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The biodiversity and ecology of Antarctic lakes: models for evolution

机译:南极湖泊的生物多样性和生态:演化模型

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摘要

Antarctic lakes are characterised by simplified, truncated food webs. The lakes range from freshwater to hypersaline with a continuum of physical and chemical conditions that offer a natural laboratory in which to study evolution. Molecular studies on Antarctic lake communities are still in their infancy, but there is clear evidence from some taxonomic groups, for example the Cyanobacteria, that there is endemicity. Moreover, many of the bacteria have considerable potential as sources of novel biochemicals such as low temperature enzymes and anti-freeze proteins. Among the eukaryotic organisms survival strategies have evolved, among which dependence on mixotrophy in phytoflagellates and some ciliates is common. There is also some evidence of evolution of new species of flagellate in the marine derived saline lakes of the Vestfold Hills. Recent work on viruses in polar lakes demonstrates high abundance and high rates of infection, implying that they may play an important role in genetic exchange in these extreme environments.
机译:南极湖的特征是简化的,截断的食物网。湖泊范围从淡水到高盐度,具有连续的物理和化学条件,为研究演化提供了天然的实验室。对南极湖泊群落的分子研究仍处于起步阶段,但是从某些分类学组(例如蓝细菌)中有明确证据表明存在地方性。此外,许多细菌作为新型生物化学物质的来源具有相当大的潜力,例如低温酶和抗冻蛋白。在真核生物中,进化了生存策略,其中依赖植物鞭毛虫和某些纤毛虫的混养很常见。在维斯特福尔山的海洋盐湖中,也有一些证据表明鞭毛新物种的进化。最近关于极地湖泊病毒的研究表明,其数量众多且感染率很高,这表明它们可能在这些极端环境中的基因交换中发挥重要作用。

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