Aug 2026· Journal of plant physiology· Vol 325, pp.
154868
· 0 citations· 158 references
Medicine
TL;DR
This review provides an integrated framework for understanding IR as a central regulatory hub in plant post-transcriptional control, including the IR-nonsense-mediated mRNA decay (NMD) axis, functional protein isoforms, and nuclear transcript reservoirs for rapid stress memory.
Abstract
Alternative splicing (AS) greatly expands transcriptome and proteome diversity in eukaryotes. Intron retention (IR) is the predominant AS type in plants, with critical roles in environmental adaptation and developmental control. Long viewed as splicing noise, IR is now established as a precisely regulated mechanism that modulates RNA stability, translation, subcellular localization, and protein function. Here, we review recent advances in plant IR research, covering technical progress in accurate IR identification using long-read and single-cell sequencing, cis- and trans-regulatory mechanisms, epigenetic coupling with transcription, and signal integration pathways. We highlight key functions of IR in flowering time regulation and stress responses, including the IR-nonsense-mediated mRNA decay (NMD) axis, functional protein isoforms, and nuclear transcript reservoirs for rapid stress memory. Finally, we discuss unresolved questions and future directions toward single-cell spatiotemporal dynamics, phase separation, and synthetic IR modules for crop improvement. This review provides an integrated framework for understanding IR as a central regulatory hub in plant post-transcriptional control.
How splicing-dependent and splicing-independent activities are integrated are discussed and a framework in which splicing factors act as regulatory hubs coordinating gene expression across multiple layers is proposed.
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Current advances in the understanding of the interplay between alternative splicing, chromatin remodeling, and cell cycle regulation in plants are discussed, highlighting how these processes might contribute to developmental plasticity and environmental adaptation while identifying key gaps that remain to be addressed.
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Upstream open reading frames (uORFs) are pervasive cis-regulatory elements in the 5′untranslated regions (UTRs) of eukaryotic mRNAs that modulate translation of downstream main open reading frames (mORFs) by shaping ribosome scanning, initiation, and reinitiation. By operating downstream of transcription, uORFs enable...
This review describes how spliceosome assembly, splicing regulatory elements, splicing factors, epigenetic modifications, and post-transcriptional processes determine splice-site selection and suggests that safe clinical translation will require greater selectivity, reduced off-target toxicity, and preservation of esse...
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The most comprehensive, tissue-resolved alternative splicing dataset in Caenorhabditis elegans to date is presented, spanning three major tissue types from early embryogenesis to adulthood, and broad developmental and tissue-regulated alternative splicing trends are uncovered and putative RNA-binding proteins are ident...
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