Widespread occurrence of microRNA-mediated target cleavage on membrane-bound polysomes

Author:

Yang Xiaoyu,You Chenjiang,Wang Xufeng,Gao Lei,Mo Beixin,Liu Lin,Chen XuemeiORCID

Abstract

AbstractBackgroundSmall RNAs (sRNAs) including microRNAs (miRNAs) and small interfering RNAs (siRNAs) serve as core players in gene silencing at transcriptional and post-transcriptional levels in plants, but their subcellular localization has not yet been well studied, thus limiting our mechanistic understanding of sRNA action.ResultsWe investigate the cytoplasmic partitioning of sRNAs and their targets globally in maize (Zea mays, inbred line “B73”) and rice (Oryza sativa, cv. “Nipponbare”) by high-throughput sequencing of polysome-associated sRNAs and 3′ cleavage fragments, and find that both miRNAs and a subset of 21-nucleotide (nt)/22-nt siRNAs are enriched on membrane-bound polysomes (MBPs) relative to total polysomes (TPs) across different tissues. Most of the siRNAs are generated from transposable elements (TEs), and retrotransposons positively contributed to MBP overaccumulation of 22-nt TE-derived siRNAs (TE-siRNAs) as opposed to DNA transposons. Widespread occurrence of miRNA-mediated target cleavage is observed on MBPs, and a large proportion of these cleavage events are MBP-unique. Reproductive21PHAS(21-nt phasiRNA-generating) and24PHAS(24-nt phasiRNA-generating) precursors, which were commonly considered as noncoding RNAs, are bound by polysomes, and high-frequency cleavage of21PHASprecursors by miR2118 and24PHASprecursors by miR2275 is further detected on MBPs. Reproductive 21-nt phasiRNAs are enriched on MBPs as opposed to TPs, whereas 24-nt phasiRNAs are nearly completely devoid of polysome occupancy.ConclusionsMBP overaccumulation is a conserved pattern for cytoplasmic partitioning of sRNAs, and endoplasmic reticulum (ER)-bound ribosomes function as an independent regulatory layer for miRNA-induced gene silencing and reproductive phasiRNA biosynthesis in maize and rice.

Funder

National Key Research and Development Program of China

Guangdong Innovation Research Team Fund

Shenzhen High-level Talents Research Fund

Natural Science Foundation of Guangdong Province

Postdoctoral Research Foundation of China

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

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