首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Delivery of Nucleic Acids through Embryo Microinjection in the Worldwide Agricultural Pest Insect Ceratitis capitata
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Delivery of Nucleic Acids through Embryo Microinjection in the Worldwide Agricultural Pest Insect Ceratitis capitata

机译:通过胚胎显微注射在世界范围内的农业害虫昆虫角实角藻中递送核酸。

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摘要

The Mediterranean fruit fly (medfly) Ceratitis capitata (Wiedemann) (Diptera: Tephritidae) is a pest species with extremely high agricultural relevance. This is due to its reproductive behavior: females damage the external surface of fruits and vegetables when they lay eggs and the hatched larvae feed on their pulp. Wild C. capitata populations are traditionally controlled through insecticide spraying and/or eco-friendly approaches, the most successful being the Sterile Insect Technique (SIT). The SIT relies on mass-rearing, radiation-based sterilization and field release of males that retain their capacity to mate but are not able to generate fertile progeny. The advent and the subsequent rapid development of biotechnological tools, together with the availability of the medfly genome sequence, has greatly boosted our understanding of the biology of this species. This favored the proliferation of new strategies for genome manipulation, which can be applied to population control.In this context, embryo microinjection plays a dual role in expanding the toolbox for medfly control. The ability to interfere with the function of genes that regulate key biological processes, indeed, expands our understanding of the molecular machinery underlying medfly invasiveness. Furthermore, the ability to achieve germ-line transformation facilitates the production of multiple transgenic strains that can be tested for future field applications in novel SIT settings. Indeed, genetic manipulation can be used to confer desirable traits that can, for example, be used to monitor sterile male performance in the field, or that can result in early life-stage lethality. Here we describe a method to microinject nucleic acids into medfly embryos to achieve these two main goals.
机译:地中海果蝇(地中海果蝇)(Ceratitis capitata)(Wiedemann)(双翅目:天蛾科)是一种具有极高农业相关性的有害生物。这是由于它的生殖行为:雌虫在产卵时将水果和蔬菜的外表面破坏,将孵化的幼虫喂食在果肉上。传统上,野生人头藻种群是通过喷洒杀虫剂和/或生态友好的方法来控制的,最成功的是无菌昆虫技术(SIT)。 SIT依靠雄性的繁殖,基于辐射的灭菌和田间释放来保持雄性交配的能力,但不能产生可育的后代。生物技术工具的出现和随后的快速发展,以及medfly基因组序列的可用性,极大地增进了我们对这一物种生物学的了解。这促进了可用于种群控制的新的基因组操纵策略的扩散。在这种情况下,胚胎显微注射在扩大用于控制蝇蝇的工具箱中起着双重作用。干扰调节关键生物学过程的基因功能的能力的确扩大了我们对构成果蝇侵袭力的分子机制的理解。此外,实现种系转化的能力促进了多种转基因菌株的生产,可以在新型SIT环境中对未来的野外应用进行测试。确实,遗传操纵可用于赋予理想的性状,例如,可用于监测田间不育的雄性表现,或可导致生命早期的致死性。在这里,我们描述了一种将核酸显微注射到地中海果蝇胚胎中以实现这两个主要目标的方法。

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