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樊铭玺,周永馨,马宇阳,等.沼液和菌菇渣多年施用对日光温室番茄生长发育及根际土壤环境的影响[J].农业工程,2023,13(10):134-140. DOI: 10.19998/j.cnki.2095-1795.2023.10.024
引用本文: 樊铭玺,周永馨,马宇阳,等.沼液和菌菇渣多年施用对日光温室番茄生长发育及根际土壤环境的影响[J].农业工程,2023,13(10):134-140. DOI: 10.19998/j.cnki.2095-1795.2023.10.024
FAN Mingxi,ZHOU Yongxin,MA Yuyang,et al.Growth and development of tomato and changes of rhizosphere soil microorganism under application of biogas slurry and mushroom residue in solar greenhouse[J].Agricultural Engineering,2023,13(10):134-140. DOI: 10.19998/j.cnki.2095-1795.2023.10.024
Citation: FAN Mingxi,ZHOU Yongxin,MA Yuyang,et al.Growth and development of tomato and changes of rhizosphere soil microorganism under application of biogas slurry and mushroom residue in solar greenhouse[J].Agricultural Engineering,2023,13(10):134-140. DOI: 10.19998/j.cnki.2095-1795.2023.10.024

沼液和菌菇渣多年施用对日光温室番茄生长发育及根际土壤环境的影响

Growth and Development of Tomato and Changes of Rhizosphere Soil Microorganism under Application of Biogas Slurry and Mushroom Residue in Solar Greenhouse

  • 摘要: 为验证沼液和菌菇渣多年混合施用对日光温室番茄产量、品质及土壤环境的影响,以普罗旺斯番茄为试材,采用单一变量的方法,研究常规施肥栽培(CK)、沼液还田(BS)、平菇菇渣还田(MR)和沼液与菌菇渣配施(BM)4个处理在多年栽培下番茄产量、品质与土壤理化性质的变化差异。对比CK处理,BS、MR和BM处理提高了番茄的产量和可溶性糖含量,产量分别增加了19.33%、14.32%和31.49%;增加土壤有机质、速效氮、速效磷和速效钾含量,改善了番茄种植的土壤环境;提高了真菌群落的多样性,降低了古菌和真菌群落的多样性。BS处理或BM处理不仅能提高番茄的产量,而且在一定程度上可以改良土壤基本理化性质,改变番茄根际土壤中微生物群落结构,促进作物对养分的吸收和利用。

     

    Abstract: In order to verify effects of multi-year mixed application of biogas slurry and mushroom residue on yield and quality of tomato and soil environment in solar greenhouse, a single variable method was used to take "Provence" tomato as test material.The yield, quality and soil physiochemical properties of tomato under four treatments of conventional fertilization(CK), biogas slurry returning to field(BS), oyster mushroom residue returning to field(MR)and combined application of biogas slurry and mushroom residue(BM)were studied.Compared with CK, BS, MR and BM treatments, yield and soluble sugar content of tomato were increased by 19.33%, 14.32% and 31.49%, respectively.Contents of soil organic matter, available nitrogen, available phosphorus and available potassium were increased, and soil environment of tomato planting was improved.Diversity of fungi community was increased, and diversity of archaea and fungi community was decreased.BS or BM treatment could not only increase tomato yield, but also to some extent improve basic physical and chemical properties of soil, change microbial community structure in tomato rhizosphere soil, and promote crop nutrient absorption and utilization.

     

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