ANALISIS LINTAS PERTUMBUHAN DAN PRODUKSI TERHADAP PROTEIN KACANG TUNGGAK (Vigna unguiculata L) GENERASI M2

Yukarie Ayu Wulandari, Sobir Sobir, Syarifah Iis Aisyah
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Abstract

Cowpea (V. unguiculata L) can be developed as a source of vegetable protein because it contains relatively high protein and high lysine. The protein content in seeds is an accumulation of character components that play a role in protein formation, whose relationship can be predicted using cross correlation and analysis coefficients. The study was carried out in the experimental garden of Pasir Kuda PKHT of IPB in February - May 2018. Protein analysis is carriedout in the Testing Laboratory of the Department of Agronomy and Horticulture, Faculty of Agriculture, IPB in June - July 2018. The study was conducted using 30 putative mutant test genotypes of M2 generation result from the mutation of gamma ray irradiation and KM4 genotype as a comparison which was repeated three times. The protein content of the seeds was analyzed using the Kjeldahl method and then analyzed the variance, correlation coefficient and path. The results showed that M2 generation putative mutants showed diversity for the character of protein content in cowpea seeds. The protein content in cowpea seeds can be predicted through the character of plant height and number of branches.
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对菌丝豌豆蛋白质(Vigna unguiculata L)的生长和生产进行了交叉分析
豇豆(V.unguiculata L)可以作为植物蛋白的来源,因为它含有相对较高的蛋白质和高赖氨酸。种子中的蛋白质含量是在蛋白质形成中起作用的特征成分的积累,其关系可以使用互相关系数和分析系数来预测。该研究于2018年2月至5月在IPB的Pasir Kuda PKHT实验花园中进行。蛋白质分析于2018年6月至7月在IPB农业学院农学与园艺系测试实验室进行。本研究使用30种由γ射线照射突变产生的M2代推定突变测试基因型和KM4基因型作为比较,重复三次。采用凯氏定氮法对种子蛋白质含量进行分析,然后对方差、相关系数和通径进行分析。结果表明,M2代推定突变体在豇豆种子蛋白质含量性状上表现出多样性。豇豆种子中的蛋白质含量可以通过株高和分枝数的特征来预测。
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