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Phylogenetic relationships and virulence assays of Fusarium secorum from sugar beet suggest a new look at species designations

机译:来自甜菜镰刀镰刀菌的系统发育关系和毒力学测定表明新看物种名称

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Fusarium spp. are responsible for significant yield losses in sugar beet (Beta vulgaris) with Fusarium oxysporum f. sp. betae most often reported as the primary causal agent. Recently, a new species, F. secorum, was reported to cause disease in sugar beet but little is known on the range of virulence within F. secorum or how this compares to the virulence and phylogenetic relationships previously reported for Fusarium pathogens of sugar beet. To initiate this study, partial translation elongation factor 1-alpha (TEF1) sequences from seven isolates of F. secorum were obtained and the data were added to a previously published phylogenetic tree that includes F. oxysporum f. sp. betae. Unexpectedly, the F. secorum strains nested into a distinct group that included isolates previously reported as F. oxysporum f. sp. betae. These results prompted an expanded phylogenetic analysis of TEF1 sequences from genomes of publicly available Fusarium spp., resulting in the additional discovery that some isolates previously reported as F. oxysporum f. sp. betae are F. commune, a species that is not known to be a sugar beet pathogen. Inoculation of sugar beet with differing genetic backgrounds demonstrated that all Fusarium strains have a significant range in virulence depending on cultivar. Taken together, the data suggest that F. secorum is more widespread than previously thought. Consequently, future screening for disease resistance should rely on isolates representing the full diversity of the Fusarium population that impacts sugar beet.
机译:镰刀菌SPP。对糖甜菜(β除去)的显着产量损失负责镰刀虫F镰刀虫F. SP。 β最常被报告为主要因果症。最近,据报道,据报道了一种新的物种F. Secorum在甜菜中引起疾病​​,但对F. recorum内的毒力范围或者这令人讨厌的是,这与先前针对糖甜菜镰刀菌病原体的毒力和系统发育关系的毒力和系统发育关系。为了启动该研究,获得了来自F. Secorum的七分离株的部分翻译伸长因子1-α(TEF1)序列,并将数据加入到包括F. oxysporum f的先前公布的系统发育树中。 SP。 betae。出乎意料地,F. Secorum菌株嵌入到一个明显的基团中,包括先前报告为F. oxysporum f的分离物。 SP。 betae。这些结果促使来自公共镰刀菌SPP的基因组的TEF1序列的扩增系统发育分析。,导致额外的发现,即先前报告为F. oxysporum f的一些分离物。 SP。 Betae是F. Commune,一种未知是甜菜病原体的物种。与不同的遗传背景接种糖甜菜表明,所有镰刀菌株的诱导菌株均有显着的范围,这取决于栽培品种。在一起,数据表明F. Seconum比以前思想更广泛。因此,未来的抗病筛查应依赖于代表影响糖束的镰刀菌群的全部多样性的分离物。

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