Botany Department, Faculty of Science, Aswan University, Aswan 81528, Egypt.
Department of Biology Education, Faculty of Mathematics and Natural Sciences, Universitas Negeri Yogyakarta, Yogyakarta 55281, Indonesia.
Molecules. 2020 Nov 13;25(22):5300. doi: 10.3390/molecules25225300.
Shallot landraces and varieties are considered an important genetic resource for breeding due to their high contents of several functional metabolites. Aiming to provide new genetic materials for the development of a novel bulb onion cultivar derived from intraspecific hybrids with useful agronomic traits from shallots, the metabolic profiles in the bulbs of 8 Indonesian shallot landraces and 7 short-day and 3 long-day bulb onion cultivars were established using LC-Q-TOF-MS/MS. Principal component analysis, partial least squares discriminant analysis, and dendrogram clustering analysis showed two major groups; group I contained all shallot landraces and group II contained all bulb onion cultivars, indicating that shallots exhibited a distinct metabolic profile in comparison with bulb onions. Variable importance in the projection and Spearman's rank correlation indicated that free and conjugated amino acids, flavonoids (especially metabolites having flavonol aglycone), and anthocyanins, as well as organic acids, were among the top metabolite variables that were highly associated with shallot landraces. The absolute quantification of 21 amino acids using conventional HPLC analysis showed high contents in shallots rather than in bulb onions. The present study indicated that shallots reprogrammed their metabolism toward a high accumulation of amino acids and flavonoids as an adaptive mechanism in extremely hot tropical environments.
葱属地方品种和品种因其含有多种功能性代谢物而被认为是重要的遗传资源,可用于培育。为了从具有有用农艺性状的葱属内杂种中开发出具有新颖鳞茎洋葱品种的新型鳞茎洋葱,使用 LC-Q-TOF-MS/MS 建立了 8 个印度尼西亚葱属地方品种和 7 个短日照和 3 个长日照鳞茎洋葱品种鳞茎中的代谢图谱。主成分分析、偏最小二乘判别分析和聚类 dendrogram 分析显示存在两个主要组;第 I 组包含所有的葱属地方品种,第 II 组包含所有的鳞茎洋葱品种,表明与鳞茎洋葱相比,葱属表现出明显不同的代谢特征。投影变量重要性分析和 Spearman 秩相关分析表明,游离氨基酸和结合氨基酸、类黄酮(尤其是具有黄酮醇苷元的代谢物)和花青素以及有机酸均为与葱属地方品种高度相关的顶级代谢物变量。使用常规 HPLC 分析对 21 种氨基酸进行的绝对定量表明,葱属中的含量高于鳞茎洋葱。本研究表明,葱属通过高度积累氨基酸和类黄酮来重新编程其代谢,这是在极热的热带环境中适应的机制。