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Environmental Growth Conditions of Trichoderma spp. Affects Indole Acetic Acid Derivatives, Volatile Organic Compounds, and Plant Growth Promotion

机译:木霉属植物的环境生长条件。影响吲哚乙酸衍生物,挥发性有机化合物和植物生长促进

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摘要

Trichoderma species are soil-borne filamentous fungi widely utilized for their many plant health benefits, such as conferring improved growth, disease resistance and abiotic stress tolerance to their hosts. Many Trichoderma species are able to produce the auxin phytohormone indole-3-acetic acid (IAA), and its production has been suggested to promote root growth. Here we show that the production of IAA is strain dependent and diverse external stimuli are associated with its production. In in vitro assays, Arabidopsis primary root length was negatively affected by the interaction with some Trichoderma strains. In soil experiments, a continuum effect on plant growth was shown and this was also strain dependent. In plate assays, some strains of Trichoderma spp. inhibited the expression of the auxin reporter gene DR5 in Arabidopsis primary roots but not secondary roots. When Trichoderma spp. and A. thaliana were physically separated, enhancement of both shoot and root biomass, increased root production and chlorophyll content were observed, which strongly suggested that volatile production by the fungus influenced the parameters analyzed. Trichoderma strains T. virens Gv29.8, T. atroviride IMI206040, T. sp. "atroviride B" LU132, and T. asperellum LU1370 were demonstrated to promote plant growth through volatile production. However, contrasting differences were observed with LU1370 which had a negative effect on plant growth in soil but a positive effect in plate assays. Altogether our results suggest that the mechanisms and molecules involved in plant growth promotion by Trichoderma spp. are multivariable and are affected by the environmental conditions.
机译:木霉属物种是土壤传播的丝状真菌,由于其对植物的许多健康益处而被广泛使用,例如赋予宿主更好的生长,抗病性和非生物胁迫耐受性。许多木霉属物种能够产生植物生长素植物激素吲哚-3-乙酸(IAA),并且已提出其生产可促进根系生长。在这里,我们表明IAA的产生是应变依赖性的,并且各种外部刺激与其产生有关。在体外测定中,拟南芥的初生根长度受到与某些木霉属菌株相互作用的负面影响。在土壤实验中,显示出对植物生长的连续影响,这也取决于菌株。在平板测定中,一些木霉属菌株。抑制拟南芥初级根而不是次级根中生长素报道基因DR5的表达。当木霉属。拟南芥和拟南芥被物理分离,观察到茎和根生物量均增加,根产量和叶绿素含量均增加,这强烈表明真菌的挥发物产量影响所分析的参数。木霉菌株T.virens Gv29.8,T。atroviride IMI206040,T。sp.。证明了“阿特罗韦德B” LU132和曲霉T. asperellum LU1370通过挥发性生产促进植物生长。然而,LU1370观察到相反的差异,对土壤中的植物生长具有负面影响,但在平板测定中却具有正面影响。总之,我们的结果表明木霉属菌种促进植物生长的机制和分子。是多变量的,并且受环境条件的影响。

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