Yan Liu , Peixin Wang , Taobing Yu , Huadong Zang , Zhaohai Zeng , Yadong Yang
{"title":"粪肥替代化肥可改善小麦-玉米系统的土壤质量","authors":"Yan Liu , Peixin Wang , Taobing Yu , Huadong Zang , Zhaohai Zeng , Yadong Yang","doi":"10.1016/j.apsoil.2024.105453","DOIUrl":null,"url":null,"abstract":"<div><p>Organic fertilizer application has been proved to improve soil fertility, but it is not yet known whether organic fertilizers can improve soil quality and maintain soil health. Here, we explored the influence of manure replacing chemical fertilizers on soil quality by measuring soil nutrients, enzyme activity, and microbial abundance. We set up four fertilization treatments: unfertilized control (CK), 100 % fertilizers containing nitrogen (wheat, 157.5 kg ha<sup>−1</sup>; maize, 178.5 kg ha<sup>−1</sup>), phosphorus and potassium (NPK), 50 % fertilizers containing nitrogen (wheat, 78.75 kg ha<sup>−1</sup>; maize, 89.3 kg ha<sup>−1</sup>), phosphorus and potassium +50 % manure (wheat, 78.75 kg ha<sup>−1</sup>; maize, 89.3 kg ha<sup>−1</sup>) (NPKM), and 100 % manure (wheat, 157.5 kg ha<sup>−1</sup>; maize, 178.5 kg ha<sup>−1</sup>) (M). This paper focused on the calculation of the weights of 18 soil biotic and abiotic indicators by principal components analysis (PCA), and the calculation of soil quality by Total Data Set. Results showed that compared to NPK and CK, M increased soil organic carbon, total nitrogen and dissolved organic carbon at the wheat filling stage (<em>p</em> < 0.05), while it increased soil available phosphorus, dissolved organic carbon, total nitrogen, ammonium nitrogen, microbial biomass carbon, microbial biomass nitrogen and N-acquisition enzyme activity at the maize filling stage (<em>p</em> < 0.05). The soil quality index of M in the rhizosphere and bulk soils was 48.7 %–78.0 % (<em>p</em> < 0.05) and 50.0 %–74.7 % (<em>p</em> < 0.05) higher than those of CK at the wheat and maize filling stages, respectively. Our findings suggested that complete replacement of chemical fertilizers with organic manure increased soil quality by enhanced soil biotic and abiotic factors in the wheat-maize rotation system. In the future, the use of organic fertilizers should be appropriately increased in the management of the fields to maintain soil health and adhere to the sustainable development of agriculture.</p></div>","PeriodicalId":8099,"journal":{"name":"Applied Soil Ecology","volume":null,"pages":null},"PeriodicalIF":4.8000,"publicationDate":"2024-05-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Manure replacement of chemical fertilizers can improve soil quality in the wheat-maize system\",\"authors\":\"Yan Liu , Peixin Wang , Taobing Yu , Huadong Zang , Zhaohai Zeng , Yadong Yang\",\"doi\":\"10.1016/j.apsoil.2024.105453\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Organic fertilizer application has been proved to improve soil fertility, but it is not yet known whether organic fertilizers can improve soil quality and maintain soil health. Here, we explored the influence of manure replacing chemical fertilizers on soil quality by measuring soil nutrients, enzyme activity, and microbial abundance. We set up four fertilization treatments: unfertilized control (CK), 100 % fertilizers containing nitrogen (wheat, 157.5 kg ha<sup>−1</sup>; maize, 178.5 kg ha<sup>−1</sup>), phosphorus and potassium (NPK), 50 % fertilizers containing nitrogen (wheat, 78.75 kg ha<sup>−1</sup>; maize, 89.3 kg ha<sup>−1</sup>), phosphorus and potassium +50 % manure (wheat, 78.75 kg ha<sup>−1</sup>; maize, 89.3 kg ha<sup>−1</sup>) (NPKM), and 100 % manure (wheat, 157.5 kg ha<sup>−1</sup>; maize, 178.5 kg ha<sup>−1</sup>) (M). This paper focused on the calculation of the weights of 18 soil biotic and abiotic indicators by principal components analysis (PCA), and the calculation of soil quality by Total Data Set. Results showed that compared to NPK and CK, M increased soil organic carbon, total nitrogen and dissolved organic carbon at the wheat filling stage (<em>p</em> < 0.05), while it increased soil available phosphorus, dissolved organic carbon, total nitrogen, ammonium nitrogen, microbial biomass carbon, microbial biomass nitrogen and N-acquisition enzyme activity at the maize filling stage (<em>p</em> < 0.05). The soil quality index of M in the rhizosphere and bulk soils was 48.7 %–78.0 % (<em>p</em> < 0.05) and 50.0 %–74.7 % (<em>p</em> < 0.05) higher than those of CK at the wheat and maize filling stages, respectively. Our findings suggested that complete replacement of chemical fertilizers with organic manure increased soil quality by enhanced soil biotic and abiotic factors in the wheat-maize rotation system. 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引用次数: 0
摘要
施用有机肥已被证明能提高土壤肥力,但有机肥是否能改善土壤质量和保持土壤健康尚不清楚。在此,我们通过测量土壤养分、酶活性和微生物丰度,探讨了粪肥替代化肥对土壤质量的影响。我们设置了四种施肥处理:未施肥对照(CK),100% 含氮(小麦,157.5 千克/公顷-1;玉米,178.5 千克/公顷-1)、磷和钾(NPK)的肥料,50% 含氮(小麦,78.75 kg ha-1;玉米,89.3 kg ha-1)、磷和钾+50 % 粪便(小麦,78.75 kg ha-1;玉米,89.3 kg ha-1)(NPKM),以及 100 % 粪便(小麦,157.5 kg ha-1;玉米,178.5 kg ha-1)(M)。本文主要通过主成分分析法(PCA)计算了 18 个土壤生物和非生物指标的权重,并通过总数据集计算了土壤质量。结果表明,与 NPK 和 CK 相比,M 增加了小麦灌浆期土壤有机碳、全氮和溶解有机碳(p < 0.05),增加了玉米灌浆期土壤可利用磷、溶解有机碳、全氮、铵态氮、微生物生物量碳、微生物生物量氮和氮获取酶活性(p < 0.05)。在小麦和玉米灌浆期,M 在根瘤层和大体积土壤中的土壤质量指数分别比 CK 高 48.7 %-78.0 %(p <0.05)和 50.0 %-74.7 %(p <0.05)。我们的研究结果表明,在小麦-玉米轮作系统中,用有机肥完全替代化肥可提高土壤生物和非生物因子,从而提高土壤质量。在今后的田间管理中,应适当增加有机肥的使用,以保持土壤健康,坚持农业的可持续发展。
Manure replacement of chemical fertilizers can improve soil quality in the wheat-maize system
Organic fertilizer application has been proved to improve soil fertility, but it is not yet known whether organic fertilizers can improve soil quality and maintain soil health. Here, we explored the influence of manure replacing chemical fertilizers on soil quality by measuring soil nutrients, enzyme activity, and microbial abundance. We set up four fertilization treatments: unfertilized control (CK), 100 % fertilizers containing nitrogen (wheat, 157.5 kg ha−1; maize, 178.5 kg ha−1), phosphorus and potassium (NPK), 50 % fertilizers containing nitrogen (wheat, 78.75 kg ha−1; maize, 89.3 kg ha−1), phosphorus and potassium +50 % manure (wheat, 78.75 kg ha−1; maize, 89.3 kg ha−1) (NPKM), and 100 % manure (wheat, 157.5 kg ha−1; maize, 178.5 kg ha−1) (M). This paper focused on the calculation of the weights of 18 soil biotic and abiotic indicators by principal components analysis (PCA), and the calculation of soil quality by Total Data Set. Results showed that compared to NPK and CK, M increased soil organic carbon, total nitrogen and dissolved organic carbon at the wheat filling stage (p < 0.05), while it increased soil available phosphorus, dissolved organic carbon, total nitrogen, ammonium nitrogen, microbial biomass carbon, microbial biomass nitrogen and N-acquisition enzyme activity at the maize filling stage (p < 0.05). The soil quality index of M in the rhizosphere and bulk soils was 48.7 %–78.0 % (p < 0.05) and 50.0 %–74.7 % (p < 0.05) higher than those of CK at the wheat and maize filling stages, respectively. Our findings suggested that complete replacement of chemical fertilizers with organic manure increased soil quality by enhanced soil biotic and abiotic factors in the wheat-maize rotation system. In the future, the use of organic fertilizers should be appropriately increased in the management of the fields to maintain soil health and adhere to the sustainable development of agriculture.
期刊介绍:
Applied Soil Ecology addresses the role of soil organisms and their interactions in relation to: sustainability and productivity, nutrient cycling and other soil processes, the maintenance of soil functions, the impact of human activities on soil ecosystems and bio(techno)logical control of soil-inhabiting pests, diseases and weeds.