双孢镰刀菌,镰刀菌-镰刀菌复合体中与向日葵相关的一个新的隐蔽种。

IF 2.6 2区 生物学 Q2 MYCOLOGY Mycologia Pub Date : 2023-11-01 Epub Date: 2023-11-14 DOI:10.1080/00275514.2023.2259277
Tatiana Yu Gagkaeva, Aleksandra S Orina, Maria M Gomzhina, Olga P Gavrilova
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引用次数: 0

摘要

根据多点谱系、形态、生理、生态、交配类型和真菌毒素产生数据,将一种与向日葵相关的镰刀菌物种正式描述为新发现的双孢镰刀菌。毕氏F.biliae菌株在藤仓F.fujikuroi物种复合体的非洲分支中形成了一个谱系专属谱系。将毕氏囊线虫菌株的形态特征与亲缘关系密切的叶状囊线虫菌株NRRL 13617的形态特征进行比较,发现这两个物种的主要微形态相似:在单体和多体上产生假头和短链的大量单细胞微体,并且不存在大孔菌和孢子虫。当菌株在不同的琼脂培养基上生长时,这两个物种之间存在轻微但显著的差异,以及在微群落的形状和宽度方面。从有症状的向日葵中分离的双孢镰刀菌菌株对所测试的菊科成员没有致病性;显然,它们是向日葵组织中的腐生菌或内生菌。高效液相色谱-串联质谱(HPLC-MS/MS)分析表明,这两个物种的菌株在真菌毒素生产方面存在差异。在高压灭菌的水稻上,毕氏镰刀菌不产生伏马菌素和白僵菌素,但产生念珠菌素,而phyllophilum产生所有这些真菌毒素。一种对交配型等位基因特异的聚合酶链式反应(PCR)测定法将毕氏F.biliae鉴定为具有MAT1-1和MAT1-2自形的假定异源物种,但实验室杂交没有成功。确定内生新物种双孢镰刀菌的面积和寄主范围是未来研究的优先事项。
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Fusarium bilaiae, a new cryptic species in the Fusarium fujikuroi complex associated with sunflower.

A Fusarium species associated with sunflower based on multilocus genealogy, morphological, physiological, ecological, mating type, and mycotoxin production data is formally described as the newly discovered species Fusarium bilaiae. The F. bilaiae strains formed a genealogically exclusive lineage within the African clade of the F. fujikuroi species complex. Comparison of morphological characteristics of F. bilaiae strains with those of the closely related F. phyllophilum strain NRRL 13617 revealed similarities in the main micromorphology of both species: production of numerous one-celled microconidia in false heads and short chains on monophialides and polyphialides and the absence of macroconidia and sporodochia. There was a slight but significant distinction between the two species when the strains were grown on different agar media, as well as in the shape and width of microconidia. Fusarium bilaiae strains isolated from symptomatic sunflower were not pathogenic to members of the Asteraceae tested; apparently, they live as saprophytes or endophytes in sunflower tissues. A difference between the strains of the two species in the production of mycotoxins was demonstrated with high-performance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS) analysis. On autoclaved rice, F. bilaiae did not produce fumonisins and beauvericin but produced moniliformin, whereas F. phyllophilum produced all these mycotoxins. A polymerase chain reaction (PCR) assay specific for mating type alleles identified F. bilaiae as a putative heterothallic species with MAT1-1 and MAT1-2 idiomorphs, but laboratory crosses were unsuccessful. Determining the area and host range of the new endophytic species F. bilaiae is a priority for future research.

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来源期刊
Mycologia
Mycologia 生物-真菌学
CiteScore
6.20
自引率
3.60%
发文量
56
审稿时长
4-8 weeks
期刊介绍: International in coverage, Mycologia presents recent advances in mycology, emphasizing all aspects of the biology of Fungi and fungus-like organisms, including Lichens, Oomycetes and Slime Molds. The Journal emphasizes subjects including applied biology, biochemistry, cell biology, development, ecology, evolution, genetics, genomics, molecular biology, morphology, new techniques, animal or plant pathology, phylogenetics, physiology, aspects of secondary metabolism, systematics, and ultrastructure. In addition to research articles, reviews and short notes, Mycologia also includes invited papers based on presentations from the Annual Conference of the Mycological Society of America, such as Karling Lectures or Presidential Addresses.
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