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Updated: Sep 8, 2026

Potato Virus X-Based microRNA Silencing (VbMS) In Potato.
Published on: May 11, 2020
Expanding the repertoire of microRNA target mimicry in plants
1State Key Laboratory of Genetics and Development of Complex Phenotypes, Zhangjiang mRNA Innovation and Translation Center, School of Life Sciences, Fudan University, Shanghai 200438, China.
Abstract:
microRNAs (miRNAs) are master regulators of gene expression, guiding ARGONAUTE proteins to bind to and repress target RNAs. Interestingly, a special class of target RNAs, termed target mimics (TMs), can in turn trigger miRNA degradation in plants-a process genetically dependent on the F-box protein HAWAIIAN SKIRT (HWS). However, the pairing rules governing effective TM sites remain unclear. Here, we systematically investigate the pairing architectures that enable plant TM-directed miRNA degradation (pTDMD). Using transient expression in Nicotiana benthamiana leaves and validation in stable Arabidopsis thaliana transgenic lines, we demonstrate that effective TM sites contain a central or near-central unpaired region-classified as insertions (I-type), mismatches (X-type), or deletions (D-type)-flanked by complementary segments. I-type sites tolerate considerable variation in bulge size and position, whereas X- and D-types are more constrained. By incorporating these features into a predictive pipeline, we identified endogenous TMs with alternative pairing architectures, including EARLY NODULIN-LIKE PROTEIN5 (ENODL5), which fine-tunes miR159 levels during Arabidopsis floral development in an HWS-dependent manner. Duplex stability and non-coding context also contribute to TM efficacy. Together, our findings establish a robust empirical framework for understanding, designing, and predicting miRNA TMs in plants.
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