湖北农业科学 ›› 2026, Vol. 65 ›› Issue (7): 90-96.doi: 10.14088/j.cnki.issn0439-8114.2026.07.014

• 植物保护 • 上一篇    下一篇

广西温郁金叶枯病病原鉴定、生物学特性测定及室内药剂筛选

詹鑫婕1, 梁丽仪2, 杨东昱1, 蒋妮1, 黄琦1, 韦树根1, 宋利沙1, 白丹宇1   

  1. 1.广西壮族自治区药用植物园/广西道地药材高品质形成与应用重点实验室/国家中医药传承创新中心,南宁 530023;
    2.广西中医药大学,南宁 530001
  • 收稿日期:2026-03-06 出版日期:2026-07-25 发布日期:2026-07-23
  • 通讯作者: 韦树根,研究员,主要从事药用植物育种与栽培,(电子信箱)weishugen2@163.com。
  • 作者简介:詹鑫婕(1989-),女,广西柳州人,副研究馆员,硕士,主要从事药用植物病害研究,(电子信箱)554504719@qq.com;宋利沙,副研究员,主要从事药用植物病虫害防治,(电子信箱)lishasong@126.com。
  • 基金资助:
    广西重点研发计划项目(桂科AB25069170); 广西中医药适宜技术开发与推广项目(GZSY23-01); 广西中医药多学科交叉创新团队项目(GZKJ2305); 广西壮族自治区中医药管理局项目(GXZYA20230006)

Pathogen identification, biological characteristics, and laboratory fungicide screening of leaf blight on Curcuma wenyujin in Guangxi

ZHAN Xin-jie1, LIANG Li-yi2, YANG Dong-yu1, JIANG Ni1, HUANG Qi1, WEI Shu-gen1, SONG Li-sha1, BAI Dan-yu1   

  1. 1. Guangxi Botanical Garden of Medicinal Plants/Guangxi Key Laboratory of High-Quality Formation and Utilization of Dao-di Herbs/National Center for TCM Inheritance and Innovation,Nanning 530023,China;
    2. Guangxi University of Chinese Medicine, Nanning 530001, China
  • Received:2026-03-06 Published:2026-07-25 Online:2026-07-23

摘要: 为明确广西温郁金(Curcuma Wenyujin Y. H. Chen et C. Ling)叶枯病的致病原因,鉴定导致该病害的病原菌种类,分析其生物学特性,并评价常见防治药剂的效果。通过组织分离法获得病原菌,综合致病性测定、形态学特征及ITSTEF1H3TUB2多基因序列分析进行种类鉴定;采用菌丝生长速率法测定不同培养基、温度、pH、光照及碳氮源对菌丝生长的影响;并通过含药平板法测定4种杀菌剂的室内毒力。从病叶组织中分离纯化出38株菌株,选取出现频率最高(71.05%)且形态一致的27株作为代表菌株,命名为JH43-2进行后续研究。形态学与多基因系统发育分析结果显示,菌株JH43-2被鉴定为尤克尔间座壳菌(Diaporthe ueckeri)。该菌在20~30 ℃生长最佳;适宜pH为5~9;能利用多种碳氮源,其中以肌醇为碳源、硝酸钠为氮源时菌丝生长最为旺盛。毒力测定表明,供试的哈茨木霉(Trichoderma harzianum)、恶霉灵、吡唑醚菌酯和咪鲜胺均对病原菌有抑制作用,其中哈茨木霉的抑制效果最强,EC50为0.019 6 mg/L。

关键词: 温郁金(Curcuma Wenyujin Y. H. Chen et C. Ling)叶枯病, 尤克尔间座壳菌(Diaporthe ueckeri), 生物学特性, 毒力测定, 药剂筛选

Abstract: To clarify the causal agent of leaf blight on Curcuma wenyujin in Guangxi, identify the pathogenic species, analyze its biological characteristics, and evaluate the efficacy of common fungicides, the pathogen was isolated via the tissue isolation method. Species identification was conducted through pathogenicity tests, morphological observation, and multi-gene sequence analysis of ITS, TEF1, H3, and TUB2. The effects of different media, temperature, pH, light, and carbon/nitrogen sources on mycelial growth were determined using the mycelial growth rate method. The indoor toxicity of four fungicides was tested using the fungicide-amended plate method. A total of 38 strains were isolated and purified from diseased leaf tissues. The 27 strains with the highest isolation frequency (71.05%) and consistent morphology were selected as representative strains and designated JH43-2 for subsequent studies. Morphological and multi-gene phylogenetic analyses identified strain JH43-2 as Diaporthe ueckeri. The fungus grew optimally at 20-30 ℃, tolerated pH 5-9, and utilized various carbon and nitrogen sources, with the most vigorous mycelial growth observed when inositol was used as the carbon source and sodium nitrate as the nitrogen source. Toxicity assays showed that the tested agents—Trichoderma harzianum, hymexazol, pyraclostrobin, and prochloraz—all inhibited the pathogen, with Trichoderma harzianum exhibiting the strongest effect (EC50= 0.019 6 mg/L).

Key words: Curcuma wenyujin leaf blight, Diaporthe ueckeri, biological characteristics, toxicity assay, fungicide screening

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