Small RNAs (sRNAs) are widespread across diverse flowering plant species and play important roles regulating reproduction and environmental responses. However, how sRNAs exert their function is largely unknown, likely due to their typical origin in non-genic regions, the lack of distinct gene targets, and the sparse characterization of their associated Argonaute (AGO) effector proteins. Here we show that
Arabidopsis
male reproductive sRNAs associate with AGO4, 5, 6 and 9, all of which are enriched in meiocytes along with RNA Polymerase V (Pol V). This enables these sRNAs to methylate loci with imperfect sequence homology. AGO4, AGO6 and AGO9 predominantly load 24-nucleotide (nt) Pol IV-derived sRNAs and mediate DNA methylation in meiocytes in a dosage-dependent manner. Despite closer homology to microRNA-associated AGO1 and AGO10, AGO5 primarily binds CLSY3- and Pol IV-derived 21-24 nt sRNAs. Transcriptomic and methylomic analyses of meiocytes from single and compound
ago
mutants demonstrate distinct yet complementary roles of AGO4/6/9 and AGO5 in regulating protein-coding genes and silencing transposons in the germline. These molecular disruptions are accompanied by significant meiotic defects. Together, our findings reveal how AGO4/6/9-mediated DNA methylation and AGO5, likely acting through post-transcriptional gene silencing, work together to promote male germline development.
In addition to microRNAs (miRNAs), some small interfering RNAs (siRNAs) such as trans-acting siRNAs are also associated with ARGONAUTE 1 (AGO1) for target cleavage in plants. Efficient identification of the AGO1-enriched small RNAs (sRNAs) and their targets became a challenging task. Here, we emphasized the utility of...
Zhi-Fang Jiang, Ze-Di Feng, Yi-Lin Dong et al.· Plant, Cell and Environment· 0 citations
Human Dicer (hDicer) is a key enzyme in the RNA interference (RNAi) pathway that generates ∼21-22 nt micro-RNA (miRNAs) and small interfering RNAs (siRNAs). We have previously shown that hDicer also generates tRNA-derived small RNAs (tsRNAs), which mediate nuclear gene silencing and regulate hundreds of disease-associa...
Arianna Di Fazio, S. Hirschi, F. Battistini et al.· bioRxiv· 0 citations
This work systematically investigates the pairing architectures that enable plant TM-directed miRNA degradation (pTDMD), and identifies endogenous TMs with alternative pairing architectures, including EARLY NODULIN-LIKE PROTEIN5 (ENODL5), which fine-tunes miR159 levels during Arabidopsis floral development in an HWS-de...
You-Hong Fan, Guo-Dong Ren· The Plant Cell· 0 citations
Systemically characterize the proximity proteome of the PIWI members Piwi, Aubergine (Aub), and Ago3 in the germline of Drosophila ovaries and uncover a noncanonical function of Set1 in Piwi-mediated TE silencing in germline nuclei.
Wakana Isshiki, H. Kozuka-Hata, M. Oyama et al.· EMBO Reports· 0 citations
Piwi-interacting RNAs (piRNAs) are small non-coding RNAs essential for transposon silencing and germline integrity across metazoans. In many species, piRNA expression is sexually dimorphic, yet the molecular mechanisms underlying this sex specificity remain poorly understood. In Caenorhabditis elegans, sexually dimorph...
L. Benner, Margaret R. Starostik, Rebecca J. Tay et al.· bioRxiv· 0 citations
It is proposed that Sov acts as a molecular scaffold in piRNA-guided transposon silencing, integrating transposon recognition with cotranscriptional RNA decay and chromatin-based regulatory pathways.
Z. Földi, Melinda Bence, Zsanett Takács et al.· bioRxiv· 0 citations
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