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Responses of rice production, milled rice quality and soil properties to various nitrogen inputs and rice straw incorporation under continuous plastic film mulching cultivation.

机译:连续地膜覆盖栽培下水稻产量,碾米品质和土壤特性对氮素输入和稻草掺入的响应。

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Yield decline from continuous cropping of aerobic rice is a constraint to the widespread adoption of plastic film mulching cultivation (PFMC); rice straw incorporation has been proposed to counter this negative effect of long term PFMC. Shifts in water management from flooded to aerobic conditions are known to influence the availability of N and might have an influence on rice quality. A long-term (2001-2010) field experiment was conducted to examine the effects of five fertilizer nitrogen (N) application rates (0, 45, 90, 135, 180 kg N ha-1) and rice straw incorporation on rice grain yield, milled rice quality and soil quality under PFMC in non-flooded conditions. There were significant responses in grain yield to various N fertilizer rates and rice straw incorporation during 2008 to 2010. Total amino acids and protein concentrations in polished rice increased with increasing N rates. Split-plot factor significantly affected soil fertility and rice plant N uptake in our study. With rice straw incorporation, total annual and mean amount of soil organic matter was improved by 6.4%, 7.6% and 12.2%; NH4OAC-extractable K amount was improved by 28.2%, 64.0% and 52.9%; N uptake was improved by 20.4%, 23.9% and 23.6%, respectively, from the year of 2008 to 2010. Dynamics of rice grain yield, soil organic matter, alkali-hydrolyzable N and NH4OAC-extractable K from 2001 to 2010 proved that rice straw incorporation obviously improved rice grain yield and soil quality under continuous PFMC. Our results suggest that there is a possibility of reversing yield decline observed in the continuous PFMC system by using rice straw incorporation
机译:连续种植好氧水稻导致产量下降是塑料膜覆盖栽培(PFMC)广泛采用的制约因素。已提出掺入稻草来抵消长期PFMC的这种负面影响。众所周知,水管理从淹水状态到有氧状态的变化会影响氮的有效性,并可能对稻米质量产生影响。进行了长期(2001-2010年)田间试验,以研究五种肥料氮(0、45、90、135、180 kg N ha -1 )的施肥量和在非淹水条件下,PFMC下稻草掺入对稻米产量,精米质量和土壤质量的影响。在2008年至2010年期间,谷物产量对各种氮肥用量和稻草掺入都有显着响应。精制稻米中的总氨基酸和蛋白质浓度随氮含量的增加而增加。在我们的研究中,裂区因子显着影响土壤肥力和水稻植物对氮的吸收。随着稻草的掺入,土壤有机质的年均和平均数量分别提高了6.4%,7.6%和12.2%; NH 4 OAC可提取的K量分别提高了28.2%,64.0%和52.9%;从2008年到2010年,氮素吸收分别提高了20.4%,23.9%和23.6%。水稻籽粒产量,土壤有机质,碱解性氮和NH 4 OAC-的动态变化2001年至2010年可提取的K值表明,连续PFMC施用稻草可以显着提高稻米的产量和土壤质量。我们的结果表明,通过使用稻草并入,在连续PFMC系统中观察到了逆转单产下降的可能性。

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