Granado-Rodríguez Sara, Vilariño-Rodríguez Susana, Maestro-Gaitán Isaac, Matías Javier, Rodríguez María José, Calvo Patricia, Cruz Verónica, Bolaños Luis, Reguera María
Departamento de Biología, Campus de Cantoblanco, c/Darwin 2, Universidad Autónoma de Madrid, 28049 Madrid, Spain.
Vitrosur Lab SLU, Algodonera del Sur, Carretera Trebujena C-441 (km 5.5), Lebrija, 41740 Sevilla, Spain.
Plants (Basel). 2021 Oct 7;10(10):2128. doi: 10.3390/plants10102128.
Exploiting the relationship between the nutritional properties of seeds and the genetic background constitutes an essential analysis, which contributes to broadening our knowledge regarding the control of the nutritional quality of seeds or any other edible plant structure. This is an important aspect when aiming at improving the nutritional characteristics of crops, including those of Willd. (quinoa), which has the potential to contribute to food security worldwide. Previous works have already described changes in the nutritional properties of quinoa seeds due to the influence of the environment, the genotype, or their interaction. However, there is an important limitation in the analyses carried out, including the outcomes that can be translated into agronomical practices and their effect on seed quality. In the present study, several seed nutritional-related parameters were analyzed in 15 quinoa cultivars grown in a particular environmental context. Important agronomical and nutritional differences were found among cultivars, such as variations in mineral or protein contents and seed viability. More importantly, our analyses revealed key correlations between seed quality-related traits in some cultivars, including those that relate yield and antioxidants or yield and the germination rate. These results highlight the importance of considering the genotypic variation in quinoa when selecting improved quinoa varieties with the best nutritional characteristics for new cultivation environments.
利用种子的营养特性与遗传背景之间的关系进行分析至关重要,这有助于拓宽我们对种子或任何其他可食用植物结构营养品质控制的认识。在旨在改善作物营养特性时,这是一个重要方面,包括对有潜力为全球粮食安全做出贡献的藜麦(Chenopodium quinoa Willd.)而言。先前的研究已经描述了由于环境、基因型或它们的相互作用对藜麦种子营养特性的影响。然而,所进行的分析存在一个重要局限性,包括那些可转化为农艺实践的结果及其对种子质量的影响。在本研究中,对在特定环境条件下种植的15个藜麦品种的几个与种子营养相关的参数进行了分析。在品种间发现了重要的农艺和营养差异,如矿物质或蛋白质含量以及种子活力的变化。更重要的是,我们的分析揭示了一些品种中与种子质量相关性状之间的关键相关性,包括那些与产量和抗氧化剂或产量和发芽率相关的性状。这些结果凸显了在为新的种植环境选择具有最佳营养特性的改良藜麦品种时考虑藜麦基因型变异的重要性。