MENG Yunsi,LIU Mingxin,HU Yalong,et al.Identification of Pathogen Causing Bulb Rot Disease in Lilium brownii var.viridulum,Its Biological Characteristics,and Screening of Fungicides[J].Northern Horticulture,2026,(3):85-92.[doi:10.11937/bfyy.20252802]
龙牙百合鳞茎腐烂病病原鉴定、生物学特性及杀菌剂的筛选
- Title:
- Identification of Pathogen Causing Bulb Rot Disease in Lilium brownii var.viridulum,Its Biological Characteristics,and Screening of Fungicides
- 文章编号:
- 1001-0009(2026)03-0085-08
- Keywords:
- Lilium brownii var. viridulum; bulb rot disease; Fusarium proliferatum; biological characteristics; agent toxicity
- 分类号:
- S644.1
- 文献标志码:
- A
- 摘要:
- 以湖南省隆回县患龙牙百合鳞茎腐烂病的组织为试材,采用组织分离与致病性测定,结合形态学和分子生物学方法,研究了龙牙百合鳞茎腐烂病病原菌鉴定、生长产孢条件以及室内药剂毒力测定,以期为龙牙百合鳞茎腐烂病的病害诊断与综合防治提供参考依据。结果表明:层出镰刀菌(Fusarium proliferatum)是引起龙牙百合鳞茎腐烂病的病原菌。该病菌最适生长温度为25 ℃,最适pH为7~8;在多种碳、氮源培养基中均可生长,其中以蔗糖为碳源和牛肉膏为氮源的培养条件最利于菌丝的生长。室内毒力测定结果表明,所选用的6种杀菌剂中40%腈菌唑的毒力最强,其EC50值为5.33 mg·L-1,450 g·L-1咪鲜胺次之。
- Abstract:
- Taking the tissues from the patients with Lilium brownii var. viridulum bulb rot disease in Longhui county,Hunan Province as the test materials,the pathogen was isolated,purified,identified and its pathogenicity was determined by using the tissue separation method and the three-prong puncture injury method.Finally,the pathogen of Lilium brownii var.viridulum bulb rot disease was identified by combining morphology and molecular biology.To understand the growth and spore production conditions of the pathogen,single-factor investigations were conducted on pH,temperature,carbon source and nitrogen source;six fungicides available on the market were selected for indoor toxicity tests,in order to provide reference for the diagnosis and comprehensive control of Lilium brownii var. viridulum bulb rot disease.The results showed that Fusarium proliferatum was the pathogen causing Lilium brownii var.viridulum bulb rot disease.The optimal growth temperature of this pathogen was 25 ℃,and the optimal pH was 7-8;it could grow in various carbon and nitrogen source culture media,and the culture conditions with sucrose as the carbon source and beef extract as the nitrogen source were the most conducive to the growth of the fungus.The indoor toxicity test results showed that 40% azinphos-methyl had the strongest toxicity,with an EC50 of 5.33 mg·L-1,and 450 g·L-1 imazalil was the second.
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备注/Memo
第一作者简介:孟韫思(1986-),女,硕士研究生,研究方向为中药材资源利用与开发。E-mail:momys1986@163.com.责任作者:刘明新(1966-),男,硕士,高级实验师,现主要从事药用植物资源与利用等研究工作。E-mail:nmx17066@126.com.基金项目:湖南省中药材产业技术体系种子种苗繁殖资助项目(HARS-11)。收稿日期:2025-08-01