Laboratory for Plant Genetics and Crop Improvement, KU Leuven, Willem de Croylaan 42, B-3001, Leuven, Belgium.
Laboratory for Plant Genetics and Crop Improvement, KU Leuven, Willem de Croylaan 42, B-3001, Leuven, Belgium.
Plant Physiol Biochem. 2020 Jun;151:47-59. doi: 10.1016/j.plaphy.2020.03.006. Epub 2020 Mar 5.
Vitamin C is a crucial antioxidant and cofactor for both plants and humans. Apple fruits generally contain low levels of vitamin C, making vitamin C content an interesting trait for apple crop improvement. With the aim of breeding high vitamin C apple cultivars it is important to get an insight in the natural biodiversity of vitamin C content in apple fruits. In this study, quantification of ascorbic acid (AsA), dehydroascorbic acid (DHA), and total AsA (AsA + DHA) in apple pulp of 79 apple accessions at harvest revealed significant variation, indicating a large genetic biodiversity. High density genotyping using an 8 K SNP array identified 21 elite and 58 local cultivars in this germplasm, with local accessions showing similar levels of total AsA but higher amounts of DHA compared to elite varieties. Out of the 79 apple cultivars screened, ten genotypes with either the highest or the lowest concentration of total AsA at harvest were used for monitoring vitamin C dynamics during fruit development and storage. For all these cultivars, the AsA/DHA ratio in both apple pulp and peel increased throughout fruit development, whereas the AsA/DHA balance always shifted towards the oxidized form during storage and shelf life, putatively reflecting an abiotic stress response. Importantly, at any point during apple fruit development and storage, the apple peel contained a higher level of vitamin C compared to the pulp, most likely because of its direct exposure to abiotic and biotic stresses.
维生素 C 是植物和人类必需的重要抗氧化剂和辅助因子。苹果果实通常含有较低水平的维生素 C,因此维生素 C 含量是苹果作物改良的一个有趣特征。为了培育富含维生素 C 的苹果品种,了解苹果果实中维生素 C 含量的自然生物多样性非常重要。在这项研究中,对 79 个苹果品种在收获时的果肉中抗坏血酸(AsA)、脱氢抗坏血酸(DHA)和总 AsA(AsA+DHA)的定量分析表明存在显著的变异,表明遗传多样性很大。利用 8K SNP 阵列进行高密度基因分型,在该种质中鉴定出 21 个优良品种和 58 个地方品种,地方品种的总 AsA 水平相似,但 DHA 含量高于优良品种。在筛选的 79 个苹果品种中,选取了 10 个在收获时总 AsA 浓度最高或最低的基因型,用于监测果实发育和贮藏过程中维生素 C 的动态变化。对于所有这些品种,苹果果肉和果皮中的 AsA/DHA 比值在果实发育过程中均增加,而在贮藏和货架期,AsA/DHA 平衡总是向氧化形式转移,这可能反映了一种非生物胁迫反应。重要的是,在苹果果实发育和贮藏的任何阶段,苹果果皮中的维生素 C 含量都高于果肉,这很可能是因为果皮直接暴露于非生物和生物胁迫下。