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首页> 外文期刊>African Journal of Biotechnology >Combining ability of maize (Zea mays L.) inbred lines resistant to stem borers
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Combining ability of maize (Zea mays L.) inbred lines resistant to stem borers

机译:玉米(Zea mays L.)自交系对stem虫的抗性

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Ten inbred parents with varying resistance levels to?Chilo partellus?and?Busseola fusca?were crossed in a half diallel mating scheme to generate 45 F1 hybrids. The hybrids and five commercial checks were evaluated across four locations in Kenya under artificial and natural infestation in 2009. Genotype (G) by environment (E) interaction (G x E) was non-significant for stem borer leaf damage, number of exit holes and tunnel length, suggesting that screening for stem borer resistance at one location would be adequate. On the other hand, G x E and general combining ability (GCA) x environment interactions were highly significant for gray leaf spot and turcicum leaf blight, indicating an inbred line resistance to a disease in one location may have a different reaction to the same disease in another location. The results of combining ability analysis showed that GCA effects were significant for stem borer resistance traits (leaf?damage scores, number of exit holes, and tunnel length) while the opposite was true for specific combining ability (SCA) effects. Parents 5, 2, 6, 9 and 3, were good sources of genes for higher grain yield while parents 1 and 4 were good sources of resistance genes for stem borers. Hybrid 5 x 9 was the best performing hybrid in grain yield (6.53 t/ha) across the locations, while hybrid 1 x 4 was the least performing in grain yield (3.08 t/ha). The source of stem borer resistance identified in the study may be useful for improving levels of stem borer resistance in maize breeding programs in eastern and southern Africa.
机译:十个近亲亲本通过不同的对偶交配方案杂交形成了对Chilo partellus和Busseola fusca的不同抗性水平,以产生45个F1杂种。 2009年,在肯尼亚的四个地点进行了人工和自然侵染,对杂交种和5个商业检查进行了评估。通过环境(E)相互作用(G x E)进行的基因型(G)对茎bore叶损伤,出口孔的数量无显着影响和隧道长度,这表明在一个位置筛查stem虫抗性就足够了。另一方面,G x E和一般结合能力(GCA)x环境之间的相互作用对于灰叶斑病和黑麦叶枯病具有非常重要的意义,这表明自交系对某一疾病的抗性可能对同一疾病有不同的反应在另一个位置。结合能力分析结果表明,GCA效应对茎bore抗性性状(叶片-损伤分数,出口孔数和隧道长度)具有显着影响,而对特定结合能力(SCA)效应则相反。亲本5、2、6、9和3是高谷物产量的良好基因来源,而亲本1和4是干bore虫抗性基因的良好来源。杂种5 x 9在各地区的谷物产量(6.53 t / ha)中表现最好,而杂种1 x 4在谷物产量(3.08 t / ha)中表现最差。该研究确定的茎r抗性来源可能有助于提高非洲东部和南部玉米育种计划中的茎resistance抗性水平。

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