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Studies on nutrient uptake of rice and characteristics of soil microorganisms in a long-term fertilization experiments for irrigated rice

机译:灌溉水稻长期施肥实验中土壤微生物水稻水稻养分吸收研究

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The ecosystem characteristics of soil microorganism and the nutrient uptake of irrigated rice were investigated in a split-block experiment with different fertilization treatments, including control (no fertilizer application), PK, NK, NP, NPK fertilization, in the main block, and conventional rice and hybrid rice comparison, in the sub block. Average data of five treatments in five years indicated that the indigenous N supply (INS) capacity ranged from 32.72 to 93.21 kg/ha; that indigenous P supply (IPS) capacity ranged from 7.42 to 32.25 kg/ha; and that indigenous K supply (IKS) capacity ranged from 16.24 to 140.51 kg/ha, which showed that soil available nutrient pool depletion might occur very fast and that P, K deficiency has become a constraint to increasing yields of consecutive crops grown without fertilizer application. It was found that soil nutrient deficiency and unbalanced fertilization to rice crop had negative effect on the diversity of the microbial community and total microbial biomass in the soil. The long-term fertilizer experiment (LTFE) also showed that balanced application of N, P and K promoted microbial biomass growth and improvement of community composition. Unbalanced fertilization reduced microbial N and increased C/N ratio of the microbial biomass. Compared with inbred rice, hybrid rice behavior is characterized by physiological advantage in nutrient uptake and lower internal K use efficiency.
机译:在不同施肥治疗的分裂块实验中研究了土壤微生物的生态系统特征及灌溉水稻的营养吸收,包括对照(无肥料应用),PK,NK,NP,NPK施肥,主块和常规稻米和杂交水稻比较,在子块中。五年内的五个治疗的平均数据表明,土着N供应(INS)的容量范围为32.72至93.21千克/公顷;该土着P供应(IPS)容量从7.42到32.25千克/公顷;并且该土着K供应(IKS)容量从16.24到140.51千克/公顷,显示土壤可用营养池耗竭可能非常快,P,K缺陷已成为增加未经施肥的连续作物产量的约束。发现土壤养分缺乏和对稻米作物的不平衡施肥对微生物群落的多样性和土壤中总微生物生物量的多样性产生负面影响。长期肥料实验(LTFE)还表明,N,P和K的平衡应用促进了微生物生物量生长和群落组成的改善。不平衡施肥减少微生物N和微生物生物量的C / N比增加。与近稻稻米相比,杂交水稻行为的特征在于营养吸收中的生理优势和较低的内部K使用效率。

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