Taxonomy of Aspergillus series Versicolores: species reduction and lessons learned about intraspecific variability.

IF 14.1 1区 生物学 Q1 MYCOLOGY Studies in Mycology Pub Date : 2022-12-01 Epub Date: 2022-11-16 DOI:10.3114/sim.2022.102.02
F Sklenář, K Glässnerová, Ž Jurjević, J Houbraken, R A Samson, C M Visagie, N Yilmaz, J Gené, J Cano, A J Chen, A Nováková, T Yaguchi, M Kolařík, V Hubka
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Abstract

Aspergillus series Versicolores members occur in a wide range of environments and substrates such as indoor environments, food, clinical materials, soil, caves, marine or hypersaline ecosystems. The taxonomy of the series has undergone numerous re-arrangements including a drastic reduction in the number of species and subsequent recovery to 17 species in the last decade. The identification to species level is however problematic or impossible in some isolates even using DNA sequencing or MALDI-TOF mass spectrometry indicating a problem in the definition of species boundaries. To revise the species limits, we assembled a large dataset of 518 strains. From these, a total of 213 strains were selected for the final analysis according to their calmodulin (CaM) genotype, substrate and geography. This set was used for phylogenetic analysis based on five loci (benA, CaM, RPB2, Mcm7, Tsr1). Apart from the classical phylogenetic methods, we used multispecies coalescence (MSC) model-based methods, including one multilocus method (STACEY) and five single-locus methods (GMYC, bGMYC, PTP, bPTP, ABGD). Almost all species delimitation methods suggested a broad species concept with only four species consistently supported. We also demonstrated that the currently applied concept of species is not sustainable as there are incongruences between single-gene phylogenies resulting in different species identifications when using different gene regions. Morphological and physiological data showed overall lack of good, taxonomically informative characters, which could be used for identification of such a large number of existing species. The characters expressed either low variability across species or significant intraspecific variability exceeding interspecific variability. Based on the above-mentioned results, we reduce series Versicolores to four species, namely A. versicolor, A. creber, A. sydowii and A. subversicolor, and the remaining species are synonymized with either A. versicolor or A. creber. The revised descriptions of the four accepted species are provided. They can all be identified by any of the five genes used in this study. Despite the large reduction in species number, identification based on phenotypic characters remains challenging, because the variation in phenotypic characters is high and overlapping among species, especially between A. versicolor and A. creber. Similar to the 17 narrowly defined species, the four broadly defined species do not have a specific ecology and are distributed worldwide. We expect that the application of comparable methodology with extensive sampling could lead to a similar reduction in the number of cryptic species in other extensively studied Aspergillus species complexes and other fungal genera. Citation: Sklenář F, Glässnerová K, Jurjević Ž, Houbraken J, Samson RA, Visagie CM, Yilmaz N, Gené J, Cano J, Chen AJ, Nováková A, Yaguchi T, Kolařík M, Hubka V (2022). Taxonomy of Aspergillus series Versicolores: species reduction and lessons learned about intraspecific variability. Studies in Mycology 102 : 53-93. doi: 10.3114/sim.2022.102.02.

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曲霉系列 Versicolores 的分类学:物种减少和种内变异的经验教训。
曲霉系列 Versicolores 成员广泛存在于各种环境和基质中,如室内环境、食品、临床材料、土壤、洞穴、海洋或高盐度生态系统。该系列的分类经历了多次重新排列,包括物种数量的急剧减少,以及在过去十年中恢复到 17 个物种。然而,即使使用 DNA 测序法或 MALDI-TOF 质谱法,也很难或无法对某些分离物进行物种鉴定,这表明物种界限的界定存在问题。为了修订物种界限,我们收集了一个包含 518 株菌株的大型数据集。根据钙调蛋白(CaM)的基因型、底物和地理位置,我们从中挑选出 213 株菌株进行最终分析。这组菌株被用于基于五个基因位点(benA、CaM、RPB2、Mcm7、Tsr1)的系统进化分析。除了经典的系统发生学方法外,我们还使用了基于多物种凝聚(MSC)模型的方法,包括一种多焦点方法(STACEY)和五种单焦点方法(GMYC、bGMYC、PTP、bPTP、ABGD)。几乎所有的物种划分方法都提出了一个宽泛的物种概念,只有四个物种得到了一致支持。我们还证明,目前使用的物种概念是不可持续的,因为在使用不同基因区域时,单基因系统发育之间存在不一致,导致物种鉴定结果不同。形态学和生理学数据表明,总体上缺乏良好的、分类信息丰富的特征,而这些特征可用来识别如此众多的现有物种。这些特征要么在不同物种之间的变异性较低,要么种内变异性明显超过种间变异性。基于上述结果,我们将 Versicolores 系列减少为 4 个种,即 A. versicolor、A. creber、A. sydowii 和 A. subversicolor,其余种与 A. versicolor 或 A. creber 同名。提供了四个已接受种的修订描述。它们都可以通过本研究中使用的五种基因中的任何一种进行鉴定。尽管物种数量大幅减少,但基于表型特征的鉴定仍具有挑战性,因为表型特征的变异很大,且物种间存在重叠,尤其是 A. versicolor 和 A. creber 之间。与 17 个狭义种类似,4 个广义种也没有特定的生态学特征,分布于世界各地。我们预计,在广泛采样的情况下应用可比方法,可使其他被广泛研究的曲霉菌种群和其他真菌属中的隐蔽种数量减少。引用:Sklenář F, Glässnerová K, Jurjević Ž, Houbraken J, Samson RA, Visagie CM, Yilmaz N, Gené J, Cano J, Chen AJ, Nováková A, Yaguchi T, Kolařík M, Hubka V (2022)。Aspergillus series Versicolores 的分类学:物种减少和种内变异的经验教训。Doi: 10.3114/sim.2022.102.02.
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来源期刊
Studies in Mycology
Studies in Mycology 生物-真菌学
CiteScore
35.60
自引率
3.00%
发文量
7
期刊介绍: The international journal Studies in Mycology focuses on advancing the understanding of filamentous fungi, yeasts, and various aspects of mycology. It publishes comprehensive systematic monographs as well as topical issues covering a wide range of subjects including biotechnology, ecology, molecular biology, pathology, and systematics. This Open-Access journal offers unrestricted access to its content. Each issue of Studies in Mycology consists of around 5 to 6 papers, either in the form of monographs or special focused topics. Unlike traditional length restrictions, the journal encourages submissions of manuscripts with a minimum of 50 A4 pages in print. This ensures a thorough exploration and presentation of the research findings, maximizing the depth of the published work.
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