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首页> 外文期刊>BioControl: Journal of the International Organization for Biological Control >Trichoderma atroviride LU132 promotes plant growth but not induced systemic resistance to Plutella xylostella in oilseed rape
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Trichoderma atroviride LU132 promotes plant growth but not induced systemic resistance to Plutella xylostella in oilseed rape

机译:木霉atroviride LU132促进植物生长,但不诱导对油菜中小菜蛾的系统抗性

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摘要

Several species of the fungus Trichoderma can promote plant health and are widely used as commercial biopesticides. Beneficial effects of this fungus are attributed to various mechanisms such as mycoparasitism, plant-growth promotion, increased stress tolerance and elicitation of induced systemic resistance against pathogens via jasmonic acid/ethylene-dependent pathways. Despite such well-established effects on pathogens, surprisingly little is known about the influence of Trichoderma on plant defences against herbivorous insects. This study investigated whether soil-supplementation of the established biocontrol agent Trichoderma atroviride LU132 affected the performance of oilseed rape (Brassica napus) and the development of Plutella xylostella caterpillars. Furthermore, induction and priming of defence-related phytohormones, genes and secondary metabolites by fungus and herbivore were assessed. Plants colonized by T. atroviride LU132 had significantly larger root and shoot biomass than controls. No effects of fungal inoculation were found on herbivore development. Leaf feeding of the herbivore induced higher jasmonic acid levels, but this was not influenced by fungal treatment. Similarly, the defence-related genes MYC2 and TPI were induced by herbivory but not primed or induced by T. atroviride. Expression of the gene PDF1.2 was repressed by herbivore feeding while no effects on the gene ACO and glucosinolates were observed. We conclude that T. atroviride LU132 has positive effects on the growth of oilseed but it does not enhance above-ground insect defences.RI Rostas, Michael/B-6769-2008OI Rostas, Michael/0000-0001-9722-6513
机译:木霉属的几种真菌可以促进植物健康,并被广泛用作商业生物农药。该真菌的有益作用归因于多种机制,例如霉菌寄生,促进植物生长,增加的胁迫耐受性以及通过茉莉酸/乙烯依赖性途径引起对病原体的诱导的系统抗性。尽管对病原体具有如此公认的作用,但关于木霉对植物对草食性昆虫的防御作用的影响却令人惊讶地知之甚少。这项研究调查了已建立的生物防治剂木霉木霉LU132的土壤补充是否影响油菜(油菜)的性能和小菜蛾的发育。此外,还评估了真菌和草食动物对防御相关植物激素,基因和次生代谢产物的诱导和引发作用。由Atroviride LU132所定植的植物的根和茎生物量显着大于对照。没有发现真菌接种对草食动物发育的影响。食草动物的叶饲喂诱导较高的茉莉酸水平,但这不受真菌处理的影响。同样,与防御相关的基因MYC2和TPI是由草食动物诱导的,而不是由Atroviride引发或诱导的。草食动物饲养抑制了基因PDF1.2的表达,但未观察到对基因ACO和芥子油苷的影响。我们得出的结论是,T.atroviride LU132对油料种子的生长具有积极作用,但不会增强地上昆虫的防御能力.RI Rostas,Michael / B-6769-2008OI Rostas,Michael / 0000-0001-9722-6513

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