School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, China.
School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, China; Key Laboratory of Silkworm and Mulberry Genetic Improvement, Ministry of Agriculture and Rural Affairs, Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China.
J Invertebr Pathol. 2024 Mar;203:108072. doi: 10.1016/j.jip.2024.108072. Epub 2024 Feb 8.
Pathogenic microorganism of silkworm are important factors that threaten the high-quality development of sericulture. Among them, Bombyx mori nucleopolyhedrovirus (BmNPV) caused diseases often lead to frequent outbreaks and high mortality, resulting in huge losses to sericultural industry. Current molecular detection methods for BmNPV require expensive equipment and sikilled technical personnel. As a result, the most commonly detection method for silkworm egg production enterprises involves observing the presence of polyhedra under a microscope. However, this method has low accuracy and sensitivity. There is an urgent need to develop a new detection technology with high sensitivity, high specificity, and applicability for silkworm farms, silkworm egg production enterprises and quarantine departments. In this study, we successfully established the CRISPR/Cas13a BmNPV visualized detection technology by combining Recombinase Polymerase Amplification (RPA) technology and CRISPR/Cas13a system. This technology is based on microplate lateral, flow test strips and portable fluorescence detector. The detection sensitivity can reach up to 1 copies/μL for positive standard plasmid and 1 fg/μL for BmNPV genome in 30-45 min, demonstrating high sensitivity. By detecting silkworm tissues infected with different pathogens, we determined that CRISPR/Cas13a detection technology has good specificity. In summary, the newly established nucleic acid detection technology for BmNPV is characterized by high sensitivity, high specificity, low cost and convenience for visualization. It can be applied in field detection and silkworm egg quality monitory system.
家蚕病原微生物是威胁蚕业高质量发展的重要因素。其中,家蚕核型多角体病毒(BmNPV)引起的疾病常导致频繁暴发和高死亡率,给蚕业造成巨大损失。目前 BmNPV 的分子检测方法需要昂贵的设备和熟练的技术人员。因此,蚕种生产企业最常用的检测方法是通过显微镜观察多角体的存在。然而,这种方法准确性和灵敏度较低。迫切需要开发一种新的检测技术,具有高灵敏度、高特异性和适用于蚕场、蚕种生产企业和检疫部门的适用性。在本研究中,我们成功地建立了 CRISPR/Cas13a 可视化 BmNPV 检测技术,该技术结合了重组酶聚合酶扩增(RPA)技术和 CRISPR/Cas13a 系统。该技术基于微孔板侧向流、测试条和便携式荧光检测仪,检测灵敏度可达阳性标准质粒 1 拷贝/μL,BmNPV 基因组 1 fg/μL,检测时间为 30-45min,灵敏度高。通过检测感染不同病原体的家蚕组织,我们确定了 CRISPR/Cas13a 检测技术具有良好的特异性。综上所述,新建立的 BmNPV 核酸检测技术具有灵敏度高、特异性好、成本低、可视化方便等特点,可应用于现场检测和蚕种质量监测系统。