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Diversity and ecological structure of vibrios in benthic and pelagic habitats along a latitudinal gradient in the Southwest Atlantic Ocean

机译:西南大西洋沿纬度梯度的底栖和中上生境弧菌的多样性和生态结构

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摘要

We analyzed the diversity and population structure of the 775 Vibrio isolates from different locations of the southwestern Atlantic Ocean (SAO), including St. Peter and St. Paul Archipelago (SPSPA), Abrolhos Bank (AB) and the St. Sebastian region (SS), between 2005 and 2010. In this study, 195 novel isolates, obtained from seawater and major benthic organisms (rhodoliths and corals), were compared with a collection of 580 isolates previously characterized (available at ). The isolates were distributed in 8 major habitat spectra according to AdaptML analysis on the basis of pyrH phylogenetic reconstruction and ecological information, such as isolation source (i.e., corals: Madracis decactis, Mussismilia braziliensis, M. hispida, Phyllogorgia dilatata, Scolymia wellsi; zoanthids: Palythoa caribaeorum, P. variabilis and Zoanthus solanderi; fireworm: Hermodice carunculata; rhodolith; water and sediment) and sampling site regions (SPSPA, AB and SS). Ecologically distinct groups were discerned through AdaptML, which finds phylogenetic groups that are significantly different in their spectra of habitat preferences. Some habitat spectra suggested ecological specialization, with habitat spectra 2, 3, and 4 corresponding to specialization on SPSPA, AB, and SS, respectively. This match between habitat and location may reflect a minor exchange of Vibrio populations between geographically isolated benthic systems. Moreover, we found several widespread Vibrio species predominantly from water column, and different populations of a single Vibrio species from H. carunculata in ecologically distinct groups (H-1 and H-8 respectively). On the other hand, AdaptML detected phylogenetic groups that are found in both the benthos and in open water. The ecological grouping observed suggests dispersal and connectivity between the benthic and pelagic systems in AB. This study is a first attempt to characterize the biogeographic distribution of vibrios in both seawater and several benthic hosts in the SAO. The benthopelagic coupling observed here stands out the importance of vibrios in the global ocean health.
机译:我们分析了西南大西洋(SAO)不同地点的775弧菌分离株的多样性和种群结构,包括圣彼得和圣保罗群岛(SPSPA),阿伯罗霍斯银行(AB)和圣塞巴斯蒂安地区(SS) )(2005年至2010年)之间的关系。在这项研究中,将195种从海水和主要底栖生物(菱纹石和珊瑚)中获得的新型分离物与之前鉴定的580种分离物进行了比较(可在处获得)。根据pyrH系统发育重建和生态信息,根据AdapML分析,将分离株分布在8个主要生境光谱中,例如分离源(即珊瑚:Mad虫,巴西Mussismilia,M。hispida,Phyllogorgia dilatata,Scolymia wellsi; :Palythoa caribaeorum,P。variabilis和Zoanthus solanderi;萤火虫:Hermodice carunculata; Rhodolith;水和沉积物)和采样点区域(SPSPA,AB和SS)。通过AdaptML可以辨别出生态学上不同的类群,该类群发现的系统发生类群在其栖息地偏好方面有显着差异。一些栖息地光谱表明生态专业化,栖息地光谱2、3和4分别对应于SPSPA,AB和SS的专业化。栖息地和位置之间的这种匹配可能反映了地理上隔离的底栖系统之间弧菌种群的少量交换。此外,我们发现了几种主要来自水柱的广泛弧菌,以及在生态学上不同的群体(分别为H-1和H-8)中的H. carunculata的单个弧菌物种的不同种群。另一方面,AdaptML检测到在底栖动物和开阔水域中都发现的系统发育基团。观察到的生态学分类表明AB中底栖和上层系统之间的分散和连通性。这项研究是首次表征海水在SAO中的海水和若干底栖生物中弧菌的生物地理分布。此处观察到的底盘上耦合突出了弧菌在全球海洋健康中的重要性。

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