Biological Science Research Center, Southwest University, Chongqing 400716, People's Republic of China.
Chongqing Key Laboratory of Sericulture Science, Southwest University, Chongqing 400716, People's Republic of China.
Development. 2020 Apr 12;147(8):dev183723. doi: 10.1242/dev.183723.
Vitellogenin receptors (VgRs) play crucial roles in oogenesis by mediating endocytosis of vitellogenin and other nutrients in ovipara. We conducted small RNA sequencing and screening with a luciferase reporter system, and found that bmo-miR-2739 and a novel miRNA (novel-miR-167) coordinately regulate the expression of in (). Further analyses suggested that these two miRNAs direct target repression by binding directly to the 3' untranslated region. Forced expression of either miRNA using the system blocked vitellogenin (Vg) transport and retarded ovariole development. Antagomir silencing of bmo-miR-2739 or novel-miR-167 resulted in increased amounts of BmVgR protein in the ovaries and mRNA in the fat body. This evidence, combined with spatiotemporal expression profiles, revealed that these two miRNAs function together to fine-tune the amount of BmVgR protein for ovarian development. Additionally, novel-miR-167 was mainly responsible for the post-transcriptional repression of in non-ovarian tissues. The results of this study contribute to our understanding of the function of miRNAs during ovarian development of a lepidopteran and suggest a new strategy for controlling insect reproduction.
卵黄蛋白受体 (VgRs) 在卵生动物的卵子发生中通过介导卵黄蛋白和其他营养物质的内吞作用发挥关键作用。我们通过荧光素酶报告系统进行了小 RNA 测序和筛选,发现 bmo-miR-2739 和一种新的 miRNA (novel-miR-167) 协同调节 ()的表达。进一步的分析表明,这两种 miRNA 通过直接结合到 3'非翻译区来指导靶基因的抑制。使用 系统强制表达这两种 miRNA 中的任何一种都会阻断卵黄蛋白 (Vg) 的运输并延迟卵巢管的发育。bmo-miR-2739 或 novel-miR-167 的反义寡核苷酸沉默会导致卵巢中 BmVgR 蛋白和脂肪体中 mRNA 的增加。这些证据,结合时空表达谱,表明这两种 miRNA 共同作用以微调 BmVgR 蛋白的数量,从而促进卵巢发育。此外,novel-miR-167 主要负责非卵巢组织中 的转录后抑制。这项研究的结果有助于我们了解 miRNA 在鳞翅目昆虫卵巢发育过程中的功能,并为控制昆虫生殖提供了一种新策略。