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盐胁迫和水杨酸叶面喷施条件下甜椒的形态生理学和生产。

Morphophysiology and production of bell pepper grown under salt stress and salicylic acid foliar application.

机构信息

Universidade Federal de Campina Grande - UFCG, Unidade Acadêmica de Engenharia Agrícola - UAEA, Campina Grande, PB, Brasil.

Universidade Federal de Campina Grande - UFCG, Centro de Ciências e Tecnologias Agroalimentar - CCTA, Pombal, PB, Brasil.

出版信息

Braz J Biol. 2023 May 26;83:e273017. doi: 10.1590/1519-6984.273017. eCollection 2023.

Abstract

Considering the relevance of bell pepper and the limitations imposed by the deleterious effects of salt stress, especially in semi-arid regions, it is extremely important to establish strategies that can facilitate the use of saline water in vegetable production. In this scenario, this study aimed to evaluate the effect of the frequency of foliar application of salicylic acid on the morphophysiology and production of the bell pepper cv. "All Big" irrigated with saline water. The study was conducted at a greenhouse in Campina Grande - PB. The treatments were distributed in a completely randomized design and set up in a 4 × 4 factorial arrangement with three replications, corresponding to four application frequencies of salicylic acid (F1- No application of salicylic acid, F2 - Weekly application, F3- fortnightly application, and F4- monthly application) and four levels of electrical conductivity of irrigation water - ECw (0.8, 1.6, 2.4 and 3.2 dS m-1). The fortnightly application of salicylic acid at a concentration of 1.0 mM mitigated the effects of salt stress on the morphophysiology and production components of bell pepper cv. All Big cultivated with ECw of up to 2.4 dS m-1, which reinforces the hypothesis that salicylic acid can act as a signaling molecule and reduce the effects of saline stress in bell pepper, enabling the use of brackish water in agricultural activity, mainly in semi-arid regions of northeastern Brazil, which have a shortage of fresh water.

摘要

考虑到甜椒的相关性以及盐胁迫的有害影响(尤其是在半干旱地区)所带来的限制,因此,建立能够促进在蔬菜生产中利用咸水的策略是非常重要的。在这种情况下,本研究旨在评估叶面喷施水杨酸的频率对灌溉咸水的甜椒 cv. "All Big"的形态生理学和产量的影响。该研究在帕拉伊巴州坎皮纳格兰德的温室中进行。处理采用完全随机设计,并以 4×4 析因设计布置,有 3 次重复,对应水杨酸的 4 种喷施频率(F1-不喷施水杨酸、F2-每周喷施、F3-每两周喷施和 F4-每月喷施)和 4 种灌溉水电导率水平(ECw-0.8、1.6、2.4 和 3.2 dS m-1)。1.0 mM 水杨酸的每两周喷施可减轻盐胁迫对灌溉水 ECw 不超过 2.4 dS m-1 时甜椒 cv. All Big 的形态生理学和产量构成要素的影响,这强化了水杨酸可以作为信号分子并减轻甜椒中盐水胁迫影响的假设,从而使农业活动能够利用微咸水,特别是在巴西东北部半干旱地区,这些地区淡水资源短缺。

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