Literature DB >> 26792284

Efficient and specific inhibition of plant microRNA function by anti-microRNA oligonucleotides (AMOs) in vitro and in vivo.

Lian He1,2, Munan Xie1, Jianhua Huang1, Tianyuan Zhang1,3, Suhua Shi1,3, Tian Tang4,5.   

Abstract

KEY MESSAGE: Anti-microRNA oligonucleotides (AMOs) are efficient and sequence-specific inhibitors of plant miRNA function both in vitro and in vivo. MicroRNAs (miRNAs) are small non-coding RNAs that play critical roles in developmental and physiological processes in plants and animals. Although miRNA knockdown by chemically modified antisense oligonucleotides prevails in animal and therapeutic studies, no such application has ever been reported in plants. Here, we show that sucrose-mediated delivery of 2'-O-methyl (2'-O-Me) anti-miRNA oligonucleotides (AMOs) is an efficient and sequence-specific way of inhibiting plant miRNA activity both in vitro and in vivo. Administration of AMOs to rice protoplasts and intact leaves resulted in efficient inhibition of miRNAs with concurrent de-repression of their target genes. AMOs caused simultaneous inhibition of miRNAs from the same family but exerted negligible effects on miRNAs from different families. In rice seedlings, a single-dose AMO treatment conferred long-lasting miRNA inhibition for at least 7 days. Although simultaneous dysregulation of multiple miRNAs by an AMO-and-miRNA-mimic mixture resulted in severe root defects, the phenotypic effects of individual AMOs and miRNA mimics were negligible, suggesting that those miRNAs function together in regulatory networks to ensure homeostasis. Our results validate the utility of AMOs as an efficient tool for plant miRNA loss-of-function studies in vivo, and this approach may prove to be a highly promising general method for unraveling miRNA-mediated gene-regulatory networks.

Entities:  

Keywords:  Anti-microRNA oligonucleotides (AMOs); Loss of function; Regulatory networks; microRNA

Mesh:

Substances:

Year:  2016        PMID: 26792284     DOI: 10.1007/s00299-016-1933-y

Source DB:  PubMed          Journal:  Plant Cell Rep        ISSN: 0721-7714            Impact factor:   4.570


  51 in total

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3.  Expression Variations of miRNAs and mRNAs in Rice (Oryza sativa).

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4.  Relationship between reduction in rice (Nipponbare) leaf blade size under elevated CO2 and miR396-GRF module.

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5.  Redundant and incoherent regulations of multiple phenotypes suggest microRNAs' role in stability control.

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