Department of Agricultural Sciences , University of Naples Federico II , 80055 Portici , Naples , Italy.
Task Force on Microbiome Studies , University of Naples Federico II , 80131 Naples , Italy.
J Agric Food Chem. 2019 Feb 20;67(7):1814-1822. doi: 10.1021/acs.jafc.8b06503. Epub 2019 Feb 6.
Trichoderma fungi are effectively marketed worldwide as biocontrol agents and plant biostimulants on numerous crops due to their demonstrated effects in direct antagonism against fungal pathogens and plant growth promotion. Here, we examined the effects of single and combined applications of Trichoderma strains and their bioactive metabolites (BAMs) harzianic acid (HA), 6-pentyl-α-pyrone (6PP), and hydrophobin1 (HYTLO1) on the growth, yield, and nutrient uptake of soybean plants. Significant promotion of plant growth (up to 39%), as well as an increase in mineral content, was achieved with BAMs, used alone or combined with T. harzianum. Interestingly, the treatments also increased the level of fatty acids (oleic, linolenic, 11-eicosenoic, and stearic). This work demonstrates the usefulness of natural compound and microbe combinations to enhance oilseed productivity, and reports for the first time the ability of Trichoderma and/or its BAMs to increase the lipid content in harvested seeds.
木霉真菌由于其对真菌病原体的直接拮抗作用和促进植物生长的作用,已在全球范围内有效地作为生物防治剂和植物生物刺激素应用于许多作物。在这里,我们研究了单一和组合应用木霉菌株及其生物活性代谢物(BAMs)哈茨木霉素(HA)、6-戊基-α-吡喃酮(6PP)和疏水性蛋白 1(HYTLO1)对大豆植株生长、产量和养分吸收的影响。单独使用或与哈茨木霉联合使用 BAMs 可显著促进植物生长(高达 39%),并增加矿物质含量。有趣的是,这些处理还增加了脂肪酸(油酸、亚麻酸、11-二十碳烯酸和硬脂酸)的水平。这项工作证明了天然化合物和微生物组合在提高油籽产量方面的有用性,并首次报道了木霉及其 BAMs 提高收获种子中脂质含量的能力。