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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Soil organic C, nutrients, microbial biomass, and grain yield of rice (Oryza sativa L.) after 18 years of fertilizer application to an infertile paddy soil
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Soil organic C, nutrients, microbial biomass, and grain yield of rice (Oryza sativa L.) after 18 years of fertilizer application to an infertile paddy soil

机译:在不育稻田施肥18年后的土壤有机碳,养分,微生物生物量和水稻(Oryza sativa L.)的籽粒产量

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摘要

We have studied the influence of long-term fertilization on organic C, nutrients, microbial biomass of soil, and grain yield of rice (Oryza sativa L.) after 18 years of inorganic and organic fertilizer application to an infertile paddy field under subtropical conditions. After 18 years of fertilization, soil organic C and total N contents were 9.56 similar to 12.17 and 1.01 similar to 1.25 g kg(-1), which were 190 similar to 269% and 135 similar to 191% higher than those of the initial soil, respectively. Organic manure application increased soil organic C, total N, available N, and available P contents by 19.2%, 14.4%, 13.2%, and 78.3% on average compared with organic manure-omitted treatments. Phosphorus fertilizer application increased soil available P content more significantly than organic manure application, and it was an average 385% higher than P-omitted treatments. Soil microbial biomass C, N, and rice yield were 48.9%, 33.2%, and 133% higher in organic manure application treatments and 36.8%, 38.8%, and 239% higher in P fertilizer application treatments than organic manure-omitted or P-omitted treatments, respectively. Incorporation of organic manure-enhanced and P fertilizer-enhanced rice yields by 382% compared with the unfertilized treatment and yield increment index was 123% compared with that observed during 1991-1994, implying that organic manure application combined with P fertilizer was needed to ensure high and sustainable productivity. Rice yield was significantly correlated with all soil chemical properties except available K content, and stepwise regression analysis showed that soil available P content was the limiting factor to rice yield.
机译:我们研究了在亚热带条件下,将无机和有机肥料施用到不育稻田中18年后,长期施肥对水稻(Oryza sativa L.)的有机碳,养分,土壤微生物量和谷物产量的影响。施肥18年后,土壤有机碳和总氮含量分别比初始土壤高12.56和1.25 g kg(-1)分别为12.56和1.01,分别比原始土壤高190和269%和135和191%。 , 分别。与有机肥省略处理相比,施用有机肥可使土壤有机碳,总氮,有效氮和有效磷的含量平均增加19.2%,14.4%,13.2%和78.3%。施用磷肥比施用有机肥显着增加了土壤速效磷含量,比磷肥处理平均提高了385%。有机肥施用方式的土壤微生物量碳,氮和水稻产量分别比有机肥省略或P-分别高48.9%,33.2%和133%,磷肥施用方式分别高36.8%,38.8%和239%。分别省略处理。与未施肥相比,有机肥和磷肥的水稻产量增加了382%,与1991-1994年相比,增产指数为123%,这意味着需要结合使用有机肥和磷肥来确保高且可持续的生产力。除有效钾含量外,水稻产量与所有土壤化学性质均显着相关,逐步回归分析表明,有效磷含量是限制水稻产量的因素。

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