Key laboratory for Molecular Animal Nutrition, Ministry of Education, Innovation Center for Signaling Network, College of Life Sciences, Zhejiang University, 866 Yu Hang Tang Road, Hangzhou, 310058, China.
Institute of Molecular Medicine, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, and State Key Laboratory of Natural and Biomimetic Drugs, Peking University, Beijing, 100871, China.
Sci Rep. 2017 Sep 4;7(1):10381. doi: 10.1038/s41598-017-10968-w.
Conventional genetic screens for recessive mutants are inadequate for studying biological processes in the adult vertebrate due to embryonic lethality. Here, we report that a novel inducible mutagenesis system enables to study gene function in both embryonic and adult zebrafish. This system yields genetic mutants with conditional ectopic over- or under-expression of genes in F heterozygotes by utilizing inducible Tet-On transcriptional activation of sense or anti-sense transcripts from entrapped genes by Tol2 transposase-meditated transgenesis. Pilot screens identified 37 phenotypic mutants displaying embryonic defects (34 lines), adult fin regeneration defects (7 lines), or defects at both stages (4 lines). Combination of various techniques (such as: generating a new mutant allele, injecting gene specific morpholino or mRNA etc) confirms that Dox-induced embryonic abnormalities in 10 mutants are due to dysfunction of entrapped genes; and that Dox-induced under-expression of 6 genes causes abnormal adult fin regeneration. Together, this work presents a powerful mutagenesis system for genetic analysis from zebrafish embryos to adults in particular and other model organisms in general.
由于胚胎致死性,传统的隐性突变体遗传筛选方法不适合研究成年脊椎动物的生物学过程。在这里,我们报告了一种新的诱导性突变系统,可用于研究斑马鱼胚胎和成年期的基因功能。该系统利用 Tol2 转座酶介导的转基因将 entrapped 基因的有义或反义转录物诱导性 Tet-On 转录激活,从而在 F 杂合子中实现条件异位过表达或过表达基因的遗传突变体。初步筛选鉴定出 37 种表型突变体,显示胚胎缺陷(34 条线)、成年鳍再生缺陷(7 条线)或两个阶段都有缺陷(4 条线)。各种技术的组合(例如:产生新的突变等位基因、注射基因特异性 morpholino 或 mRNA 等)证实,10 个突变体中 Dox 诱导的胚胎异常是由于 entrapped 基因功能障碍引起的;并且 6 个基因的 Dox 诱导性低表达导致成年鳍再生异常。总之,这项工作提出了一种强大的突变系统,特别适用于从斑马鱼胚胎到成年期的遗传分析,以及其他模式生物的一般分析。