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首页> 外文期刊>Environmental microbiology >Trichothecenes and aspinolides produced by Trichoderma arundinaceum regulate expression of Botrytis cinerea genes involved in virulence and growth
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Trichothecenes and aspinolides produced by Trichoderma arundinaceum regulate expression of Botrytis cinerea genes involved in virulence and growth

机译:阿氏木霉产生的木霉菌和阿斯匹林内酯可调节灰葡萄孢菌基因的表达,该基因与毒力和生长有关

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摘要

Trichoderma arundinaceum (Ta37) and Botrytis cinerea (B05.10) produce the sesquiterpenoids harzianum A (HA) and botrydial (BOT), respectively. Ta Delta Tri5, an HA non-producer mutant, produces high levels of the polyketide compounds aspinolides (Asp) B and C. We analyzed the role of HA and Asp in the B. cinerea-T. arundinaceum interaction, including changes in BOT production as well as transcriptomic changes of BcBOT genes involved in BOT biosynthesis, and also of genes associated with virulence and ergosterol biosynthesis. We found that exogenously added HA up-regulated the expression of the BcBOT and all the virulence genes analyzed when B. cinerea was grown alone. However, a decrease in the amount of BOT and a down-regulation of BcBOT gene expression was observed in the interaction zone of B05.100-Ta37 dual cultures, compared to TaDTri5. Thus, the confrontation with T. arundinaceum results in an up-regulation of most of the B. cinerea genes involved in virulence yet the presence of T. arundinaceum secondary metabolites, HA and AspC, act separately and together to down-regulate the B. cinerea genes analyzed. The present work emphasizes the existence of a chemical cross-regulation between B. cinerea and T. arundinaceum and contributes to understanding how a biocontrol fungus and its prey interact with each other.
机译:arundinaceum木霉(Ta37)和Botrytis cinerea(B05.10)分别产生倍半萜类植物Harzianum A(HA)和Botrydial(BOT)。 Ta Delta Tri5是HA的非生产突变体,可产生高水平的聚酮化合物Aspinolides(Asp)B和C。我们分析了HA和A​​sp在灰质芽孢杆菌T中的作用。 arundinaceum相互作用,包括BOT产生的变化以及BOT生物合成中涉及的BcBOT基因的转录组变化,以及与毒力和麦角固醇生物合成相关的基因。我们发现,外源添加的HA上调了B. cinerea单独生长时BcBOT的表达,并分析了所有毒力基因。但是,与TaDTri5相比,在B05.100-Ta37双重培养物的相互作用区中观察到BOT量的减少和BcBOT基因表达的下调。因此,与金合子的对抗导致大多数与毒力有关的灰质芽孢杆菌基因上调,而金合子次生代谢产物HA和AspC的存在则分别起作用并共同下调了B。灰霉病基因分析。目前的工作强调了灰黄芽孢杆菌和芒草之间化学交叉调节的存在,并有助于理解生物防治真菌及其猎物如何相互作用。

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