Van der Auwera G, De Wachter R
Departement Biochemie, Universiteit Antwerpen (UIA), Universiteitsplein 1, B 2610 Antwerpen, Belgium.
J Mol Evol. 1996 Nov;43(5):476-83. doi: 10.1007/BF02337520.
The 5.8S and 28S ribosomal RNA sequences of the chytridiomycete Blastocladiella emersonii were determined. These data were combined with 18S rRNA sequences in order to carry out a phylogenetic analysis based on distance matrix, parsimony, and maximum likelihood methods. The new data confirmed that chytridiomycetes are true fungi and not protists, as was already suggested on the basis of biochemical, ultrastructural, and 18S rRNA data. Within the fungal clade, B. emersonii formed the first line of divergence. The position of the fungi within the eukaryotic "crown" taxa was also reassessed, and the alveolate-stramenopile cluster appeared as their sister group. The stramenopiles also comprise a number of zoosporic fungi, which resemble chytridiomycetes in so many respects, e.g., production of motile spores, thallus morphology, and absorptive nutrition, that they have been classified together with them in the past. This suggests that the possible common ancestor of the fungi, stramenopiles, and alveolates may have been a zoosporic fungus, which would mean that zoosporic fungi are paraphyletic instead of polyphyletic as previously suggested.
测定了壶菌门真菌艾美球囊霉(Blastocladiella emersonii)的5.8S和28S核糖体RNA序列。将这些数据与18S rRNA序列相结合,以便基于距离矩阵、简约法和最大似然法进行系统发育分析。新数据证实,壶菌是真正的真菌而非原生生物,这一点在基于生化、超微结构和18S rRNA数据的研究中就已有所暗示。在真菌类群中,艾美球囊霉构成了分化的第一分支。同时也重新评估了真菌在真核生物“冠群”分类单元中的位置,发现肺泡虫-不等鞭毛类群是它们的姐妹群。不等鞭毛类还包括许多游动孢子真菌,它们在许多方面与壶菌相似,例如产生游动孢子、菌体形态以及吸收营养,以至于过去曾将它们与壶菌归为一类。这表明真菌、不等鞭毛类和肺泡虫类可能的共同祖先可能是一种游动孢子真菌,这意味着游动孢子真菌是并系的,而非如之前所认为的那样是多系的。