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首页> 外文期刊>African Journal of Agricultural Research >Gene action of some agronomic traits in corn (Zea mays L) using diallel cross analysis
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Gene action of some agronomic traits in corn (Zea mays L) using diallel cross analysis

机译:利用Dialell交叉分析的玉米(Zea mays L)一些农艺性状的基因作用。

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摘要

In 2007, seven inbred lines of corn were crossed in a complete diallel cross design (Griffing's method 1). The seven parents and their 42 hybrids were planted in field based on Random Complete Block Design (RCBD) with three replications in two different environments. The studied traits were days from emergence to silking, days from emergence to physiological maturity, plant height, ear height, area of ear leaf, ear length, area of flag leaf, number of rows per ear, number of kernels per row and grain yield. Results of combined ANOVA revealed that environment effect was significant for all the traits. Based on diallel cross analysis according to Griffing method 1, General Combining Ability?(GCA) and Specific Combining Ability (SCA) effects were significant for the majority of traits. Reciprocal variance effects were significant for days from emergence to physiological maturity and number of rows per ear that indicate presence of cytoplasmic inheritance. σ2GCA/ σ2SCA?ratio revealed that additive gene effects were predominant in controlling the majority of traits. Based on high-parent heterosis, general and specific combining abilities of parents and hybrids, K1264.1 inbred line for production of early maturity, increasing number of rows per ear and grain yield, K18 inbred line for increasing number of kernels per row and K3653.5?inbred line for increasing area of flag leaf and number of rows per ear were suitable resources. K3218 × K3653.5 and MO17 × K3653.5 also proved to be the best crosses to increase grain yield.
机译:2007年,以完整的Dialell杂交设计(Griffing的方法1)杂交了7个玉米自交系。根据随机完全区组设计(RCBD),将7个亲本及其42个杂种种植在田间,并在两个不同的环境中进行了3次复制。研究的性状为从出苗到出丝的天数,从出苗到生理成熟的天数,植物高度,穗高,穗叶面积,穗长,旗叶面积,每穗行数,每行果粒数和籽粒产量。组合方差分析的结果表明,环境效应对所有性状均具有显着影响。根据Griffing方法1进行的二元交叉分析,对大多数性状而言,总结合能力(GCA)和比结合能力(SCA)效果显着。从出现到生理成熟,以及每只耳朵的行数表明存在细胞质遗传,这些天的相互方差效应非常明显。 σ2GCA/σ2SCA比显示出加性基因效应在控制大多数性状中占主导地位。基于高亲杂种优势,亲本和杂种的一般和特定的结合能力,用于早期成熟的K1264.1自交系,每穗的行数和谷物产量的增加,用于增加每行籽粒数的K18自交系和K3653 .5增加旗叶面积的自交系和每穗的行数是合适的资源。 K3218×K3653.5和MO17×K3653.5也是提高谷物产量的最佳杂交品种。

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