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Genetic and biochemical characterization of parental inbred lines in marker assisted selection for quality protein maize

机译:亲本近交系的遗传和生化特性鉴定优质蛋白质玉米的标记辅助选择

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Maize protein is deficient in two essential amino acids, lysine and tryptophan. Naturally occurring opaque2 (o2) mutation which increases the levels of tryptophan and lysine in the grain also confers an undesirable phenotype leading to low yields and more susceptible, soft and chalky kernels. Quality Protein Maize (QPM) is agronomically acceptable and nutritionally improved opaque2 maize. Marker assisted selection increases reliability and efficiency, reduces time and costs taken to obtain QPM. The results presented in this paper are a part of the Maize Research Insitute project on conversion of normal maize lines to QPM lines adapted for growing in temperate regions trough marker assisted backcross (MAB). Genetic and biochemical variability was analyzed between normal (ZPL 5) and QPM (CML 144) parental inbred lines and the efficiency of the three opaque2 specific SSR markers was examined. Markers phi057 and umc1066 can discriminate homozygous and heterozygous backcross progeny, thus can be used as foreground selection markers for the opaque2 gene. The genetic similarity between analyzed lines was 0.05, which confirmed good selection of parental lines for the creation of hybrids. Tryptophan content was 0.093 and QI was 0.85 in CML 144, approximately twice as high compared to 0.054 and 0.48 in ZPL 5. Both tryptophan and QI values for CML 144 were above the QPM treshold, i.e. tryptophan for 24% and QI for 0.625%, making it a suitable donor line of o2. These results represent the framework for marker assisted introgression of the quality protein trait into local maize genotype. [Projekat Ministarstva nauke Republike Srbije, br. TR31068: Improvement of maize and soybean characteristics by molecular and conventional methods]
机译:玉米蛋白缺乏两个必需氨基酸,赖氨酸和色氨酸。自然发生的opaque2(o2)突变会增加谷物中色氨酸和赖氨酸的水平,也会带来不良的表型,导致低产和更易感,柔软和垩白的谷粒。优质蛋白玉米(QPM)在农学上是可接受的,并且在营养上改善了不透明玉米。标记辅助选择提高了可靠性和效率,减少了获得QPM的时间和成本。本文介绍的结果是玉米研究机构项目的一部分,该项目是将普通玉米品系转化为适合在温带地区通过标记辅助回交(MAB)生长的QPM品系。分析了正常(ZPL 5)和QPM(CML 144)亲本近交系之间的遗传和生化变异性,并检测了三个不透明的SSR标记的效率。标记phi057和umc1066可以区分纯合和杂合回交后代,因此可用作opaque2基因的前景选择标记。被分析的品系之间的遗传相似性为0.05,这证实了亲本品系的良好选择以产生杂种。 CML 144中色氨酸含量为0.093,QI为0.85,约为ZPL 5中0.054和0.48的两倍。CML144的色氨酸和QI值均高于QPM阈值,即色氨酸为24%,QI为0.625%,使其成为o2的合适供体系。这些结果代表了优质蛋白质性状的标记辅助渗入本地玉米基因型的框架。 [Projekat Ministarstva nauke Republike Srbije,br。 TR31068:通过分子和常规方法改善玉米和大豆的特性]

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