Center for Computational Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Faculty of Science, Yamagata University, Yamagata, Yamagata, Japan.
Sci Rep. 2024 Jun 4;14(1):12774. doi: 10.1038/s41598-024-63502-0.
The diversity of marine cyanobacteria has been extensively studied due to their vital roles in ocean primary production. However, little is understood about the diversity of cyanobacterial species involved in symbiotic relationships. In this study, we successfully sequenced the complete genome of a cyanobacterium in symbiosis with Citharistes regius, a dinoflagellate species thriving in the open ocean. A phylogenomic analysis revealed that the cyanobacterium (CregCyn) belongs to the marine picocyanobacterial lineage, akin to another cyanobacterial symbiont (OmCyn) of a different dinoflagellate closely related to Citharistes. Nevertheless, these two symbionts are representing distinct lineages, suggesting independent origins of their symbiotic lifestyles. Despite the distinct origins, the genome analyses of CregCyn revealed shared characteristics with OmCyn, including an obligate symbiotic relationship with the host dinoflagellates and a degree of genome reduction. In contrast, a detailed analysis of genome subregions unveiled that the CregCyn genome carries genomic islands that are not found in the OmCyn genome. The presence of the genomic islands implies that exogenous genes have been integrated into the CregCyn genome at some point in its evolution. This study contributes to our understanding of the complex history of the symbiosis between dinoflagellates and cyanobacteria, as well as the genomic diversity of marine picocyanobacteria.
海洋蓝藻的多样性因其在海洋初级生产中的重要作用而得到广泛研究。然而,人们对参与共生关系的蓝藻物种的多样性知之甚少。在这项研究中,我们成功地对与 Citharistes regius 共生的蓝藻进行了全基因组测序,Citharistes regius 是一种在开阔海域中繁盛的甲藻。系统发育基因组分析表明,这种蓝藻(CregCyn)属于海洋微囊藻谱系,类似于另一种与 Citharistes 密切相关的不同甲藻的蓝藻共生体(OmCyn)。然而,这两个共生体代表了不同的谱系,表明它们共生生活方式的独立起源。尽管起源不同,但 CregCyn 的基因组分析显示与 OmCyn 具有共同特征,包括与宿主甲藻的专性共生关系和一定程度的基因组减少。相比之下,对基因组亚区的详细分析表明,CregCyn 基因组携带的基因组岛在 OmCyn 基因组中不存在。基因组岛的存在意味着外源基因在 CregCyn 基因组的进化过程中某个时候已经整合到其中。这项研究有助于我们理解甲藻和蓝藻之间共生关系的复杂历史以及海洋微囊藻的基因组多样性。