首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Multilocus phylogeny reveals an association of agriculturally important Fusarium solani species complex (FSSC) 11, and clinically important FSSC 5 and FSSC 3+4 with soybean roots in the north central United States
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Multilocus phylogeny reveals an association of agriculturally important Fusarium solani species complex (FSSC) 11, and clinically important FSSC 5 and FSSC 3+4 with soybean roots in the north central United States

机译:多基因组系统发育揭示了在美国北部中部具有农业重要性的镰刀菌(Fusarium solani)种复合物(FSSC)11,具有临床重要性的FSSC 5和FSSC 3 + 4与大豆根的关联

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摘要

The Fusarium solani species complex (FSSC) includes important root pathogens of soybean in the United States, but the evolutionary lineages associated with soybean root rot are unknown. A multilocus phylogeny based on 93 isolates from soybean and pea roots from North Dakota and Minnesota revealed that root rot was associated with three known phylogenetic species, FSSC 3 + 4 (=Fusarium falciforme) (3 % of isolates), FSSC 5 (60 %), FSSC 11 (34 %), and one unknown species, FSSC X (2 %). Of these species FSSC 5 and FSSC 3 + 4 are clinically important while FSSC 11 is a plant pathogen. Isolates from FSSC 11 were pathogenic on soybean, dry bean, pea and lentil, and did not grow at 37 A degrees C. However, isolates from FSSC 5 were weakly to non-pathogenic, but grew at 37 A degrees C. Isolates from both FSSC 5 and FSSC 11 were highly resistant to fludioxonil in vitro. This is the first study revealing the pathogenic robustness of FSSC 11 in causing root rot among Fabaceae crops and also the association of clinically important members of the FSSC with roots of a widely grown field crop in the United States.
机译:在美国,茄枯萎菌种复合物(FSSC)包括重要的大豆根病原体,但与大豆根腐病有关的进化谱系尚不清楚。基于来自北达科他州和明尼苏达州的大豆和豌豆根的93种分离物的多基因位系统发育研究表明,根腐病与三种已知的系统发育种相关,FSSC 3 + 4(=镰形镰刀菌)(3%分离物),FSSC 5(60% ),FSSC 11(34%)和一种未知物种FSSC X(2%)。在这些物种中,FSSC 5和FSSC 3 + 4在临床上很重要,而FSSC 11是植物病原体。 FSSC 11的分离株对大豆,干豆,豌豆和小扁豆有致病性,在37 A的温度下不会生长。但是,FSSC 5的分离株微弱至无致病性,但在37 A的温度下却生长。 FSSC 5和FSSC 11在体外对氟狄莫尼高度耐药。这是第一项揭示FSSC 11在豆科植物中引起根腐病的致病力强的研究,也是揭示FSSC的临床重要成员与美国广泛种植的田间作物的根相关的研究。

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