首页> 外文期刊>The Journal of General and Applied Microbiology >Identity of the xerophilic species Aspergillus penicilliodes: integrated analysis of the genotypic and phenotypic characters
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Identity of the xerophilic species Aspergillus penicilliodes: integrated analysis of the genotypic and phenotypic characters

机译:嗜干菌青霉曲霉的身份:基因型和表型特征的综合分析

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摘要

We examined the identity of Aspergillus penicillioides, the typical xerophilic and strictly anamorphic species, using an integrated analysis of the genotypic and phenotypic characters. Our experimental methods on two genotypic characters, i.e., DNA base composition using the HPLC method and DNA relatedness using the nitrocellulose filter hybridization technique between A. flavus, A. oryzae, and their close relations revealed a good agreement with the values by buoyant density (for DNA base composition) and spectrophotometric determination (for DNA relatedness) reported by Kurtzman et al. in 1986. On the basis of these comparisons, we examined DNA base composition and DNA relatedness of six selected strains of A. penicillioides, including IFO 8155 (originally described as A. vitricola), one strain of A. restrictus, and the respective strains from Eurotium amstelodami, E. repens, and E. rubrum. As a result, five strains within A. penicillioides, including the neotype strain NRRL 4548, had G+C contents of 46 to 49 mol%, whereas IFO 8155 had 50 mol%. A. restrictus had 52 mol%, and three Eurotium species ranged from 46 to 49 mol%. The DNA relatedness between A. penicillioides (five strains), except for IFO 8155, exhibited values greater than 70%, but the DNA complementarity between four strains and IFO 8155 in A. penicillioides revealed values of less than 40%. DNA relatedness values between three species of Eurotium were 65 to 72%. We determined 18S, 5.8S, and ITS rDNA sequences as other genotypic characters from A. penicillioides (six strains), A. restrictus, and related teleomorphic species of Eurotium. In three phylogenetic trees inferred from these sequences, five strains of A. penicillioides, including the neotype strain, were closely related to each other, whereas IFO 8155 was distantly related and grouped with other xerophilic species. Our results have suggested that A. penicillioides typified by NRRL 4548 and A. penicillioides IFO 8155 (ex holotype of A. vitricola) are not conspecific. The enzyme patterns as a genotypic character and general morphology and conidial ornamentation types as phenotypic characters supported this conclusion. Therefore the name A. vitricola Ohtsuki, typified by the holotype strain IFO 8155, should be revived. Evolutionary affinities among Aspergillus species and related teleomorphs, including the xerophilic taxa, are discussed.
机译:我们通过对基因型和表型特征的综合分析,研究了典型的嗜干性和严格变形性的青霉曲霉的身份。我们对两个基因型特征的实验方法,即使用HPLC方法的DNA碱基组成和使用米曲霉,米曲霉之间的硝酸纤维素滤膜杂交技术进行的DNA相关性研究,它们的紧密关系显示出与浮力密度值的良好一致性( (用于DNA碱基组成)和分光光度法测定(用于DNA相关性)。在1986年。根据这些比较,我们检查了六种选定的青霉曲霉菌株的DNA碱基组成和DNA相关性,包括IFO 8155(原名A. vitricola),一种限制性曲霉和相应菌株。来自Euro(Euttium amstelodami),白毛大肠埃希菌(E. repens)和大肠埃希菌(E. rubrum)。结果,包括新型菌株NRRL 4548在内的青霉菌中的五个菌株具有46至49mol%的G + C含量,而IFO 8155具有50mol%。限制restrict曲霉的含量为52摩尔%,三种Euro的含量为46到49摩尔%。除IFO 8155之外,青霉菌(5个菌株)之间的DNA相关性显示出大于70%的值,但青霉菌中4个菌株与IFO 8155之间的DNA互补性显示值小于40%。三种species之间的DNA相关性值为65%至72%。我们确定了18S,5.8S和ITS rDNA序列为其他A. penicillioides(六个菌株),A.strictus和相关tele形的其他基因型特征。从这些序列推论出的三棵系统发育树中,包括新型菌株在内的五种青霉菌菌株彼此密切相关,而IFO 8155则与其他亲叶物种远缘相关。我们的结果表明,以NRRL 4548和A. penicillioides IFO 8155为代表的A. penicillioidoids(玻璃体曲霉的完整型)不是同种的。作为基因型特征的酶模式以及作为表型特征的一般形态和分生孢子装饰类型都支持这一结论。因此,应恢复以全型菌株IFO 8155为代表的玻璃短杆菌A.tsutrice。讨论了曲霉菌种和相关的远形体,包括嗜干生物分类群之间的进化亲和力。

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