Tanabe Yuuhiko, Yamaguchi Haruyo, Yoshida Masaki, Kai Atsushi, Okazaki Yusuke
Biodiversity Division, National Institute for Environmental Studies, Ibaraki, 305-8506, Japan.
Algae Biomass and Energy System R&D Center, University of Tsukuba, Ibaraki, 305-8572, Japan.
ISME Commun. 2023 Mar 11;3(1):20. doi: 10.1038/s43705-023-00228-6.
Marine bacterial lineages associated with algal blooms, such as the Roseobacter clade, have been well characterized in ecological and genomic contexts, yet such lineages have rarely been explored in freshwater blooms. This study performed phenotypic and genomic analyses of an alphaproteobacterial lineage 'Candidatus Phycosocius' (denoted the CaP clade), one of the few lineages ubiquitously associated with freshwater algal blooms, and described a novel species: 'Ca. Phycosocius spiralis.' Phylogenomic analyses indicated that the CaP clade is a deeply branching lineage in the Caulobacterales. Pangenome analyses revealed characteristic features of the CaP clade: aerobic anoxygenic photosynthesis and essential vitamin B auxotrophy. Genome size varies widely among members of the CaP clade (2.5-3.7 Mb), likely a result of independent genome reductions at each lineage. This includes a loss of tight adherence pilus genes (tad) in 'Ca. P. spiralis' that may reflect its adoption of a unique spiral cell shape and corkscrew-like burrowing activity at the algal surface. Notably, quorum sensing (QS) proteins showed incongruent phylogenies, suggesting that horizontal transfers of QS genes and QS-involved interactions with specific algal partners might drive CaP clade diversification. This study elucidates the ecophysiology and evolution of proteobacteria associated with freshwater algal blooms.
与藻华相关的海洋细菌谱系,如红杆菌进化枝,在生态和基因组背景下已得到充分表征,但此类谱系在淡水藻华中很少被研究。本研究对一种α-变形菌谱系“候选藻际菌属”(称为CaP进化枝)进行了表型和基因组分析,该谱系是少数与淡水藻华普遍相关的谱系之一,并描述了一个新物种:“螺旋候选藻际菌”。系统基因组分析表明,CaP进化枝是柄杆菌目中一个深度分支的谱系。泛基因组分析揭示了CaP进化枝的特征:有氧不产氧光合作用和必需维生素B营养缺陷型。CaP进化枝成员的基因组大小差异很大(2.5-3.7 Mb),这可能是每个谱系独立基因组减少的结果。这包括“螺旋候选藻际菌”中紧密附着菌毛基因(tad)的缺失,这可能反映了其独特的螺旋细胞形状以及在藻类表面类似螺旋钻的挖掘活动。值得注意的是,群体感应(QS)蛋白显示出不一致的系统发育,这表明QS基因的水平转移以及与特定藻类伙伴的QS相关相互作用可能推动了CaP进化枝的多样化。本研究阐明了与淡水藻华相关的变形菌的生态生理学和进化。