Chinese Journal of Antituberculosis ›› 2025, Vol. 47 ›› Issue (12): 1609-1615.doi: 10.19982/j.issn.1000-6621.20250248
• Original Articles • Previous Articles Next Articles
Du Yu1,2, Zhang Haipeng1, Liu Kejun1, Shi Liyuan1, Tan Hongli1, Wang Peng1(
)
Received:2025-06-11
Online:2025-12-10
Published:2025-11-28
Contact:
Wang Peng, Email: CLC Number:
Du Yu, Zhang Haipeng, Liu Kejun, Shi Liyuan, Tan Hongli, Wang Peng. First isolation, identification and characterization of Mycobacteriophages in Yunnan Province[J]. Chinese Journal of Antituberculosis, 2025, 47(12): 1609-1615. doi: 10.19982/j.issn.1000-6621.20250248
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.zgflzz.cn/EN/10.19982/j.issn.1000-6621.20250248
| [1] | World Health Organization.Global tuberculosis report 2024. Geneva: World Health Organization, 2024. |
| [2] |
Ratnatunga CN, Lutzky VP, Kupz A, et al. The Rise of Non-Tuberculosis Mycobacterial Lung Disease. Front Immunol, 2020, 11:303. doi:10.3389/fimmu.2020.00303.
pmid: 32194556 |
| [3] | Hatfull GF, Dedrick RM, Schooley RT. Phage Therapy for Antibiotic-Resistant Bacterial Infections. Annu Rev Med, 2022, 73: 197-211. doi:10.1146/annurev-med-080219-122208. |
| [4] |
da Silva JL, Piuri M, Broussard G, et al. Application of BRED technology to construct recombinant D 29 reporter phage expressing EGFP. FEMS Microbiol Lett, 2013, 344(2): 166-172. doi:10.1111/1574-6968.12171.
pmid: 23651353 |
| [5] | Tufariello JM, Malek AA, Vilchèze C, et al. Enhanced specialized transduction using recombineering in Mycobacterium tuberculosis. mBio, 2014, 5(3): e01179-14. doi:10.1128/mBio.01179-14. |
| [6] | Bavda VR, Jain V. Deciphering the Role of Holin in Mycobacteriophage D29 Physiology. Front Microbiol, 2020, 11: 883. doi:10.3389/fmicb.2020.00883. |
| [7] | Murphy KC, Nelson SJ, Nambi S, et al. ORBIT: a New Paradigm for Genetic Engineering of Mycobacterial Chromosomes. mBio, 2018, 9(6): e01467-18. doi:10.1128/mBio.01467-18. |
| [8] | 樊祥宇. 分枝杆菌噬菌体的系统生物学研究. 重庆: 西南大学, 2014. |
| [9] | 刘平. 分枝杆菌噬菌体的生物学特性及基因组学研究. 重庆: 重庆医科大学, 2012. |
| [10] | 苏胜兵. 分枝杆菌烈性噬菌体的分离鉴定及其裂解酶基因的克隆与序列分析. 长春: 吉林农业大学, 2012. |
| [11] | 刘平, 邬亭亭, 彭丽, 等. 噬菌体Legendre的生物学特性及抗耐药结核潜力的初步研究. 第三军医大学学报, 2012, 34(9): 821-826. doi:10.16016/j.1000-5404.2012.09.002. |
| [12] | 姚义勇, 江莉莎, 张莉, 等. 分枝杆菌噬菌体Guo1环状基因组特征及生物学特性分析. 微生物学通报, 2015, 42(8): 1529-1538. doi:10.13344/j.microbiol.china.140872. |
| [13] |
Fan X, Gao X, Wang Q, et al. Complete genome sequence analysis of the novel mycobacteriophage Shandong1. Arch Virol, 2017, 162(12): 3903-3905. doi:10.1007/s00705-017-3534-7.
pmid: 28828700 |
| [14] | Jain P, Garing S, Verma D, et al. Nanoluciferase Reporter Mycobacteriophage for Sensitive and Rapid Detection of Mycobacterium tuberculosis Drug Susceptibility. J Bacteriol, 2020, 202(22): e00411-20. doi:10.1128/JB.00411-20. |
| [15] |
O'Donnell MR, Pym A, Jain P, et al. A Novel Reporter Phage To Detect Tuberculosis and Rifampin Resistance in a High-HIV-Burden Population. J Clin Microbiol, 2015, 53(7): 2188-2194. doi:10.1128/JCM.03530-14.
pmid: 25926493 |
| [16] | Moye ZD, Woolston J, Sulakvelidze A. Bacteriophage Applications for Food Production and Processing. Viruses, 2018, 10(4): 205. doi:10.3390/v10040205. |
| [17] | Pope WH, Bowman CA, Russell DA, et al. Whole genome comparison of a large collection of mycobacteriophages reveals a continuum of phage genetic diversity. Elife, 2015, 4: e06416. doi:10.7554/eLife.06416. |
| [18] | Shield CG, Swift BMC, McHugh TD, et al. Application of Bacteriophages for Mycobacterial Infections, from Diagnosis to Treatment. Microorganisms, 2021, 9(11): 2366. doi:10.3390/microorganisms9112366. |
| [19] | Little JS, Dedrick RM, Freeman KG, et al. Bacteriophage treatment of disseminated cutaneous Mycobacterium chelonae infection. Nat Commun, 2022, 13(1): 2313. doi:10.1038/s41467-022-29689-4. |
| [20] | 唐南. 云南省肺结核病例地理分布及空间聚集性研究. 昆明: 昆明医科大学, 2015. |
| [21] | 杨松旺. 云南省结核病流行特征与防治策略研究. 昆明: 昆明医科大学, 2023. |
| [22] | 邬亭亭, 刘平, 罗永艾, 等. 分枝杆菌噬菌体D29的生物学特性研究及其抗耐药结核潜力的探讨. 世界科技研究与发展, 2012, 34(2):314-317. doi:10.16507/j.issn.1006-6055.2012.02.040. |
| [23] |
江莉莎, 邬亭亭, 刘平, 等. 分支杆菌噬菌体Leo生物学特性及抗结核作用. 中国人兽共患病学报, 2015, 31(3):193-198.
doi: 10.3969/cjz.j.issn.1002-2694.2015.03.001 |
| [24] | Gong Z, Lv X, Li C, et al. Genomic and proteomic portrait of a novel mycobacteriophage SWU2 isolated from China. Infect Genet Evol, 2021, 87:104665. doi:10.1016/j.meegid.2020.104665. |
| [25] |
Schofield DA, Sharp NJ, Westwater C. Phage-based platforms for the clinical detection of human bacterial pathogens. Bacteriophage, 2012, 2(2): 105-283. doi:10.4161/bact.19274.
pmid: 23050221 |
| [26] | Wetzel KS, Illouz M, Abad L, et al. Mycobacterium trehalose polyphleates are required for infection by therapeutically useful mycobacteriophages BPs and Muddy. bioRxiv, 2023: 2023.03.14.532567. doi:10.1101/2023.03.14.532567. |
| [27] | 林楠. 中国结核分枝杆菌群体基因组的分析. 福州: 福建农林大学, 2014. |
| [28] | Hatfull GF. Mycobacteriophages. Microbiol Spectr, 2018, 6(5): 10.1128/microbiolspec.GPP3-0026-2018. doi:10.1128/microbiolspec.GPP3-0026-2018. |
| [29] | Dedrick RM, Guerrero Bustamante CA, Garlena RA, et al. Mycobacteriophage ZoeJ: A broad host-range close relative of mycobacteriophage TM4. Tuberculosis (Edinb), 2019, 115: 14-23. doi:10.1016/j.tube.2019.01.002. |
| [30] |
Mayer O, Jain P, Weisbrod TR, et al. Fluorescent Reporter DS6A Mycobacteriophages Reveal unique Variations in Infectibility and Phage Production in Mycobacteria. J Bacteriol, 2016, 198(23): 3220-3232. doi:10.1128/JB.00592-16.
pmid: 27672191 |
| [31] | Yue X, Huang Y, Zhang Y, et al. Mycobacteriophage SWU1-Functionalized magnetic particles for facile bioluminescent detection of Mycobacterium smegmatis. Anal Chim Acta, 2021, 1145:17-25. doi:10.1016/j.aca.2020.12.009. |
| [32] | 滕铁山. 分枝杆菌噬菌体LiyA的分离、序列测定和基因组结构以及比较基因组分析及其gp29/gp30编码产物的裂解酶活性研究. 重庆: 西南大学, 2012. |
| [33] |
Fan X, Gao X, Wang Q, et al. Complete genome sequence analysis of the novel mycobacteriophage Shandong1. Arch Virol, 2017, 162(12):3903-3905. doi:10.1007/s00705-017-3534-7.
pmid: 28828700 |
| [1] | Nontuberculous Mycobacterial Diseases Branch of Chinese Antituberculosis Association. Expert consensus on molecular biology diagnosis of nontuberculous mycobacteria diseases [J]. Chinese Journal of Antituberculosis, 2025, 47(8): 961-975. |
| [2] | Palidanguli Abudureheman, Wang Senlu, Gulina Badeerhan, Wang Le, Zulikatiayi Abudula, Wang Xinqi, Maiwulajiang Yimamu, Wang Xijiang. Distribution of Mycobacterium tuberculosis genotypes in Kashgar region and their association with clinical characteristics of pulmonary tuberculosis patients [J]. Chinese Journal of Antituberculosis, 2024, 46(9): 1077-1082. |
| [3] | Lei Hui, Zhang Shu, Li Ting, Gao Yuan, Liu Shuang, Chen Chuang, Xia Lan, Wang Weina, Gao Wenfeng, He Jinge. Analysis of infection patterns and drug resistance of 22 recurrent pulmonary tuberculosis patients in Sichuan based on whole-genome sequencing [J]. Chinese Journal of Antituberculosis, 2024, 46(6): 641-647. |
| [4] | Liu Kejun, Zhang Haipeng, Wang Peng. Overview of genomic research on Mycobacteriophages [J]. Chinese Journal of Antituberculosis, 2024, 46(10): 1283-1292. |
| [5] | Qin Huifang, Liang Xiaoyan, Zhou Lingyun, Lan Yumei, Lin Mei, Zhang Zhitong, Huang Yan, Wei Xiaolin, Liang Dabin. Analysis on the effect of GeneXpert MTB/RIF single test and mixed test on sputum samples for actively screening tuberculosis in key population of Guangxi [J]. Chinese Journal of Antituberculosis, 2023, 45(9): 880-884. |
| [6] | Du Yu, Zhang Haipeng, Wang Peng. Research status and application progress of mycobacteria phages [J]. Chinese Journal of Antituberculosis, 2023, 45(9): 897-903. |
| [7] | Song Yuanyuan, Xia Hui, Zhao Yanlin. Development process of setting of critical concentrations for phenotypic drug susceptibility testing of Mycobacterium tuberculosis [J]. Chinese Journal of Antituberculosis, 2023, 45(7): 631-638. |
| [8] | YANG Cheng-qing, MEI Chun-lin, DU Rong-hui, LEI Mei, QIN Li-xin. Analysis of diagnosis and treatment for a pulmonary lymphangitic carcinomatosis misdiagnosed as pulmonary tuberculosis caused by false positive molecular biological test [J]. Chinese Journal of Antituberculosis, 2022, 44(3): 289-293. |
| [9] | Li Xiangchen, Liu Zhengwei, Lu Yewei, Zhu Yelei, Zhang Mingwu, Jiang Jinqin, Peng Xiaojun, Wang Weixin, Gao Junshun, Wang Xiaomeng. Progress and application of whole genome sequencing data analysis of Mycobacterium tuberculosis [J]. Chinese Journal of Antituberculosis, 2022, 44(11): 1193-1198. |
| [10] | Zhang Rui, Liu Yanping, Qian Jun, Fang Qianglin, Yang Chongguang. Updates on the application of whole-genome sequencing for within-host heterogeneity of Mycobacterium tuberculosis [J]. Chinese Journal of Antituberculosis, 2022, 44(11): 1199-1204. |
| [11] | YI Yi-hang, YU Rong, SHI Guo-min, MA Xiao-hua, XIAO Si-fang, SHUI Jian, FAN Ren-hua, XIANG Yan-gen. Analysis of the composition and phenotypes of intestinal flora in primary bacteriologically-confirmed pulmonary tuberculosis patients based on high-throughput sequencing of 16S rRNA V4 region [J]. Chinese Journal of Antituberculosis, 2021, 43(9): 939-946. |
| [12] | YANG Ting-ting, GAO Qian. The tuberculosis drug-resistance and transmission surveillance network based on whole genome sequencing data [J]. Chinese Journal of Antituberculosis, 2021, 43(7): 645-648. |
| [13] | YE Jin-xin, XU Lin, CHEN Jin-ou, QIU Yu-bing, LYU Tong. Analysis of influencing factors of death in TB patients complicated with AIDS during anti-tuberculosis treatment in Yunnan, 2011-2019 [J]. Chinese Journal of Antituberculosis, 2021, 43(2): 126-131. |
| [14] | JI Le-cai, ZHANG Le-ping, LYU Jian-wen, LI Xiao-ding, ZOU Xiao-fei, PIAO Wei. Whole-genome sequencing for drug resistance profile prediction in multidrug-resistant Mycobacterium tuberculosis in Shenzhen [J]. Chinese Journal of Antituberculosis, 2021, 43(2): 166-170. |
| [15] | FAN Yue-ling, WANG Chun-pu, GAO Jian-wei, DENG Jun-ping, SONG Hong, FENG Miao, SHANG Ya-li, LI Qing-tao, ZHANG Chong-hui, ZHANG Yan-ping, LI Ren-zhong. Analysis of the application of nucleic acid detection technology for tuberculosis molecular biology in Linfen, Shanxi from 2019 to 2020 [J]. Chinese Journal of Antituberculosis, 2021, 43(12): 1280-1286. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
京公网安备11010202007215号
Total visitors: Visitors of today: Now online:
This work is licensed under Creative Commons Attribution 3.0 License.