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Biochemical and molecular characterization of cowpea landraces using seed storage proteins and SRAP marker patterns

机译:利用种子贮藏蛋白和SRAP标记模式对land豆地方品种进行生化和分子表征

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摘要

Seven landraces of cowpea [Vigna unguiculata (L.) Walp.] were assessed for genetic variability in total proteins, protein fractions viz. albumins, globulins, prolamins, and glutelins by SDS-polyacrylamide gel electrophoresis and DNA polymorphism using sequence-related amplified polymorphisms (SRAP) markers. The solubility-based protein fractionation data indicated that the salt soluble fraction (globulin) and water-soluble fraction (albumin) proteins were the predominant fractions in cowpea seeds comprising 45–50.3% and 31.2–35.5% of total soluble proteins, respectively. The electrophoretic pattern revealed the molecular heterogeneity among total proteins as well as different protein fractions. The molecular weights of protein bands obtained by SDS-PAGE varied between 10 to 250, 15 to 110, 15 to 150, and 15 to 130 kDa for total proteins, albumins, globulins, and glutelins, respectively. A large number of bands were found common to the various landraces, indicative of their close relationship with one another. However, a few bands distinctive to some specific landraces were also detected, indicating varietal differences. A 34 SRAP primer pair combination generated a total of 1003 amplicons (loci) showed 100% polymorphism with an average of 0.93 polymorphism information content (PIC) value. Landraces displayed an average 0.50 similarity coefficient which clustered the landraces corresponding to their growth habit in main clusters and to their geographical origin in subcultures. Molecular and biochemical analysis were correlated with a medium level (Mantel test, r = 0.56, P < 0.02). These findings revealed that seed proteins and DNA polymorphism provide valuable information regarding the variability among landraces and this information could be utilized for breeding purposes in the enhancement of protein quality and quantity in grain legumes.
机译:对cow豆[Vigna unguiculata(L.)Walp。]的七个地方品种的总蛋白质,蛋白质组分的遗传变异进行了评估。白蛋白,球蛋白,谷醇溶蛋白和谷蛋白通过SDS-聚丙烯酰胺凝胶电泳和DNA多态性,使用与序列相关的扩增多态性(SRAP)标记。基于溶解度的蛋白质分级分离数据表明,盐溶级分(球蛋白)和水溶性级分(白蛋白)蛋白是cow豆种子中的主要级分,分别占总可溶性蛋白的45-50.3%和31.2-35.5%。电泳图谱显示了总蛋白以及不同蛋白组分之间的分子异质性。对于总蛋白,白蛋白,球蛋白和谷蛋白,通过SDS-PAGE获得的蛋白条带的分子量分别在10至250、15至110、15至150和15至130 15kDa之间变化。人们发现,各种地方品种共有许多乐队,这表明它们彼此之间有着密切的关系。但是,还检测到一些特定地方品种特有的几个波段,表明品种差异。 34个SRAP引物对组合产生了总共1003个扩增子(基因座),显示100%多态性,平均多态性信息含量(PIC)值为0.93。地方种表现出平均0.50的相似系数,从而将这些地方种聚在一起,这与它们在主要种群中的生长习性以及在次文化中的地理起源相对应。分子和生化分析与中等水平相关(Mantel试验,r = 0.56,P <0.02)。这些发现表明,种子蛋白和DNA多态性提供了有关地方品种之间变异性的有价值的信息,并且该信息可用于育种目的,以增强谷物豆类的蛋白质质量和数量。

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