Hydrogen peroxide in the acclimation of colored-fiber cotton genotypes to salt stress

Pub Date : 2023-06-01 DOI:10.1590/1983-21252023v36n218rc
L. L. S. A. Veloso, C. A. V. de Azevedo, R. G. Nobre, G. S. de Lima, Idelvan J. da Silva, Cassiano N. de Lacerda
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引用次数: 1

Abstract

ABSTRACT The excess of salts in irrigation water restricts agricultural exploitation in arid and semi-arid regions. Thus, searching for strategies of cultivation under salt stress conditions is important for the expansion of irrigated agriculture in these regions. Thus, the objective of this study was to evaluate the gas exchange and growth rates of naturally colored-fiber cotton genotypes irrigated with saline water and under exogenous foliar application of hydrogen peroxide concentrations. The experiment was carried out under greenhouse conditions, in Campina Grande - PB, using the randomized block experimental design and 4 × 3 × 2 factorial arrangement, with four concentrations of hydrogen peroxide - H2O2 (0, 25, 50, and 75 µM), three colored-fiber cotton genotypes - CG (BRS Rubi; BRS Topázio; BRS Verde) and two levels of electrical conductivity of water - ECw (0.8 and 5.3 dS m-1), with three replicates. Irrigation using water with electrical conductivity of 5.3 dS m-1 associated with foliar application of 50 µM of hydrogen peroxide favors gas exchange and growth rates of BRS Rubi cotton, at 60 days after sowing. Salinity of 5.3 dS m-1 associated with foliar applications of 50 µM of hydrogen peroxide increased the percentage of cell damage and the internal CO2 concentration, but reduced the stomatal conductance, transpiration, CO2 assimilation rate, and growth rates of BRS Topázio cotton.
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过氧化氢对有色纤维棉基因型盐胁迫适应性的影响
摘要干旱半干旱地区灌溉水中盐分过多,制约了农业开发。因此,寻找盐胁迫条件下的种植策略对这些地区灌溉农业的扩张至关重要。因此,本研究的目的是评估用盐水灌溉和外源叶面施用过氧化氢浓度下天然彩色纤维棉基因型的气体交换和生长速率。实验在温室条件下,在Campina Grande-PB中进行,采用随机分组实验设计和4×3×2析因安排,使用四种浓度的过氧化氢-H2O2(0、25、50和75µM),三种彩色纤维棉基因型-CG(BRS-Rubi;BRS-Topázio;BRS-Verde)和两个水平的水电导率ECw(0.8和5.3dSm-1),具有三个重复。在播种后60天,使用电导率为5.3 dS m-1的水灌溉,并在叶面施用50µm过氧化氢,有利于BRS Rubi棉的气体交换和生长速率。5.3 dS m-1的盐度与50µm过氧化氢的叶面施用有关,增加了细胞损伤的百分比和内部CO2浓度,但降低了BRS-Topázio棉花的气孔导度、蒸腾作用、CO2同化率和生长速率。
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