Diallel analysis of maize inbred lines for agronomic traits in nitrogen stress and optimal conditions

D. Ogunniyan, D. Ojo, S. Olakojo, O. A. Talabi
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引用次数: 2

Abstract

Increasing demand, soil cultivation pressure and adverse climate change effects necessitated maize production in nitrogen stress soils. This study examined the general combining ability (GCA) of 12 maize inbreds and specific combining ability of their crosses for agronomic traits under varied nitrogen conditions. GCA accounted for 53% of the variation for grain yield (GY) under stress and 40% under optimal condition. GCA contributed over 59% for days to anthesis (DTA) and days to silking (DTS), anthesis-silking-interval (ASI) and ear aspect (EASP) under both conditions. BD74-165 and BD74-161 had positive significant GCA for GY under stress with TZEI12 under optimal and BD74-222 under both conditions. TZEI13 and TZEI16 had positive significant GCA for DTA and ASI under stress, and TZEI12, TZEI11 and BD74-161 under optimal. Additive genes control DTA, DTS and PH; non-additive genes were responsible for ASI, PASP and EASP while both additive and non-additive genes governed inheritance of GY, EH and leaf-senescence (SEN) under stress. Inheritance of GY, ASI, PH, PASP and EASP were due to non-additive genes; DTA and DTS to additive genes while additive and non-additive genes control EH and SEN under opti­mal condition. Inbreds with significant GCA can be parents for GY improvement under respective conditions. Keywords: Combining ability; diallel; low nitrogen; maize lines; stress tolerance
玉米自交系氮素胁迫及最佳条件下农艺性状双列分析
需求增加、土壤耕作压力和不利的气候变化影响使氮胁迫土壤中的玉米生产成为必要。研究了不同氮素条件下12个玉米自交系的一般配合力及其杂交农艺性状的特定配合力。GCA占胁迫条件下籽粒产量变化的53%,最优条件下占40%。在两种条件下,GCA对开花(DTA)和吐丝(DTS)、开花-吐丝间隔(ASI)和穗向(EASP)的贡献均超过59%。BD74-165和BD74-161在zzei12和BD74-222条件下均具有显著的正GCA。在逆境条件下,TZEI13和TZEI16对DTA和ASI的GCA为正,而在逆境条件下,TZEI12、TZEI11和BD74-161对DTA和ASI的GCA为正。加性基因控制DTA、DTS和PH;胁迫下ASI、PASP和EASP的遗传由非加性基因决定,而GY、EH和SEN的遗传由加性基因和非加性基因决定。GY、ASI、PH、PASP和EASP均为非加性遗传基因;DTA和DTS受加性基因的控制,而EH和SEN受加性和非加性基因的控制。GCA显著的自交系在各自条件下可作为改良GY的亲本。关键词:组合能力;双重的;低氮;玉米行;抗压力能力
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