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[广东省南雄烟区烤烟氮素吸收与分配特性]

[Nitrogen uptake and allocation characteristics of flue-cured tobacco in Nanxiong tobacco-planting area of Guangdong Province].

作者信息

Yang Zhi-Xiao, Liu Hua-Bing, Ke You-Song, Wu Wen-Bin, Zhang Xiao-Quan, Qiu Miao-Wen, Zhao Wei-Cai, Yang Tie-Zhao

机构信息

College of Tobacco Science, Henan Agricultural University, Zhengzhou 450002, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2011 Jun;22(6):1450-6.

PMID:21941744
Abstract

By the method of field in situ culture and 15N isotopic tracer technique, and taking flue-cured tobacco (Nicotiana tobacum) cultivar K326 as test material, a field experiment was conducted in the Nanxiong tobacco-planting area of Guangdong Province to study the characteristics of soil nitrogen (N) mineralization, the patterns of N accumulation and allocation in tobacco plants, and the allocation of plant-absorbed fertilizer N applied in current growth season. In the study area, the amount of soil mineralized N increased with tobacco growth, peaked at 75 days after transplanting, and decreased thereafter. The soil mineralized N at each tobacco growth stage was significantly higher in the control than in the N fertilization treatment. The N accumulation in tobacco plant organs was in the order of leaf > stalk > root. Tobacco plants mainly absorbed fertilizer N at rosette stage and topping stage, and mainly absorbed soil N at mature stage. The absorbed N in tobacco whole growth period was mainly derived from soil N, and the absorbed soil N and its proportion to the total absorbed N increased evidently with extending growth stage and ascending leaf position. The fertilizer N use efficiency per plant and the residual rate and loss rate of applied fertilizer N were 30. 8%, 32. 3% , and 36. 9% , respectively. In the study area, soil N mineralization rate was relatively high, and soil N had greater effects on the quality of upper tobacco leaves. Under the application rate of 150 kg N x hm(-2), the residual amount and loss amount of applied fertilizer N were relatively high.

摘要

采用田间原位培养和15N同位素示踪技术,以烤烟品种K326为试验材料,在广东省南雄烟区进行田间试验,研究土壤氮素矿化特征、烟草植株氮素积累与分配规律以及当季生长期间植株吸收的肥料氮分配情况。在研究区域,土壤矿化氮量随烟草生长而增加,在移栽后75天达到峰值,之后下降。各烟草生长阶段的土壤矿化氮量在对照中显著高于施氮处理。烟草植株各器官的氮积累量顺序为叶>茎>根。烟草植株在团棵期和打顶期主要吸收肥料氮,在成熟期主要吸收土壤氮。烟草全生育期吸收的氮素主要来源于土壤氮,且吸收的土壤氮及其占总吸收氮的比例随生育期延长和叶位上升而明显增加。单株肥料氮利用效率、肥料氮残留率和损失率分别为30.8%、32.3%和36.9%。在研究区域,土壤氮矿化率相对较高,土壤氮对上部烟叶品质影响较大。在施氮量为150 kg N·hm-2条件下,肥料氮的残留量和损失量相对较高。

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