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Organic Manures Improved the Phenolic Content, Antioxidant Capacity and Soluble Solids in Pepper

Organic Manures Improved the Phenolic Content, Antioxidant Capacity and Soluble Solids in Pepper
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摘要 The aim of this research was to determine the effect of three organic manures (vermicompost, simple compost, compost with gypsum) with four different levels, as sources of fertilization, and mixed with river sand, this was used as an inert material, on the phenolic content, antioxidant capacity and total soluble solids of bell peppers (Capsicum annuum L.). The 12 mixtures formulated, with eight replications, were distributed in a completely randomized design. Data were statistically analyzed by analysis of variance and means were compared by test Tukey<sub>5%</sub>. All variables were significantly affected (p ≤ 0.001). Fruits with highest phenolic content were developed in the mixtures M2, M5 and M6 with 538.76, 541.54 and 565.04 mg GAE·100 kg<sup>-1</sup> DW, respectively. Antioxidant capacity of fruits was increased with mixtures M2, M5, M6 and M7 with values of 934.48, 942.04, 921.69 and 924.17 μM TEAC·g<sup>-1</sup> DW, respectively. The soluble solids content was higher in mixtures M1 and M2 with values of 4.93 and 4.97 °Brix, respectively. It was concluded that the variables studied were favored when applying, as sources of fertilization, mixtures of these organic manures with river sand, which could represent a suitable alternative for food production with quality nutraceutical. The aim of this research was to determine the effect of three organic manures (vermicompost, simple compost, compost with gypsum) with four different levels, as sources of fertilization, and mixed with river sand, this was used as an inert material, on the phenolic content, antioxidant capacity and total soluble solids of bell peppers (Capsicum annuum L.). The 12 mixtures formulated, with eight replications, were distributed in a completely randomized design. Data were statistically analyzed by analysis of variance and means were compared by test Tukey<sub>5%</sub>. All variables were significantly affected (p ≤ 0.001). Fruits with highest phenolic content were developed in the mixtures M2, M5 and M6 with 538.76, 541.54 and 565.04 mg GAE·100 kg<sup>-1</sup> DW, respectively. Antioxidant capacity of fruits was increased with mixtures M2, M5, M6 and M7 with values of 934.48, 942.04, 921.69 and 924.17 μM TEAC·g<sup>-1</sup> DW, respectively. The soluble solids content was higher in mixtures M1 and M2 with values of 4.93 and 4.97 °Brix, respectively. It was concluded that the variables studied were favored when applying, as sources of fertilization, mixtures of these organic manures with river sand, which could represent a suitable alternative for food production with quality nutraceutical.
作者 Alejandro Moreno-Reséndez Ricardo Parcero-Solano José Luis Reyes-Carrillo Lilia Salas-Pérez María del Rosario Moncayo-Luján Mercedes Georgina Ramírez-Aragón Norma Rodríguez-Dimas Alejandro Moreno-Reséndez;Ricardo Parcero-Solano;José Luis Reyes-Carrillo;Lilia Salas-Pérez;María del Rosario Moncayo-Luján;Mercedes Georgina Ramírez-Aragón;Norma Rodríguez-Dimas(Universidad Autónoma Agraria Antonio Narro, Unidad Laguna, México;Integrantes del Cuerpo Académico de Sistemas Sustentables para la Producción Agropecuaria (CASISUPA) de la UAAAN, Key: UAAAN-CA-14, Torreón, México;Integrantes de la Red Académica de Innovación en Alimentos y Agricultura Sustentable (RAIAAS), Consejo Estatal de Ciencia y Tecnología del Estado de Coahuila de Zaragoza, Comunidad de Instituciones de Educación Superior de la Laguna (COECYT-CIESLAG), Torreón, México;Universidad Politécnica de Gómez Palacio, Gómez Palacio, México;Integrantes del Cuerpo Académico Ingeniería en Biotecnología y Administración de Negocios Internacionales, Key: UPGOP-CA-1, Gómez Palacio, México)
出处 《Food and Nutrition Sciences》 2016年第14期1401-1413,共14页 食品与营养科学(英文)
关键词 Organic Agriculture Capsicum annuum Phenolic Compounds Antioxidant Capacity Soluble Solids Organic Agriculture Capsicum annuum Phenolic Compounds Antioxidant Capacity Soluble Solids
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