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Effect of nitrogen fertilization on maize yield responses to soil microbial activity and root length density in the North China Plain

机译:氮肥对华北平原土壤微生物活性和根长密度玉米产量应答的影响

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A maize field experiment in the North China Plain was conducted to understand the effect of different N fertilizer rate on the yield of maize, using soil microbial activity and root length density (RLD) as performance parameters, due to their possibility to enhance productivity. The four N fertilizer rates were 0 (N0), 120 (N120), 210 (N210) and 300 (N300) kg N hm~(-2). The results indicated that nitrogen (N) fertilizer had a significant influence not only on yield ( p <0.05), but also on root length density ( p <0.05) and soil microbial activity ( p <0.05). In addition, the soil microbial activity and RLD were significantly related with maize yield. RLD differences were generally evident within the 100 cm soil layer, whereas there was no difference in the deeper soil under different N treatments. The most RLD concentrated in 0-60cm soil layer under N0, N120 and in 0-90cm soil layer under N210, N300. The microbial growth rate constant ( k ) was greater in N210 than other treatments. Generally, N fertilizer application can stimulate root growth and microbial activity, meanwhile, they can interact with each other, heighten the availability of N fertilizer in soil, thus enhanced yield of maize. According to our study, 210 kg N hm~(-2)was the optimum N fertilizer rate to achieve maximum yield and sustain the soil productivity.
机译:北中国平原玉米田间实验是为了了解不同N肥率对玉米产量的影响,采用土壤微生物活性和根长密度(RLD)作为性能参数,由于它们提高了生产率。四个施肥率为0(n0),120(n120),210(n210)和300(n300)kg n hm〜(-2)。结果表明,氮气(N)肥料不仅对产率(P <0.05)产生了显着影响,还具有根长密度(P <0.05)和土壤微生物活性(P <0.05)。此外,土壤微生物活性和RLD与玉米产量有显着相关。在100厘米的土层内,RLD差异通常是明显的,而不同的N个处理下的较深的土壤没有差异。最RLD集中在0-60cm土层N0,N120下以及在N210,N300下0-90cm土壤层。 N210的微生物生长速率常数(k)比其他处理更大。通常,N肥料应用可以刺激根生长和微生物活性,同时它们可以相互作用,提高土壤中氮肥的可用性,从而提高了玉米产量。根据我们的研究,210公斤N HM〜(-2)是最佳的N肥率,以实现最大产量和维持土壤生产率。

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