Qian Ping, Jiang Tao, Wang Xin, Song Fei, Chen Chen, Shen Xingjia
Jiangsu Key Laboratory of Sericultural Biology and Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu, China.
Key Laboratory of Silkworm and Mulberry Genetic Improvement, Ministry of Agriculture, Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, Jiangsu, China.
PLoS One. 2018 Jan 30;13(1):e0190464. doi: 10.1371/journal.pone.0190464. eCollection 2018.
We hypothesized that bmo-miR-275 has a potential regulatory function regarding the expression of sericin gene 2 (BmSer-2). First, we examined the expression of bmo-miR-275 and its target gene BmSer-2 in seven different tissues from 5th instar day-3 silkworm larvae. The results showed that they were both specifically expressed in the middle silk gland, implying that spatio-temporal conditions are required for bmo-miR-275 to regulate the expression of BmSer-2. To test this hypothesis, we constructed a pri-bmo-miR-275 expressing plasmid pcDNA3.0 [ie1-egfp-pri-bmo-miR-275-SV40] and BmSer-2-3´UTR recombinant reporter plasmids pGL3.0 [A3-luc-Ser-2-3' UTR-SV40]. Finally, BmN cells were harvested and luciferase activity was detected. Results showed that luciferase activity was reduced significantly (P<0.05) in BmN cells co-transfected with pcDNA3.0 [ie1-egfp-pri-bmo-miR-275-SV40] and pGL3.0 [A3-luc-Ser-2-3'UTR-SV40], suggesting that bmo-miR-275 can down-regulate the expression of BmSer-2 in vitro. Our results improve the understanding of the regulatory function of Bombyx mori miRNA on the expression of genes regulating silk formation.
我们推测bmo-miR-275对丝胶蛋白基因2(BmSer-2)的表达具有潜在调控作用。首先,我们检测了bmo-miR-275及其靶基因BmSer-2在5龄3天家蚕幼虫7种不同组织中的表达情况。结果表明,它们均在中部丝腺中特异性表达,这意味着bmo-miR-275调控BmSer-2的表达需要特定的时空条件。为验证这一推测,我们构建了表达pri-bmo-miR-275的质粒pcDNA3.0 [ie1-egfp-pri-bmo-miR-275-SV40] 和BmSer-2-3´UTR重组报告质粒pGL3.0 [A3-luc-Ser-2-3' UTR-SV40]。最后,收集BmN细胞并检测荧光素酶活性。结果显示,共转染pcDNA3.0 [ie1-egfp-pri-bmo-miR-275-SV40] 和pGL3.0 [A3-luc-Ser-2-3'UTR-SV40] 的BmN细胞中荧光素酶活性显著降低(P<0.05),表明bmo-miR-275在体外可下调BmSer-2的表达。我们的研究结果有助于增进对家蚕miRNA在调控丝蛋白形成相关基因表达方面调控功能的理解。