Cover crop and nitrogen fertilizer influence on inbred maize performance and soil nitrogen

Q4 Agricultural and Biological Sciences
Ada Vilches-Ortega, D. Sotomayor-Ramírez, Johanis Rivera-Zayas, R. Barnes
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引用次数: 0

Abstract

The response of inbred maize (Zea mays L.) lines to nitrogen (N) fertilizer and cowpea (Vigna unguiculata cv. Iron Clay) cover cropping was evaluated in three consecutive croppings from 2014 to 2016 in a Guamaní (Torrifluventic Haplustepts) soil. The crop rotation sequence was maize (spring 2014), cowpea (summer 2014), maize (winter 2014-2015), cowpea (summer 2015), maize (winter 2015-2016) and cowpea (summer 2016). The N fertilizer levels were 0, 90, 135, 180 and 225 kg N/ha for 2014 and 2014-2015 seasons, and 0, 50, 100, 150, and 200 kg N/ha for the 2015-2016 season. Soils were sampled to a depth of 90 cm before and after each successive cropping. Cover crop did not affect maize yields. The effect of N fertilizer on seed yield was observed in two out of the three years with optimum seed yields of 7,034 and 4,708 kg/ha with fertilizer N of 135 and 90 kg N/ha, respectively. Residual soil N tended to increase due to N fertilizer and cover crop. A partial aboveground N budget showed that the net N balance was more positive and increased with each successive fertilizer N level, reaching values of +516 kg N/ha in fallow and +621 kg N/ha with cover crop after three consecutive croppings over a 30-month period. Part of the excess N (not taken up by the crop) was accounted for in the soil profile. A slightly greater positive N balance at higher N fertilizer rates was due to the cover crop rotation. Cover-cropping with cowpea continues to be an important practice that in the long term will result in improved N recycling due to scavenging of residual soil N after maize cropping or by N fixation. Nitrogen fertilizer rates in the range of 90 to 135 kg N/ha can result in good inbred maize yields and can be adjusted with knowledge of soil inorganic N to a depth of 30 cm, that will result in higher yields, improved N use efficiency and reduced losses to the environment.
覆盖作物和氮肥对自交系玉米生产性能和土壤氮素的影响
2014年至2016年,在Guamaní(Torrifluventic Haplustepts)土壤中连续三次对玉米自交系(Zea mays L.)对氮(N)肥和豇豆(Vigna unguiculata cv.Iron Clay)覆盖种植的反应进行了评估。轮作顺序为玉米(2014年春季)、豇豆(2014年夏季)、玉米(2014-2015年冬季)、豇豌豆(2015年夏季),玉米(2015-2016年冬季)和豇豆(2016年夏季)。2014年和2014-2015年季节的氮肥水平分别为0、90、135、180和225公斤/公顷,2015-2016年季节为0、50、100、150和200公斤/公顷。在每次连续种植前后,对土壤进行取样,取样深度为90厘米。覆盖作物不影响玉米产量。三年中有两年观察到氮肥对种子产量的影响,最适种子产量分别为7034和4708公斤/公顷,肥料氮分别为135和90公斤/公顷。由于施用氮肥和覆盖作物,土壤残留氮有增加的趋势。部分地上氮收支表明,净氮平衡更为积极,并随着每一次连续施肥氮水平的增加而增加,在30个月内连续三次播种后,休耕期达到+516 kg N/ha,覆盖作物达到+621 kg N/ha。部分过量氮(未被作物吸收)计入土壤剖面。在较高的氮肥施用率下,正氮平衡略大,这是由于覆盖作物轮作。覆盖种植豇豆仍然是一种重要的做法,从长远来看,由于玉米种植后残留土壤氮的清除或氮固定,将改善氮的回收利用。90至135公斤氮/公顷的氮肥施用量可以带来良好的玉米自交系产量,并且可以根据土壤无机氮的知识将其调整到30厘米深,这将导致更高的产量,提高氮的利用效率,减少对环境的损失。
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来源期刊
CiteScore
0.20
自引率
0.00%
发文量
64
审稿时长
6 months
期刊介绍: The Journal of Agriculture of the University of Puerto Rico issued biannually by the Agricultural Experiment Station of the University of Puerto Rico, Mayagüez Campus, for the publication of articles and research notes by staff members or others, dealing with scientific agriculture in Puerto Rico and elsewhere in the Caribbean and Latin America.
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