James S A, Roberts I N, Collins M D
Department of Genetics and Microbiology, Institute of Food Research, Norwich Laboratory, UK.
Int J Syst Bacteriol. 1998 Apr;48 Pt 2:591-6. doi: 10.1099/00207713-48-2-591.
A phylogenetic investigation of the ascomycetous yeast genus Williopsis was performed by using 18S rRNA gene sequence analysis. Comparative sequence analysis revealed the genus to be phylogenetically heterogeneous. The five varieties of Williopsis saturnus [var. mrakii, var. sargentensis, var. saturnus (type), var. suaveolens and var. subsufficiens] were found to have identical 18S rRNA gene sequences and formed a distinct group, quite separate from all other Williopsis and non-Williopsis species examined. Williopsis mucosa was found to be the closet phylogenetic relative to the Williopsis saturnus group, however a sequence divergence of approximately 2.3% suggests this species may belong to a separate genus. The recently described species Williopsis salicorniae was found to exhibit a relatively close association with Ogataea minuta (identical to Pichia minuta), the type species of the genus Ogataea. The remaining two members of the genus, Williopsis californica and Williopsis pratensis, were found to form distinct lineages, displaying no specific association with any other Williopsis or non-Williopsis species. Based on comparative analysis of 18S rRNA genes it is apparent that the genus Williopsis as presently constituted is not monophyletic, and that the five currently recognized species form separate sublines each potentially worthy of separate generic status. The genus Williopsis should be restricted to the type species Williopsis saturnus and its five varieties. Despite the five varieties of Williopsis saturnus being genealogically indistinguishable at the 18S rRNA gene level, sequence analysis of the Internal transcribed spacer (ITS) region revealed that the five varieties could be differentiated on both their ITS1 and their ITS2 sequences, providing further evidence of the value of ITS sequences for discrimination of yeasts at the subspecies level.
利用18S rRNA基因序列分析对子囊菌酵母属Williopsis进行了系统发育研究。比较序列分析表明该属在系统发育上具有异质性。发现土星Williopsis的五个变种[mrakii变种、sargentensis变种、土星变种(模式变种)、suaveolens变种和subsufficiens变种]具有相同的18S rRNA基因序列,并形成了一个独特的类群,与所有其他检测的Williopsis和非Williopsis物种明显分开。发现粘质Williopsis是与土星Williopsis组亲缘关系最近的物种,然而约2.3%的序列差异表明该物种可能属于一个单独的属。最近描述的盐生Williopsis物种被发现与Ogataea属的模式物种小 Ogataea(等同于毕赤酵母)表现出相对密切的关联。该属的另外两个成员,加利福尼亚Williopsis和草地Williopsis,被发现形成了不同的谱系,与任何其他Williopsis或非Williopsis物种没有特定关联。基于18S rRNA基因的比较分析,很明显目前构成的Williopsis属不是单系的,并且目前认可的五个物种形成了单独的亚系,每个亚系可能都值得具有单独的属地位。Williopsis属应仅限于模式物种土星Williopsis及其五个变种。尽管土星Williopsis的五个变种在18S rRNA基因水平上在谱系上无法区分,但内部转录间隔区(ITS)区域的序列分析表明,这五个变种可以根据其ITS1和ITS2序列进行区分,这进一步证明了ITS序列在亚种水平上区分酵母的价值。