光叶紫花苕还田对丽江烟田土壤微生态和烤烟品质的影响OA
Effects of Vicia villosa Green Manure Incorporation on Soil Microecology and Flue-Cured Tobacco Quality in Lijiang
为研究冬闲时期种植光叶紫花苕 Vicia villosa并翻压还田对丽江烟田土壤环境及烟叶品质的影响,设置 4个播种量处理:(D1)60 kg/hm2,(D2)45 kg/hm2,(D3)30 kg/hm2,(CK)0 kg/hm2;光叶紫花苕还田量分别为干质量 7 800、6 300、3 800和 0 kg/hm2.测定了烤烟移栽 70 d后根际土壤养分、微生物群落及烟叶产质量.结果表明:7 800 kg/hm2 还田量处理显著提高土壤电导率(48.83%)、速效氮(67.41%)、速效磷(98.61%)、速效钾(104.76%)和有机质(24.11%).7 800和 6 300 kg/hm2 处理显著提高了根际细菌 α多样性,但对真菌无显著影响.还田处理显著改变了微生物群落结构,富集了Sphingobacterium、Terrimonas、Metarhizium和 Penicillium等涉及养分活化与病害抑制的有益菌;土壤理化性质分别解释了细菌 38.09%和真菌 37.85%的群落变异,其中速效氮是主要驱动因子.共现网络分析表明,还田诱导了微生物功能模块化重塑,富集了主导氮循环、光合作用及有机物降解的细菌模块.同时显著降低了潜在负功能的真菌模块丰度,且各模块变化均与土壤理化指标显著相关.此外,本研究条件下,干质量 7 800 kg/hm2(鲜质量 26 441 kg/hm2)光叶紫花苕还田处理的烤烟产量最优,烟叶外观与感官品质显著改善.本研究证实,绿肥驱动的根际微生态重构是提升烤烟品质的有效途径,光叶紫花苕还田在烟区绿色生产中具有良好的应用前景.
The study aims to investigate the effects of planting Vicia villosa green manure during winter fallow and its incorporation into soil on soil environment of tobacco fields and flue-cured tobacco quality in Lijiang,Yunnan Province.Four sowing rate treatments were established:(D1)60 kg/hm2,(D2)45 kg/hm2,(D3)30 kg/hm2,and(CK)0 kg/hm2;corresponding to the incorporation rates of 7 800,6 300,3 800 and 0 kg/hm2,respectively.Rhizosphere soil nutrients and microbial communities,as well as yield and quality of flue-cured tobacco leaves were assessed 70 days after transplantation.Results showed that the incorporation treatment of 7 800 kg/hm2 significantly increased soil electrical conductivity(increase of 48.83%),available nitrogen(67.41%),available phosphorus(98.61%),available potassium(104.76%),and organic matter(24.11%).Microbiome analysis revealed that the high application rates(7 800 and 6 300 kg/hm2)significantly enhanced the bacterial α-diversity but not fungal α-diversity.Vicia villosa incorporation significantly altered microbial community structure,and enriched of beneficial microorganisms,including Sphingobacterium,Terrimonas,Metarhizium,and Penicillium,involved in nutrient activation and disease suppression,was significantly increased.Redundancy analysis(RDA)indicated that soil physicochemical properties explained 38.09%and 37.85%of the variation in bacterial and fungal communities,respectively,with available nitrogen as the main driving factor.Co-occurrence network analysis revealed that the incorporation induced reconstruction of microbial functional modules,enriching bacterial modules that dominated nitrogen cycling,photosynthesis,and organic matter degradation,while significantly reducing the abundance of fungal modules with potential negative functions.Moreover,changes in all modules were significantly correlated with soil physicochemical properties.Agro-economic analysis showed that the application of 7 800 kg/hm2 dry mass(equivalent to 26 441 kg/hm2 fresh mass)achieved optimal yield,along with significantly enhanced appearance&sensory quality of tobacco leaves.The study confirms that green manure-driven rhizosphere micro-ecosystem reconstruction represents an effective approach to improve flue-cured tobacco quality,and Vicia villosa has promising applications in green tobacco production.
余飞;曲思远;沈嘉;祖朝龙;汪季涛;尹乐;刘非;梁昊;周初跃;李兰周;朱一帆;尹浩;廖德智
安徽省农业科学院经济作物研究所,合肥 230000安徽中烟工业有限责任公司,合肥 230000安徽省农业科学院经济作物研究所,合肥 230000安徽省农业科学院经济作物研究所,合肥 230000安徽中烟工业有限责任公司,合肥 230000安徽中烟工业有限责任公司,合肥 230000安徽中烟工业有限责任公司,合肥 230000安徽中烟工业有限责任公司,合肥 230000安徽中烟工业有限责任公司,合肥 230000云南省烟草公司丽江市公司,云南 丽江 674100安徽中烟工业有限责任公司,合肥 230000云南省烟草公司丽江市公司,云南 丽江 674100云南省烟草公司丽江市公司,云南 丽江 674100
农业科技
烤烟绿肥微生物多样性
flue-cured tobaccogreen manuremicroorganismsdiversity
《中国烟草科学》 2026 (3)
18-29,12
安徽中烟工业有限责任公司基地技术服务项目(2023340000340030)
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