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基于核糖体DNA间隔序列多态性的酿酒酵母属系统发育分析。

Phylogenetic analysis of the Saccharomyces cerevisiae group based on polymorphisms of rDNA spacer sequences.

作者信息

Montrocher R, Verner M C, Briolay J, Gautier C, Marmeisse R

机构信息

CNRS, UMR 5557, Ecologie Microbienne du Sol', Université Lyon 1, Villeurbanne, France.

出版信息

Int J Syst Bacteriol. 1998 Jan;48 Pt 1:295-303. doi: 10.1099/00207713-48-1-295.

Abstract

The phylogenetic relationships between species of yeasts assigned to the Saccharomyces sensu stricto group, which includes Saccharomyces cerevisiae and Saccharomyces bayanus, were studied together with Saccharomyces pastorianus and Saccharomyces paradoxus. The experimental approaches used were RFLP analysis of the PCR-amplified rDNA internal transcribed spacer (ITS) and intergenic spacer, and total ITS sequence analysis. Both RFLP and sequence analyses gave fairly similar results. The gene trees generated with either of the two data sets showed the distribution of the yeasts into two major, well-separated, phylogenetic clusters called 'cerevisiae' and 'bayanus'. The 'cerevisiae' cluster included the S. cerevisiae type strain, together with most of the species (16 out of 23), whereas the 'bayanus' cluster included the remaining seven type strains. Therefore, analysis of rDNA sequences confirmed S. cerevisiae and S. bayanus as two well-defined taxa. However, S. pastorianus and S. paradoxus, the two other usually accepted taxa of the now-defined Saccharomyces sensu stricto complex, could not be clearly separated from S. bayanus and S. cerevisiae, respectively. However, in both PCR-RFLP and ITS sequence analyses, S. paradoxus had the outermost position in the 'cerevisiae' cluster. PCR-RFLP analysis of the ribosomal spacer sequences was also carried out on 26 Saccharomyces strains isolated in various wine-growing regions of France in an attempt to clarify their positions in the Saccharomyces phylogenetic tree. Compared to the diversity of the Saccharomyces type strains, less genetic diversity was detected among these yeasts and several of them exhibited identical RFLP patterns. Most of the wine yeast strains (16 out of 26) were closely related to each other and were found within the 'cerevisiae' cluster. The remaining 10 wine yeast strains branched within the 'bayanus' cluster. PCR-RFLP analysis of ribosomal spacer sequences thus appears to be a useful and appropriate method for the correct characterization of Saccharomyces yeast strains used in food processing.

摘要

对属于狭义酿酒酵母属(Saccharomyces sensu stricto group)的酵母菌种之间的系统发育关系进行了研究,该属包括酿酒酵母(Saccharomyces cerevisiae)和贝酵母(Saccharomyces bayanus),同时还研究了巴斯德酵母(Saccharomyces pastorianus)和奇异酵母(Saccharomyces paradoxus)。所采用的实验方法包括对PCR扩增的rDNA内部转录间隔区(ITS)和基因间隔区进行RFLP分析,以及对整个ITS序列进行分析。RFLP分析和序列分析都得出了相当相似的结果。用这两个数据集中的任何一个生成的基因树都显示,酵母被分为两个主要的、明显分开的系统发育簇,分别称为“酿酒酵母簇”和“贝酵母簇”。“酿酒酵母簇”包括酿酒酵母模式菌株,以及大多数物种(23个中的16个),而“贝酵母簇”包括其余7个模式菌株。因此,rDNA序列分析证实酿酒酵母和贝酵母是两个明确的分类单元。然而,狭义酿酒酵母复合体中另外两个通常被认可的分类单元,即巴斯德酵母和奇异酵母,分别无法与贝酵母和酿酒酵母清晰区分。不过,在PCR-RFLP分析和ITS序列分析中,奇异酵母在“酿酒酵母簇”中处于最外围位置。还对从法国不同葡萄酒产区分离出的26株酿酒酵母菌株进行了核糖体间隔区序列的PCR-RFLP分析,以试图明确它们在酿酒酵母系统发育树中的位置。与酿酒酵母模式菌株的多样性相比,在这些酵母中检测到的遗传多样性较少,其中一些表现出相同的RFLP模式。大多数葡萄酒酵母菌株(26个中的16个)彼此密切相关,并且位于“酿酒酵母簇”内。其余10个葡萄酒酵母菌株在“贝酵母簇”内分支。因此,核糖体间隔区序列的PCR-RFLP分析似乎是正确鉴定用于食品加工的酿酒酵母菌株的一种有用且合适的方法。

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