Vinale Francesco, Nigro Marco, Sivasithamparam Krishnapillai, Flematti Gavin, Ghisalberti Emilio L, Ruocco Michelina, Varlese Rosaria, Marra Roberta, Lanzuise Stefania, Eid Ahmed, Woo Sheridan L, Lorito Matteo
CNR - Istituto per la Protezione delle Piante (IPP-CNR), Portici, Italy.
FEMS Microbiol Lett. 2013 Oct;347(2):123-9. doi: 10.1111/1574-6968.12231. Epub 2013 Sep 10.
Agriculture-relevant microorganisms are considered to produce secondary metabolites during processes of competition with other micro- and macro-organisms, symbiosis, parasitism or pathogenesis. Many different strains of the genus Trichoderma, in addition to a direct activity against phytopathogens, are well-known producers of secondary metabolites and compounds that substantially affect the metabolism of the host plant. Harzianic acid is a Trichoderma secondary metabolite, showing antifungal and plant growth promotion activities. This report demonstrates the ability of this tetramic acid to bind with a good affinity essential metals such as Fe(3+) , which may represent a mechanism of iron solubilisation that significantly alters nutrient availability in the soil environment for other microorganisms and the host plant.
与农业相关的微生物被认为在与其他微生物和宏观生物竞争、共生、寄生或致病过程中产生次生代谢产物。除了对植物病原体具有直接活性外,许多不同菌株的木霉属也是次生代谢产物和化合物的著名生产者,这些产物和化合物会显著影响宿主植物的代谢。哈茨酸是一种木霉次生代谢产物,具有抗真菌和促进植物生长的活性。本报告证明了这种四元酸能够与铁(Fe(3+))等必需金属以良好的亲和力结合,这可能代表了一种铁溶解机制,该机制会显著改变土壤环境中其他微生物和宿主植物的养分有效性。