A. Mosavat, H. Mazahery-Laghab, H. Soltanloo, R. Choukan
{"title":"Estimation of combining ability and gene action in selected maize (Zea mays L.) lines","authors":"A. Mosavat, H. Mazahery-Laghab, H. Soltanloo, R. Choukan","doi":"10.29252/abj.21.1.1","DOIUrl":null,"url":null,"abstract":"Mosavat, S. A., H. Mazahery-Laghab, H. Soltanloo, and R. Choukan. 2019. Estimated combining ability and gene action in selected maize (Zea mays L.) lines. Iranian Journal of Crop Sciences. 21(1): 1-15. (In Persian). Maize is one of the most important grain and forage crop, that has a unique role in the food and feed industry, especially poultry feed. To estimate combinig ability and gene action and to identify the best hybrid combination for different morphological traits, experiments were designed and carried out as diallel crossing with 10 parents at Gorgan Agricultural Research Station, Gorgan, Iran, in 2013. The progenies were grown in randomized complete block design with three replications in two locations including; Araghi-Mahaleh in Gorganand Gonbad Agricultural Research Stations in Gonbad, Iran, in 2014. Data for days from emergence to silking, days from silking to physiological maturity, number of row.ear-1, grain yield, plant height and number of grain.ear-1, were measured and recorded. Analysis of variance was performed separately for each location, and then combined analysis of variance was also performed. The effects of general combining ability (GCA) and specific combining ability (SCA) were significant on most traits, which implied that both additive and non-additive actions were involved in controlling these traits. The dominance degree was greater than one also indicated that the overdominance of genes action in controlling the studied traits.For all studied traits, low narrow sense heritability and a greater dominance variance indicated that dominance actions was more important in genetic control of these traits. Therefore, to improve traits such as days from silking to physiological maturity and number of row.ear-1 selection would not be efficient, and hybridization methods should be used for development and improvement of","PeriodicalId":297527,"journal":{"name":"Iranian Society of Crops and Plant Breeding Sciences","volume":"192 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-05-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Iranian Society of Crops and Plant Breeding Sciences","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.29252/abj.21.1.1","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Mosavat, S. A., H. Mazahery-Laghab, H. Soltanloo, and R. Choukan. 2019. Estimated combining ability and gene action in selected maize (Zea mays L.) lines. Iranian Journal of Crop Sciences. 21(1): 1-15. (In Persian). Maize is one of the most important grain and forage crop, that has a unique role in the food and feed industry, especially poultry feed. To estimate combinig ability and gene action and to identify the best hybrid combination for different morphological traits, experiments were designed and carried out as diallel crossing with 10 parents at Gorgan Agricultural Research Station, Gorgan, Iran, in 2013. The progenies were grown in randomized complete block design with three replications in two locations including; Araghi-Mahaleh in Gorganand Gonbad Agricultural Research Stations in Gonbad, Iran, in 2014. Data for days from emergence to silking, days from silking to physiological maturity, number of row.ear-1, grain yield, plant height and number of grain.ear-1, were measured and recorded. Analysis of variance was performed separately for each location, and then combined analysis of variance was also performed. The effects of general combining ability (GCA) and specific combining ability (SCA) were significant on most traits, which implied that both additive and non-additive actions were involved in controlling these traits. The dominance degree was greater than one also indicated that the overdominance of genes action in controlling the studied traits.For all studied traits, low narrow sense heritability and a greater dominance variance indicated that dominance actions was more important in genetic control of these traits. Therefore, to improve traits such as days from silking to physiological maturity and number of row.ear-1 selection would not be efficient, and hybridization methods should be used for development and improvement of
Mosavat, s.a, H. Mazahery-Laghab, H. Soltanloo, R. Choukan。2019。玉米(Zea mays L.)选系配合力及基因作用评价。作物学报,21(1):1-15。(波斯)。玉米是最重要的粮食和饲料作物之一,在食品和饲料工业,特别是家禽饲料中具有独特的作用。为评估配合力和基因作用,确定不同形态性状的最佳杂交组合,于2013年在伊朗戈尔根农业研究站设计了10个亲本双列杂交试验。后代采用随机完全区组设计,在两个地点进行3个重复,包括;2014年,Araghi-Mahaleh在伊朗Gonbad的Gorganand Gonbad农业研究站。数据为从出苗到吐丝的天数,从吐丝到生理成熟的天数,行数。穗1,籽粒产量,株高和粒数。耳-1,测量并记录。对各地点分别进行方差分析,再进行联合方差分析。一般配合力(GCA)和特异配合力(SCA)对大多数性状的影响均显著,说明加性和非加性作用都参与了这些性状的控制。显性度大于1,说明显性基因对所研究性状有控制作用。狭义遗传力较低,显性变异较大,说明显性作用在这些性状的遗传控制中更为重要。因此,提高从吐丝到生理成熟的天数和行数等性状。耳-1选择效率不高,应采用杂交方法进行开发和改良