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Deep sequencing reveals exceptional diversity and modes of transmission for bacterial sponge symbionts

机译:深度测序揭示了细菌海绵共生体的异常多样性和传播方式

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摘要

Marine sponges contain complex bacterial communities of considerable ecological and biotechnological importance, with many of these organisms postulated to be specific to sponge hosts. Testing this hypothesis in light of the recent discovery of the rare microbial biosphere, we investigated three Australian sponges by massively parallel 16S rRNA gene tag pyrosequencing. Here we show bacterial diversity that is unparalleled in an invertebrate host, with more than 250 000 sponge-derived sequence tags being assigned to 23 bacterial phyla and revealing up to 2996 operational taxonomic units (95% sequence similarity) per sponge species. Of the 33 previously described 'sponge-specific' clusters that were detected in this study, 48% were found exclusively in adults and larvae – implying vertical transmission of these groups. The remaining taxa, including 'Poribacteria', were also found at very low abundance among the 135 000 tags retrieved from surrounding seawater. Thus, members of the rare seawater biosphere may serve as seed organisms for widely occurring symbiont populations in sponges and their host association might have evolved much more recently than previously thought.
机译:海洋海绵包含具有相当生态和生物技术重要性的复杂细菌群落,其中许多生物被认为对海绵宿主具有特异性。根据最近发现的稀有微生物生物圈来检验此假设,我们通过大量平行的16S rRNA基因标签焦磷酸测序研究了三种澳大利亚海绵。在这里,我们显示了无脊椎动物宿主中无与伦比的细菌多样性,其中超过25万个海绵衍生的序列标签被分配给23个细菌门,并且每个海绵物种最多显示2996个可操作分类单元(95%序列相似性)。在这项研究中检测到的33个先前描述的“海绵特定”簇中,有48%仅在成年和幼虫中发现-这意味着这些群体是垂直传播的。在从周围海水中回收的135 000个标签中,还发现了其余的分类单元,包括“ Poribacteria”。因此,稀有海水生物圈的成员可以作为海绵中广泛存在的共生菌种群的种子生物,它们的寄主联系可能比以前想象的要近得多。

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