Fekrat Lida, Zaki Aghl Mohammad, Tahan Vahid
Department of Plant Protection, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.
J Econ Entomol. 2015 Jun;108(3):1337-43. doi: 10.1093/jee/tov099. Epub 2015 May 4.
Rapid and accurate identification of potentially invasive taxa that may cause high economic losses or environmental damage is of critical importance. The onion thrips, Thrips tabaci Lindeman, ranks as one of the world's most destructive agricultural pests and commonly found in imported agricultural products and field samples, but is prone to undetected transport because of its minute size as well as cryptic behavior. Although traditional taxonomic methods are pretty useful in straightforward assignment of specimens to the genus Thrips, identification in the species level is much more difficult and requires expertise, knowledge, and experience. Furthermore, it is often difficult or impossible to identify or distinguish this species from other thrips by using material from other stages of development. Based on the foregoings, use of a molecular technique known as loop-mediated isothermal amplification (LAMP) as a rapid and robust alternative species diagnostic tool would be valuable. In this study, a relatively quick and simple method was used to detect the presence of onion thrips DNA rapidly and discriminate it from other species, by using material from different stages of development. Not only LAMP itself required less than 1 h to complete but also amounts of DNA as little as that recovered from a single specimen were adequate for the detection. Another advantage of this identification system is that nonspecialists will be able to make faster and cheaper identifications.
快速准确地识别可能造成重大经济损失或环境破坏的潜在入侵物种至关重要。葱蓟马(Thrips tabaci Lindeman)是世界上最具破坏性的农业害虫之一,常见于进口农产品和田间样本中,但因其体型微小且行为隐匿,容易在未被察觉的情况下传播。尽管传统分类方法在将标本直接归类到蓟马属时非常有用,但在物种层面的鉴定要困难得多,需要专业知识、技能和经验。此外,使用其他发育阶段的材料往往很难或无法将该物种与其他蓟马区分开来。基于上述情况,使用一种称为环介导等温扩增(LAMP)的分子技术作为一种快速且可靠的替代物种诊断工具将很有价值。在本研究中,采用了一种相对快速简便的方法,通过使用不同发育阶段的材料,快速检测葱蓟马DNA的存在并将其与其他物种区分开来。不仅LAMP本身完成检测所需时间不到1小时,而且从单个标本中回收的少量DNA就足以进行检测。该鉴定系统的另一个优点是,非专业人员也能够进行更快、更经济的鉴定。