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首页> 外文期刊>Breeding science >Kernel number as a positive target trait for prediction of hybrid performance under low-nitrogen stress as revealed by diallel analysis under contrasting nitrogen conditions
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Kernel number as a positive target trait for prediction of hybrid performance under low-nitrogen stress as revealed by diallel analysis under contrasting nitrogen conditions

机译:在不同氮条件下,通过透析分析发现,核数作为预测低氮胁迫下杂种表现的积极目标性状

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Environmental sustainability concerns make improving yield under lower N input a desirable breeding goal. To evaluate genetic variation and heterosis for low-N tolerance breeding, 28 F1 hybrids from a diallel scheme, along with their eight parental lines, were tested for agronomic traits including kernel number per ear (KNE) and grain yield per plant (GY), in replicated plots over two years under low-nitrogen (LN, without nitrogen application) and normal-nitrogen (NN, 220 kg N ha?1) conditions. Taken together the heritability in this and our previous studies, the correlation with grain yield, and the sensitivity to the stress for target trait selection, KNE was a good secondary target trait for LN selection in maize breeding. KNE also showed much higher mid-parent heterosis than hundred-kernel weight under both nitrogen levels, particularly under LN, indicating that KNE contributed the majority of GY heterosis, particularly under LN. Therefore, KNE can be used as a positive target trait for hybrid performance prediction in LN tolerance breeding. Our results also suggest that breeding hybrids for LN tolerance largely relies on phenotypic evaluation of hybrids under LN condition and yield under LN might be improved more by selection for KNE than by direct selection for GY per se .
机译:对环境可持续性的关注使得在低氮输入下提高产量成为理想的育种目标。为了评估低氮耐受性育种的遗传变异和杂种优势,对来自二代计划的28个F1杂种及其八个亲本进行了农艺性状测试,包括每穗籽粒数(KNE)和单株籽粒产量(GY),在低氮(LN,不施氮)和正氮(NN,220 kg N ha ?1 )条件下,在两年内重复生产。结合本研究和我们先前研究的遗传力,与籽粒产量的相关性以及对胁迫进行目标性状选择的敏感性,KNE是玉米育种中选择LN的良好次要目标性状。在两个氮水平下,特别是在LN下,KNE还显示出高于百粒重的中亲杂种优势,特别是在LN下,KNE贡献了大部分GY杂种优势。因此,KNE可用作LN耐性育种中杂交表现预测的积极目标性状。我们的研究结果还表明,对LN耐受性的杂交品种的选育很大程度上取决于在LN条件下对杂种的表型评估,选择KNE比直接选择GY本身可以提高LN下的产量。

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