Bioinformatics and Genomics Programme, Centre for Genomic Regulation (CRG) and UPF, Doctor Aiguader, 88, 08003 Barcelona, Spain.
BMC Biol. 2012 May 31;10:47. doi: 10.1186/1741-7007-10-47.
Microsporidia is one of the taxa that have experienced the most dramatic taxonomic reclassifications. Once thought to be among the earliest diverging eukaryotes, the fungal nature of this group of intracellular pathogens is now widely accepted. However, the specific position of microsporidia within the fungal tree of life is still debated. Due to the presence of accelerated evolutionary rates, phylogenetic analyses involving microsporidia are prone to methodological artifacts, such as long-branch attraction, especially when taxon sampling is limited.
Here we exploit the recent availability of six complete microsporidian genomes to re-assess the long-standing question of their phylogenetic position. We show that microsporidians have a similar low level of conservation of gene neighborhood with other groups of fungi when controlling for the confounding effects of recent segmental duplications. A combined analysis of thousands of gene trees supports a topology in which microsporidia is a sister group to all other sequenced fungi. Moreover, this topology received increased support when less informative trees were discarded. This position of microsporidia was also strongly supported based on the combined analysis of 53 concatenated genes, and was robust to filters controlling for rate heterogeneity, compositional bias, long branch attraction and heterotachy.
Altogether, our data strongly support a scenario in which microsporidia is the earliest-diverging clade of sequenced fungi.
微孢子虫是经历了最剧烈的分类重排的分类群之一。曾经被认为是最早分化的真核生物之一,这个细胞内病原体群的真菌性质现在被广泛接受。然而,微孢子虫在真菌生命树中的具体位置仍存在争议。由于进化率的加速,涉及微孢子虫的系统发育分析容易受到方法学伪影的影响,例如长枝吸引,尤其是在分类群采样有限的情况下。
在这里,我们利用最近获得的六个完整的微孢子虫基因组,重新评估了它们在系统发育位置上的长期存在的问题。我们表明,在控制最近片段重复的混杂影响时,微孢子虫与其他真菌群具有相似的低水平的基因邻域保守性。数千个基因树的综合分析支持这样一种拓扑结构,即微孢子虫是所有已测序真菌的姐妹群。此外,当丢弃信息量较少的树时,这种拓扑结构得到了更多的支持。这种微孢子虫的位置也基于对 53 个串联基因的综合分析得到了强烈支持,并且对控制速率异质性、组成偏差、长枝吸引和异速性的过滤器具有稳健性。
总之,我们的数据强烈支持这样一种情景,即微孢子虫是最早分化的已测序真菌类群。