctic ecology: from genes to ecosystems. Part 2. Evolution, diversity and functional ecology
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Introduction. Antarctic ecology: from genes to ecosystems. Part 2. Evolution, diversity and functional ecology

机译:介绍。南极生态学:从基因到生态系统。第2部分。进化,多样性和功能生态学

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The Antarctic biota has evolved over the last 100 million years in increasingly isolated and cold conditions. As a result, Antarctic species, from micro-organisms to vertebrates, have adapted to life at extremely low temperatures, including changes in the genome, physiology and ecological traits such as life history. Coupled with cycles of glaciation that have promoted speciation in the Antarctic, this has led to a unique biota in terms of biogeography, patterns of species distribution and endemism. Specialization in the Antarctic biota has led to trade-offs in many ecologically important functions and Antarctic species may have a limited capacity to adapt to present climate change. These include the direct effects of changes in environmental parameters and indirect effects of increased competition and predation resulting from altered life histories of Antarctic species and the impacts of invasive species. Ultimately, climate change may alter the responses of Antarctic ecosystems to harvesting from humans. The unique adaptations of Antarctic species mean that they provide unique models of molecular evolution in natural populations. The simplicity of Antarctic communities, especially from terrestrial systems, makes them ideal to investigate the ecological implications of climate change, which are difficult to identify in more complex systems.
机译:在过去的1亿年中,南极生物区系在日益孤立和寒冷的环境中发展。结果,从微生物到脊椎动物的南极物种都适应了极低的温度,包括基因组,生理和生态特征(例如生命史)的变化。再加上冰川的循环促进了南极物种的形成,这在生物地理学,物种分布方式和特有性方面造就了独特的生物群落。南极生物区系的专业化导致许多重要生态功能之间的权衡,而南极物种适应当前气候变化的能力可能有限。其中包括环境参数变化的直接影响,以及南极物种生活史的改变和入侵物种的影响所带来的竞争和捕食加剧的间接影响。最终,气候变化可能会改变南极生态系统对人类收获的反应。南极物种的独特适应性意味着它们为自然种群提供了分子进化的独特模型。南极群落的简单性,特别是来自陆地系统的群落,使其成为研究气候变化对生态的影响的理想之选,而在更复杂的系统中很难识别。

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