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首页> 外文期刊>International Journal of Food Microbiology >Fusarium sibiricum sp. nov, a novel type A trichothecene-producing Fusarium from northern Asia closely related to F. sporotrichioides and F. langsethiae
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Fusarium sibiricum sp. nov, a novel type A trichothecene-producing Fusarium from northern Asia closely related to F. sporotrichioides and F. langsethiae

机译:镰刀镰刀菌nov,来自亚洲北部的一种新型A型产生单端孢菌的镰刀菌,与孢子孢子虫和郎sethiae密切相关

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摘要

Production of type A trichothecenes has been reported in the closely related species Fusarium langsethiae and F. sporotrichioides. Here, we characterized a collection of Fusarium isolates from Siberia and the Russian Far East (hereafter Asian isolates) that produce high levels of the type A trichothecene T-2 toxin and are similar in morphology to the type A trichothecene-producing F. langsethiae, and to F. poae which often produces the type B trichothecene nivalenol. The Asian isolates possess unique macroscopic and microscopic characters and have a unique TG repeat in the nuclear ribosomal intergenic spacer (IGS rDNA) region. In Asian isolates, the TRI1-TRI16 locus, which determines type A versus type B trichothecene production in other species, is more similar in organization and sequence to the TRI1-TRI16 locus in F. sporotrichioides and F. langsethiae than to that in F. poae. Phylogenetic analysis of the TRI1 and TRI16 gene coding regions indicates that the genes in the Asian isolates are more closely related to those of F. sporotrichioides than F. langsethiae. Phylogenetic analysis of the beta-tubulin, translation elongation factor, RNA polymerase II and phosphate permease gene sequences resolved the Asian isolates into a well-supported sister lineage to F. sporotrichioides, with F. langsethiae forming a sister lineage to F. sporotrichioides and the Asian isolates. The Asian isolates are conspecific with Norwegian isolate IBT 9959 based on morphological and molecular analyses. In addition, the European F. langsethiae isolates from Finland and Russia were resolved into two distinct subgroups based on analyses of translation elongation factor and IGS rDNA sequences. Nucleotide polymorphisms within the IGS rDNA were used to design PCR primers that successfully differentiated the Asian isolates from F. sporotrichioides and F. langsethiae. Based on these data, we formally propose that the Asian isolates together with Norwegian isolate IBT 9959 comprise a novel phylogenetic species, F. sibiricum, while the two subgroups of F. langsethiae only represent intraspecific groups.
机译:在密切相关的镰刀菌镰刀菌和孢子孢子虫中已经报道了A型毛孢菌的生产。在这里,我们表征了一组来自西伯利亚和俄罗斯远东地区的镰刀菌分离株(以下称亚洲分离株),这些分离株产生高水平的A型单端孢菌素T-2毒素,并且形态与产生A型三端孢菌素的F. langsethiae相似,以及经常产生B型单端孢菌素新戊烯醇的F. poae。亚洲分离株具有独特的宏观和微观特征,在核糖体基因间隔区(IGS rDNA)区域具有独特的TG重复序列。在亚洲分离株中,TRI1-TRI16基因座(其决定其他物种的A型与B型单端孢菌素产量)在组织和序列上与F. sporotrichioides和F.langsethiae中的TRI1-TRI16基因座比在F.中更相似。 Poae。 TRI1和TRI16基因编码区的系统发育分析表明,亚洲分离株中的基因与孢子丝菌的基因比郎瑟氏菌更紧密相关。系统发育分析的β-微管蛋白,翻译延伸因子,RNA聚合酶II和磷酸盐通透酶基因序列解决了亚洲分离株成F. sporotrichioides的良好支持的姐妹谱系,而L. setsetaeae形成了F. sporotrichioides的姐妹谱系。亚洲分离株。根据形态和分子分析,亚洲分离株与挪威分离株IBT 9959是同种的。此外,根据对翻译延伸因子和IGS rDNA序列的分析,将来自芬兰和俄罗斯的欧洲兰氏。分离株分为两个不同的亚组。使用IGS rDNA内的核苷酸多态性设计PCR引物,该引物成功地将亚洲分离株与孢子孢子虫和郎sethiae分开。根据这些数据,我们正式建议亚洲分离株与挪威分离株IBT 9959一起构成一个新的系统发育种,西伯利亚镰刀菌,而郎sethiae的两个亚群仅代表种内群。

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