de Souza Weslley Bruno Belo, Lima Geovani Soares de, Soares Lauriane Almeida Dos Anjos, Dias Mirandy Dos Santos, Lima Brencarla de Medeiros, Santos Larissa Fernanda Souza, Oliveira Valeska Karolini Nunes, Torres Rafaela Aparecida Frazão, Gheyi Hans Raj, Borborema Lucyelly Dâmela Araújo, da Silva André Alisson Rodrigues, Silva Vitor Manoel Bezerra da, Sousa Valéria Fernandes de Oliveira
Academic Unit of Agricultural Engineering, Federal University of Campina Grande, Campina Grande 58429-900, CEP, Brazil.
Academic Unit of Agricultural Sciences, Center for Science and Agrifood Technology, Federal University of Campina Grande, Pombal 58840-000, CEP, Brazil.
Plants (Basel). 2025 Jul 11;14(14):2149. doi: 10.3390/plants14142149.
This study evaluated the effects of reduced glutathione (GSH) application on the production and quality of sour passion fruit irrigated with brackish water in the semi-arid region of Paraíba, Brazil. The experiment was conducted in drainage lysimeters under greenhouse conditions at the Center of Technology and Natural Resources of the Federal University of Campina Grande (UFCG). Treatments combined five levels of electrical conductivity of brackish irrigation water (Bw: 0.4, 1.2, 2.0, 2.8, and 3.6 dS m) and four GSH concentrations (0, 40, 80, and 120 mg L), arranged in a randomized block design with three replicates. Salinity levels above 0.4 dS m negatively affected fruit production and post-harvest quality of 'BRS GA1' sour passion fruit. Foliar application of 120 mg L GSH increased fruit yield, while 74 mg L GSH mitigated salt stress effects on production and pulp chemical quality. The 'BRS GA1' cultivar was highly sensitive to salinity, showing a 26.9% yield reduction per unit increase in Bw electrical conductivity above 0.4 dS m. The results suggest that GSH can alleviate salt stress damage, improving crop productivity and fruit quality under semi-arid conditions.
本研究评估了在巴西帕拉伊巴半干旱地区用微咸水灌溉的酸西番莲中,施用还原型谷胱甘肽(GSH)对其产量和品质的影响。实验在坎皮纳格兰德联邦大学(UFCG)技术与自然资源中心的温室条件下的排水蒸渗仪中进行。处理组合了微咸灌溉水的五个电导率水平(Bw:0.4、1.2、2.0、2.8和3.6 dS m)和四个GSH浓度(0、40、80和120 mg L),采用随机区组设计,重复三次。电导率高于0.4 dS m的盐度水平对‘BRS GA1’酸西番莲的果实产量和采后品质产生负面影响。叶面喷施120 mg L GSH可提高果实产量,而74 mg L GSH可减轻盐胁迫对产量和果肉化学品质的影响。‘BRS GA1’品种对盐度高度敏感,当Bw电导率高于0.4 dS m时,每单位增加量产量降低26.9%。结果表明,GSH可以减轻盐胁迫损害,在半干旱条件下提高作物生产力和果实品质。