New Insights into the Mechanism of Trichoderma virens-Induced Developmental Effects on Agrostis stolonifera Disease Resistance against Dollar Spot Infection.

Lu Gan, Yuelan Yin, Qichen Niu, Xuebing Yan, Shuxia Yin
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引用次数: 1

Abstract

Trichoderma is internationally recognized as a biocontrol fungus for its broad-spectrum antimicrobial activity. Intriguingly, the crosstalk mechanism between the plant and Trichoderma is dynamic, depending on the Trichoderma strains and the plant species. In our previous study, the Trichoderma virens 192-45 strain showed better pathogen inhibition through the secretive non-volatile and volatile substrates. Therefore, we studied transcriptional and metabolic responses altered in creeping bentgrass (Agrostis stolonifera L.) with T. virens colonization prior to a challenge with Clarireedia homoeocarpa. This fungal pathogen causes dollar spot on various turfgrasses. When the pathogen is deficient, the importance of T. virens to the enhancement of plant growth can be seen in hormonal production and microbe signaling, such as indole-3-acrylic acid. Therefore, these substrates secreted by T. virens and induced genes related to plant growth can be the 'pre-defense' for ensuing pathogen attacks. During C. homoeocarpa infection, the Trichoderma-plant interaction activates defense responses through the SA- and/or JA-dependent pathway, induced by T. virens and its respective exudates, such as oleic, citric, and stearic acid. Thus, we will anticipate a combination of genetic engineering and exogenous application targeting these genes and metabolites, which could make creeping bentgrass more resistant to dollar spot and other pathogens.

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绿木霉诱导的匍匐茎病抗性机制的新认识
木霉具有广谱抗菌活性,是国际公认的生物防治真菌。有趣的是,植物与木霉之间的串扰机制是动态的,取决于木霉菌株和植物种类。在我们之前的研究中,木霉(Trichoderma virens) 192-45菌株通过隐秘的非挥发性和挥发性底物表现出较好的病原菌抑制作用。因此,我们研究了匍匐弯草(Agrostis stolonifera L.)的转录和代谢反应在被同质水芹(Clarireedia homeocarpa)侵染前被T. virens定殖后的变化。这种真菌病原体在各种草坪草上引起斑疹。当病原体缺乏时,在激素分泌和微生物信号传导(如吲哚-3-丙烯酸)中可以看到T. virens对促进植物生长的重要性。因此,这些由T. virens分泌的底物和与植物生长相关的诱导基因可以作为随后病原体攻击的“预防御”。在C. homeocarpa感染过程中,木霉-植物相互作用通过SA和/或ja依赖途径激活防御反应,由T. virens及其各自的渗出物(如油酸、柠檬酸和硬脂酸)诱导。因此,我们预计基因工程和外源应用的结合将针对这些基因和代谢物,这将使匍匐弯草对美元斑和其他病原体更具抵抗力。
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