National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency (NSTDA) , 113 Thailand Science Park, Phahonyothin Road, Khlong Luang, Pathum Thani 12120, Thailand.
Anal Chem. 2014 Jul 15;86(14):7049-56. doi: 10.1021/ac501424k. Epub 2014 Jul 1.
The global seed market is considered to be an important industry with a total value of $10,543 million US dollars in 2012. Because plant pathogens such as bacteria and viruses cause a significant economic loss to both producers and exporters, the seed export industry urgently requires rapid, sensitive, and inexpensive testing for the pathogens to prevent disease spreading worldwide. This study developed an antibody array in a multiwell plate format to simultaneously detect four crucial plant pathogens, namely, a bacterial fruit blotch bacterium Acidovorax avenae subsp. citrulli (Aac), Chilli veinal mottle virus (ChiVMV, potyvirus), Watermelon silver mottle virus (WSMoV, tospovirus serogroup IV), and Melon yellow spot virus (MYSV, tospovirus). The capture antibodies specific to the pathogens were immobilized on each well at preassigned positions by an automatic microarrayer. The antibodies on the arrays specifically captured the corresponding pathogens present in the sample extracts. The presence of pathogens bound on the capture antibodies was subsequently detected by a cocktail of fluorescently conjugated secondary antibodies. The limits of detection of the developed antibody array for the detection of Aac, ChiVMV, WSMoV, and MYSV were 5 × 10(5) CFU/mL, 30 ng/mL, 1000 ng/mL, and 160 ng/mL, respectively, which were very similar to those of the conventional ELISA method. The antibody array in a multiwell plate format accurately detected plant pathogens in single and multiple detections. Moreover, this format enables easy handling of the assay at a higher speed of operation.
全球种子市场被认为是一个重要的产业,其 2012 年的总价值为 105.43 亿美元。由于细菌和病毒等植物病原体给生产商和出口商造成了巨大的经济损失,种子出口行业迫切需要快速、敏感和廉价的病原体检测方法,以防止疾病在全球范围内传播。本研究开发了一种多微孔板格式的抗体芯片,以同时检测四种关键的植物病原体,即细菌性果斑病菌 Acidovorax avenae subsp. citrulli (Aac)、辣椒叶脉斑驳病毒 (ChiVMV,马铃薯 Y 病毒科)、西瓜银斑驳病毒 (WSMoV,长形弹状病毒属 IV 组) 和瓜类黄斑病毒 (MYSV,长形弹状病毒属)。针对病原体的捕获抗体通过自动微阵列仪固定在每个孔的预定位置上。阵列上的抗体特异性地捕获来自样品提取物中的相应病原体。然后,通过荧光标记的混合二级抗体检测结合在捕获抗体上的病原体的存在。所开发的抗体芯片用于检测 Aac、ChiVMV、WSMoV 和 MYSV 的检测限分别为 5×10(5)CFU/mL、30ng/mL、1000ng/mL 和 160ng/mL,与传统 ELISA 方法非常相似。多微孔板格式的抗体芯片能够准确地在单次和多次检测中检测植物病原体。此外,这种格式便于以更高的操作速度进行检测。