Aragão Jéssica, Lima Geovani Soares de, Lima Vera Lúcia Antunes de, Silva André Alisson Rodrigues da, Capitulino Jessica Dayanne, Caetano Edmilson Júnio Medeiros, Silva Francisco de Assis da, Soares Lauriane Almeida Dos Anjos, Fernandes Pedro Dantas, Farias Maria Sallydelândia Sobral de, Gheyi Hans Raj, Borborema Lucyelly Dâmela Araújo, Arruda Thiago Filipe de Lima, Santos Larissa Fernanda Souza
Department of Agricultural Engineering, Federal University of Viçosa, Viçosa 36570-900, MG, Brazil.
Academic Unit of Agricultural Engineering, Federal University of Campina Grande, Campina Grande 58430-380, PB, Brazil.
Plants (Basel). 2023 Aug 18;12(16):2981. doi: 10.3390/plants12162981.
The present study aimed to evaluate the effects of the foliar application of hydrogen peroxide on the attenuation of salt stress on the growth, photochemical efficiency, production and water use efficiency of 'All Big' bell pepper plants. The experiment was conducted under greenhouse conditions in Campina Grande, PB, Brazil. Treatments were distributed in a randomized block design, in a 5 × 5 factorial scheme, corresponding to five levels of electrical conductivity of irrigation water (0.8, 1.2, 2.0, 2.6 and 3.2 dS m) and five concentrations of hydrogen peroxide (0, 15, 30, 45 and 60 μM), with three replicates. Foliar application of hydrogen peroxide at concentration of 15 μM attenuated the deleterious effects of salt stress on photochemical efficiency, biomass accumulation and production components of bell pepper plants irrigated using water with an electrical conductivity of up to 3.2 dS m. Foliar spraying of hydrogen peroxide at a concentration of 60 μM intensified the effects of salt stress. The 'All Big' bell pepper was classified as moderately sensitive to salt stress, with an irrigation water salinity threshold of 1.43 dS m and a unit decrease of 8.25% above this salinity level.
本研究旨在评估叶面喷施过氧化氢对减轻盐胁迫对‘All Big’甜椒植株生长、光化学效率、产量和水分利用效率的影响。试验在巴西帕拉伊巴州坎皮纳格兰德的温室条件下进行。处理采用随机区组设计,5×5析因方案,对应灌溉水的五个电导率水平(0.8、1.2、2.0、2.6和3.2 dS m)和过氧化氢的五个浓度(0、15、30、45和60 μM),重复三次。叶面喷施浓度为15 μM的过氧化氢可减轻盐胁迫对使用电导率高达3.2 dS m的水灌溉的甜椒植株光化学效率、生物量积累和产量构成因素的有害影响。叶面喷施浓度为60 μM的过氧化氢会加剧盐胁迫的影响。‘All Big’甜椒对盐胁迫中度敏感,灌溉水盐度阈值为1.43 dS m,高于该盐度水平时单位降幅为8.25%。