A new approach to induce mango shoot maturation in Brazilian semi-arid environment

IF 1.2 4区 生物学 Q2 Agricultural and Biological Sciences Journal of Applied Botany and Food Quality-Angewandte Botanik Pub Date : 2018-10-30 DOI:10.5073/JABFQ.2018.091.036
Í. Cavalcante, G. D. Santos, M. A. Silva, R. Martins, A. Lima, P. I. R. Modesto, A. M. Alcobia, T. Silva, R. A. Amariz, M. Z. Beckmann-Cavalcante
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引用次数: 19

Abstract

The shoot maturation phase is important for growing mangoes because it precedes the floral induction, when plants are under stress caused by high temperatures and low water availability. Abiotic stress could be alleviated by using plant biostimulant which alters the phytohormone and carbohydrates biosynthesis. Thus, an experiment was conducted to evaluate the use a plant biostimulant containing Ascophyllum nodosum to induce shoot maturation of mango cv. Palmer grown in semi-arid environment. The experimental design consisted of randomized blocks with four treatments, ten replications and five plants per parcel. Treatments consisted of: T1) biostimulant foliar spray + K fertilizer; T2) foliar spray with biostimulant alternating with K fertilizer; T3) individual foliar sprays with magnesium sulfate, potassium sulfate, sulfur and calcium fertilizers, potassium fertilizer and Ethrel®; and T4) Control treatment. The total soluble carbohydrates in leaves, buds and shoots, N, K and S leaf concentrations and fruit production were recorded. The carbohydrate concentrations, nitrogen, sulphur and potassium leaf concentrations and fruit production of mango depend on shoot maturation strategy. Shoot maturation strategy using biostimulant containing Ascophyllum nodosum alternating with K fertilizer from 30 days after PBZ could  be recommended for the production of mango cv. Palmer.
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巴西半干旱环境下诱导芒果芽成熟的新方法
芽成熟阶段对芒果的生长很重要,因为它先于花朵诱导期,此时植物正处于高温和低水分造成的压力之下。非生物胁迫可以通过使用改变植物激素和碳水化合物生物合成的植物生物刺激剂来缓解。因此,本试验评价了使用含有节叶子囊的植物生物刺激剂诱导生长在半干旱环境中的芒果品种Palmer的芽成熟。实验设计由四个处理、十个重复和每个地块五株植物的随机区块组成。处理包括:T1)生物刺激剂叶面喷雾+K肥;T2)用生物刺激剂与钾肥交替的叶面喷雾;T3)单独叶面喷洒硫酸镁、硫酸钾、硫和钙肥料、钾肥和Ethrel®;和T4)对照处理。记录了叶片、芽和芽中可溶性碳水化合物的总量、N、K和S的叶片浓度以及果实产量。芒果的碳水化合物浓度、氮、硫和钾的叶片浓度以及果实产量取决于芽成熟策略。可推荐从PBZ后30天开始,使用含有节叶藻的生物刺激剂与钾肥交替的芽成熟策略来生产芒果品种Palmer。
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来源期刊
CiteScore
2.50
自引率
0.00%
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0
审稿时长
20 weeks
期刊介绍: The Journal of Applied Botany and Food Quality is the Open Access journal of the German Society for Quality Research on Plant Foods and the Section Applied Botany of the German Botanical Society. It provides a platform for scientists to disseminate recent results of applied plant research in plant physiology and plant ecology, plant biotechnology, plant breeding and cultivation, phytomedicine, plant nutrition, plant stress and resistance, plant microbiology, plant analysis (including -omics techniques), and plant food chemistry. The articles have a clear focus on botanical and plant quality aspects and contain new and innovative information based on state-of-the-art methodologies.
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