Wang Yong, Zeng Xiangguo, Xiao Guilin, Zhang Dongmei, Wen Xin, Zhou Xinxin, Wang Zexian, Deng Jiangli, Han Yongchao
Institute of Industrial Crops, Hubei Academy of Agricultural Sciences, Wuhan 430064, China.
Viruses. 2024 Nov 29;16(12):1858. doi: 10.3390/v16121858.
Strawberry viruses are significant pathogenic agents in strawberry. The development and application of efficient virus detection technology can effectively reduce the economic losses incurred by virus diseases for strawberry cultivators. In order to rapidly identify strawberry virus species and prevent the spread of virus disease, a multiplex reverse transcription polymerase chain reaction system was established for the simultaneous detection and identification of strawberry mild yellow edge virus (SMYEV), strawberry vein banding virus (SVBV), strawberry mottle virus (SMoV), strawberry polerovirus 1 (SPV-1), strawberry pallidosis-associated virus (SPaV), and strawberry crinivirus 4 (SCrV-4). In this study, six pairs of specific primers were designed on the conserved genomic regions of these viruses. The primer concentration, annealing temperature, and amplification cycle number of the reaction system were optimized. Subsequent sensitivity testing and application of the optimized detection system were carried out. The results indicate the establishment of an efficient detection system for strawberry viruses. The optimal reaction can detect the six viruses at the same time, which provides technical support for the early prevention and treatment of strawberry virus diseases.
草莓病毒是草莓中的重要致病因子。高效病毒检测技术的开发与应用能够有效减少草莓种植者因病毒病遭受的经济损失。为了快速鉴定草莓病毒种类并防止病毒病传播,建立了一种多重逆转录聚合酶链反应体系,用于同时检测和鉴定草莓轻型黄边病毒(SMYEV)、草莓叶脉束带病毒(SVBV)、草莓斑驳病毒(SMoV)、草莓马铃薯Y病毒1(SPV-1)、草莓苍白病相关病毒(SPaV)和草莓褪绿叶斑病毒4(SCrV-4)。在本研究中,针对这些病毒的保守基因组区域设计了六对特异性引物。对反应体系的引物浓度、退火温度和扩增循环数进行了优化。随后对优化后的检测系统进行了灵敏度测试和应用。结果表明建立了一种高效的草莓病毒检测系统。该优化反应能够同时检测这六种病毒,为草莓病毒病的早期防治提供了技术支持。