Keely Scott P, Fischer Jared M, Cushion Melanie T, Stringer James R
Department of Molecular Genetics, Biochemistry and Microbiology, University of Cincinnati College of Medicine, 231 Albert Sabin Way, Cincinnati, OH 45267-0524, USA.
Department of Internal Medicine, Division of Infectious Diseases, University of Cincinnati College of Medicine, 231 Albert Sabin Way, Cincinnati, OH 45267-0524, USA.
Microbiology (Reading). 2004 May;150(Pt 5):1153-1165. doi: 10.1099/mic.0.26921-0.
Pneumocystis is a fungal genus that contains multiple species. One member of the genus that has not been formally analysed for its phylogenetic relationships and possible species status is the Pneumocystis found in laboratory mice, Pneumocystis murina sp. nov. (type strain ATCC PRA-111(T)=CBS 114898(T)), formerly known as Pneumocystis carinii f. sp. muris. To advance research in this area, approximately 3000 bp of additional DNA sequence were obtained from the locus encoding rRNAs. This sequence and others were used to determine genetic distances between P. murina and other members of the genus. These distances indicated that P. murina DNA is most similar to that of the species of Pneumocystis found in laboratory rats. Nevertheless, P. murina is at least as diverged from these other Pneumocystis species as species in other fungal genera are from each other. The 18S rRNA gene sequence divergence exhibited by P. murina could not be ascribed to accelerated evolution of this gene as similar levels of divergence were observed at seven other loci. When five genes were used to construct phylogenetic trees for five Pneumocystis taxa, including P. murina, all the trees had the same topology, indicating that genes do not flow among these taxa. The gene trees were all strongly supported by statistical tests. When sequences from the rRNA-encoding locus were used to estimate the time of divergence of P. murina, the results indicated that P. murina is as old as the mouse. Taken together, these data support previous recognition of multiple species in the genus and indicate that P. murina is a phylogenetic species as well.
肺孢子菌是一个包含多个物种的真菌属。该属中一个尚未对其系统发育关系和可能的物种地位进行正式分析的成员是在实验室小鼠中发现的肺孢子菌,即新种鼠肺孢子菌(模式菌株ATCC PRA - 111(T)=CBS 114898(T)),以前称为卡氏肺孢子菌鼠亚种。为了推进该领域的研究,从编码核糖体RNA的基因座获得了约3000 bp的额外DNA序列。该序列和其他序列被用于确定鼠肺孢子菌与该属其他成员之间的遗传距离。这些距离表明,鼠肺孢子菌的DNA与在实验室大鼠中发现的肺孢子菌物种的DNA最为相似。然而,鼠肺孢子菌与这些其他肺孢子菌物种的差异程度至少与其他真菌属中的物种彼此之间的差异程度相同。鼠肺孢子菌表现出的18S rRNA基因序列差异不能归因于该基因的加速进化,因为在其他七个基因座也观察到了类似水平的差异。当使用五个基因构建包括鼠肺孢子菌在内的五个肺孢子菌分类单元的系统发育树时,所有的树都具有相同的拓扑结构,表明基因在这些分类单元之间不流动。基因树均得到了统计检验的有力支持。当使用来自编码核糖体RNA基因座的序列来估计鼠肺孢子菌的分歧时间时,结果表明鼠肺孢子菌与小鼠一样古老。综上所述,这些数据支持了该属中先前对多个物种的认识,并表明鼠肺孢子菌也是一个系统发育物种。