Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, ON, L8N 3Z5, Canada.
Antonie Van Leeuwenhoek. 2023 Oct;116(10):937-973. doi: 10.1007/s10482-023-01857-6. Epub 2023 Jul 31.
The family Staphylococcacae and genus Gemella contain several organisms of clinical or biotechnological importance. We report here comprehensive phylogenomic and comparative analyses on 112 available genomes from species in these taxa to clarify their evolutionary relationships and classification. In a phylogenomic tree based on 678 core proteins, Gemella species were separated from Staphylococcacae by a long branch indicating that they constitute a distinct family (Gemellaceae fam. nov.). In this tree, Staphylococcacae species formed two main clades, one encompassing the genera Aliicoccus, Jeotgalicoccus, Nosocomiicoccus and Salinicoccus (Family "Salinicoccaceae"), while the other clade consisted of the genera Macrococcus, Mammaliicoccus and Staphylococcus (Family Staphylococcaceae emend.). In this tree, species from the genera Gemella, Jeotgalicoccus, Macrococcus and Salinicoccus each formed two distinct clades. Two species clades for these genera are also observed in 16S rRNA gene trees and supported by average amino acid identity analysis. We also report here detailed analyses on protein sequences from Staphylococcaceae and Gemella genomes to identify conserved signature indels (CSIs) which are specific for different genus and family-level clades. These analyses have identified 120 novel CSIs robustly demarcating different proposed families and genera. The identified CSIs provide independent evidence that the genera Gemella, Jeotgalicoccus, Macrococcus and Salinicoccus consist of two distinct clades, which can be reliably distinguished based on multiple exclusively shared CSIs. We are proposing transfers of the species from the novel clades of the above four genera into the genera Gemelliphila gen. nov., Phocicoccus gen. nov., Macrococcoides gen. nov. and Lacicoccus gen. nov., respectively. The identified CSIs also provide strong evidence for division of Staphylococcaceae into an emended family Staphylococcaceae and two new families, Abyssicoccaceae fam. nov. and Salinicoccaceae fam. nov. All of these families can be reliably demarcated based on several exclusively shared CSIs.
葡萄球菌科和孪生球菌属包含一些具有临床或生物技术重要性的生物体。我们在此报告对来自这些分类单元的 112 个可用基因组进行的综合系统基因组学和比较分析,以阐明它们的进化关系和分类。在基于 678 个核心蛋白的系统基因组树上,孪生球菌属与葡萄球菌科之间的长分支表明它们构成了一个独特的科(孪生球菌科,Gemellaceae fam. nov.)。在这个树中,葡萄球菌科的物种形成两个主要分支,一个分支包含了Allococcus、Jeotgalicoccus、Nosocomiicoccus 和 Salinicoccus 属(“Salinicoccaceae”科),而另一个分支由 Macrococcus、Mammaliicoccus 和 Staphylococcus 属(葡萄球菌科 Staphylococcaceae emend.)组成。在这个树中,来自 Gemella、Jeotgalicoccus、Macrococcus 和 Salinicoccus 属的物种各自形成两个不同的分支。这些属的两个物种分支也在 16S rRNA 基因树上观察到,并通过平均氨基酸同一性分析得到支持。我们还在此报告了对葡萄球菌科和孪生球菌属基因组的蛋白质序列的详细分析,以鉴定特定于不同属和科级分类群的保守特征缺失(CSIs)。这些分析确定了 120 个新的 CSI,可稳健地标定不同的拟议科和属。鉴定出的 CSI 提供了独立的证据,证明 Gemella、Jeotgalicoccus、Macrococcus 和 Salinicoccus 属由两个不同的分支组成,可基于多个专有的 CSI 可靠地区分。我们建议将来自上述四个属的新分支的物种转移到新属 Gemelliphila gen. nov.、Phocicoccus gen. nov.、Macrococcoides gen. nov. 和 Lacicoccus gen. nov. 中。鉴定出的 CSI 也为葡萄球菌科分为一个经修正的葡萄球菌科和两个新科,深渊球菌科 Abyssicoccaceae fam. nov. 和 Salinicoccaceae fam. nov. 提供了强有力的证据。所有这些科都可以基于几个专有的 CSI 可靠地标定。