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Combining Ability for Grain Yield Performance among CIMMYT Germplasm Adapted to the Mid-Altitude Conditions

机译:适应中海拔条件的玉米种质间籽粒表现的配合力

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The International Centre for Maize and Wheat Improvement (CIMMYT) develops maize ( Zea mays L.) inbred lines and hybrids yearly that have several breeding and commercial attributes. However, no genetic analysis has been done on the recently developed inbred lines for yield performance under drought and low-N stress. The objectives of this study were to identify lines with positive general combining ability (GCA) effects for grain yield under stress environments and to identify the best single-cross hybrids with the highest specific combining ability (SCA) effects. Analysis of variance combined across sites showed significant mean squares for genotypes, locations and genotype by environment interaction (GEI) for grain yield. GCA lines , SCA and components of interaction effects were significant across sites. Additive genetic variance was more important than dominance variance in determining yield performance across locations indicating that selection based on grain yield under drought and low-N stress can be effective. Average grain yield across the eight locations ranged from 1.61 t ha -1 to 10.63 t ha -1 while narrow sense heritability for grain yield was 52.6% across sites and was slightly lower under managed drought and low-N stress. The testers CL115807 and CL106622 showed positive and significant GCA effects for yield performance under drought and low-N stress respectively. The best tester across all sites was CL115793 and line CZL0713 had consistently positive GCA effects for grain yield across sites. CML536 × CL115802 and CML312 × CL106508 were the best single crosses under low nitrogen stress sites while hybrid CML312 × C323-45 showed the highest positive SCA effects across sites. In conclusion, our results show that CIMMYT has new lines that have desirable adaptive attributes when grown under drought and low nitrogen stress environments in the mid-altitude region; hence these can be adopted for hybrid, synthetic and OPV formation.
机译:国际玉米和小麦改良中心(CIMMYT)每年开发具有几个育种和商业特性的玉米(Zea mays L.)自交系和杂交种。但是,尚未对最近开发的自交系在干旱和低氮胁迫下的产量表现进行遗传分析。这项研究的目的是确定在胁迫环境下对谷物产量具有正的综合结合能力(GCA)效应的品系,并确定具有最高的特定结合能力(SCA)效应的最佳单杂交种。跨地点的方差分析显示,通过谷物产量的环境互作(GEI),基因型,位置和基因型的均方差显着。 GCA品系,SCA和相互作用效应的组成成分在各个站点之间都非常重要。在确定各地的产量表现方面,加性遗传方差比优势方差更重要,这表明基于干旱和低氮胁迫下的谷物产量选择可能有效。八个地区的平均谷物产量在1.61 t ha -1至10.63 t ha -1之间,而狭义的谷物遗传力在所有地点之间为52.6%,在控制干旱和低氮胁迫下略低。在干旱和低氮胁迫下,测试仪CL115807和CL106622分别对产量表现出积极和显着的GCA效应。在所有地点,最好的测试仪是CL115793,品系CZL0713对各地的谷物产量始终具有积极的GCA效应。在低氮胁迫下,CML536×CL115802和CML312×CL106508是最好的单交,而杂种CML312×C323-45在各个站点上表现出最高的正SCA效应。总之,我们的结果表明,CIMMYT具有在中海拔地区干旱和低氮胁迫环境下生长时具有理想适应特性的新品系。因此,它们可用于混合,合成和OPV的形成。

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