Cadez Neza, Raspor Peter, Smith Maudy Th
University of Ljubljana, Biotechnical Faculty, Department of Food Science and Technology, Jamnikarjeva 101, 1000 Ljubljana, Slovenia.
Centraalbureau voor Schimmelcultures, PO Box 85167, 3508 AD Utrecht, The Netherlands.
Int J Syst Evol Microbiol. 2006 May;56(Pt 5):1157-1165. doi: 10.1099/ijs.0.64052-0.
Two protein-coding genes, actin and translation elongation factor-1alpha (EF-1alpha), as well as two ribosomal gene regions, D1/D2 domains of the large subunit and both internal transcribed spacers including the 5.8S gene region, were evaluated regarding their usefulness for reconstruction of phylogenetic relationships in the Hanseniaspora-Kloeckera species group. This included analyses of sequence divergence values, heterogeneity of evolutionary rates and the reliability of the inferred trees. Both protein-coding genes showed greater capacities to resolve at the strain level and between the closely related species of Hanseniaspora-Kloeckera, compared with the ribosomal gene regions. However, to obtain a fully resolved and reliable phylogenetic tree that reflected the biological relationships it was necessary to combine three congruent sequence datasets. The novel species Hanseniaspora pseudoguilliermondii sp. nov. (type strain CBS 8772T) is described as a result of the application of various molecular approaches to delimit species. Furthermore, incongruent gene genealogies of genetically divergent strains of Hanseniaspora occidentalis, as determined by amplified fragment length polymorphism analysis and DNA-DNA reassociation measurements, indicated the presence of two novel varieties, H. occidentalis var. occidentalis (type strain CBS 2592T) and H. occidentalis var. citrica var. nov. (type strain CBS 6783T), which could be distinguished by habitat preference.
对两个蛋白质编码基因(肌动蛋白和翻译延伸因子-1α ,即EF-1α)以及两个核糖体基因区域(大亚基的D1/D2结构域和包括5.8S基因区域在内的两个内转录间隔区)在汉逊酵母属-克勒克酵母属物种组系统发育关系重建中的实用性进行了评估。这包括对序列分歧值、进化速率异质性以及推断树的可靠性的分析。与核糖体基因区域相比,这两个蛋白质编码基因在菌株水平以及汉逊酵母属-克勒克酵母属的近缘物种之间显示出更强的分辨能力。然而,为了获得一个能反映生物学关系的完全解析且可靠的系统发育树,有必要合并三个一致的序列数据集。通过应用各种分子方法来界定物种,描述了新物种拟季也蒙汉逊酵母(Hanseniaspora pseudoguilliermondii sp. nov.)(模式菌株CBS 8772T)。此外,通过扩增片段长度多态性分析和DNA-DNA重联测量确定的西方汉逊酵母(Hanseniaspora occidentalis)遗传分化菌株的不一致基因谱系,表明存在两个新变种,西方汉逊酵母西方变种(H. occidentalis var. occidentalis)(模式菌株CBS 2592T)和西方汉逊酵母柠檬变种(H. occidentalis var. citrica var. nov.)(模式菌株CBS 6783T),它们可通过栖息地偏好来区分。