Contreras-Cornejo Hexon Angel, Macías-Rodríguez Lourdes, Cortés-Penagos Carlos, López-Bucio José
Instituto de Investigaciones Químico-Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Ciudad Universitaria, CP 58030 Morelia, Michoacan, Mexico.
Plant Physiol. 2009 Mar;149(3):1579-92. doi: 10.1104/pp.108.130369. Epub 2009 Jan 28.
Trichoderma species belong to a class of free-living fungi beneficial to plants that are common in the rhizosphere. We investigated the role of auxin in regulating the growth and development of Arabidopsis (Arabidopsis thaliana) seedlings in response to inoculation with Trichoderma virens and Trichoderma atroviride by developing a plant-fungus interaction system. Wild-type Arabidopsis seedlings inoculated with either T. virens or T. atroviride showed characteristic auxin-related phenotypes, including increased biomass production and stimulated lateral root development. Mutations in genes involved in auxin transport or signaling, AUX1, BIG, EIR1, and AXR1, were found to reduce the growth-promoting and root developmental effects of T. virens inoculation. When grown under axenic conditions, T. virens produced the auxin-related compounds indole-3-acetic acid, indole-3-acetaldehyde, and indole-3-ethanol. A comparative analysis of all three indolic compounds provided detailed information about the structure-activity relationship based on their efficacy at modulating root system architecture, activation of auxin-regulated gene expression, and rescue of the root hair-defective phenotype of the rhd6 auxin response Arabidopsis mutant. Our results highlight the important role of auxin signaling for plant growth promotion by T. virens.
木霉菌种属于一类对植物有益的自由生活真菌,常见于根际。我们通过建立植物 - 真菌相互作用系统,研究了生长素在调节拟南芥(Arabidopsis thaliana)幼苗生长发育以响应绿色木霉(Trichoderma virens)和深绿木霉(Trichoderma atroviride)接种时的作用。接种绿色木霉或深绿木霉的野生型拟南芥幼苗表现出与生长素相关的特征性表型,包括生物量增加和侧根发育受刺激。发现参与生长素运输或信号传导的基因AUX1、BIG、EIR1和AXR1发生突变会降低接种绿色木霉对生长促进和根系发育的影响。在无菌条件下培养时,绿色木霉产生了与生长素相关的化合物吲哚 - 3 - 乙酸、吲哚 - 3 - 乙醛和吲哚 - 3 - 乙醇。对所有三种吲哚类化合物的比较分析基于它们在调节根系结构、激活生长素调节的基因表达以及挽救rhd6生长素反应拟南芥突变体的根毛缺陷表型方面的功效,提供了有关构效关系的详细信息。我们的结果突出了生长素信号传导在绿色木霉促进植物生长中的重要作用。