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Antimicrobial peptaibols induce defense responses and systemic resistance in tobacco against tobacco mosaic virus

机译:抗菌肽可诱导烟草对烟草花叶病毒的防御反应和系统抗性

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摘要

Trichoderma spp. are well-known biocontrol agents because of their antimicrobial activity against bacterial and fungal phytopathogens. However, the biochemical mechanism of their antiviral activity remains largely unknown. In this study, we found that Trichokonins, antimicrobial peptaibols isolated from Trichoderma pseudokoningii SMF2, could induce defense responses and systemic resistance in tobacco (Nicotiana tabacum var. Samsun NN) against tobacco mosaic virus (TMV) infection. Local Trichokonin (100 nM) treatment led to 54% lesion inhibition, 57% reduction in average lesion diameter and 30% reduction in average lesion area in systemic tissue of tobacco compared with control, indicating that Trichokonins induced resistance in tobacco against TMV infection. Trichokonin treatment increased the production of reactive oxygen species and phenolic compounds in tobacco. Additionally, application of Trichokonins significantly increased activities of pathogenesis-related enzymes PAL and POD, and upregulated the expression of several plant defense genes. These results suggested that multiple defense pathways in tobacco were involved in Trichokonin-mediated TMV resistance. We report on the antivirus mechanism of peptaibols, which sheds light on the potential of peptaibols in plant viral disease control.
机译:木霉属。由于它们对细菌和真菌的植物病原体具有抗菌活性,因此它们是众所周知的生物防治剂。然而,其抗病毒活性的生化机制仍是未知之数。在这项研究中,我们发现,从假木霉SMF2中分离出的抗菌肽Trichokonins可以诱导烟草(Nicotiana tabacum var。Samsun NN)对烟草花叶病毒(TMV)感染的防御反应和系统抗性。与对照组相比,局部滴虫素(100 nM)处理可导致烟草全身组织中的病斑抑制率为54%,平均病灶直径减少57%,平均病灶面积减少30%,表明天花草苷诱导了烟草对TMV感染的抵抗力。 Trichokonin处理增加了烟草中活性氧和酚类化合物的产生。此外,滴虫蛋白的应用显着增加了发病相关酶PAL和POD的活性,并上调了几种植物防御基因的表达。这些结果表明,烟草中的多种防御途径与天花粉蛋白介导的TMV耐药性有关。我们报告了肽醇的抗病毒机制,这揭示了肽醇在植物病毒性疾病控制中的潜力。

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