Mutimaamba Charles, MacRobert John, Cairns Jill E, Magorokosho Cosmos, Ndhlela Thokozile, Mukungurutse Collis, Minnaar-Ontong Adré, Labuschagne Maryke
Crop Breeding Institute Harare Zimbabwe.
Mukushi Seeds Harare Zimbabwe.
Crop Sci. 2020 Mar-Apr;60(2):991-1003. doi: 10.1002/csc2.20009. Epub 2020 Feb 25.
Soil acidity has received less attention than other biophysical stresses such as drought and low N, despite accounting for a considerable reduction in maize ( L.) productivity in many parts of southern Africa. The line × tester mating design was used to determine the general combining ability (GCA) for grain yield of 14 maize inbred lines and the specific combining ability (SCA) of their corresponding crosses. Thirty-three single-cross hybrids were evaluated under acid and optimum soils across 11 environments over three seasons. Across environments, mean grain yield reduction ranged from 11 to 37% due to low pH. Additive gene action was more important than nonadditive gene action for grain yield under both soil conditions. Tester GCA effects were larger for grain yield than GCA effects of lines and SCA effects of crosses for both soil conditions. Tester GCA effects were less sensitive to environmental fluctuations than line GCA effects and SCA effects of crosses. Cross combinations with desirable SCA effects for grain yield were associated with high per se grain yield, which suggests that SCA was a good predictor of grain yield in this study. These crosses consisted of good × good and good × poor general combiners, which indicates that GCA was a good predictor of grain yield. Therefore, priority should be given for yield selection in progenies and hybridization of specific crosses with desirable SCA when breeding acid-soil-tolerant maize.
尽管土壤酸度导致南部非洲许多地区的玉米产量大幅下降,但与干旱和低氮等其他生物物理胁迫相比,它受到的关注较少。采用双列杂交设计来测定14个玉米自交系的籽粒产量一般配合力(GCA)及其相应杂交组合的特殊配合力(SCA)。在三个季节的11个环境中,对33个单交种在酸性土壤和适宜土壤条件下进行了评价。在不同环境下,由于低pH值,平均籽粒产量降幅在11%至37%之间。在两种土壤条件下,加性基因作用对籽粒产量的影响比非加性基因作用更重要。在两种土壤条件下,测验种的GCA效应在籽粒产量方面均大于自交系的GCA效应和杂交组合的SCA效应。测验种的GCA效应比自交系的GCA效应和杂交组合的SCA效应对环境波动更不敏感。具有理想籽粒产量SCA效应的杂交组合与本身较高的籽粒产量相关,这表明在本研究中SCA是籽粒产量的良好预测指标。这些杂交组合包括优良×优良和优良×不良一般配合力的组合,这表明GCA是籽粒产量的良好预测指标。因此,在培育耐酸土壤玉米时,后代产量选择以及与具有理想SCA的特定杂交组合杂交时应优先考虑产量。