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Comparison of Bacterial Diversity within the Coral Reef Sponge, Axinella corrugata, and the Encrusting Coral Erythropodium caribaeorum

机译:珊瑚海绵,Axinella corrugata和包埋的珊瑚红藻Ecarthropodium caribaeorum中细菌多样性的比较

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摘要

We compared the Caribbean reef sponge, Axinella corrugata, with the Caribbean reef coral, Erythropodium caribaeorum for differences in their resident microbial communities. This cursory survey of bacterial diversity applied 16S rRNA gene sequences. Over 100 culture-independent sequences were generated from five different Axinella 16S rRNA libraries, and compared with 69 cultured isolates. The cultureindependent 16S rDNA clones displayed a higher diversity of Proteobacteria, including “uncultured” or “unknown” representatives from the Deltaproteobacteria. Arcobacterium, and Cyanobacteria were also found. We have also confirmed that Axinella sponges appeared to host specific microbial symbionts, similar to the previously identified clones termed “OSO” environmental samples. In contrast, seawater samples near Axinella were dominated by Pseudoalteromonas. Adjacent sediment samples yielded clones of Planctomycetacea, Proteobacteria, sulfate-reducing Desulfovibrio spp, and other Deltaproteobacteria. Anaerobe-like 16S rRNA sequences were detected after the oxygen supply to one Axinella sample was deliberately curtailed to assess temporal changes in the microbial community. E. caribaeorum yielded more Betaproteobacteria relative to Axinella 16S libraries, and also included the Gammaproteobacteria genus Spongiobacter. However, Axinella-derived microbes appeared phylogenetically deeper with greater sequence divergences than the coral. Overall this study indicated that marine microbial community diversity can be linked to specific source hosts and habitats.
机译:我们比较了加勒比珊瑚礁海绵(Axinella corrugata)和加勒比珊瑚珊瑚(Erythropodium caribaeorum)在其居住微生物群落方面的差异。对细菌多样性的粗略调查应用了16S rRNA基因序列。从五个不同的Axinella 16S rRNA文库中生成了100多个独立于培养物的序列,并将其与69个分离株进行了比较。不依赖培养物的16S rDNA克隆表现出更高的变形杆菌多样性,包括来自Deltaproteobacteria的“未培养”或“未知”代表。还发现了弓形杆菌和蓝细菌。我们还证实,Axinella海绵似乎具有特定的微生物共生体,类似于先前鉴定的称为“ OSO”环境样品的克隆。相比之下,Axinella附近的海水样品则以假单胞菌为主。邻近的沉积物样本产生了浮萍科,变形杆菌,硫酸盐还原型脱硫弧菌和其他变形杆菌的克隆。在刻意减少向一种毒素菌样品的供氧量以评估微生物群落的时间变化后,检测到了厌氧菌样16S rRNA序列。相对于Axinella 16S文库,加勒比大肠杆菌产生了更多的β变形细菌,并且还包括了芽孢杆菌属的γ变形杆菌。然而,与珊瑚相比,衍生自Axinella的微生物在系统发育上显得更深,具有更大的序列差异。总体而言,这项研究表明,海洋微生物群落的多样性可以与特定的来源宿主和栖息地联系起来。

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