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Disentangling the Influence of Environment Host Specificity and Thallus Differentiation on Bacterial Communities in Siphonous Green Seaweeds

机译:弄清环境寄主特异性和生殖器官分化对虹吸绿色海藻细菌群落的影响

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摘要

Siphonous green seaweeds, such as Caulerpa, are among the most morphologically complex algae with differentiated algal structures (morphological niches). Caulerpa is also host to a rich diversity of bacterial endo- and epibionts. The degree to which these bacterial communities are species-, or even niche-specific remains largely unknown. To address this, we investigated the diversity of bacteria associated to different morphological niches of both native and invasive species of Caulerpa from different geographic locations along the Turkish coastline of the Aegean sea. Associated bacteria were identified using the 16S rDNA marker gene for three morphological niches, such as the endobiome, epibiome, and rhizobiome. Bacterial community structure was explored and deterministic factors behind bacterial variation were investigated. Of the total variation, only 21.5% could be explained. Pronounced differences in bacterial community composition were observed and variation was partly explained by a combination of host species, biogeography and nutrient levels. The majority of the explained bacterial variation within the algal holobiont was attributed to the micro-environments established by distinct morphological niches. This study further supports the hypothesis that the bacterial assembly is largely stochastic in nature and bacterial community structure is most likely linked to functional genes rather than taxonomy.
机译:虹吸绿色海藻,例如Caulerpa,是形态最复杂的藻类之一,具有不同的藻类结构(形态生态位)。 Caulerpa还拥有丰富的细菌内生菌和表生菌。这些细菌群落的物种或什至生态位特异性程度在很大程度上仍然未知。为了解决这个问题,我们研究了沿爱琴海土耳其海岸线不同地理位置的Caulerpa原生和入侵物种的不同形态生态位相关细菌的多样性。使用16S rDNA标记基因鉴定了三个形态学位,如内生生物组,表位生物组和根茎生物组,相关细菌。探索细菌群落结构,并调查细菌变异背后的决定性因素。在所有变化中,只有21.5%可以解释。观察到细菌群落组成存在明显差异,并且宿主物种,生物地理和营养水平的组合部分解释了变异。藻类全盐藻内大多数解释的细菌变异均归因于不同形态的生态位所建立的微环境。这项研究进一步支持了以下假设:细菌装配本质上是随机的,细菌群落结构最有可能与功能基因而非分类法相关。

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