CICTE, Department of Life Science and Agriculture, Universidad de las Fuerzas Armadas-ESPE, Av. General Rumiñahui s/n y Ambato, Sangolquí 171103, Ecuador.
Pasteurizadora Quito, Pedro Pinto Guzmán 610 y Av. Napo, Quito 170604, Ecuador.
Molecules. 2022 Oct 27;27(21):7314. doi: 10.3390/molecules27217314.
Jacq. has gained a reputation in the food industry as an incredible crop capable of supplying the world's largest edible oil production. In Ecuador, an important oil palm-producing country, this crop is affected in a high percentage by the bud rot disease, which is responsible for palm death. The main objective of the investigation was dedicated to understanding the palm defense mechanism facing bud rot disease, translated in the induction of reactive oxygen species, activation of defensive machinery comprising enzymatic and non-enzymatic antioxidative components, secondary metabolites, carotenoids accumulation in the palm during all stages of disease infection. For this, a survey was conducted in different oil palm plantations in the Esmeraldas province, one of the most representative for its highest incidence of bud rot disease. The survey completed DPPH, FRAP, ABTS, and other spectrophotometric analyses to underline the biochemical, biological, and physiological palm response front of bud rot incidence. The palm defense strategy in each disease stage could be represented by the phenolic compound's involvement, an increment of antioxidant activity, and the high enzymatic activity of phenylalanine ammonia-lyase (PAL). The results of the investigation made understandable the palm defense strategy front of this disease, respectively, the antioxidative defense and the palm secondary compounds involved.
油棕在食品行业享有盛誉,是一种能够供应全球最大食用油产量的不可思议的作物。在厄瓜多尔这个重要的油棕生产国,这种作物有很大比例受到芽腐病的影响,这种病会导致棕榈树死亡。该调查的主要目的是致力于了解棕榈树面对芽腐病的防御机制,具体表现为诱导活性氧的产生、激活包括酶和非酶抗氧化成分、次生代谢物、类胡萝卜素在内的防御机制在疾病感染的所有阶段在棕榈中的积累。为此,在厄瓜多尔埃斯梅拉达斯省的不同油棕种植园中进行了一项调查,该省是发病率最高的代表性地区之一。该调查完成了 DPPH、FRAP、ABTS 等分光光度分析,以强调芽腐病发生时棕榈的生化、生物和生理反应。在每个疾病阶段,棕榈的防御策略可以用参与的酚类化合物、抗氧化活性的增加以及苯丙氨酸解氨酶 (PAL) 的高酶活性来表示。调查结果使人们能够理解棕榈树在这种疾病面前的防御策略,分别是抗氧化防御和涉及的棕榈次生化合物。