Jeong Eunji, Lim Jae Yun, Seo Jeong-Ah
School of Systems Biomedical Science, Soongsil University, Seoul 06978, Korea.
Plant Pathol J. 2024 Dec;40(6):656-670. doi: 10.5423/PPJ.OA.08.2024.0121. Epub 2024 Dec 1.
Fusarium vorosii (Fv) is one of the least studied species of the Fusarium graminearum species complex, a major plant pathogen causing Fusarium head blight (FHB) in a variety of crops. In this study, we isolated 12 strains of Fv from cereal samples with FHB symptoms and gramineous weeds. Trichothecene genotyping of Fv strains showed that 10 strains were nivalenol (NIV) type and 2 strains were 15-acetyldeoxynivalenol (15ADON) type. Fv strains have similar mycological characteristics to Fusarium asiaticum, a major FHB pathogen of rice in Asia, however, asexual sporulation was at least 100 to 1,000 times higher in Fv. In comparison of pathogenicity, the Fv-15ADON type was more pathogenic than the NIV type in both rice and wheat, and had a similar level of pathogenicity as the F. asiaticum-NIV type. Among the 12 Fv strains, two representative ones, Fv-NIV type RN1 and Fv-15ADON type W15A1, were selected and their whole genomes were sequenced and analyzed. Complete genome sequences of two Fv strains, RN1 and W15A1, were assembled at the chromosome level with high quality compared to known Fv genomes. The genome data of the two Fv strains were compared with the reference strains already known. As a result of comparative genome analysis, it was found that they are phylogenetically related according to the trichothecene biosynthetic gene cluster, that is, toxin chemotype. Through this study, we provided important information about Fv species that can be potential pathogens in domestic crops about biological and genomic characteristics.
沃氏镰孢菌(Fv)是禾谷镰孢菌复合种中研究最少的物种之一,禾谷镰孢菌复合种是一种主要的植物病原体,可在多种作物中引起小麦赤霉病(FHB)。在本研究中,我们从出现FHB症状的谷物样本和禾本科杂草中分离出12株Fv菌株。Fv菌株的单端孢霉烯基因分型显示,10株为雪腐镰刀菌烯醇(NIV)型,2株为15 - 乙酰脱氧雪腐镰刀菌烯醇(15ADON)型。Fv菌株与亚洲水稻主要FHB病原体亚洲镰孢菌具有相似的真菌学特征,然而,Fv的无性孢子形成率至少高出100至1000倍。在致病性比较中,Fv - 15ADON型在水稻和小麦中均比NIV型更具致病性,且致病性水平与亚洲镰孢菌 - NIV型相似。在这12株Fv菌株中,选择了两株具有代表性的菌株,Fv - NIV型RN1和Fv - 15ADON型W15A1,并对它们的全基因组进行了测序和分析。与已知的Fv基因组相比,两个Fv菌株RN1和W15A1的完整基因组序列在染色体水平上高质量组装。将这两个Fv菌株的基因组数据与已知的参考菌株进行比较。比较基因组分析结果表明,根据单端孢霉烯生物合成基因簇,即毒素化学型,它们在系统发育上相关。通过本研究,我们提供了关于Fv物种的重要信息,这些信息涉及国内作物中可能的潜在病原体的生物学和基因组特征。