Department of Plant Pathology and Microbiology and Seed Science Center, Iowa State University, Ames, Iowa 50010, USA; email:
Mycotoxin Prevention and Applied Microbiology Research Unit, National Center for Agricultural Utilization Research, Agricultural Research Service, USDA, Peoria, Illinois 61604, USA; email:
Annu Rev Phytopathol. 2021 Aug 25;59:373-402. doi: 10.1146/annurev-phyto-020620-102825. Epub 2021 Jun 2.
is one of the most important genera of plant-pathogenic fungi in the world and arguably the world's most important mycotoxin-producing genus. species produce a staggering array of toxic metabolites that contribute to plant disease and mycotoxicoses in humans and other animals. A thorough understanding of the mycotoxin potential of individual species is crucial for assessing the toxicological risks associated with diseases. There are thousands of reports of mycotoxin production by various species, and there have been numerous attempts to summarize them. These efforts have been complicated by competing classification systems based on morphology, sexual compatibility, and phylogenetic relationships. The current depth of knowledge of genomes and mycotoxin biosynthetic pathways provides insights into how mycotoxin production is distributedamong species and multispecies lineages (species complexes) in the genus as well as opportunities to clarify and predict mycotoxin risks connected with known and newly described species. Here, we summarize mycotoxin production in the genus and how mycotoxin risk aligns with current phylogenetic species concepts.
是世界上最重要的植物病原真菌属之一,可以说是世界上最重要的产霉菌毒素属。该属的物种产生了令人震惊的一系列有毒代谢物,这些代谢物导致了人类和其他动物的植物病害和霉菌中毒。彻底了解各个物种的霉菌毒素潜力对于评估与 疾病相关的毒理学风险至关重要。有数千份关于各种物种产生霉菌毒素的报告,并且已经进行了多次尝试对其进行总结。这些努力受到基于形态、有性可育性和系统发育关系的竞争分类系统的复杂化。目前对 基因组和霉菌毒素生物合成途径的深入了解提供了有关霉菌毒素生产如何在该属中的物种和多物种谱系(物种复合体)中分布的见解,以及澄清和预测与已知和新描述的物种相关的霉菌毒素风险的机会。在这里,我们总结了该属中的霉菌毒素生产情况,以及霉菌毒素风险如何与当前的系统发育种概念相一致。