Growth and yield of maize in response to reduced fertilizer application and its impacts on population dynamics and community biodiversity of insects and soil microbes

Yan Zou, Likun Li, Yanhui Wang, Ruichuan Duan, Hejie Dong, Yuhan Zhang, Zhengze Du, Fajun Chen
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Abstract

In the North China Plain, farmers are using excessive amounts of fertilizer for the production of high-yield crop yield, which indirectly causes pollution in agricultural production. To investigate an optimal rate of fertilizer application for summer maize, the fertilizer reduction experiments with 600 kg/ha NPK (N: P2O5: K2O = 28: 8: 10) as normal fertilizer application (NFA), (i.e., 100F), were conducted successively during 2020 and 2021 to study the effects of reduced fertilizer rates, including 90% (540 kg/ha; i.e., 90F), 80% (480 kg/ha; i.e., 80F), 62.5% (375 kg/ha; i.e., 62.5F) and 50% (300 kg/ha; i.e., 50F) of NFA, on the plant growth of maize, the dynamics of key population abundances and community diversity of insects, and the composition and diversity of microbial community and finally to find out the N-metabolic enzymes’ activity in soil. Our findings revealed that the fertilizer reduction rates by 10% - 20% compared to the current 100% NFA, and it has not significantly affected the plant growth of maize, not only plant growth indexes but also foliar contents of nutrients, secondary metabolites, and N-metabolic enzymes’ activity. Further, there was no significant alteration of the key population dynamics of the Asian corn borer (Ostrinia furnacalis) and the community diversity of insects on maize plants. It is interesting to note that the level of N-metabolic enzymes’ activity and microbial community diversity in soil were also not affected. While the fertilizer reduction rate by 50% unequivocally reduced field corn yield compared to 100% NFA, significantly decreased the yield by 17.10%. The optimal fertilizer application was calculated as 547 kg/ha (i.e., 91.17% NFA) based on the simulation analysis of maize yields among the five fertilizer application treatments, and the fertilizer application reduced down to 486 kg/ha (i.e., 81.00% NFA) with a significant reduction of maize yield. These results indicated that reduced the fertilizer application by 8.83% - 19.00% is safe and feasible to mitigate pollution and promote sustainable production of maize crops in the region.
减少化肥施用量对玉米生长和产量的影响及其对昆虫和土壤微生物种群动态和群落生物多样性的影响
在华北平原,农民为获得作物高产而过量施用化肥,间接造成了农业生产污染。为了研究夏玉米的最佳施肥量,在 2020 年和 2021 年期间,以 600 千克/公顷氮磷钾(N: P2O5: K2O = 28: 8: 10)作为正常施肥量(NFA)(即 100F),先后进行了化肥减量试验,研究了 90%(540 千克/公顷;即、90F)、80%(480 千克/公顷;即 80F)、62.5%(375 千克/公顷;即 62.5F)和 50%(300 千克/公顷;即 50F)的氮磷钾对玉米植株生长、昆虫主要种群丰度和群落多样性、微生物群落组成和多样性的动态影响,并最终了解土壤中氮代谢酶的活性。我们的研究结果表明,与目前 100%的氮磷钾相比,化肥减量 10%-20%,并没有对玉米的植株生长产生显著影响,不仅影响植株生长指标,还影响叶面养分含量、次生代谢物和氮代谢酶活性。此外,亚洲玉米螟(Ostrinia furnacalis)的主要种群动态和玉米植株上的昆虫群落多样性也没有明显改变。值得注意的是,土壤中氮代谢酶的活性水平和微生物群落多样性也没有受到影响。与 100%的氮磷钾相比,化肥减量 50%明显降低了大田玉米产量,显著降低了 17.10%。根据对五种施肥处理中玉米产量的模拟分析,计算出最佳施肥量为 547 千克/公顷(即氮磷钾含量为 91.17%),而施肥量减少到 486 千克/公顷(即氮磷钾含量为 81.00%)时,玉米产量明显减少。这些结果表明,减少 8.83% - 19.00% 的化肥施用量对于减轻污染和促进该地区玉米作物的可持续生产是安全可行的。
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