RNA干扰
转基因
生物
基因
遗传学
黑腹果蝇
计算生物学
组蛋白
细胞生物学
核糖核酸
作者
Huanhuan Qiao,Fang Wang,Rong‐Gang Xu,Jin Sun,Ruibao Zhu,Decai Mao,Xingjie Ren,Xia Wang,Yu Jia,Ping Peng,Da Shen,Luping Liu,Zhijie Chang,Guirong Wang,Shao Li,Jun‐Yuan Ji,Qingfei Liu,Jian‐Quan Ni
标识
DOI:10.1038/s41467-018-06537-y
摘要
Being relatively simple and practical, Drosophila transgenic RNAi is the technique of top priority choice to quickly study genes with pleiotropic functions. However, drawbacks have emerged over time, such as high level of false positive and negative results. To overcome these shortcomings and increase efficiency, specificity and versatility, we develop a next generation transgenic RNAi system. With this system, the leaky expression of the basal promoter is significantly reduced, as well as the heterozygous ratio of transgenic RNAi flies. In addition, it has been first achieved to precisely and efficiently modulate highly expressed genes. Furthermore, we increase versatility which can simultaneously knock down multiple genes in one step. A case illustration is provided of how this system can be used to study the synthetic developmental effect of histone acetyltransferases. Finally, we have generated a collection of transgenic RNAi lines for those genes that are highly homologous to human disease genes.
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