Department of Pathogen Genetics and Plant Resistance, Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, Poznan, Poland.
Department of Biometry and Bioinformatics, Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, Poznan, Poland.
J Appl Genet. 2019 Nov;60(3-4):405-416. doi: 10.1007/s13353-019-00501-2. Epub 2019 Jun 27.
Role of efflux-mediated toxin resistance to trichothecenes is known in trichothecene-producing species. However, the role of trichothecene efflux pump homologues in non-producing fusaria such as F. oxysporum and F. proliferatum was not investigated in detail. Analysis of the homologues of trichothecene efflux pump from multiple fungal species allowed us to uncover and catalogue functional gene copies of conserved structure. Putative Tri12 candidates in Fusarium oxysporum and F. proliferatum were characterised via expression profiling in response to different trigger compounds, providing supporting evidence for role of Tri12 homologues in the resistance to trichothecenes. Our analysis of Tri12 phylogeny also suggests that efflux-mediated trichothecene resistance is likely to predate the divergence of Trichoderma and Fusarium species. On the regulatory level, we posit that the increased tolerance of trichothecenes by F. oxysporum is possibly related to the decoupling of Tri12 homologue expression from pH, due to the deletion of PACC/RIM101 transcription factor binding site in its promoter region.
在产毒真菌中,外排介导的毒素耐药性在曲霉菌毒素中发挥作用。然而,在非产毒的镰刀菌(如尖孢镰刀菌和层出镰刀菌)中,曲霉菌毒素外排泵同源物的作用尚未得到详细研究。对多种真菌物种的曲霉菌毒素外排泵同源物的分析使我们能够揭示和分类具有保守结构的功能基因副本。通过对不同触发化合物的响应进行表达谱分析,对尖孢镰刀菌和层出镰刀菌中的推定 Tri12 候选物进行了表征,为 Tri12 同源物在对曲霉菌毒素的耐药性中的作用提供了支持证据。我们对 Tri12 系统发育的分析还表明,外排介导的曲霉菌毒素耐药性可能早于木霉属和镰刀菌属物种的分化。在调控水平上,我们假设由于其启动子区域中 PACC/RIM101 转录因子结合位点的缺失,尖孢镰刀菌对曲霉菌毒素的耐受性增加可能与 Tri12 同源物表达与 pH 的解耦有关。