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Biochemical characterization of white onion landraces (Allium cepa L.) through HPLC analysis of endosperm seed proteins

机译:通过HPLC分析胚乳种子蛋白,对白洋葱地方品种(葱属)进行生化鉴定

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摘要

Water-, salt-, alcohol- and alkali-soluble seed storage proteins, extracted from 21 “cipolla bianca di Pompei” landraces (Allium cepa L.), were analyzed by anionic exchange-high performance liquid chromatography (AE-HPLC). Chromatographic elution profiles (time range 0–40 min) at 280 nm of water-soluble seed proteins evidenced the presence of 21 peaks, which allowed all the landraces studied to be distinguished from each other. The differences detected were both qualitative (presence/absence of one or more peaks) and quantitative; the water-soluble proteins were useful in differentiating landraces and cultivars while the other seed protein fractions only showed a weak polymorphism. The cluster analysis, based on HPLC data, showed that the landraces clustered with a genetic similarity degree ranging between 69% and 94%. The possibility of discriminating among closely related onion landraces during the course of breeding programmes could allow the identification of biochemical markers linked to useful agronomical traits. As observed by chromatographic analysis, the globulin composition of onion water-soluble seed protein appears to be independent of environmental growth conditions. The biochemical characterization of the available typical onion germplasm may contribute to obtain a community recognition and denomination, such as Denomination of Protected Origin (D.O.P.), Indication of Protected Origin (I.G.P.) or Specificity Attestation (A.S.). The biochemical method here developed resulted of high resolution, cost-effective and time-saving for characterization and genetic purity assessment of the landraces studied.
机译:通过阴离子交换高效液相色谱(AE-HPLC)分析了从21种“蓬皮草”中提取的水,盐,醇和碱溶性种子贮藏蛋白。水溶性种子蛋白在280 nm处的色谱洗脱曲线(时间范围为0–40分钟)证明存在21个峰,这使所研究的所有地方品种都可以区分开。检测到的差异既是定性的(存在/不存在一个或多个峰)又是定量的。水溶性蛋白可用于区分地方品种和品种,而其他种子蛋白级分仅表现出弱多态性。根据HPLC数据进行的聚类分析表明,这些地方品种聚类的遗传相似度在69%至94%之间。在育种程序中区分密切相关的洋葱地方品种的可能性,可以确定与有用的农艺性状有关的生化标记。如通过色谱分析所观察到的,洋葱水溶性种子蛋白的球蛋白组成似乎与环境生长条件无关。可用的典型洋葱种质的生化特性可能有助于获得社区认可和命名,例如受保护原产地名称(D.O.P.),受保护原产地标记(I.G.P.)或特异性证明(A.S.)。这里开发的生化方法具有高分辨率,高成本效益和省时的特性,可用于所研究地方品种的鉴定和遗传纯度评估。

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