Jorge Ana O S, Costa Anabela S G, Ferreira Diana Melo, Oliveira Maria Beatriz P P
LAQV@REQUIMTE, Faculdade de Farmácia, Universidade do Porto, R. Jorge Viterbo Ferreira 228, 4050-313 Porto, Portugal.
Plants (Basel). 2025 Jan 30;14(3):409. doi: 10.3390/plants14030409.
, a cactus known for its edible fruit, produces both summer and winter fruit with distinct nutritional profiles. This study, using samples from the same plant in Northeast Portugal, revealed that winter seeds contain 2.4 times more fructose and 1.8 times more total sugars than summer seeds. Winter samples also showed a 2.3-fold increase in α-tocopherol content (11.69 mg/kg vs. 5.17 mg/kg in summer) and higher moisture (seed moisture: 54.96% vs. 49.52%). The peel consistently displayed the highest antioxidant activity, with summer samples generally having stronger antioxidant status. Interestingly, no statistical significance was found for the antioxidant activity or bioactive in the seed, both remaining constant between seasons. The fatty acid composition remained largely consistent, with linoleic acid as the dominant component (57-59%), though winter oil showed slightly higher saturation. Nutritional content was higher in winter samples, while bioactive constituents were more abundant in summer, and fatty acid composition remained stable across both seasons. These results emphasize the impact of seasonality on the nutritional and bioactive properties of fruits.
一种以其可食用果实而闻名的仙人掌,会产出具有不同营养成分的夏季和冬季果实。这项研究使用了来自葡萄牙东北部同一植株的样本,结果显示冬季种子中的果糖含量是夏季种子的2.4倍,总糖含量是夏季种子的1.8倍。冬季样本的α-生育酚含量也增加了2.3倍(冬季为11.69毫克/千克,夏季为5.17毫克/千克),且水分含量更高(种子水分:冬季为54.96%,夏季为49.52%)。果皮始终表现出最高的抗氧化活性,夏季样本的抗氧化状态通常更强。有趣的是,种子中的抗氧化活性或生物活性未发现统计学显著差异,在不同季节保持恒定。脂肪酸组成基本一致,亚油酸为主要成分(57 - 59%),不过冬季的油饱和度略高。冬季样本的营养成分含量更高,而生物活性成分在夏季更为丰富,且两个季节的脂肪酸组成保持稳定。这些结果强调了季节性对果实营养和生物活性特性的影响。