Malmierca Mónica G, Izquierdo-Bueno Inmaculada, Mccormick Susan P, Cardoza Rosa E, Alexander Nancy J, Moraga Javier, Gomes Eriston V, Proctor Robert H, Collado Isidro G, Monte Enrique, Gutiérrez Santiago
Area of Microbiology, University School of Agricultural Engineers, University of León, Campus de Ponferrada, 24400 Ponferrada, Spain.
Biomolecules Institute, Department of Organic Chemistry, Faculty of Sciences, University of Cádiz, 11510 Puerto Real, Spain.
Mol Plant Pathol. 2016 Sep;17(7):1017-31. doi: 10.1111/mpp.12343. Epub 2016 Feb 8.
Trichoderma arundinaceum IBT 40837 (Ta37) and Botrytis cinerea produce the sesquiterpenes harzianum A (HA) and botrydial (BOT), respectively, and also the polyketides aspinolides and botcinins (Botcs), respectively. We analysed the role of BOT and Botcs in the Ta37-B. cinerea interaction, including the transcriptomic changes in the genes involved in HA (tri) and ergosterol biosynthesis, as well as changes in the level of HA and squalene-ergosterol. We found that, when confronted with B. cinerea, the tri biosynthetic genes were up-regulated in all dual cultures analysed, but at higher levels when Ta37 was confronted with the BOT non-producer mutant bcbot2Δ. The production of HA was also higher in the interaction area with this mutant. In Ta37-bcbot2Δ confrontation experiments, the expression of the hmgR gene, encoding the 3-hydroxy-3-methylglutaryl coenzyme A reductase, which is the first enzyme of the terpene biosynthetic pathway, was also up-regulated, resulting in an increase in squalene production compared with the confrontation with B. cinerea B05.10. Botcs had an up-regulatory effect on the tri biosynthetic genes, with BotcA having a stronger effect than BotcB. The results indicate that the interaction between Ta37 and B. cinerea exerts a stimulatory effect on the expression of the tri biosynthetic genes, which, in the interaction zone, can be attenuated by BOT produced by B. cinerea B05.10. The present work provides evidence for a metabolic dialogue between T. arundinaceum and B. cinerea that is mediated by sesquiterpenes and polyketides, and that affects the outcome of the interaction of these fungi with each other and their environment.
硬皮木霉IBT 40837(Ta37)和灰葡萄孢分别产生倍半萜哈茨木霉A(HA)和葡萄孢菌素(BOT),以及聚酮化合物aspinolides和botcinins(Botcs)。我们分析了BOT和Botcs在Ta37与灰葡萄孢相互作用中的作用,包括参与HA(tri)和麦角甾醇生物合成的基因的转录组变化,以及HA和角鲨烯-麦角甾醇水平的变化。我们发现,当与灰葡萄孢对峙时,在所有分析的双培养物中,tri生物合成基因均上调,但当Ta37与不产生BOT的突变体bcbot2Δ对峙时,上调水平更高。在与该突变体的相互作用区域中,HA的产量也更高。在Ta37-bcbot2Δ对峙实验中,编码萜类生物合成途径的第一种酶3-羟基-3-甲基戊二酰辅酶A还原酶的hmgR基因的表达也上调,与与灰葡萄孢B05.10对峙相比,导致角鲨烯产量增加。Botcs对tri生物合成基因具有上调作用,其中BotcA的作用比BotcB更强。结果表明,Ta37与灰葡萄孢之间的相互作用对tri生物合成基因的表达具有刺激作用,在相互作用区域,这种作用可被灰葡萄孢B05.10产生的BOT减弱。本研究为硬皮木霉和灰葡萄孢之间由倍半萜和聚酮化合物介导的代谢对话提供了证据,这种对话影响了这些真菌彼此之间及其与环境相互作用的结果。