Handler Alfred M
Center for Medical, Agricultural, and Veterinary Entomology, Agricultural Research Service, US Department of Agriculture, 1700 S.W. 23rd Drive, Gainesville, FL 32608, USA.
Insect Biochem Mol Biol. 2002 Oct;32(10):1211-20. doi: 10.1016/s0965-1748(02)00084-x.
Germ-line transformation of insects is now possible with four independent transposable element vector systems. Among these, the TTAA-insertion site specific transposon, piggyBac, discovered in Trichoplusia ni, is one of the most widely used. Transformations have been achieved in a wide variety of dipterans, lepidopterans, and a coleopteran, and for many species, piggyBac transposition was first tested by plasmid-based mobility assays in cell lines and embryos. All plasmid and genomic insertions are consistent with the duplication of a TTAA insertion site, and most germ-line integrations appear to be stable, though this is largely based on stable marker phenotypes. Of the vector systems presently in use for non-drosophilids, piggyBac is the only one not currently associated with a superfamily of transposable elements, though other elements exist that share its TTAA insertion site specificity. While functional piggyBac elements have only been isolated from T. ni, nearly identical elements have been discovered in a dipteran species, Bactrocera dorsalis, and closely related elements exist in another moth species, Spodoptera frugiperda. It appears that piggyBac has recently traversed insect orders by horizontal transmission, possibly mediated by a baculovirus or other viral system. This interspecies movement has important implications for the practical use of piggyBac to create transgenic insect strains for field release.
利用四种独立的转座元件载体系统,现在已能够对昆虫进行种系转化。其中,在粉纹夜蛾中发现的TTAA插入位点特异性转座子piggyBac是使用最为广泛的转座子之一。已在多种双翅目昆虫、鳞翅目昆虫和一种鞘翅目昆虫中实现了转化,对于许多物种而言,piggyBac转座首先是通过基于质粒的细胞系和胚胎中的迁移分析进行测试的。所有质粒和基因组插入均与TTAA插入位点的重复一致,并且大多数种系整合似乎是稳定的,尽管这在很大程度上是基于稳定的标记表型。在目前用于非果蝇类昆虫的载体系统中,piggyBac是唯一目前与转座子超家族无关的系统,尽管存在其他具有其TTAA插入位点特异性的元件。虽然功能性piggyBac元件仅从粉纹夜蛾中分离得到,但在一种双翅目昆虫桔小实蝇中发现了几乎相同的元件,并且在另一种蛾类昆虫草地贪夜蛾中存在密切相关的元件。看来piggyBac最近通过水平传播跨越了昆虫目,可能是由杆状病毒或其他病毒系统介导的。这种种间移动对于实际使用piggyBac来创建用于田间释放的转基因昆虫品系具有重要意义。