黏液和鳄梨种子残留物作为圣女果的可持续肥料和生物刺激素

Alberto Camas-Reyes, Andrés A. Estrada-Luna, José de Jesús Ponce-Ramírez, María Karina Manzo-Valencia, Francisco Galván-Pantoja, Martha Edith Moreno-Valencia, Ana Lilia Hernández-Orihuela, José Arbel Santiago-Díaz, Silvia Valdés-Rodríguez, Agustino Martínez-Antonio
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摘要

全球对可持续农业做法的需求正在增加,因此必须优先使用化学转化最少的肥料和有机刺激物。本研究探讨了粘瓜(Mucuna pruriens sp.)和鳄梨(Persea americana Mills)种子残留物在樱桃-番茄作物(Lycopersicon esculentum Mill.) var. cerasiformme栽培中的潜在应用。提取左旋多巴后,将麻豆残籽作为土壤肥料掺入土壤基质中。相反,将水解的鳄梨种子与水或营养物质Long Ashton混合,作为叶片生物刺激素应用于温室中种植的樱桃植株。本文报道了牛油果和粘豆渣种子水解产物的营养成分和氨基酸含量,并采用8个处理、4个重复的完全随机设计,对其在植物中的作用进行了试验。数据检验包括方差分析,采用Fisher最小显著性差异检验确定平均差异。显著差异(p <在花数(70%)、果实数(23%)和干重果数(25%)方面,使用这些种子残留物的处理效果较好。第二个实验表明,含有两种种子残留物的处理略微增加了果实的白锐度。这项研究的证据表明,残留的种子对西红柿和其他重要植物有益,有助于实现可持续农业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mucuna and Avocado-Seed Residues as Sustainable Fertilizers and Biostimulants for Cherry Tomatoes
The global demand for sustainable agricultural practices is increasing, necessitating the preference for fertilizers and organic stimulants with minimal chemical transformation. This study investigates the potential use of Mucuna (Mucuna pruriens sp.) and avocado (Persea americana Mills) seed residues in the cultivation of cherry-tomato crops (Lycopersicon esculentum Mill.) var. cerasiforme. After extracting L-dopa, the Mucuna ground residual seeds were incorporated into the soil substrate as an edaphic fertilizer. In contrast, the hydrolyzed avocado seed was mixed with water or the nutrient Long Ashton and applied as a foliar biostimulant to cherry plants grown in a greenhouse. We report the nutrients and amino acid content in hydrolysates of the avocado and Mucuna’s residue seeds and experiment with their effect in plants employing a completely blocked random design of eight treatments with four replicates. Data inspection involved analysis of variance, and mean differences were determined using Fisher’s least significant difference test. Significant differences (p < 0.05) were observed among the treatments regarding the number of flowers (70%), fruits (23%), and dry weight fruits (25%) in favor of those using these seed residues. A second experiment revealed that treatments containing both seed residues slightly increased the °Brix in fruits. This study supports with evidence that residual seeds benefit tomatoes and probably other important plants, contributing to the path to sustainable agriculture.
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