首页> 外文OA文献 >Genetic Diversity and Potential Function of Microbial Symbionts Associated with Newly Discovered Species of Osedax Polychaete Worms
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Genetic Diversity and Potential Function of Microbial Symbionts Associated with Newly Discovered Species of Osedax Polychaete Worms

机译:新发现的多毛小cha蠕虫物种的微生物共生体的遗传多样性和潜在功能。

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摘要

We investigated the genetic diversity of symbiotic bacteria associated with two newly discovered species of Osedax from Monterey Canyon, CA, at 1,017-m (Osedax Monterey Bay sp. 3 "rosy" [Osedax sp. MB3]) and 381-m (Osedax Monterey Bay sp. 4 "yellow collar") depths. Quantitative PCR and clone libraries of 16S rRNA gene sequences identified differences in the compositions and abundances of bacterial phylotypes associated with the newly discovered host species and permitted comparisons between adult Osedax frankpressi and juveniles that had recently colonized whalebones implanted at 2,891 m. The newly discovered Osedax species hosted Oceanospirillales symbionts that are related to Gammaproteobacteria associated with the previously described O. frankpressi and Osedax rubiplumus (S. K. Goffredi, V. J. Orphan, G. W. Rouse, L. Jahnke, T. Embaye, K. Turk, R. Lee, and R. C. Vrijenhoek, Environ. Microbiol. 7:1369-1378, 2005). In addition, Osedax sp. MB3 hosts a diverse and abundant population of additional bacteria dominated by Epsilonproteobacteria. Ultrastructural analysis of symbiont-bearing root tissues verified the enhanced microbial diversity of Osedax sp. MB3. Root tissues from the newly described host species and O. frankpressi all exhibited collagenolytic enzyme activity, which covaried positively with the abundance of symbiont DNA and negatively with mean adult size of the host species. Members of this unusual genus of bone-eating worms may form variable associations with symbiotic bacteria that allow for the observed differences in colonization and success in whale fall environments throughout the world's oceans.
机译:我们调查了与新发现的两个共生细菌相关的共生细菌的遗传多样性,这些物种来自加利福尼亚州蒙特雷峡谷,分别位于1,017-m(Osedax Monterey Bay sp。3“ rosy” [Osedax sp。MB3])和381-m(Osedax Monterey) Bay sp。4“黄领”)深度。定量PCR和16S rRNA基因序列的克隆文库鉴定了与新发现的寄主物种相关的细菌系统型的组成和丰度差异,并允许比较了成年的弗雷克斯presso成虫和最近定居在2,891 m处的鲸鱼的幼虫。新发现的Osedax物种具有与以前描述的O.frankpressi和Osedax rubiplumus(SK Goffredi,VJ Orphan,GW Rouse,L.Jahnke,T.Embaye,K.Turk,R.Lee,和RC Vrijenhoek,Environ.Microbiol.7:1369-1378,2005)。另外,Osedax sp。 MB3拥有由Epsilon变形杆菌控制的多种多样且丰富的其他细菌种群。含共生根组织的超微结构分析证实了Osedax sp。的微生物多样性增强。 MB3。来自新近描述的宿主物种和O. frankpressi的根组织均表现出胶原蛋白水解酶活性,与共生体DNA的丰度呈正相关,与宿主物种的平均成年大小呈负相关。这种不寻常的食骨头蠕虫属的成员可能与共生细菌形成可变的联系,从而使在全世界海洋中的鲸鱼坠落环境中观察到的定植差异和成功的差异。

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