Kokoza V, Ahmed A, Cho W L, Jasinskiene N, James A A, Raikhel A
Department of Entomology and Program in Genetics, Michigan State University, East Lansing, MI 48824, USA.
Proc Natl Acad Sci U S A. 2000 Aug 1;97(16):9144-9. doi: 10.1073/pnas.160258197.
Progress in molecular genetics makes possible the development of alternative disease control strategies that target the competence of mosquitoes to transmit pathogens. We tested the regulatory region of the vitellogenin (Vg) gene of Aedes aegypti for its ability to express potential antipathogen factors in transgenic mosquitoes. Hermes-mediated transformation was used to integrate a 2.1-kb Vg-promoter fragment driving the expression of the Defensin A (DefA) coding region, one of the major insect immune factors. PCR amplification of genomic DNA and Southern blot analyses, carried out through the ninth generation, showed that the Vg-DefA transgene insertion was stable. The Vg-DefA transgene was strongly activated in the fat body by a blood meal. The mRNA levels reached a maximum at 24-h postblood meal, corresponding to the peak expression time of the endogenous Vg gene. High levels of transgenic defensin were accumulated in the hemolymph of bloodfed female mosquitoes, persisting for 20-22 days after a single blood feeding. Purified transgenic defensin showed antibacterial activity comparable to that of defensin isolated from bacterially challenged control mosquitoes. Thus, we have been able to engineer the genetically stable transgenic mosquito with an element of systemic immunity, which is activated through the blood meal-triggered cascade rather than by infection. This work represents a significant step toward the development of molecular genetic approaches to the control of vector competence in pathogen transmission.
分子遗传学的进展使得开发针对蚊子传播病原体能力的替代疾病控制策略成为可能。我们测试了埃及伊蚊卵黄原蛋白(Vg)基因的调控区域,以评估其在转基因蚊子中表达潜在抗病原体因子的能力。利用Hermes介导的转化方法,整合了一个驱动主要昆虫免疫因子之一防御素A(DefA)编码区表达的2.1 kb Vg启动子片段。通过第九代进行的基因组DNA的PCR扩增和Southern印迹分析表明,Vg-DefA转基因插入是稳定的。Vg-DefA转基因在脂肪体中通过血餐强烈激活。mRNA水平在血餐后24小时达到最大值,这与内源性Vg基因的峰值表达时间相对应。高水平的转基因防御素在吸食血液的雌性蚊子的血淋巴中积累,单次吸血后持续20-22天。纯化的转基因防御素显示出与从经细菌攻击的对照蚊子中分离的防御素相当的抗菌活性。因此,我们能够构建具有全身免疫元件的基因稳定转基因蚊子,该元件通过血餐触发的级联反应而非感染来激活。这项工作代表了在开发控制病原体传播中载体能力的分子遗传学方法方面迈出的重要一步。