首页> 外文期刊>African Journal of Plant Science >Combining ability of highland adapted maize (Zea mays L.) inbred lines for grain yield and yield related traits under optimum and low nitrogen conditions
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Combining ability of highland adapted maize (Zea mays L.) inbred lines for grain yield and yield related traits under optimum and low nitrogen conditions

机译:高氮和低氮条件下高地适应玉米自交系对籽粒产量及相关性状的配合力

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Maize is staple cereal crop in Ethiopia despite the fact that its production is constrained by nitrogen deficiency due to the high cost of fertilizer, and risks of drought. Therefore, development of maize varieties for low nitrogen might be one of the options to overcome the problem. The objective of this study was to estimate combining ability of highland maize inbred lines for yield and yield related traits under low nitrogen (low N) stress and non-stress conditions. Twenty-six inbred lines (two heterotic testers and twenty-four lines) were crossed using line × tester mating design, which ?generated 48 F1 hybrids and along with two hybrid checks (AMH853 and AMH 851) that were evaluated using alpha lattice design with two replications for grain yield and yield related traits within 2017 cropping season at Ambo under low and optimum nitrogen. Analyses of variances showed significant mean squares due to crosses for all traits under both low N stress and non-stress conditions, except for ear per plant under low N stress condition. The mean squares for general (GCA) and specific (SCA) combining abilities were significant for most of the traits under both conditions. Generally, the study indicated the importance of both additive and non-additive gene effects in most cases, while non-additive gene effects are less important under low-N stress. Inbred lines L1, L2, L9 and L20 were found as good combiners for grain yield at optimum N environment, whereas L5 and L14 were good general combiners under low N stress condition. L20 were good combiner for grain yield in combine analysis across environments and hence were promising parents for hybrid cultivars development. Based on SCA effects and per se performance, L5×T2 and L7×T2 were identified as promising hybrids for majority of traits studied in combined analysis across environments.
机译:玉米是埃塞俄比亚的主要谷物作物,尽管由于化肥成本高和干旱的风险,玉米的产量受到氮缺乏的限制。因此,开发低氮玉米品种可能是克服这一问题的选择之一。这项研究的目的是评估高氮玉米自交系在低氮(低N)胁迫和非胁迫条件下对产量和相关性状的结合能力。使用线×测试仪配对设计杂交了26个自交系(2个杂种测试仪和24条品系),这产生了48个F1杂种,并与两个杂种检查(AMH853和AMH 851)一起使用α晶格设计进行了评估,在低氮和最佳氮条件下,2017年农作季节内Ambo的谷物产量和相关性状的两次重复。方差分析显示,在低氮胁迫和非胁迫条件下,除低氮胁迫条件下每株植物的穗数外,所有性状的杂交均导致显着的均方差。在两种情况下,大多数性状的一般(GCA)和特异性(SCA)结合能力的均方值均显着。通常,研究表明,在大多数情况下,加性和非加性基因效应的重要性,而在低氮胁迫下非加性基因效应的重要性较小。自交系L1,L2,L9和L20被认为是最佳氮环境下谷物产量的良好组合,而L5和L14是在低氮胁迫条件下的优良普通组合。 L20是跨环境联合分析中谷物产量的良好组合剂,因此是杂交品种开发的有希望的亲本。基于SCA效应和本身的性能,L5×T2和L7×T2被确定为在跨环境综合分析中研究的大多数性状的有前途的杂种。

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