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Evaluation of the yield and nitrogen use efficiency of the dominant maize hybrids grown in North and Northeast China

机译:华北和东北地区优势玉米杂交种的产量和氮素利用效率评估

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Breeding high-yielding and nutrient-efficient cultivars is one strategy to simultaneously resolve the problems of food security, resource shortage, and environmental pollution. However, the potential increased yield and reduction in fertilizer input achievable by using high-yielding and nutrient-efficient cultivars is unclear. In the present study, we evaluated the yield and nitrogen use efficiency (NUE) of 40 commercial maize hybrids at five locations in North and Northeast China in 2008 and 2009. The effect of interaction between genotype and nitrogen (N) input on maize yield was significant when the yield reduction under low-N treatment was 25%–60%. Based on the average yields achieved with high or low N application, the tested cultivars were classified into four types based on their NUE: efficient-efficient (EE) were efficient under both low and high N inputs, high-N efficient (HNE) under only high N input, low-N efficient (LNE) under only low N input, and nonefficient-nonefficient under neither low nor high N inputs. Under high N application, EE and HNE cultivars could potentially increase maize yield by 8%-10% and reduce N input by 16%–21%. Under low N application, LNE cultivars could potentially increase maize yield by 12%. We concluded that breeding for N-efficient cultivars is a feasible strategy to increase maize yield and/or reduce N input.
机译:育种高产高效营养品种是同时解决粮食安全,资源短缺和环境污染问题的一种策略。但是,尚不清楚通过使用高产和营养高效的栽培品种可能增加产量并减少肥料投入。在本研究中,我们评估了2008年和2009年在华北和东北五个地区的40个商品玉米杂交种的产量和氮素利用效率。基因型与氮素交互作用对玉米产量的影响是当低氮处理下的产量降低为25%–60%时,显着。根据高氮或低氮施用的平均产量,将被测品种根据其NUE分为四类:在低氮和高氮输入下均有效(EE),在高氮下均有效(HNE)。仅高N输入,仅在低N输入下具有低N效率(LNE),在低N和高N输入下均无效率-无效率。在高氮水平下,EE和HNE品种可能使玉米增产8%-10%,并使氮素输入减少16%-21%。在低氮条件下,LNE品种可能使玉米增产12%。我们得出的结论是,选育氮效率高的品种是提高玉米产量和/或减少氮素输入的可行策略。

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