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Heterotrophic Protists in Hypersaline Microbial Mats and Deep Hypersaline Basin Water Columns

机译:高盐微生物垫层和深高盐盆地水柱中的异养生物

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Although hypersaline environments pose challenges to life because of the low water content (water activity), many such habitats appear to support eukaryotic microbes. This contribution presents brief reviews of our current knowledge on eukaryotes of water-column haloclines and brines from Deep Hypersaline Anoxic Basins (DHABs) of the Eastern Mediterranean, as well as shallow-water hypersaline microbial mats in solar salterns of Guerrero Negro, Mexico and benthic microbialite communities from Hamelin Pool, Shark Bay, Western Australia. New data on eukaryotic diversity from Shark Bay microbialites indicates eukaryotes are more diverse than previously reported. Although this comparison shows that eukaryotic communities in hypersaline habitats with varying physicochemical characteristics are unique, several groups are commonly found, including diverse alveolates, strameonopiles, and fungi, as well as radiolaria. Many eukaryote sequences (SSU) in both regions also have no close homologues in public databases, suggesting that these environments host unique microbial eukaryote assemblages with the potential to enhance our understanding of the capacity of eukaryotes to adapt to hypersaline conditions.
机译:尽管高盐环境由于水含量低(水活度)而给生活带来了挑战,但许多这样的栖息地似乎支持真核微生物。该贡献简要介绍了我们对来自地中海东部深层高盐缺氧盆地(DHAB)的水柱盐卤和盐水的真核生物以及在墨西哥的格雷罗内格罗和底特律的盐湖中的浅水高盐微生物垫的了解。来自澳大利亚西部鲨鱼湾哈默林泳池的微生物岩群落。来自鲨鱼湾微恶岩的真核生物多样性的新数据表明,真核生物比以前报道的更加多样化。尽管这种比较表明,具有不同理化特征的高盐生境中的真核生物群落是独特的,但通常会发现几类,包括不同的肺泡,穿甲虫,真菌和放射虫。两个区域中的许多真核生物序列(SSU)在公共数据库中也没有紧密的同源物,这表明这些环境拥有独特的微生物真核生物集合体,具有增强我们对真核生物适应高盐条件能力的理解的潜力。

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