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低氮和最佳氮环境下玉米杂交种的遗传分析与产量评估

Genetic analysis and yield assessment of maize hybrids under low and optimal nitrogen environments.

作者信息

Amegbor Isaac Kodzo, Abe Ayodeji, Adjebeng-Danquah Joseph, Adu Gloria Boakyewaa

机构信息

Pan African University Institute of Life and Earth Sciences (Including Health & and Agriculture), University of Ibadan, Ibadan, Nigeria.

CSIR-Savanna Agricultural Research Institute, Post Office Box TL 52, Tamale, Ghana.

出版信息

Heliyon. 2022 Mar 5;8(3):e09052. doi: 10.1016/j.heliyon.2022.e09052. eCollection 2022 Mar.

Abstract

Development of maize hybrids that possess tolerant genes to low soil nitrogen is critical for long-term maize production in areas with low soil fertility. In this study, estimates for combining ability effects for grain yield and secondary traits of selected inbred lines, identify potential parents for hybrid development and yield potential of the crosses under sub-optimal and optimal N environments. One hundred hybrids were evaluated under sub-optimal and optimal N environments for two years. The experimental layout was a 10 × 10 alpha lattice design with two replications for two experiments. The results obtained showed that, the genotypes evaluated varied for grain yield and the characters measured under sub-optimal and optimal N conditions. Grain yield reduction due to N stress was 40.9%. General and specific combining ability (GCA) and (SCA) effects for mean squares varied for grain yield demonstrating the importance of additive and non-additive genetic effects for the hybrids evaluated under the study conditions. Even though significant variations were detected for GCA and SCA, GCA which is the additive gene action component mainly controlled the heritage of grain yield under both conditions. Inbred line 15 was identified as the superior parent with positive and significant GCA for grain yield under sub-optimal N. Genotypic correlation studies displayed that grain yield was positively correlated with ears per plant under sub-optimal N and was also positively associated with anthesis-silking interval under high N. The hybrids 52, 75, 81 and 37 were identified to be significantly superior in terms of grain yield, ASI and EPP under the two-contrasting conditions. The results suggest that, there is a need for development of low N tolerant inbred lines and hybrids for production under soils with low N status in the Guinea savanna of Ghana for high grain yield to be realised.

摘要

培育具有耐低土壤氮素基因的玉米杂交种对于土壤肥力低的地区长期玉米生产至关重要。在本研究中,对所选自交系的籽粒产量和次要性状的配合力效应进行估计,确定杂交种培育的潜在亲本以及在次优和最优氮环境下杂交组合的产量潜力。在次优和最优氮环境下对100个杂交种进行了两年的评估。试验设计为10×10α格子设计,两个试验各重复两次。获得的结果表明,所评估的基因型在次优和最优氮条件下的籽粒产量和所测性状存在差异。氮胁迫导致的籽粒产量降低为40.9%。籽粒产量的均方一般配合力(GCA)和特殊配合力(SCA)效应各不相同,表明在研究条件下评估的杂交种中加性和非加性遗传效应的重要性。尽管检测到GCA和SCA存在显著差异,但作为加性基因作用成分的GCA在两种条件下主要控制着籽粒产量的遗传。自交系15被鉴定为在次优氮条件下对籽粒产量具有正向且显著GCA的优良亲本。基因型相关性研究表明,在次优氮条件下籽粒产量与单株穗数呈正相关,在高氮条件下与开花-吐丝间隔也呈正相关。杂交种52、75、81和37在两种对比条件下的籽粒产量、ASI和EPP方面被鉴定为显著优良。结果表明,为了在加纳几内亚稀树草原低氮土壤条件下实现高产,需要培育耐低氮的自交系和杂交种用于生产。

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