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Hybrid Vigor, Heterosis, and Genetic Parameters in Maize by Diallel Cross Analysis

机译:玉米杂种优势,杂种优势和遗传参数的Diallel杂交分析

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A field experiment was conducted at the experimental farm of Field Crop Sciences Department, College of Agriculture / University of Baghdad. Five maize (Zea mays L.) inbred lines were tested for general and specific combining ability by using full diallel cross. Seed of inbred were planted in spring and fall season of 2013. In first season, seeds were planted, and at anthesis crossing between inbreds were done. In the fall season varietal trial for crosses and parents were conducted by using RCBD design with four replications to evaluate crosses and parents and to estimate some genetic parameters. Statistical analysis revealed high significant increases for all traits, ear height, leaves area, no of ears/plant, no. of grain/plant, grain weight, dry weight/plant and yield t/ ha. The genetic analysis showed that inbred 2 was superior and gave high grain yield (5.74 t/ha.), due to its high dry weight (207.82g/plant), and no. of grain /plant (704.49). In addition, it had positive GCA. The reciprocity cross 4×1 was superior and gave highest yield 6.98 t/ha. due to superiority in 100 grain weight (18.53g). It also had positive and higher hybrid vigor (45%) for grain yield, and positive effect of sca (1.56). All reciprocity crosses were higher than crosses; the highest one is 4 × 3, which gave 8.69 t/ha. All parent and crosses had had positive variance for yield, but all reciprocity crosses were negative. Mean square for SCA and RCA were more than GCA, and therefore the σ~2 GCA was less which made σ~2 A less than σ~2D and σ~2 Dr, so σ~2 GCA / σ~2 SCA and σ~2 GCA / σ~2 RCA became less than one and the degree of dominance was more than one, making h_(n,s)~2 very little. Thus, the trait was governed by non-additive gene action. We can conclude that there is a possibility of using superior inbreds to produce hybrids or use selection for it and produce synthetic varieties.
机译:在巴格达大学农业学院/田间作物科学系的实验农场进行了田间试验。通过使用充分的二叉杂交,测试了五个玉米(Zea mays L.)自交系的一般和特异性结合能力。自交系种子在2013年春秋季节播种。第一季播种,在花期进行近交系杂交。在秋季,通过使用具有四个重复的RCBD设计进行杂交和亲本的品种试验,以评估杂交和亲本并评估一些遗传参数。统计分析表明,所有性状,穗高,叶面积,无穗/无植株,无任何特征均显着增加。谷物/植物的数量,谷物重量,干重/植物和产量t / ha。遗传分析表明,自交系2具有较高的干重(207.82g /株),且无杂种优势,且具有较高的籽粒产量(5.74吨/公顷)。谷物/植物(704.49)。此外,它的GCA阳性。互惠互作4×1优越,最高产量为6.98吨/公顷。由于100粒重(18.53g)的优越性。它对谷物的产量也具有积极和更高的杂种优势(45%),而鳞茎杂种(1.56)具有积极作用。所有的互惠十字架都高于十字架。最高的是4×3,产量为8.69吨/公顷。所有亲本和杂交的产量都有正方差,但是所有互惠杂交的结果都是负的。 SCA和RCA的均方值大于GCA,因此σ〜2 GCA较小,从而使σ〜2 A小于σ〜2D和σ〜2 Dr,因此σ〜2 GCA /σ〜2 SCA和σ〜 2 GCA /σ〜2 RCA小于1,优势度大于1,使得h_(n,s)〜2非常小。因此,该性状受非加性基因作用支配。我们可以得出结论,有可能使用优质的自交系来生产杂种或对其进行选择并产生合成品种。

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