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与形成冠层的海藻扁囊海带(Esper)Gerloff和Nizamuddin相关的附生细菌群落的多样性和时间动态

Diversity and Temporal Dynamics of the Epiphytic Bacterial Communities Associated with the Canopy-Forming Seaweed Cystoseira compressa (Esper) Gerloff and Nizamuddin.

作者信息

Mancuso Francesco P, D'Hondt Sofie, Willems Anne, Airoldi Laura, De Clerck Olivier

机构信息

Dipartimento di Scienze Biologiche, Geologiche ed Ambientali, Centro Interdipartimentale di Ricerca per le Scienze Ambientali, UO CoNISMa, University of BolognaRavenna, Italy; Phycology Research Group and Center for Molecular Phylogenetics and Evolution, Ghent UniversityGhent, Belgium.

Phycology Research Group and Center for Molecular Phylogenetics and Evolution, Ghent University Ghent, Belgium.

出版信息

Front Microbiol. 2016 Apr 8;7:476. doi: 10.3389/fmicb.2016.00476. eCollection 2016.

Abstract

Canopy-forming seaweed species of the genus Cystoseira form diverse and productive habitats along temperate rocky coasts of the Mediterranean Sea. Despite numerous studies on the rich macrofauna and flora associated with Cystoseira spp., there is little knowledge about the epiphytic bacteria. We analyzed bacterial populations associated with canopies of Cystoseira compressa, over an annual vegetative cycle (May-October), and their relationships with the bacterial populations in the surrounding seawater, at intertidal rocky shores in Vasto (Chieti-Italy). The bacterial diversity was assessed using Illumina Miseq sequences of V1-V3 hypervariable regions of 16S rRNA gene. C. compressa bacterial community was dominated by sequences of Proteobacteria and Bacteroidetes, Verrucomicrobia, Actinobacteria, and Cyanobacteria especially of the Rhodobacteriaceae, Flavobacteriaceae, Sapropiraceae, Verrucomicrobiaceae, and Phyllobacteriaceae families. Seawater libraries were also dominated by Proteobacteria and Bacteroidetes sequences, especially of the Candidatus Pelagibacter (SAR11) and Rhodobacteriaceae families, but were shown to be clearly distinct from C. compressa libraries with only few species in common between the two habitats. We observed a clear successional pattern in the epiphytic bacteria of C. compressa over time. These variations were characterized by gradual addition of OTUs (Verrucomicrobia, Actinobacteria and SR1) to the community over a growing season, indicative of a temporal gradient, rather than a radical reorganization of the bacterial community. Moreover, we also found an increase in abundance over time of Rhodobacteraceae, comprising six potential pathogenic genera, Ruegeria, Nautella, Aquimarina, Loktanella, Saprospira, and Phaeobacter which seemed to be associated to aged thalli of C. compressa. These bacteria could have the potential to affect the health and ecology of the algae, suggesting the hypothesis of a possible, but still unexplored, role of the microbial communities in contributing to the extensive ongoing declines of populations of Cystoseira spp. in the Mediterranean Sea.

摘要

囊链藻属形成树冠层的海藻物种在地中海温带岩石海岸形成了多样且高产的栖息地。尽管对与囊链藻属相关的丰富大型动植物进行了大量研究,但对其附生细菌却知之甚少。我们分析了在意大利基耶蒂省瓦斯托的潮间带岩石海岸,在一个年度营养周期(5月至10月)内与压缩囊链藻树冠层相关的细菌种群,以及它们与周围海水中细菌种群的关系。使用16S rRNA基因V1 - V3高变区的Illumina Miseq序列评估细菌多样性。压缩囊链藻的细菌群落以变形菌门、拟杆菌门、疣微菌门、放线菌门和蓝细菌的序列为主,尤其是红杆菌科、黄杆菌科、腐螺旋菌科、疣微菌科和根瘤菌科。海水文库也以变形菌门和拟杆菌门的序列为主,尤其是浮霉菌属(SAR11)和红杆菌科,但显示出与压缩囊链藻文库明显不同,两个栖息地仅有少数物种相同。我们观察到压缩囊链藻的附生细菌随时间呈现出明显的演替模式。这些变化的特征是在生长季节中,OTU(疣微菌门、放线菌门和SR1)逐渐添加到群落中,这表明存在时间梯度,而不是细菌群落的彻底重组。此外,我们还发现红杆菌科的丰度随时间增加,该科包含六个潜在致病属,即鲁杰氏菌属、纳特拉菌属、海栖菌属、洛氏菌属、腐螺旋菌属和噬菌杆菌属,它们似乎与压缩囊链藻的老龄藻体有关。这些细菌可能有影响藻类健康和生态的潜力,这提示了一个假说,即微生物群落在地中海囊链藻属种群持续广泛衰退中可能起到了作用,但仍未被探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/759b/4824759/d516cbb00dab/fmicb-07-00476-g0001.jpg

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