Cadena-Iñiguez Jorge, Arévalo-Galarza Ma de Lourdes, Santiago-Osorio Edelmiro, Aguiñiga-Sánchez Itzen, Cadena-Zamudio Jorge David, Soto-Hernández Marcos, Ramírez-Rodas Yeimy C, Ruiz-Posadas Lucero Del Mar, Salazar-Aguilar Sandra, Cisneros-Solano Víctor Manuel
Colegio de Postgraduados, Campus San Luis Potosí, San Luis Potosí 78620, San Luis Potosí, Mexico.
Interdisciplinary Research Group at Sechium edule in Mexico, A.C., Agustin Melgar 10, Col. Niños Héroes, Texcoco 56160, Estado de México, Mexico.
Life (Basel). 2024 Dec 27;15(1):15. doi: 10.3390/life15010015.
The genus P. Br. (Cucurbitaceae) includes ten species, two of which are edible. The inedible genotypes are in a fragile ecological niche, since they are not used by rural inhabitants. A rescue and genetic crossing program was designed to identify uses that favor their conservation due to their content of bioactive secondary metabolites (Sm) for health. Fruits of (wild type), hybrid H-D Victor (inedible), and var (edible) were evaluated by extraction methods such as juice and oven drying to determine the yields of Sm, with in vivo evaluations of liver damage. The dried biomass (40 °C) extracted with ethanolic and methanolic procedures showed lower Sm content than the juice (fresh biomass). More than 90% of phenolic acids and cucurbitacins in the extracts were degraded, possibly due to the drying time (oven). Biological activity showed that and HD-Victor have fewer toxic metabolites than . The hybrid H-D Victor is of reduced cytotoxicity, showing the advantages of hybridization with wild types. Phytochemical and biological activity characterization may contribute to the conservation of genotypes and become a source of bioactive natural products.
P. Br.属(葫芦科)包含10个物种,其中两个可食用。不可食用的基因型处于脆弱的生态位,因为农村居民并不使用它们。设计了一个拯救和遗传杂交计划,以确定因其生物活性次生代谢产物(Sm)对健康有益而有利于其保护的用途。通过果汁和烘干等提取方法对(野生型)、杂交种H-D Victor(不可食用)和var(可食用)的果实进行评估,以确定Sm的产量,并对肝损伤进行体内评估。用乙醇和甲醇方法提取的干燥生物质(40℃)显示出比果汁(新鲜生物质)更低的Sm含量。提取物中超过90%的酚酸和葫芦素可能由于干燥时间(烘箱)而降解。生物活性表明,和HD-Victor的有毒代谢产物比少。杂交种H-D Victor的细胞毒性降低,显示出与野生型杂交的优势。植物化学和生物活性表征可能有助于基因型的保护,并成为生物活性天然产物的来源。