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Trichoderma Species Differ in Their Volatile Profiles and in Antagonism Toward Ectomycorrhiza Laccaria bicolor

机译:木霉菌种的挥发性特征和对Ectomycorrhiza Laccaria bicolor的拮抗作用不同

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摘要

Fungi of the genus Trichoderma are economically important due to their plant growth- and performance-promoting effects, such as improved nutrient supply, mycoparasitism of plant-pathogens and priming of plant defense. Due to their mycotrophic lifestyle, however, they might also be antagonistic to other plant-beneficial fungi, such as mycorrhiza-forming species. Trichoderma spp. release a high diversity of volatile organic compounds (VOCs), which likely play a decisive role in the inter-species communication. It has been shown that Trichoderma VOCs can inhibit growth of some plant pathogens, but their inhibition potentials during early interactions with mutualistic fungi remain unknown. Laccaria bicolor is a common ectomycorrhizal fungus which in symbiotic relationship is well known to facilitate plant performance. Here, we investigated the VOC profiles of three strains of Trichoderma species, Trichoderma harzianum, Trichoderma Hamatum, and Trichoderma velutinum, as well as L. bicolor by stir bar sorptive extraction and gas chromatography – mass spectrometry (SBSE-GC-MS). We further examined the fungal performance and the VOC emission profiles during confrontation of the Trichoderma species with L. bicolor in different co-cultivation scenarios. The VOC profiles of the three Trichoderma species were highly species-dependent. T. harzianum was the strongest VOC emitter with the most diverse compound pattern, followed by T. hamatum and T. velutinum. Co-cultivation of Trichoderma spp. and L. bicolor altered the VOC emission patterns dramatically in some scenarios. The co-cultivations also revealed contact degree-dependent inhibition of one of the fungal partners. Trichoderma growth was at least partially inhibited when sharing the same headspace with L. bicolor. In direct contact between both mycelia, however, L. bicolor growth was impaired, indicating that Trichoderma and L. bicolor apply different effectors when defending their territory. Multivariate analysis demonstrated that all examined individual fungal species in axenic cultures, as well as their co-cultivations were characterized by a distinct VOC emission pattern. The results underline the importance of VOCs in fungal interactions and reveal unexpected adjustability of the VOC emissions according to the specific biotic environments.
机译:木霉菌属的真菌在经济上很重要,因为它们具有植物生长和促进性能的作用,例如改善营养供应,植物病原菌的支原体炎和引发植物防御作用。但是,由于它们的营养营养型生活方式,它们也可能与其他有益植物的真菌(例如形成菌根的物种)产生拮抗作用。木霉属。释放出高度多样性的挥发性有机化合物(VOC),这可能在种间交流中起决定性作用。已经表明木霉属的挥发性有机化合物可以抑制某些植物病原体的生长,但是它们在与互生真菌的早期相互作用中的抑制潜力仍然未知。双色紫胶菌是一种常见的外生菌根真菌,以共生关系促进植物生长。在这里,我们通过搅拌棒吸附萃取和气相色谱-质谱(SBSE-GC-MS)研究了三株木霉属菌,哈茨木霉菌,哈氏木霉菌和维氏木霉菌以及双色乳杆菌的三种挥发性有机化合物。我们进一步检查了在不同共培养情况下木霉菌与双色乳杆菌对峙时的真菌性能和VOC排放特征。三种木霉属物种的VOC谱高度依赖于物种。哈茨木霉(T. harzianum)是最强的VOC排放物,具有最多样化的复合模式,其次是哈姆木霉(T. hamatum)和金缕梅(T. velutinum)。木霉属菌的共培养。在某些情况下,L。bicolor和L. bicolor显着改变了VOC排放模式。共培养还揭示了真菌伴侣之一的接触度依赖性抑制。与 L共享相同的顶空时,木霉的生长至少被部分抑制。双色。在两个菌丝体之间直接接触的是 L。双色的生长受到损害,表明木霉 L。 bicolor 在捍卫自己的领地时会应用不同的效应器。多变量分析表明,所有被检真菌培养物中的单个真菌物种及其共培养均具有独特的VOC排放模式。结果强调了VOC在真菌相互作用中的重要性,并揭示了根据特定的生物环境,VOC排放的出乎意料的可调节性。

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