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JIANG Zhao-wei, LI Xiao-ping, ZHAO Ya-jing, LI Yi-zhen. N/P Absorption and Accumulation and N Nutrition of Hybrid Rice[J]. Fujian Journal of Agricultural Sciences, 2011, 26(5): 852-859.
Citation: JIANG Zhao-wei, LI Xiao-ping, ZHAO Ya-jing, LI Yi-zhen. N/P Absorption and Accumulation and N Nutrition of Hybrid Rice[J]. Fujian Journal of Agricultural Sciences, 2011, 26(5): 852-859.

N/P Absorption and Accumulation and N Nutrition of Hybrid Rice

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  • Received Date: July 20, 2011
  • Revised Date: August 19, 2011
  • Using Teyou 63, the absorption and accumulation characteristics of N and K, as well as the N nutrition of the hybrid rice were studied. The results showed that there was a linear correlation between the total nutrient absorption and accumulation of N, and K2O and the square root of fertilizer application rate. With the increased fertilizer application rate, the nutrient uptake also increased. However, the nutrient utilization efficiency was reduced. Before the rice-heading started, the N accumulation centers were in the leaves and stem-sheath. After the heading, the center moved to the ears. After the heading, about 55% of N in the leaves and about 40% of N in the stem-sheath transported to the ears. The apparent transporting rate of the grain-filling was about 90%. The K accumulation centers were in the stems and sheaths, storing about 70% of K for the entire plant. After the heading, 34% to 40% of the K transported into the ears and the stem-sheath, with an apparent transporting rate of about 80%. In high yield cultivation, the highest N and K2O application rates were 2 kg and 2.72 kg, respectively, for every 100 kg of grain yield. The economic N and K2O application rates were 1.75 kg and 1.25 kg, respectively. The hybrid rice was more sensitive to N fertilization, and more resistant to low or high K than the other nutrients. The highest N application rate and economic K application rate should be recommended for the rice production. During each growth period, the leaf dry matter weight increased with N application. At the tillering stage and bud differentiation stage, the dry matter weight of stem-sheath also increased with N application. But from meiosis, both the stem-sheath weight and ear weight had parabolic correlation with N application. Therefore, the N nutrition was further studied. The N content in the leaves of high yield rice at different growth and development phases of the hybrid rice was determined. Each growth period and leaf positions at different N application rates had a certain color level and color difference among them, which provided an index for the N nutrition diagnosis.
  • 王绍华,曹卫星,王强盛,等. 水稻叶色分布特点与氮素营养诊断[J].中国农业科学,2002,35(12): 1461-1466.
    吴良欢,陶勤南. 水稻叶绿素计诊断追氮法研究[J]. 浙江大学学报:农业与生命科学版,1999,25(2): 135-138.
    刘树堂,姚源喜,隋方功,等. 长期定位施肥对土壤磷、钾素动态变化的影响[J]. 生态环境,2003,12(4): 452-455.
    丁艳锋,刘胜环,王绍华,等. 氮素基、蘖肥用量对水稻氮素吸收与利用的影响[J]. 作物学报,2007,30(8): 762-768.
    尤志明,黄景灿,陈明朗,等. 杂交水稻氮钾肥施用量的研究[J]. 福建农业学报,2007,22(1): 5-9.
    凌启鸿. 水稻精确定量栽培理论与技术[M]. 北京: 中国农业中出版社,2007: 93-101.
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