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Discovery of novel intermediate forms redefines the fungal tree of life

机译:新型中间体形式的发现重新定义了真菌的生命之树

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摘要

Fungi are the principal degraders of biomass in terrestrial ecosystems and establish important interactions with plants and animals~(1-3) However, our current understanding of fungal evolutionary diversity is incomplete~4 and is based upon species amenable to growth in culture1. These culturable fungi are typically yeast or filamentous forms, bound by a rigid cell wall rich in chitin. Evolution of this body plan was thought critical for the success of the Fungi, enabling them to adapt to heterogeneous habitats and live by osmotrophy: extracellular digestion followed by nutrient uptake~5. Here we investigate the ecology and cell biology of a previously undescribed and highly diverse form of eukaryotic life that branches with the Fungi, using environmental DNA analyses combined with fluorescent detection via DNA probes. This clade is present in numerous ecosystems including soil, freshwater and aquatic sediments. Phylogenetic analyses using multiple ribosomal RNA genes place this clade with Rozella, the putative primary branch of the fungal kingdom~1. Tyramide signal amplification coupled with group-specific fluorescence in situ hybridization reveals that the target cells are small eukaryotes of 3-5 um in length, capable of forming a microtubule-based flagellum. Co-staining with cell wall markers demonstrates that representatives from the clade do not produce a chitin-rich cell wall during any of the life cycle stages observed and therefore do not conform to the standard fungal body plan~5. We name this highly diverse clade the cryptomycota in anticipation of formal classification.
机译:真菌是陆地生态系统中生物量的主要降解物,并与动植物建立了重要的相互作用〜(1-3),但是,我们目前对真菌进化多样性的理解尚不完全〜4,并且基于适于培养的物种1。这些可培养真菌通常是酵母或丝状形式,由富含甲壳质的刚性细胞壁结合。人们认为,这种身体计划的演变对于真菌的成功至关重要,使真菌能够适应异质生境并通过渗透作用生存:细胞外消化,随后吸收养分〜5。在这里,我们使用环境DNA分析和通过DNA探针的荧光检测相结合的方法,研究了与真菌分支的以前未描述的高度多样化的真核生物形式的生态学和细胞生物学。这个进化枝存在于许多生态系统中,包括土壤,淡水和水生沉积物。使用多个核糖体RNA基因的系统发育分析将这一进化枝放置在Rozella(真菌王国〜1的假定主要分支)上。酪酰胺信号放大与基团特异性荧光原位杂交相结合,揭示靶细胞是长度为3-5 um的小真核生物,能够形成基于微管的鞭毛。与细胞壁标记物共同染色表明,进化枝的代表在观察到的任何生命周期阶段均不会产生富含甲壳质的细胞壁,因此不符合标准的真菌体图〜5。我们将这种高度多样的进化枝命名为隐孢子虫,以期进行正式分类。

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  • 来源
    《Nature》 |2011年第7350期|p.200-203|共4页
  • 作者单位

    School of Biosciences, University of Exeter, Exeter EX4 4QD, UK,Department of Zoology, Natural History Museum, Cromwell Road, London SW7 5BD, UK;

    Department of Marine Biology and Oceanography, Institut de Ciencies del Mar, CSIC, Passeig Maritim de la Barceloneta 37-49,08003 Barcelona, Catalonia, Spain;

    Department of Pathology, University of Cambridge, Tennis Court Road,Cambridge, CB2 1QP, UK;

    School of Biosciences, University of Exeter, Exeter EX4 4QD, UK,Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston Massachusetts 02115, USA;

    Department of Zoology, Natural History Museum, Cromwell Road, London SW7 5BD, UK;

    Department of Marine Biology and Oceanography, Institut de Ciencies del Mar, CSIC, Passeig Maritim de la Barceloneta 37-49,08003 Barcelona, Catalonia, Spain;

    School of Biosciences, University of Exeter, Exeter EX4 4QD, UK,Department of Zoology, Natural History Museum, Cromwell Road, London SW7 5BD, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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