Arbuscular mycorrhizal fungus and organics substrates effect on bean plant morphology and minerals

José Rafael Paredes-Jácome, L. Hernández-Montiel, V. Robledo-Torres, J. A. González-Fuentes, R. G. Chiquito-Contreras, R. Mendoza-Villarreal
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引用次数: 2

Abstract

Arbuscular mycorrhizal fungi (AMF) are obligate symbionts that require a host plant (tramp) and support (substrates) to be applied as bio-fertilizers in agriculture. The objective of this study is to assess eight native AMF consortia of semi-arid zones (C1-ART, C2-GEC, C3-PAR, C4-VIE, C5-CUC, C6-SAC, C7-SAB, and C8-MUZ) and their reproduction response in three organic substrates: coffee pulp (CP), bovine manure (BM) and sugarcane bagasse (SB) on bean Phaseolus vulgaris. Plant height, stem diameter, number of leaves, root length, fresh and dry biomass, and mineral content in root were measured. The organic substrates (CP and BM) and C5-CUC and C8-MUZ consortia increased plant height, root length, and total fresh and dry biomass considerably. After day 75 of inoculation, root colonization oscillated from 5.7% in C8-MUZ to 46.1% in C2-GEC and C4-VIE; the greatest number of spores (201) was obtained in CP substrate in a 100-g sample. N, P, K, Ca, Mg, Fe, Zn, Cu, and Mn contents in root and leaves were signif icantly high (P ≤ 0.001). To conclude, native AMF inoculation and substrates had positive effects on biomass content and nutrient levels in leaf and root with the C2-GEC and C3-PAR consortia and CP and BM substrates, which produced better effects in beans, making them a biofertilization alternative in agricultural crops.
丛枝菌根真菌和有机基质对大豆植株形态和矿物质的影响
丛枝菌根真菌(AMF)是一种专性共生体,需要寄主植物(基质)和载体(基质)作为农业生物肥料。研究了半干旱区8个天然AMF群落(C1-ART、C2-GEC、C3-PAR、C4-VIE、C5-CUC、C6-SAC、C7-SAB和C8-MUZ)在咖啡浆(CP)、牛粪(BM)和甘蔗渣(SB) 3种有机基质上对菜豆(Phaseolus vulgaris)的繁殖反应。测定了株高、茎粗、叶数、根长、鲜、干生物量和根中矿物质含量。有机基质(CP和BM)和C5-CUC和C8-MUZ组合显著提高了株高、根长和总鲜干生物量。接种75 d后,C8-MUZ的根定植率为5.7%,C2-GEC和C4-VIE的根定植率为46.1%;100 g样品中,CP底物中孢子数最多,为201个。根和叶中N、P、K、Ca、Mg、Fe、Zn、Cu、Mn含量极显著高(P≤0.001)。综上所述,本地AMF接种和基质对叶片和根系生物量和养分水平均有积极影响,其中C2-GEC和C3-PAR组合以及CP和BM基质在豆类上的效果较好,是农作物生物施肥的替代选择。
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