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金银花根腐病的病原鉴定及生物防治研究
Identification of the causal agents of Lonicera japonica root rot and screening for biocontrol agents against the disease

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文摘 为了查明引起金银花( Lonicera japonica)根腐病的病原,本研究从表现根腐病症状的金银花根系中分离病菌。经致病性测定,结合形态特征和分子生物学鉴定结果,确定引起金银花根腐病的病原菌为茄腐皮镰刀菌( Fusarium solani)和变红镰刀菌( Fusarium incarnatum),且这两种镰刀菌复合侵染时根腐病发生更严重。对这两种病原菌进行生物学特性分析,结果表明其菌丝生长最适温度均为28 ℃,在低于4 ℃和高于50 ℃条件下停止生长; F. incarnatum孢子萌发最适温度为28 ℃,F. solani孢子萌发最适温度为25~28 ℃;二者对于pH值的变化不敏感,在pH值为5~ 11条件下均能生长; F. incarnatum适宜在12 h光照/12 h黑暗光周期条件下生长,而F. solani适宜在全黑暗条件下生长; F. incarnatum和F. solani菌丝生长的致死温度分别为50 ℃和55℃(处理10 min);孢子萌发的致死温度均为50 ℃(水浴10 min);两种病原菌最适生长碳源同为果胶,但最适生长氮源有差异,F. incarnatum为胰蛋白胨,对其它氮源的利用效率较低,而F. solani为蛋白胨,且具有广谱碳、氮源适应性。进一步分离和筛选能抑制金银花根腐病菌的高效生防菌株,从发生根腐病的金银花田块采集健康植株周围土壤,通过菌株分离、平板对峙培养、酶活测定、温室促生防病试验最终筛选到2株能促进金银花生长并且能高效防治金银花根腐病的生防菌株。经鉴定BG1为多粘类芽孢杆菌( Paenibacillus polymyxa),其防效为59.41%,BS37为贝莱斯芽孢杆菌( Bacillus velezensis),其防效为52.47%。研究结果为金银花根腐病的防治提供了十分有潜力的生防资源,具有实际应用价值。
其他语种文摘 To identify the pathogens causing root rot on Lonicera japonica,we collected diseased root samples and conducted microbe isolation. The causal agents of the disease were identified as Fusarium solani and Fusarium incarnatum through pathogenicity test,and based on morphological characteristics and phylogenetic analysis results,and combined infection by these two species of fungi led to more severe symptoms. The optimal temperature for mycelial growth of the two pathogens is 28 ℃,and the growth was suppressed when the temperature was lower than 4 ℃ and above 50 ℃; The optimal temperature for spore germination of F. incarnatum is 28 ℃,and 25-28℃ for F. solani; The two pathogens are insensitive to pH and can grow at pH 5-11; A light /dark cycle of 12 h light /12 h dark is suitable for mycelial growth of F. incarnatum,while total darkness is suitable for F. solani; The lethal temperatures for mycelial growth of F. incarnatum and F. solani are 50 ℃ and 55 ℃ for 10 min respectively,and are 50 ℃ for 10 min for spore germination of both the pathogens; The most suitable carbon source for both fungal pathogens is pectin,and the most suitable nitrogen source is tryptone for F. incarnatum but peptone for F. solani. In addition,the utilization efficiency of F. incarnatum is low to the other tested nitrogen sources,whereas F. solani showed a broad-spectrum adaptability to carbon and nitrogen sources. To explore biocontrol agents against F. incarnatum and F. solani,bacterial strains were isolated from rhizosphere soil of healthy L. japonica. By confronting incubation test,enzyme activity test and pot experiment in greenhouse,two strains BG1 and BS37,which showed good performance in promoting the growth of L. japonica and controlling root rot,were obtained. BG1 and BS37 were identified as Paenibacillus polymyxa and Bacillus subtilis,with a control efficacy of 59.41% and 52.47%,respectively. The results provide good potential biocontrol resources for the control of L. japonica root rot.
来源 植物病理学报 ,2024,54(5):1008-1019 【核心库】
DOI 10.13926/j.cnki.apps.001632
关键词 金银花 ; 根腐病 ; 病原菌 ; 生物学特性 ; 生物防治
地址

南京农业大学植物保护学院, 南京, 210095

语种 中文
文献类型 研究性论文
ISSN 0412-0914
学科 植物保护
基金 中央高校基本科研业务费专项资金资助
文献收藏号 CSCD:7863572

参考文献 共 32 共2页

1.  Xiao L. Chemical constituents from Lonicerae japonicae Flos and their antibacterial and anti-inflammation activity in vitro (in Chinese). 中南药学,2022,20(8):1773-1780 CSCD被引 1    
2.  He S S. Analysis of medicinal value and cultivation technology of Lonicerae japonicae (in Chinese). 种子科技,2023,41(1):27-29 CSCD被引 1    
3.  Wang Q. A comparative study of Lonicera japonica with related species: Morphological characteristics,ITS sequences and active compounds. Biochemical Systematics and Ecology,2014,54:198-207 CSCD被引 1    
4.  Hu K. Efficacy and safety of Lianhuaqingwen capsules, a repurposed Chinese herb,in patients with coronavirus disease 2019: A multicenter,prospective,randomized controlled trial. Phytomedicine,2021,85:153242 CSCD被引 41    
5.  Shang X. Lonicera japonica Thunb: Ethnopharmacology,phytochemistry and pharmacology of an important traditional Chinese medicine. Journal of Ethnopharmacology,2011,138(1):1-21 CSCD被引 82    
6.  Liu M T. A distinguish on a new root rot of Lonicera japonica and study on biological characteristic of the pathogen (in Chinese). 华北农学报,2004,19(1):109-111 CSCD被引 1    
7.  Song L L. Identification and phylogenetic analysis of Lonicera japonica root rot bacteria in Xinxiang (in Chinese). 河南科技学院学报自然科学版,2017,51(6):30-34 CSCD被引 1    
8.  Dei N S. Use of endophytes as biocontrol agents. Fungal Biology Reviews,2019,33(2):133-148 CSCD被引 1    
9.  Liu K. Selection and assessment of plant growth-promoting rhizobacteria for biological control of multiple plant diseases. Phytopathology,2017,107(8):928-936 CSCD被引 8    
10.  Boro M. Microorganisms in biological control strategies to manage microbial plant pathogens: a review. Archives of Microbiology,2022,204:666 CSCD被引 4    
11.  Wei J C. Fungal identification manual (in Chinese),1979 CSCD被引 4    
12.  Su C L. The genetic relationships of isolates of Ganoderma inferred from partial β-tubulin gene sequences (in Chinese). 菌物学报,2006,25(3):439-445 CSCD被引 2    
13.  Mbofung G Y. Phylogeny of Fusarium oxysporum f. sp. lactucae inferred from mitochondrial small subunit, elongation factor 1-alpha, and nuclear ribosomal intergenic spacer sequence data. Phytopathology,2007,97(1):87-98 CSCD被引 6    
14.  Mishra P K. Development of a PCR-based assay for rapid and reliable identification of pathogenic Fusaria. FEMS Microbiology Letters,2003,218(2):329-332 CSCD被引 15    
15.  Song J W. Identification and phylogeny of the pathogens from Caracathayensis root-rot,2020 CSCD被引 1    
16.  Zhang J Q. Isolation and identification of pathogenic bacteria of celery leaf spot disease,biological characteristics and screening of biocontrol bacteria (in Chinese). 西北农业学报,2021,30(7):1089-1100 CSCD被引 1    
17.  Zhou D X. Screening of biocontrol bacteria of tomato wilt and its effect on plant defense enzyme activity (in Chinese). 生态学杂志,2020,39(5):1753-1760 CSCD被引 1    
18.  Liu L J. Screening and fermentation conditions of biocontrol bacteria for anthracnose of star anise (in Chinese). 植物保护,2022,48(5):204-211 CSCD被引 1    
19.  Fang Z D. Research methods in plant pathology 3rd ed (in Chinese),1998 CSCD被引 1    
20.  You J Q. Biological characteristics and biological control potential of endophytic fungus Trichoderma koningiopsis strain T-51 (in Chinese). 植物保护学报,2022,49(3):946-955 CSCD被引 1    
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1 王锦丹 雪茄烟灰霉病的病原鉴定、生物学特性及内生生防细菌的筛选 核农学报,2025,39(6):1158-1168
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