Mi Yingjie, Chen Shaohua, Liu Kexin, Tie Zhanjiang, Ren Junchao, Zhang Mingli, Liu Zheng, Zhao Sifeng, Xi Hui, Zhang Xuekun
Key Laboratory of Oasis Agricultural Pest Management and Plant Protection Resources Utilization, College of Agriculture, Shihezi University, Shihezi 832003, China.
Xinjiang Jiangjun Weinong Biotechnology Development Co., Ltd., Shihezi 832003, China.
Viruses. 2025 Jan 26;17(2):180. doi: 10.3390/v17020180.
Walnut canker is a common disease in the Xinjiang Uygur autonomous region of China, which is caused by . To date, there is no effective control measure for this disease. Infection with mycoviruses has been widely proven to reduce the virulence of plant pathogenic fungi, with some mycoviruses even serving as potential biological control agents for plant diseases. In this study, mycoviruses associated with 31 strains of from Xinjiang Uygur autonomous region were identified by metatranscriptomic sequencing. Seven new mycoviruses were identified by BLAST and RT-PCR analysis, which were Botrytis cinerea partitivirus 5 (BcPV5), Gammapartitivirus sp-XJ1 (GVsp-XJ1), Botoulivirus sp-XJ2 (BVsp-XJ2), Luoyang Fusar tick virus 2 (LfTV2), Leptosphaeria biglobosa narnavirus 17 (LbNV17), Sclerotinia sclerotiorum narnavirus 6 (SsNV6), and Cytospora ribis mitovirus (CrMV3). Among these, BcPV5, GVsp-XJ1, BVsp-XJ2, CrMV3, and LfTV2 were found to co-infect strain WS-11 and significantly reduce both the colony growth rate and virulence of the host. After co-culturing the virus-free WS-FV strain with WS-11, the colony growth rate and virulence of the derivative strain were also decreased. These results provide potential biocontrol resources for the control of walnut canker.
核桃溃疡病是中国新疆维吾尔自治区的一种常见病害,由……引起。迄今为止,针对这种病害尚无有效的防治措施。广泛研究证实,感染真菌病毒可降低植物病原真菌的毒力,一些真菌病毒甚至可作为植物病害的潜在生物防治剂。在本研究中,通过宏转录组测序鉴定了与来自新疆维吾尔自治区的31株……相关的真菌病毒。通过BLAST和RT-PCR分析鉴定出7种新的真菌病毒,分别是灰葡萄孢双分病毒5(BcPV5)、γ双分病毒属XJ1(GVsp-XJ1)、Botoulivirus属XJ2(BVsp-XJ2)、洛阳镰孢蜱传病毒2(LfTV2)、大孢小球腔菌负链RNA病毒17(LbNV17)、核盘菌负链RNA病毒6(SsNV6)和李壳囊孢线粒体病毒(CrMV3)。其中,发现BcPV5、GVsp-XJ1、BVsp-XJ2、CrMV3和LfTV2共同感染……菌株WS-11,并显著降低宿主的菌落生长速率和毒力。将无病毒的WS-FV菌株与WS-11共培养后,衍生菌株的菌落生长速率和毒力也有所降低。这些结果为核桃溃疡病的防治提供了潜在的生物防治资源。