Guo Xiu-Ming, Huang Chuang-Xin, Shen Rui-Jie, Jiang Xia-Yun, Chen Jie, Zou Shu-Ming
Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture, Shanghai Ocean University, Shanghai 201306, China E-mail:
Yi Chuan. 2013 Aug;35(8):999-1006. doi: 10.3724/sp.j.1005.2013.00999.
To study insertion efficiency of goldfish Tgf2 transposon in the genome of Megalobrama amblycephala, we built Tgf2-Mlyz2-RFP donor plasmid with goldfish Tgf2 transposon left and right arms, and then co-injected with goldfish Tgf2 transposase mRNA into the 1-2 cell stage fertilized eggs of M. amblycephala. In 30 d- and 180 d-stage larval, RFP fluorescence can be observed in back and side muscle of the fish. The rate of RFP fluorescence expression was 48.1%. In adult fish, PCR results demonstrated that integration efficiency of goldfish Tgf2 transposition system was 31.5% in M. am-blycephala genome. RT-PCR analysis showed that RFP RNAs were highly transcribed among all the 12 tissues in three transgenic fishes, while it could be highly detected only in muscle, skin, and kidney in another two individuals. Our results suggested that RFP expression in tissues vaied among different M. amblycephala. By means of the inverse PCR, the copy numbers of Tgf2 transposon were at least 2 in transgenic M. amblycephala. The average copy number of each fish was about 5. Over 50% of flanking sequences at the insertion site have homologous sequence in other vertebrate species. Our data suggest that goldfish Tgf2 transposon can efficiently mediate gene insertion in M. amblycephala, which could been used in transgene and gene trap in M. amblycephala.
为研究金鱼Tgf2转座子在团头鲂基因组中的插入效率,我们构建了带有金鱼Tgf2转座子左臂和右臂的Tgf2-Mlyz2-RFP供体质粒,然后将其与金鱼Tgf2转座酶mRNA共同注射到团头鲂1-2细胞期的受精卵中。在30日龄和180日龄的幼鱼中,可在鱼的背部和侧部肌肉中观察到RFP荧光。RFP荧光表达率为48.1%。在成鱼中,PCR结果表明金鱼Tgf2转座系统在团头鲂基因组中的整合效率为31.5%。RT-PCR分析表明,在三条转基因鱼的所有12个组织中RFP RNA均有高转录,而在另外两条鱼中仅在肌肉、皮肤和肾脏中能高检测到。我们的结果表明,不同团头鲂个体组织中的RFP表达存在差异。通过反向PCR,转基因团头鲂中Tgf2转座子的拷贝数至少为2。每条鱼的平均拷贝数约为5。插入位点侧翼序列超过50%在其他脊椎动物物种中有同源序列。我们的数据表明金鱼Tgf2转座子可有效地介导团头鲂中的基因插入,可用于团头鲂的转基因和基因捕获。