首页> 美国卫生研究院文献>Frontiers in Microbiology >The hydrological context determines the beta-diversity of aerobic anoxygenic phototrophic bacteria in European Arctic seas but does not favor endemism
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The hydrological context determines the beta-diversity of aerobic anoxygenic phototrophic bacteria in European Arctic seas but does not favor endemism

机译:水文环境决定了欧洲北极海域需氧生氧光养细菌的β-多样性,但不利于地方性

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摘要

Despite an increasing number of studies over the last 15 years, aerobic anoxygenic photoheterotrophic (AAP) bacteria remain a puzzling functional group in terms of physiology, metabolism, and ecology. To contribute to a better knowledge of their environmental distribution, the present study aims at analyzing their diversity and structure at the boundary between the Norwegian, Greenland, and Barents Seas. The polymorphism of a marker gene encoding a sub-unit of the photosynthetic apparatus (pufM gene) was analyzed and attempted to be related to environmental parameters. The Atlantic or Arctic origin of water masses had a strong impact on the AAP bacterial community structure whose populations mostly belonged to the Alpha- and Gammaproteobacteria. A majority (>60%) of pufM sequences were affiliated to the Gammaproteobacteria reasserting that this class often represents the major component of the AAP bacterial community in oceanic regions. Two alphaproteobacterial groups dominate locally suggesting that they can constitute key players in this marine system transiently. We found that temperature is a major determinant of alpha diversity of AAP bacteria in this marine biome with specific clades emerging locally according to the partitioning of water masses. Whereas we expected specific AAP bacterial populations in this peculiar and newly explored ecosystem, most pufM sequences were highly related to sequences retrieved elsewhere. This observation highlights that the studied area does not favor AAP bacteria endemism but also opens new questions about the truthfulness of biogeographical patterns and on the extent of AAP bacterial diversity.
机译:尽管在过去15年中进行了越来越多的研究,但从生理学,新陈代谢和生态学的角度来看,好氧产氧光异养(AAP)细菌仍然是令人费解的功能组。为了更好地了解它们的环境分布,本研究旨在分析它们在挪威,格陵兰和巴伦支海之间的边界的多样性和结构。分析了编码光合作用亚单位的标记基因(pufM基因)的多态性,并试图将其与环境参数相关联。大西洋或北极的水团起源对AAP细菌群落结构有很大影响,该种群主要属于Alpha和Gammaproteobacteria。大部分(> 60%)pufM序列与γ-丙酸杆菌有关,并断言该类别通常代表大洋地区AAP细菌群落的主要组成部分。两个α-蛋白细菌群在当地占主导地位,表明它们可以短暂地构成该海洋系统中的关键角色。我们发现温度是这个海洋生物群落中AAP细菌α多样性的主要决定因素,根据水团的划分,特定进化枝在当地出现。尽管我们期望在这个独特而又新近探索的生态系统中有特定的AAP细菌种群,但是大多数pufM序列与在其他地方检索到的序列高度相关。该观察结果突出表明,研究区域不支持AAP细菌特有性,但也对生物地理模式的真实性和AAP细菌多样性的程度提出了新的问题。

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