Barcelona Supercomputing Centre (BSC-CNS), Plaça Eusebi Güell, 1-3, 08034, Barcelona, Spain.
Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology, Baldiri Reixac, 10, 08028, Barcelona, Spain.
BMC Biol. 2022 Oct 8;20(1):226. doi: 10.1186/s12915-022-01412-1.
Candida glabrata is an opportunistic yeast pathogen thought to have a large genetic and phenotypic diversity and a highly plastic genome. However, the lack of chromosome-level genome assemblies representing this diversity limits our ability to accurately establish how chromosomal structure and gene content vary across strains.
Here, we expanded publicly available assemblies by using long-read sequencing technologies in twelve diverse strains, obtaining a final set of twenty-one chromosome-level genomes spanning the known C. glabrata diversity. Using comparative approaches, we inferred variation in chromosome structure and determined the pan-genome, including an analysis of the adhesin gene repertoire. Our analysis uncovered four new adhesin orthogroups and inferred a rich ancestral adhesion repertoire, which was subsequently shaped through a still ongoing process of gene loss, gene duplication, and gene conversion.
C. glabrata has a largely stable pan-genome except for a highly variable subset of genes encoding cell wall-associated functions. Adhesin repertoire was established for each strain and showed variability among clades.
光滑念珠菌是一种机会性酵母病原体,被认为具有较大的遗传和表型多样性以及高度可塑性的基因组。然而,缺乏代表这种多样性的染色体水平基因组组装限制了我们准确确定染色体结构和基因含量在菌株间变化的能力。
在这里,我们通过在十二种不同的菌株中使用长读测序技术扩展了公开可用的组装,获得了二十一个染色体水平基因组的最终集合,涵盖了已知的光滑念珠菌多样性。使用比较方法,我们推断了染色体结构的变化,并确定了泛基因组,包括对黏附素基因库的分析。我们的分析揭示了四个新的黏附素直系同源群,并推断出一个丰富的祖先黏附素库,随后通过基因缺失、基因复制和基因转换的持续过程进行了塑造。
除了细胞壁相关功能的基因高度可变亚群外,光滑念珠菌的泛基因组基本稳定。为每个菌株建立了黏附素库,并显示出了在进化枝间的变异性。