• ISSN 1008-505X
  • CN 11-3996/S
苗惠田, 吕家珑, 张文菊, 徐明岗, 黄绍敏, 张水清. 潮土小麦碳氮含量对长期不同施肥模式的响应[J]. 植物营养与肥料学报, 2015, 21(1): 72-80. DOI: 10.11674/zwyf.2015.0108
引用本文: 苗惠田, 吕家珑, 张文菊, 徐明岗, 黄绍敏, 张水清. 潮土小麦碳氮含量对长期不同施肥模式的响应[J]. 植物营养与肥料学报, 2015, 21(1): 72-80. DOI: 10.11674/zwyf.2015.0108
MIAO Hui-tian, Lü Jia-long, ZHANG Wen-ju, XU Ming-gang, HUANG Shao-min, ZHANG Shui-qing. Response of carbon and nitrogen contents of winter wheat to long-term fertilization treatments in fluvo-aquic soil[J]. Journal of Plant Nutrition and Fertilizers, 2015, 21(1): 72-80. DOI: 10.11674/zwyf.2015.0108
Citation: MIAO Hui-tian, Lü Jia-long, ZHANG Wen-ju, XU Ming-gang, HUANG Shao-min, ZHANG Shui-qing. Response of carbon and nitrogen contents of winter wheat to long-term fertilization treatments in fluvo-aquic soil[J]. Journal of Plant Nutrition and Fertilizers, 2015, 21(1): 72-80. DOI: 10.11674/zwyf.2015.0108

潮土小麦碳氮含量对长期不同施肥模式的响应

Response of carbon and nitrogen contents of winter wheat to long-term fertilization treatments in fluvo-aquic soil

  • 摘要: 【目的】以潮土21年长期定位试验为基础,分析不同施肥模式下冬小麦不同生育期的地上部生物量、 碳氮含量、 碳氮比及碳氮积累量,探讨冬小麦碳氮含量对不同施肥模式的响应规律。【方法】试验包括不施肥(CK)、单施氮肥(N)、施氮磷肥(NP)、施氮钾肥(NK)、氮磷钾配施(NPK)、氮磷钾肥配施有机肥(NPKM)、施氮磷钾肥及玉米秸秆还田(NPKS)7个处理。在2011~2012年冬小麦生长季,分别采集越冬、拔节、灌浆、成熟四个生育时期地上部植株样品,利用EuroVector EA3000型元素分析仪对小麦植株样品的全碳、全氮含量进行测定。【结果】NPK、NPKM和NPKS处理均能显著提高各生育期小麦地上部干重,其中NPKM处理小麦地上部干重在越冬、拔节、灌浆、成熟期分别比CK提高了111%、194%、238%、206%,除越冬期外,等量氮肥条件下,NPK、NPKM和NPKS 3个处理间小麦同一生育期地上部干重无显著差异,说明与氮磷钾配施相比,有机无机配施与秸秆还田这两种措施并不能显著提高小麦地上部生物量;小麦地上部碳含量受不同施肥影响很小,不同生育期小麦地上部碳含量平均值为410 g/kg;小麦成熟期地上部氮含量以N和NK处理最高,分别达到19.4和18.1 g/kg,其中N处理小麦地上部氮含量分别比NPKM和NPKS处理高52%和66%。随着生育期的推移,各处理小麦氮含量逐渐降低,总体表现为越冬期>拔节期>灌浆期成熟期;在整个生育期中各施肥处理碳含量基本保持不变而氮含量呈逐渐下降趋势,这就使得各施肥处理地上部分C/N比随生育期的推移呈逐渐增加趋势;不同施肥下小麦碳积累量差异性和地上部干物质重差异性规律一致,而不同施肥下地上部氮积累量差异性不同于干物质重的差异性,以NP处理最高,达 545 kg/hm2,分别比NPKM和NPKS处理高61%和68%。【结论】施肥方式不能显著改变小麦碳含量但能影响氮含量,因此小麦生物量大小决定了其碳的积累量,相应地,C/N比大小则由氮含量决定。氮磷钾配施、 有机无机配施及秸秆还田处理下,小麦具有较高的生物量从而具有较高的碳氮积累量,这有利于增加农田系统碳、氮积累,提升土壤碳、氮肥力。

     

    Abstract: 【Objectives】 In order to reveal impact of various fertilization treatments on carbon and nitrogen accumulation in wheat, we analyzed biomass carbon and nitrogen contents at different growth stages of wheatafter 21-year of continuous fertilization management at a Zhengzhou experimental site. 【Methods】 The fertilization treatments included non-fertilization (CK), chemical nitrogen (N), chemical nitrogen and phosphorus (NP), chemical nitrogen and potassium (NK), chemical nitrogen, phosphorus and potassium (NPK), NPK plus organic manure (NPKM), and NPK plus maize stalk (NPKS). The aboveground samples of three quadrats from each plot were randomly collected at the wintering stage, jointing stage, grain filling stage and maturity stage in 2011-2012 winter wheat growing season. The carbon and nitrogen contents of aboveground plant tissue were measured by EuroVector EA3000 Elemental Analyzer. 【Results】 The results show that the above-ground biomass amounts of winter wheat can be improved efficiently under the NPK, NPKM and NPKS treatments, and the amounts at the wintering stage, jointing stage, grain filling stage and maturity stage in the NPKM treatment are 111%, 194%, 238% and 206% higher than those of the CK treatment, respectively. Except the wintering stage, the above-ground biomass amounts at same growth stage are not significantly different among the NPK, NPKM and NPKS treatments, which indicate that compared to the NPK treatment, NPKM and NPKS treatments do not effectively enhance above-ground biomass of winter wheat. The fertilization does not effectively affect the carbon content of aboveground plant tissue. The average of carbon content at the four growth stages is 410 g/kg. The nitrogen contents at the maturity stage of wheat are high under the N (19.4 g/kg) and NK (18.1 g/kg) treatments. The nitrogen content at the maturity stage of wheat under the N treatment is 52% higher than that under the NPKM treatment and 66% higher than that under the NPKS treatment. At different growth stages, the nitrogen contents of aboveground plant tissue are in sequence of wintering stage jointing stage grain filling stage maturity stage. With wheat growth, the carbon content is unchanged while the nitrogen content is decreased gradually, thus C/N ratio of wheat is increased gradually in each treatment. Carbon accumulations in above-ground are affected by above-ground biomass. The nitrogen accumulation amount at the maturity stage of wheat under the NP treatment is significantly higher than those under other treatments, and is about 545 kg/ha. 【Conclusions】The fertilization does not affect the carbon content of wheat, while the fertilization can affect the nitrogen content. Therefore, wheat biomass yield determines the carbon accumulation amount, and the nitrogen content determines C/N ratio. The NPK, NPKM and NPKS treatments significantly enhance the carbon and nitrogen accumulation amounts, thus these treatments are beneficial to enhance carbon and nitrogen accumulation in farmland system and improve soil fertility.

     

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