数字农科院2.0

First report of Rhizoctonia solani causing leaf rot disease on mung bean (Vigna radiata) in China

文献类型: 外文期刊

作者: Danhua Wang;Wenqi Wu;Dong Deng;Canxing Duan;Suli Sun;Zhendong Zhu

关键词: leaf rot; mung bean; Rhizoctonia solani

期刊名称: PLANT DISEASE

ISSN: 0191-2917

年卷期: 2025 年

页码:

收录情况: SCIE(2025版)

摘要: Mung bean (Vigna radiata L.) is one of the most important legume crops worldwide (Dikr 2023). In August 2023, a severe foliar disease resembling leaf rot was observed on mung bean with ∼30% incidence in the field located in Nanning (22°49′N, 108°22′E), Guangxi Province, China. Initially, the leaves develop irregular and water-soaked grayish lesions with a gray-brown center and dark brown edges. Then, the lesions expand and merge into cloud-like patches under high humidity. Lastly, the whole leaf decays. Five infected leaves were collected, cut into 2- to 3-mm pieces, then sterilized and cultivated on potato dextrose agar (PDA), and incubated at 25°C under a 12-h photoperiod for 5 days. Three of 10 obtained isolates (LY1, LY2, and LY3) were used for further studies. Morphological characteristics were consistent with descriptions of Rhizoctonia solani (Ogoshi 1987). The colony was white initially and then turned brown with sclerotia; the hypha was branched at right angles with a septum and a slight constriction at the branch base. DNA was extracted from the three isolates, and the three nuclear ribosomal regions (internal transcribed spacer [ITS], translation elongation factor 1-alpha [TEF1], and RNA polymerase II second largest subunit [RPB2]) were amplified (Matheny et al. 2007; White et al. 1990). The obtained sequences were compared by BLAST analysis and deposited in GenBank (accession nos. PV017458 to PV017460 and PV175332 to PV175337). ITS sequences exhibited 99 to 100% (688/688, 679/679, and 659/661 bp) similarity with R. solani strains (MG387102.1, EF429216.1, and OP497979.1). The TEF1 and RPB2 sequences exhibited 97 to 99% (1,012/1,042 and 719/724 bp) similarity with R. solani strains (ON042753.1 and XM_043331355.1). The three isolates were grouped within the AG-1 IA clade by phylogenetic analyses of ITS sequences (Godoy-Lutz et al. 2008). The pathogenicity of the three isolates was tested on mung bean by placing 0.5-mm-diameter mycelium discs on the leaves of 2-week-old seedlings (n = 5), and pure PDA discs were inoculated as controls. All plants were incubated in a moist chamber for 2 days and then transferred to a greenhouse at 25°C. The experiment was repeated two times with three replicates. All isolates were highly pathogenic to the original host, mung bean. Inoculated leaves presented typical leaf rot symptoms consistent with those observed in the field. Based on morphological characteristics and ITS sequences, the identity of the reisolated fungus was confirmed as R. solani, fulfilling Koch’s postulates. No pathogens were isolated from controls. Furthermore, the R. solani isolate LY1 was confirmed to have the same host range as above in the pathogenicity test on eight other legume crops (n = 5): adzuki bean (Vigna angularis), cowpea (V. unguiculata), pea (Pisum sativum), soybean (Glycine max), lentil (Lens culinaris), hyacinth bean (Lablab Album Semen), common bean (Phaseolus vulgaris), and faba bean (Vicia faba). The experiment was repeated two times. The isolate LY1 exhibited strong virulence on all tested crops, causing symptoms similar to those observed on mung bean and finally leading to plant death. Previously, R. solani was often reported as a soilborne pathogen causing root-related diseases (Sneh et al. 1996). To our knowledge, this is the first report of R. solani causing leaf rot on mung bean in China and worldwide. This finding indicates a potential threat to legume crops.

分类号:

  • 相关文献

[1]Isolation And Identification Of A B.acillus Subtilis Hz-72 Exhibiting B iocontrol Activity Against Flax Seedling Blight. Tan, TM, Zhu, JX, Shen, AR, Li, JL, Yu, YT, Zhang, MJ, Zhao, MR, Li, ZM, Chen, J, Gao, CS, Cheng, Y, Guo, LT, Yan, L, Sun, XP, Zeng, LB, Yan, Z. 2019

[2]Volatile organic compounds from rice rhizosphere bacteria inhibit growth of the pathogen rhizoctonia solani. Wang Enzhao,Liu Xiongduo,Si Zhiyuan,Li Xu,Bi Jingjing,Dong Weiling,Chen Mingshun,Wang Sai,Zhang Jiayin,Song Alin,Fan Fenliang. 2021

[3]The Potential Of Endophytic Fungi Isolated From Cucurbit Plants For Biocontrol Of Soilborne Fungal Diseases Of Cucumber. Huang, LQ, Niu, YC, Su, L, Deng, H, Lyu, H. 2020

[4]Comparative Transcriptome Analysis Of Rhizoctonia S.olani-Resistant And -Susceptible Rice C ultivars Reveals The Importance Of Pathogen Recognition And Active Immune Responses In Host Resistance. Qu, Haiyan,Xu, Guojuan,Bi, Dongling,Bao, Jiandong,Wang, Guo-Liang,Qu, Shaohong,Pan, Xuebiao,He, Haiyan,Gao, Xiaoqing,Zuo, Shimin,Yang, Haihe,Yuan, Zhengjie,Zhang, Yu,Zhou, Bo,Wang, Xuli,Zou, Xiaowei. 2018

[5]Effect of photoperiod on vitamin E and carotenoid biosynthesis in mung bean (Vigna radiata) sprouts. Li J.,Lu Y.,Chen Honglin.,Wang Lixa.,Wang Suhua.,Guo X.,Cheng Xuzhen.. 2021

[6]Comparison of γ‐aminobutyric acid accumulation capability in different mung bean ( Vigna radiata L.) varieties under heat and relative humidity treatment, and its correlation with endogenous amino acids and polyamines. Yuling Ma,Litao Tong,Juan Li,Jawad Ashraf,Shanshan Wang,Bo Zhao,Liya Liu,Christophe Blecker,Sumei Zhou. 2021

[7]Molecular Identification Of Mung Bean A.ccessions (Vigna Radiata L.) F rom Northeast China Using Capillary Electrophoresis With Fluorescence-Labeled Ssr Markers. Zhao, YN, Wang, Y, Wang, LX, Zhang, DJ. 2019

[8]Metabolic regulation of vitexin-like compound accumulation during mung bean (Vigna radiata) seed development. Yihan Zhao, Nan Xiang, Yaoyao Cheng, Honglin Chen, Xinbo Guo. 2025

作者其他论文 更多>>