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首页> 外文期刊>The Journal of Agricultural Science >Effects of planting density and nitrogen fertilization level on grain yield and harvest index in seven modern tropical maize hybrids (Zea mays L.)
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Effects of planting density and nitrogen fertilization level on grain yield and harvest index in seven modern tropical maize hybrids (Zea mays L.)

机译:种植密度和氮肥水平对七种现代热带玉米杂交种籽粒产量和收获指数的影响(Zea Mays L.)

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摘要

To support tropical maize (Zea mays L.) breeding efforts, the current work aimed to assess harvest index (HI) in modern hybrids and determine the effect of different planting densities on grain yield and HI under well-fertilized (HN) and nitrogen (N) deficient conditions. Harvest index and grain yield of 34 hybrids on average reached 0.42 and 7.06 t/ha (five environments), indicating a large potential for improvement in HI relative to temperate hybrids. Ear weight (r = 0.88), HI (r = 0.78) and shoot dry weight (r = 0.68) were strongly associated with grain yield. In the second experiment, seven hybrids were evaluated at planting densities of 5, 7, 9 and 11 plants/m(2) under HN (six environments) and N deficient (LN) conditions (four environments) to assess the effect of planting density on grain yield and HI. Grain yield increased by 40.4 and 21.8% under HN and LN conditions when planting density was increased relative to the lowest planting density. Harvest index increased from 0.42 at 5 plants/m(2) to 0.45 at 11 plants/m(2) under HN conditions and decreased from 0.44 at 5 plants/m(2) to 0.42 at 9 plants/m(2) under LN conditions. Harvest index was maximized at planting densities of 8.33 plants/m(2) and 5.30 plants/m(2) under HN and LN conditions, respectively, while grain yield was maximized at 9.93 plants/m(2) and 7.89/m(2). Optimal planting density maximizing both HI and grain yield were higher than planting densities currently used in tropical germplasm. It can be concluded that productivity in tropical maize could be increased both under intensive (+40.4%) and lower-input management (+21.8%) by increasing planting densities above those currently used in smallholder agriculture in Latin America and Sub-Saharan Africa, in environments targeted by the International Maize and Wheat Improvement Center.
机译:为了支持热带玉米(Zea Mays L.)育种努力,目前的工作旨在评估现代杂种中的收获指数(HI),并确定不同种植密度对施肥(HN)和氮气( n)条件不足。收获指数和34个杂种平均水平的籽粒产量达到0.42和7.06吨/公顷(五种环境),表明HI相对于温带杂交种具有大的改善潜力。耳重(r = 0.88),HI(r = 0.78),芽干重(r = 0.68)与籽粒产量强烈相关。在第二个实验中,在HN(六种环境)和N缺陷(LN)条件(四种环境)下的5,7,9和11株/ m(2)的种植密度下评估七种杂种。评估种植密度的效果论粮食产量和嗨。当种植密度相对于最低种植密度增加时,在HN和LN条件下,谷物产量增加了40.4和21.8%。收获指数在HN条件下在11株植物/ m(2)下以0.42增加0.42至0.45,并在LN下的9种植物/ m(2)下在5株植物/ m(2)至0.42下降0.44状况。在HN和LN条件下分别在8.33植物/ m(2)和5.30株植物/ m(2)的种植密度时最大化收获指数,而谷物产量最大化为9.93植物/ m(2)和7.89 / m(2 )。最大化的种植密度最大化HI和谷物产量高于目前在热带种质中使用的种植密度。可以得出结论,通过增加拉丁美洲和撒哈拉以南非洲小农农业的种植密度,热带玉米的生产率可以增加(+ 40.4%)和较低投入管理(+ 21.8%)增加(+ 21.8%)在国际玉米和小麦改善中心为目标的环境中。

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    Int Maize &

    Wheat Improvement Ctr CIMMYT Int Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Int Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Int Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Int Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Int Apdo Postal 6-641 Mexico City 06600 DF Mexico;

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  • 正文语种 eng
  • 中图分类 农业科学;
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