
Journal of Zhejiang Agricultural Sciences ›› 2026, Vol. 67 ›› Issue (8): 1987-1994.DOI: 10.16178/j.issn.0528-9017.20250197
Previous Articles Next Articles
TANG Ming1(
), ZHAN Yinghong1, YAN Min2, LI Shili3, CHENG Zhimin1, LI Youhui1, CAI Yi1, LI Xia1, YANG Ping1, YANG Yide2, YANG Yang2(
)
Received:2025-03-21
Online:2026-08-11
Published:2026-08-20
Contact:
YANG Yang
CLC Number:
TANG Ming, ZHAN Yinghong, YAN Min, LI Shili, CHENG Zhimin, LI Youhui, CAI Yi, LI Xia, YANG Ping, YANG Yide, YANG Yang. Study on regularity and influencing factors of bacterial wilt in Yibin tobacco-growing area[J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(8): 1987-1994.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zjnykx.cn/EN/10.16178/j.issn.0528-9017.20250197
| 耕作制度 | 发病率/% | 病情指数 |
|---|---|---|
| 连作地 | 14.00±3.56 a | 6.36±1.45 a |
| 轮作1~2 a | 9.07±3.89 a | 4.80±1.17 a |
| 轮作3~5 a | 3.33±1.01 b | 1.14±0.14 b |
| 轮作5 a以上 | 0.53±0.61 b | 0.18±0.16 b |
Table1 Effects of tillage system on bacterial wilt of flue-cured tobacco
| 耕作制度 | 发病率/% | 病情指数 |
|---|---|---|
| 连作地 | 14.00±3.56 a | 6.36±1.45 a |
| 轮作1~2 a | 9.07±3.89 a | 4.80±1.17 a |
| 轮作3~5 a | 3.33±1.01 b | 1.14±0.14 b |
| 轮作5 a以上 | 0.53±0.61 b | 0.18±0.16 b |
| 品种 | 发病率/% | 病情指数 |
|---|---|---|
| 湘烟7号 | 5.60±0.35 e | 3.20±0.17 f |
| 中川105 | 19.20±0.30 c | 8.18±0.06 e |
| 川烟101 | 1.60±0.23 f | 0.71±0.03 g |
| 中烟106 | 6.80±0.40 e | 3.60±0.11 f |
| 中川208 | 19.20±1.40 c | 12.62±0.46 c |
| 云烟87 | 22.80±0.69 b | 13.73±0.52 b |
| SC852 | 32.40±1.20 a | 20.13±1.26 a |
| SC3262GJ | 14.40±0.80 d | 9.33±0.13 d |
Table 2 Occurrence of bacterial wilt of different varieties of flue-cured tobacco
| 品种 | 发病率/% | 病情指数 |
|---|---|---|
| 湘烟7号 | 5.60±0.35 e | 3.20±0.17 f |
| 中川105 | 19.20±0.30 c | 8.18±0.06 e |
| 川烟101 | 1.60±0.23 f | 0.71±0.03 g |
| 中烟106 | 6.80±0.40 e | 3.60±0.11 f |
| 中川208 | 19.20±1.40 c | 12.62±0.46 c |
| 云烟87 | 22.80±0.69 b | 13.73±0.52 b |
| SC852 | 32.40±1.20 a | 20.13±1.26 a |
| SC3262GJ | 14.40±0.80 d | 9.33±0.13 d |
| 调查地点 | 海拔/m | 发病率/% | 病情指数 |
|---|---|---|---|
| 兴文县大坝乡沙坝村 | 478.1 | 6.00±0.17 f | 3.24±0.07 ef |
| 兴文县大坝乡小寨村 | 780.3 | 0 i | 0 j |
| 兴文县大坝乡柏坳林村 | 988.5 | 0 i | 0 j |
| 兴文县仙峰乡群鱼村 | 1 219.4 | 3.60±0.10 g | 1.29±0.03 h |
| 兴文县九丝镇坪山村 | 860.8 | 0 i | 0 j |
| 筠连县联合乡光明村 | 1 095.8 | 5.20±0.15 f | 1.82±0.04 g |
| 筠连县高坪乡英雄村 | 1 185.5 | 9.60±0.28 e | 4.00±0.09 d |
| 筠连县高坪乡先锋村 | 1 134.0 | 3.60±0.10 g | 1.02±0.02 hi |
| 筠连县蒿坝镇龙盘村 | 1 175.6 | 18.80±0.54 a | 9.56±0.22 ab |
| 筠连县蒿坝镇合力村 | 1 120.9 | 18.80±0.54 a | 9.20±0.21 b |
| 筠连县蒿坝镇中山村 | 1 266.4 | 13.20±0.38 c | 5.02±0.11 c |
| 珙县曹营镇云新村 | 923.1 | 9.20±0.26 e | 2.89±0.07 f |
| 珙县洛亥镇高腊村 | 901.3 | 15.60±0.45 b | 9.91±0.23 a |
| 珙县上罗镇新泉村 | 946.9 | 0 i | 0 j |
| 珙县玉和乡隘口村 | 991.3 | 0 i | 0 j |
| 屏山县大乘镇百家山村 | 901.8 | 1.60±0.05 h | 0.71±0.02 i |
| 屏山县新市镇平宁村 | 737.8 | 11.60±0.33 d | 3.24±0.07 ef |
| 屏山县新市镇李家坝村 | 1 046.9 | 8.40±0.24 e | 3.51±0.08 e |
| 屏山县中都镇民义村 | 496.4 | 2.80±0.08 gh | 1.47±0.03 gh |
| 屏山县中都镇雪花村 | 898.2 | 0 i | 0 j |
Table 3 Occurrence of bacterial wilt at different survey sites
| 调查地点 | 海拔/m | 发病率/% | 病情指数 |
|---|---|---|---|
| 兴文县大坝乡沙坝村 | 478.1 | 6.00±0.17 f | 3.24±0.07 ef |
| 兴文县大坝乡小寨村 | 780.3 | 0 i | 0 j |
| 兴文县大坝乡柏坳林村 | 988.5 | 0 i | 0 j |
| 兴文县仙峰乡群鱼村 | 1 219.4 | 3.60±0.10 g | 1.29±0.03 h |
| 兴文县九丝镇坪山村 | 860.8 | 0 i | 0 j |
| 筠连县联合乡光明村 | 1 095.8 | 5.20±0.15 f | 1.82±0.04 g |
| 筠连县高坪乡英雄村 | 1 185.5 | 9.60±0.28 e | 4.00±0.09 d |
| 筠连县高坪乡先锋村 | 1 134.0 | 3.60±0.10 g | 1.02±0.02 hi |
| 筠连县蒿坝镇龙盘村 | 1 175.6 | 18.80±0.54 a | 9.56±0.22 ab |
| 筠连县蒿坝镇合力村 | 1 120.9 | 18.80±0.54 a | 9.20±0.21 b |
| 筠连县蒿坝镇中山村 | 1 266.4 | 13.20±0.38 c | 5.02±0.11 c |
| 珙县曹营镇云新村 | 923.1 | 9.20±0.26 e | 2.89±0.07 f |
| 珙县洛亥镇高腊村 | 901.3 | 15.60±0.45 b | 9.91±0.23 a |
| 珙县上罗镇新泉村 | 946.9 | 0 i | 0 j |
| 珙县玉和乡隘口村 | 991.3 | 0 i | 0 j |
| 屏山县大乘镇百家山村 | 901.8 | 1.60±0.05 h | 0.71±0.02 i |
| 屏山县新市镇平宁村 | 737.8 | 11.60±0.33 d | 3.24±0.07 ef |
| 屏山县新市镇李家坝村 | 1 046.9 | 8.40±0.24 e | 3.51±0.08 e |
| 屏山县中都镇民义村 | 496.4 | 2.80±0.08 gh | 1.47±0.03 gh |
| 屏山县中都镇雪花村 | 898.2 | 0 i | 0 j |
| 发病程度 | pH值 | 有机质含量/(g·kg-1) | 碱解氮含量/(mg·kg-1) | 有效钾含量/ (mg·kg-1) | 有效磷含量/(mg·kg-1) | 交换性钙含量/(mg·kg-1) | 交换性镁含量/(mg·kg-1) |
|---|---|---|---|---|---|---|---|
| 未发病 | 6.20±0.01 a | 42.46±0.19 a | 163.36±1.93 d | 1 085.06±6.94 a | 269.37±5.23 a | 5 895.20±41.03 a | 963.00±8.13 a |
| 轻度发病 | 5.50±0.01 b | 33.63±0.14 b | 202.81±2.86 b | 1 035.13±4.11 b | 116.98±0.77 b | 5 374.10±26.49 b | 889.50±12.18 b |
| 中度发病 | 5.26±0.01 c | 31.04±0.05 c | 230.35±1.49 a | 917.72±8.67 c | 151.09±0.95 b | 3 162.20±35.04 c | 741.00±13.19 c |
| 严重发病 | 5.19±0.01 d | 21.29±0.20 d | 176.67±0.88 c | 754.67±10.06 d | 107.13±0.57 b | 3 199.80±16.68 c | 483.80±5.75 d |
| 相关系数 | -0.874** | -0.979** | 0.293 | -0.973** | -0.675** | -0.927** | -0.962** |
Table 4 Soil physical and chemical properties of plots with different degrees of bacterial wilt occurrence
| 发病程度 | pH值 | 有机质含量/(g·kg-1) | 碱解氮含量/(mg·kg-1) | 有效钾含量/ (mg·kg-1) | 有效磷含量/(mg·kg-1) | 交换性钙含量/(mg·kg-1) | 交换性镁含量/(mg·kg-1) |
|---|---|---|---|---|---|---|---|
| 未发病 | 6.20±0.01 a | 42.46±0.19 a | 163.36±1.93 d | 1 085.06±6.94 a | 269.37±5.23 a | 5 895.20±41.03 a | 963.00±8.13 a |
| 轻度发病 | 5.50±0.01 b | 33.63±0.14 b | 202.81±2.86 b | 1 035.13±4.11 b | 116.98±0.77 b | 5 374.10±26.49 b | 889.50±12.18 b |
| 中度发病 | 5.26±0.01 c | 31.04±0.05 c | 230.35±1.49 a | 917.72±8.67 c | 151.09±0.95 b | 3 162.20±35.04 c | 741.00±13.19 c |
| 严重发病 | 5.19±0.01 d | 21.29±0.20 d | 176.67±0.88 c | 754.67±10.06 d | 107.13±0.57 b | 3 199.80±16.68 c | 483.80±5.75 d |
| 相关系数 | -0.874** | -0.979** | 0.293 | -0.973** | -0.675** | -0.927** | -0.962** |
| 发病程度 | Chao1指数 | Shannon指数 | Shannoneven指数 |
|---|---|---|---|
| 未发病 | 2 173.24±301.92 a | 6.75±0.23 a | 0.88±0.01 a |
| 轻度发病 | 2 156.33±523.56 a | 6.74±0.35 a | 0.88±0.02 a |
| 中度发病 | 2 112.39±477.02 a | 6.68±0.21 a | 0.86±0.01 a |
| 严重发病 | 2 128.80±404.37 a | 6.87±1.28 a | 0.90±0.01 a |
Table 5 Bacterial alpha diversity index of tobacco rhizosphere soil with different degrees of bacterial wilt occurrence
| 发病程度 | Chao1指数 | Shannon指数 | Shannoneven指数 |
|---|---|---|---|
| 未发病 | 2 173.24±301.92 a | 6.75±0.23 a | 0.88±0.01 a |
| 轻度发病 | 2 156.33±523.56 a | 6.74±0.35 a | 0.88±0.02 a |
| 中度发病 | 2 112.39±477.02 a | 6.68±0.21 a | 0.86±0.01 a |
| 严重发病 | 2 128.80±404.37 a | 6.87±1.28 a | 0.90±0.01 a |
Fig. 4 Community composition of tobacco rhizosphere microorganisms at the phylum level(A)and genus level(B)under different disease degrees of bacterial wilt occurrence
| [1] | 霍沁建,张深,王若焱. 烟草青枯病研究进展[J]. 中国农学通报,2007,23(8):364-368. |
| [2] | 李彩斌,刘琼,彭宇,等. 毕节烟区烟草主要土传病害的危害与分布[J]. 贵州农业科学,2021,49(10):71-77. |
| [3] | 丁伟,李石力. 植物医学的新概念:土壤免疫[J]. 植物医生,2019,32(2):1-7. |
| [4] | Wu M N, Zhang H W, Li X Y,et al. Soil fungistasis and its relations to soil microbial composition and diversity:a case study of a series of soils with different fungistasis[J]. Journal of Environmental Sciences,2008,20(7):871-877. |
| [5] | Kusstatscher P, Cernava T, Harms K,et al. Disease incidence in sugar beet fields is correlated with microbial diversity and distinct biological markers[J]. Phytobiomes Journal,2019,3(1):22-30. |
| [6] | Tao C Y, Li R, Xiong W,et al. Bio-organic fertilizers stimulate indigenous soil Pseudomonas populations to enhance plant disease suppression[J]. Microbiome,2020,8(1):137. |
| [7] | 蒋婧,宋明华. 植物与土壤微生物在调控生态系统养分循环中的作用[J]. 植物生态学报,2010,34(8):979-988. |
| [8] | 毕晶晶. 氮钾钙硅施用量影响番茄青枯病的发生及其机理研究[D]. 北京:中国农业科学院,2022. |
| [9] | 于威,依艳丽,杨蕾. 土壤中钙、氮含量对番茄枯萎病抗性的影响[J]. 中国土壤与肥料,2016(1):134-140. |
| [10] | 薛欣欣,吴小平,王文斌,等. 植物-土壤系统中钾镁营养及其交互作用研究进展[J]. 土壤,2019,51(1):1-10. |
| [11] | 田甜. 硅缓解水稻硼胁迫的效应及其土壤化学机制[D]. 沈阳:沈阳农业大学,2022. |
| [12] | 樊俊,谭军,王瑞,等. 烟草青枯病发病土壤理化性状及细菌群落结构分析[J]. 中国烟草科学,2021,42(6):15-21. |
| [13] | 陈永明,王军,彭文松,等. 南雄市烟草青枯病的发生与防治研究[M]. 北京:科学技术文献出版社,2004. |
| [14] | 敖若寅,王姣,纪成隆,等. 烟草青枯病田间识别及农业预防措施[J]. 植物医生,2018,31(10):39-41. |
| [15] | 李小波,汪代斌,邓大庆,等. 万州烟草根茎病害发生原因及防治措施[J]. 植物医生,2012,25(4):21-22. |
| [16] | 林书震. 烟田土壤微生物特征及与青枯病发生关系研究[D]. 郑州:郑州大学,2019. |
| [17] | 谢永辉,张永贵,朱利全,等. 烟草黑胫病综合防治研究进展[J]. 生物技术进展,2015,5(1):41-46. |
| [18] | 梁依佳,余偲,王垚,等. 贵州烟区青枯病发病土壤与健康土壤理化性质差异分析[J]. 植物医学,2023,2(1):75-81. |
| [19] | 周登博,井涛,陈宇丰,等. 土壤微生物多样性研究方法及其在土传病害防治中的应用展望[J]. 热带农业科学,2018,38(2):79-86. |
| [20] | 蔡燕飞,廖宗文,章家恩,等. 生态有机肥对番茄青枯病及土壤微生物多样性的影响[J]. 应用生态学报,2003,14(3):349-353. |
| [21] | 李红丽,李清飞,郭夏丽,等. 调节土壤微生态防治烟草青枯病[J]. 河南农业科学,2006(2):57-60. |
| [22] | 方宇,白涛,刘冬梅,等. 烟草黑胫病植株根际土壤真菌群落多样性及结构分析[J]. 西南农业学报,2022,35(4):822-830. |
| [23] | Benizri E, Piutti S, Verger S,et al. Replant diseases:bacterial community structure and diversity in peach rhizosphere as determined by metabolic and genetic fingerprinting[J]. Soil Biology and Biochemistry,2005,37(9):1738-1746. |
| [24] | 贺纪正,李晶,郑袁明. 土壤生态系统微生物多样性-稳定性关系的思考[J]. 生物多样性,2013,21(4):411-420. |
| [25] | Himaman W, Thamchaipenet A, Pathom-aree W,et al. Actinomycetes from Eucalyptus and their biological activities for controlling Eucalyptus leaf and shoot blight[J]. Microbiological Research,2016,188:42-52. |
| [26] | 谭雪莲,郭天文,胡新元,等. 黄土高原旱作区马铃薯连作根际土壤微生物群落变化特征[J]. 作物学报,2022,48(3):682-694. |
| [27] | 张鸿雁,薛泉宏,唐明,等. 不同种植年限人参地土壤放线菌生态研究[J]. 西北农林科技大学学报(自然科学版),2010,38(8):151-159. |
| [28] | 代金霞,田平雅,张莹,等. 银北盐渍化土壤中6种耐盐植物根际细菌群落结构及其多样性[J]. 生态学报,2019,39(8):2705-2714. |
| [29] | 胡杰,何晓红,李大平,等. 鞘氨醇单胞菌研究进展[J]. 应用与环境生物学报,2007,13(3):431-437. |
| [1] | LI Juan, AN Jianhua, WANG Wenhui, LIU Xiaojuan, SHI Juanjuan, WEI Zhouquan. Effect of different crop rotations on root rot and rhizosphere soil fungal communities of Baitiao Codonopsis pilosula [J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(7): 1698-1704. |
| [2] | JIN Yi, LI Haishen, SUN Jian, ZHOU Chaobin, JIANG Ling, HU Chunli, ZHAN Jianyong, WANG Zhi'an. Rhizosphere microbial community characteristics of perennial Hangbaishao in the genuine producing area [J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(7): 1801-1811. |
| [3] | LIU Yingchun, ZHONG Dongdong, SHEN Chao, WANG Xiaoyan, LI Yonggang, LIU Shangmin, DONG Hegan. Effect of cotton straw returning to the field in arid areas on soil physical and chemical properties and cotton yield [J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(4): 1006-1011. |
| [4] | HE Quanping, HUANG Liang, QIN Jiahao, XU Bingjie, WANG Yuyan, CHEN Siyu, YANG Xiaoe, LIU Di. Distribution characteristics of antibiotics and their resistance genes in the surrounding forest land of pig farm [J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(2): 495-503. |
| [5] | FU Lijun, KE Siqi, HAN Xiaoqing, ZHANG Shangqing, YAN Hongbo, DUAN Huimin, ZHOU Yu. Effects of Bacillus subtilis on yield, disease resistance, and soil improvement in continuous ginger cropping [J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(1): 222-230. |
| [6] | ZHU Yuxiang, WU Yong, ZHU Hongfei. Effects of different fertilization treatments on Zizania latifolia Turcz. and its rhizosphere environment [J]. Journal of Zhejiang Agricultural Sciences, 2026, 67(1): 52-56. |
| [7] | CAI Long, SUN Jian, WANG Pan, SHEN Yanghui, JIANG Jianming, WANG Zhian. Analysis of bacterial community strucure in rhizosphere soil of wild and cultivated Fritillaria thunbergii Miq. and exploration of the associated flora [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(9): 2137-2146. |
| [8] | WANG Yafei, WANG Jingbang, GUO Rui, ZHU Fengxiang, ZHANG Tao, HONG Chunlai, YAO Yanlai. Study on the effects of different thermophilic microorganisms on high-temperature composting of pig manure [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(8): 2015-2024. |
| [9] | LIU Tingting, LI Wenlue, LUO Xiahong, ZOU Lina, CHEN Changli, ZHU Guanlin, AN Xia. Effect of citric acid on rhizosphere microorganisms of flax in cadmium-contaminated soil [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(5): 1145-1150. |
| [10] | SHEN Chenlei. Study on the composting process, microbial succession, and nitrogen transformation of landscaping waste [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(4): 1036-1041. |
| [11] | HUANG Haixia, HUANG Kunpeng, YANG Zaijun, CAO Kexin, PAN Hengde, WEI Xueping, LU Fuyong, LI Junlin, LUO Qinzhan. Effects of tobacco-sweet potato intercropping on rhizosphere microbial diversity [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(12): 2901-2909. |
| [12] | FANG Bao, HE Guoyou, SHEN Junru, TANG Xubing, REN Longhui, ZHEN Anzhong, LAN Yufeng, KONG Chuisi. Effects of rotating different crops with cigar tobacco on the rhizosphere soil bacterial community [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(11): 2772-2778. |
| [13] | WU Fengwei, HUANG Lishan, XU Xiaofei. Preliminary analysis of microecology in the soil of continuous cropping of Dioscorea opposita Thunb. in Yangjiang area, Guangdong Province [J]. Journal of Zhejiang Agricultural Sciences, 2025, 66(10): 2502-2510. |
| [14] | WU Yong, ZHU Yuxiang, CHEN Yue, CHENG Zhenghong. Effects of soil amendments on plant growth of Hongmeiren and soil microbial community [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(11): 2751-2757. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||