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Anthocyanin fingerprinting and dynamics in differentially pigmented exotic soybean genotypes using modified HPLC-DAD method

机译:使用改性HPLC-DAD方法的差异色素沉积异国大豆基因型的花青素指纹和动力学

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摘要

More than as a phenotypic marker for breeding, seed coat colour of soybean is gaining momentum as a nutraceutical marker owing to the multitude of medicinal effects provided by anthocyanins. The acute obstacle for large scale phenotyping is a rapid, reliable and accurate quantification which simultaneously determines various anthocyanins and hence, in this study, the modified method efficiently separated cyanidin-3-glucoside (C3G), delphinidin-3-glucoside (D3G) and petunidin-3-glucoside (Pt3G) forms by eluting through a RP-C-18 column with an optimized isocratic mobile phase containing 18% solvent B (0.4% trifluoro acetic acid in acetonitrile) in solvent A (0.4% trifluoro acetic acid in water). The elution profile of anthocyanins were C3G > D3G > Pt3G, with C3G as the predominant (similar to 85%) form. The modified method was validated in terms of linearity (R-2 = 0.998), low limit of detection (LOD = 5.8 mu g ml(-1)), limit of quantification (LOQ = 22.25 mu g ml(-1)), precision, repeatability, stability and recovery. C3G dynamics was found increased in a linear trend from 30DAF to later developing stages until maturity. The investigation on characterization of exotic soybean genotypes revealed that, maximum C3G content of 4.9 mg g(-1) was in UPSL496 and the least in EC471921 (3.56 mg g(-1)). There was a positive correlation observed among all the variables, like monomeric anthocyanin content (MAC), C3G, D3G and Pt3G. Clustering and heat map analysis information on this efficient method can be used for future research for germ plasm evaluation and for developing nutritionally C3G enriched high yielding varieties.
机译:对于繁殖的表型标志物,大豆种子涂层的颜色是由于花青素提供的众多药用作用,大豆的种子涂层是营养素标志物的动力。大规模表型的急性障碍是一种快速,可靠和准确的定量,其同时决定各种花青素,因此在该研究中,改性方法有效地分离了花青素-3-葡糖苷(C3G),Delphinidin-3-葡糖苷(D3G)和通过通过RP-C-18柱洗脱,通过含有18%溶剂B(乙腈中的0.4%三氟乙酸)的优化等物流动相,在溶剂A(水中0.4%三氟乙酸中)的优化等体流动相的形式形成。(水中0.4%三氟乙酸)。花青素的洗脱轮廓为C3g> D3g> Pt3g,C3g作为主要(类似于85%)形式。根据线性度(R-2 = 0.998),检测限验证了修饰的方法(LOD =5.8μg(-1)),量子限制(LOQ =22.25μgml(-1)),精度,可重复性,稳定性和恢复。发现C3G动态从30DAF到后来发展阶段的线性趋势增加到成熟度。对异国情调大豆基因型表征的研究表明,最大C3g含量为4.9mg(-1),在EMSL496中,EC471921(3.56mg(-1))。在所有变量中观察到阳性相关性,例如单体花青素含量(MAC),C3G,D3G和PT3G。聚类和热图分析关于这种有效方法的信息可用于将来对胚芽血浆评估的研究和开发营养C3G富含高产品种的研究。

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