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    段淑辉, 刘天波, 张璐, 代快, 裴晓东. 浏阳烟区烤烟氮素吸收利用特征[J]. 中国烟草科学, 2016, 37(5): 28-33. DOI: 10.13496/j.issn.1007-5119.2016.05.006
    引用本文: 段淑辉, 刘天波, 张璐, 代快, 裴晓东. 浏阳烟区烤烟氮素吸收利用特征[J]. 中国烟草科学, 2016, 37(5): 28-33. DOI: 10.13496/j.issn.1007-5119.2016.05.006
    DUAN Shuhui, LIU Tianbo, ZHANG Lu, DAI Kuai, PEI Xiaodong. Nitrogen Absorption and Utilization of Flue-Cured Tobacco in Liuyang[J]. CHINESE TOBACCO SCIENCE, 2016, 37(5): 28-33. DOI: 10.13496/j.issn.1007-5119.2016.05.006
    Citation: DUAN Shuhui, LIU Tianbo, ZHANG Lu, DAI Kuai, PEI Xiaodong. Nitrogen Absorption and Utilization of Flue-Cured Tobacco in Liuyang[J]. CHINESE TOBACCO SCIENCE, 2016, 37(5): 28-33. DOI: 10.13496/j.issn.1007-5119.2016.05.006

    浏阳烟区烤烟氮素吸收利用特征

    Nitrogen Absorption and Utilization of Flue-Cured Tobacco in Liuyang

    • 摘要: 以烤烟品种K326为材料,采用15N同位素示踪技术,研究了浏阳烟区不同施氮量对烟叶干物质积累和氮素吸收利用、残留及损失的影响。结果表明,烟株根、茎、叶各器官氮素累积比例为1:2.5:6.5。烤烟吸收的氮素58.14%~62.55%来自肥料,37.45%~41.86%来自于土壤。基肥氮利用率为28.25%~40.18%,追肥氮利用率为35.95%~69.62%。基肥氮利用率随着追肥用量增加而提高,追肥氮利用率随着追肥用量增加呈明显减小。在158 kg/hm2氮水平内,增加施氮量有提高烤烟肥料氮利用率(21.97%~23.55%)和土壤残留率(35.97%~39.47%)的趋势但不显著,肥料氮损失率随氮素水平增加而减小,变化范围36.98%~42.07%。在158 kg/hm2氮水平下,烟株干物质累积量、总吸氮量和肥料氮吸收量最大,分别为5321.05、97.17和60.78 kg/hm2,肥料氮损失率最低,为36.98%。

       

      Abstract: 15N-labelled experiments were designed to study the effect of different nitrogen amount on dry matter accumulation and nitrogen uptake, residue and loss of flue-cured tobacco in Liuyang. The results showed that the nitrogen accumulation ratio of leaf, stem and root was 1:2.5:6.5. 58.14%-62.55% of N absorbed by flue-cured tobacco was derived from fertilizer under different N levels, while 37.45%-41.86% of the absorbed N was from the soil. Fertilizer N utilization efficiency (NUE) of base and topdressing fertilizer N was from 28.25% to 40.18% and from 35.95% to 69.62% respectively. NUE of base fertilizer N was increased with the increase of topdressing N, NUE of topdressing N was decreased with the increase of topdressing N. Under the 158 kg/ha N level, with the increase of N fertilizer, NUE and soil residual rate increased, from 21.97% to 23.55% and from 35.97% to 39.47%, but the increase was not significant. Fertilizer N loss rate decreased, from 36.98% to 42.07% under this condition. AT the 158 kg/ha N level, tobacco dry matter, total N accumulation, fertilizer N accumulation were the highest (5321.05, 97.17 and 60.78 kg/ha), and the fertilizer N loss rate was the lowest (36.98%).

       

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