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Biodiversity of Fusarium species in Mexico associated with ear rot in maize and their identification using a phylogenetic approach

机译:墨西哥镰刀菌与玉米穗腐病相关的生物多样性并通过系统进化方法鉴定

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摘要

Fusariumproliferatum, F. subglutinans, and F. verticillioides are known causes of ear and kernel rot in maize worldwide. In Mexico, only F. verticillioides and F. subglutinans, have been reported previously as causal agents of this disease. However, Fusarium isolates with different morphological characteristics to the species that are known to cause this disease were obtained in the Highland-Valley region of this country from symptomatic and symptomless ears of native and commercial maize genotypes. Moreover, while the morphological studies were not sufficient to identify the correct taxonomic position at the species level, analyses based in the Internal Transcribed Spacer region and the Nuclear Large Subunit Ribosomal partial sequences allowed for the identification of F. subglutinans, F. solani, and F. verticillioides, as well as four species (F. chlamydosporum, F. napiforme, F. poae, and F. pseudonygamai) that had not previously been reported to be associated with ear rot. In addition, F. napiforme and F. solani were absent from symptomless kernels. Phylogenetic analysis showed genetic changes in F. napiforme, and F. pseudonygamai isolates because they were not true clones, and probably constitute separate sibling species. The results of this study suggest that the biodiversity of Fusarium species involved in ear rot in Mexico is greater than that reported previously in other places in the world. This new knowledge will permit a better understanding of the relationship between all the species involved in ear rot disease and their relationship with maize.
机译:Fusariumproliferatum,F。subglutinans和F. verticillioides是世界范围内已知的玉米穗和籽粒腐烂的病因。在墨西哥,以前仅报道过网状葡萄球菌和谷胶葡萄球菌是该病的病因。但是,在该国的高地-山谷地区,从天然和商业玉米基因型有症状和无症状的穗中获得了与已知引起这种疾病的物种具有不同形态特征的镰刀菌分离株。此外,虽然形态学研究不足以在物种水平上识别正确的分类学位置,但基于内部转录间隔区和核大亚基核糖体部分序列的分析可以鉴定出谷胶镰刀菌,茄形镰刀菌和以前没有报道与叶腐病相关的F. verticillioides以及四种物种(F. chlamydosporum,F。napiforme,F。poae和F. pseudonygamai)。此外,无症状谷粒中不存在鹰嘴豆形菌和茄形镰刀菌。系统发育分析显示 F的遗传变化。 napiforme F。 pseudonygamai 分离物,因为它们不是真正的克隆,可能构成单独的兄弟姐妹物种。这项研究的结果表明,墨西哥与耳腐有关的 Fusarium 物种的生物多样性要比世界上其他地区以前报道的要大。这种新知识将使人们更好地了解与耳腐病有关的所有物种之间的关系以及它们与玉米之间的关系。

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