首页> 外文期刊>Archives of Agronomy and Soil Science >Seed coating with inocula of arbuscular mycorrhizal fungi and plant growth promoting rhizobacteria for nutritional enhancement of maize under different fertilisation regimes
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Seed coating with inocula of arbuscular mycorrhizal fungi and plant growth promoting rhizobacteria for nutritional enhancement of maize under different fertilisation regimes

机译:蔬菜涂层与丛枝菌根真菌和植物生长促进不同施肥制度下玉米营养增强的流离失核

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摘要

Arbuscular mycorrhizal (AM) fungi and plant growth-promoting rhizobacteria, responsible for enhancing plant nutrition, vigour and growth, may be used to reduce dosages of chemical fertilisers. Technologies that allow an economically viable and efficient application of these beneficial microbes in large scale agriculture must be studied. Seed coating is a potential delivery system for efficiently introducing minor amounts of bioinoculants. Despite the dramatic reduction on inoculum dose per plant, inoculation of AM fungi via seed coating was as effective as conventional soil inoculation. Fertilisation and inoculation had a significant impact on maize shoots nutrient concentrations. Different fertilisation regimes did not influence mycorrhizal colonisation. Plants without fertilisation and singly inoculated with R. irregularis showed shoot nutrient concentration increments of 110, 93, 88 and 175% for nitrogen, phosphorus, potassium and zinc, respectively, comparing with non-inoculated controls. Plants singly inoculated with P. fluorescens via seed coating under full fertilisation, presented enhancements of 100, 75 and 141% for magnesium, zinc and manganese, respectively, comparing with non-inoculated controls. Seed coating is a promising tool for delivering microbial inoculants into the soil, while promoting sustainable production of maize. This technology is particularly pertinent in low input agriculture, with potential environmental profits and food quality improvements.
机译:丛枝菌根(AM)真菌和植物生长促进的relizobacteria,负责增强植物营养,活力和生长,可用于减少化肥剂量。必须研究在大规模农业中进行经济上可行和有效地应用这些有益微生物的技术。种子涂层是有效地引入少量生物遗传学剂的潜在递送系统。尽管每种植物的接种剂量急剧减少,但通过种子涂层接种AM真菌与常规土壤接种一样有效。施肥和接种对玉米芽营养浓度产生重大影响。不同的施肥制度没有影响菌根殖民化。没有受精的植物和r. untegularis分别显示出氮,磷,钾和锌的芽营养浓度增量110,93,88和175%,与非接种对照相比。通过施肥的种子涂层单独接种P.荧光的植物,分别呈现100,75和141%的增强,镁,锌和锰,与非接种对照相比。种子涂料是一种有助于将微生物孕育剂输送到土壤中的有希望的工具,同时促进玉米可持续生产。该技术在低投入农业中尤为相关,潜在的环境利润和食物质量改进。

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