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刘海, 徐启昊, 张露琴, 马晓, 殷洁, 郑华, 隋宗明. 癞拟层孔菌对土壤养分活化及烤烟生长的影响[J]. 烟草科技, 2025, 58(8): 38-46. DOI: 10.16135/j.issn1002-0861.2024.0652
引用本文: 刘海, 徐启昊, 张露琴, 马晓, 殷洁, 郑华, 隋宗明. 癞拟层孔菌对土壤养分活化及烤烟生长的影响[J]. 烟草科技, 2025, 58(8): 38-46. DOI: 10.16135/j.issn1002-0861.2024.0652
LIU Hai, XU Qihao, ZHANG Luqin, MA Xiao, YIN Jie, ZHENG Hua, SUI Zongming. Effects of Fomitopsis palustris on mobilization of soil nutrients and growth of flue-cured tobacco[J]. Tobacco Science & Technology, 2025, 58(8): 38-46. DOI: 10.16135/j.issn1002-0861.2024.0652
Citation: LIU Hai, XU Qihao, ZHANG Luqin, MA Xiao, YIN Jie, ZHENG Hua, SUI Zongming. Effects of Fomitopsis palustris on mobilization of soil nutrients and growth of flue-cured tobacco[J]. Tobacco Science & Technology, 2025, 58(8): 38-46. DOI: 10.16135/j.issn1002-0861.2024.0652

癞拟层孔菌对土壤养分活化及烤烟生长的影响

Effects of Fomitopsis palustris on mobilization of soil nutrients and growth of flue-cured tobacco

  • 摘要: 为提高烟地土壤养分利用效率,减少化肥使用量,利用自主分离的褐腐真菌癞拟层孔菌(Fomitopsis palustris)菌株CQ19,通过室内培养、盆栽和田间试验研究了菌株CQ19活化土壤养分、释放吲哚乙酸(Indole acetic acid,IAA)和铁载体的能力,以及对植烟土壤肥力和烤烟生长的影响。结果表明:菌株CQ19能有效活化蛋白胨、卵磷脂、磷酸三钙和钾长石等难溶性氮磷钾源,同时能够释放IAA和铁载体;土培条件下,癞拟层孔菌菌丝可深入土壤,降低土壤pH值,显著提高土壤铵态氮(NH4+-N)、水溶性磷和水溶性钾含量(质量分数);盆栽试验中,施用以菌株CQ19制备的真菌菌剂可提高烟株叶片硝酸还原酶活性和根系活力,烟株生物量和养分吸收量显著增加;田间试验中,真菌菌剂可显著提高植烟土壤NH4+-N、水溶性磷含量及蛋白酶和磷酸酶活性。相关性分析结果发现,碱解氮、NH4+-N和水溶性磷是影响烟叶产质量的重要因素。此外,化肥减量15%配施真菌菌剂处理的烟叶产质量与常规施肥处理间无显著差异。可见,F. palustris CQ19能够有效活化土壤氮磷钾养分,分泌IAA和铁载体,减少化肥施用量,并可促进烤烟生长。

     

    Abstract: To enhance nutrient utilization efficiency in tobacco fields and to reduce the need for chemical fertilizers, a laboratory cultivation experiment, a pot experiment, and a field trial were conducted to explore the ability of a newly isolated brown-rot fungus, Fomitopsis palustris CQ19, in mobilizing soil nutrients, producing indole acetic acid (IAA) and siderophore, as well as improving soil fertility and promoting the growth of flue-cured tobacco. The results showed that CQ19 effectively mobilized insoluble nitrogen, phosphorus, and potassium sources such as peptone, lecithin, tricalcium phosphate, and potassium feldspar, and secreted IAA and siderophore. Under soil culture conditions, the fungal hyphae penetrated the soil, reduced soil pH, and significantly increased the contents of NH4+-N, water-soluble phosphorus, and water-soluble potassium. In the pot experiment, CQ19 enhanced nitrate reductase activity and tobacco plant root vigor, and significantly increased plant biomass and nutrient uptake. The field trial revealed that CQ19 significantly increased the contents of NH4+-N and water-soluble phosphorus, as well as soil protease and phosphatase activities. Correlation analysis showed that alkaline hydrolyzable nitrogen, NH4+-N, and water-soluble phosphorus were critical factors affecting tobacco yield and quality. Furthermore, treatment with a 15% reduction in fertilizer combined with a fungal inoculant achieved tobacco yield and quality comparable to that achieved with conventional fertilization treatment. In conclusion, F. palustris CQ19 can effectively mobilize soil insoluble nitrogen, phosphorus, and potassium nutrients, and secrete IAA and siderophore, which are beneficial for reducing the application of chemical fertilizers and promoting tobacco growth.

     

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