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一种新型 microRNA 及其靶标控制淡水虾生长长度。

A novel microRNA and its target control growth length in the freshwater shrimp .

机构信息

Tianjin Key Laboratory of Animal and Plant Resistance, College of Life Science, Tianjin Normal University, Tianjin 300387, China.

Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

出版信息

J Exp Biol. 2020 Jul 8;223(Pt 13):jeb223529. doi: 10.1242/jeb.223529.

Abstract

MicroRNAs (miRNAs) are small non-coding RNAs that negatively regulate gene expression and play roles in a wide range of physiological processes, including ontogenesis. Herein, we discovered a novel miRNA, novel miR-26, which inhibits translation of the phosphofructokinase (PFK) gene by targeting the 3' untranslated region (UTR) of directly, thereby inhibiting molting and body length growth of the freshwater shrimp Lowering expression of by RNA interference (RNAi) led to a longer ecdysis cycle and smaller individuals. This phenotype was mirrored in shrimps injected with novel miR-26 agomirs, but the opposite phenotype occurred in shrimps injected with novel miR-26 antagomirs (i.e. the ecdysis cycle was shortened and body length was increased). After injection of 20-hydroxyecdysone (ecdysone 20E), expression of the novel miR-26 was decreased, while expression of was up-regulated, and the fructose-1,6-diphosphate metabolite of PFK accumulated correspondingly. Furthermore, expression of eIF2 (eukaryotic initiation factor 2) increased under stimulation with fructose-1,6-diphosphate, suggesting that protein synthesis was stimulated during this period. Taken together, our results suggest that the novel miR-26 regulates expression of and thereby mediates the molting and growth of .

摘要

微小 RNA(miRNA)是一种小的非编码 RNA,可负调控基因表达,并在包括个体发生在内的广泛生理过程中发挥作用。在此,我们发现了一种新的 miRNA,即 novel miR-26,它通过直接靶向 3'非翻译区(UTR)来抑制磷酸果糖激酶(PFK)基因的翻译,从而抑制淡水虾的蜕皮和体长生长。通过 RNA 干扰(RNAi)降低 的表达会导致蜕皮周期延长和个体变小。用 novel miR-26 agomirs 注射的虾表现出这种表型,而用 novel miR-26 antagomirs(即蜕皮周期缩短,体长增加)注射的虾则表现出相反的表型。在注射 20-羟基蜕皮酮(蜕皮酮 20E)后,novel miR-26 的表达降低,而 的表达上调,PFK 的果糖-1,6-二磷酸代谢物相应积累。此外,在受到果糖-1,6-二磷酸刺激时,eIF2(真核起始因子 2)的表达增加,表明在此期间蛋白质合成受到刺激。总之,我们的结果表明,novel miR-26 调节 的表达,从而介导 的蜕皮和生长。

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