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Vieira, J. G. P.

Publications and source records attributed to Vieira, J. G. P..

2 recordsLinked to original sources

bZIP63 misregulation affects growth and target gene expression under short-day photoperiods

Plant survival and growth depend partly on the ability to manage energy resources in response to changing environmental conditions. SnRK1 plays a central role in this process by restricting growth under energy-limiting conditions while promoting stress adaptation and survival. When activated, SnRK1 triggers transcriptional reprogramming that prioritizes energy-producing pathways. A key mediator of this response is the transcription factor bZIP63, whose activity is regulated by SnRK1-dependent phosphorylation. Given its roles in energy homeostasis and its interaction with the circadian clock, bZIP63 influences growth and is therefore a candidate component of the Metabolic Daylength Measurement (MDLM) system, which integrates starch and sucrose metabolism with circadian timing and photosynthetic duration to regulate vegetative growth under contrasting photoperiods. We show that 39 bZIP63 direct targets regulated by SnRK1 correspond to a subset of short-day-induced genes associated with the MDLM system and are downregulated in a bZIP63 T-DNA mutant (bzip63-2) and/or in an RNAi-induced silencing line (RNAiWs_L9). Downregulation of these genes was more extensive in RNAiWs_L9 than in bzip63-2, possibly due to the unexplained silencing of BAM4, a {beta}-amylase that promotes starch degradation. Under short-day conditions, the frameshift mutant bzip63-5 (Col-0), bzip63-2 (Ws), and the bzip1-1/bzip53-1/bzip63-5 (Col-0) triple mutant, which disrupts bZIP63 heterodimerization partners, showed similar deregulation of a subset of these genes and comparable growth inhibition, whereas both growth and gene deregulation were more strongly affected in RNAiWs_L9. We further show in two partially complemented bzip63-2 lines that bZIP63 protein levels increase toward the end of the night and decline toward the end of the day, in synchrony with the diel oscillation of its transcript. Additional analyses of these lines, together with bzip63-2 line overexpressing bZIP63, suggest that the timing and amplitude of bZIP63 accumulation contribute to shaping the expression profiles of a subset of the 39 MDLM-associated genes. Together, these findings indicate that bZIP63 participates in a regulatory network linking SnRK1 signaling, photoperiod-changes, and growth within the MDLM system.

plant biology↗

Regulation of PYR/PYL/RCAR ABA receptors mRNA stability: involvement of miR5628 in decay of PYL6 mRNA

Hormone signaling fine-tuning involves feedback regulatory loops. Abscisic acid (ABA) plays key functions in development and tolerance to abiotic stress. ABA is sensed by the PYR/PYL/RCAR receptors and it also represses their gene expression. Conversely, ABA induces PP2C phosphatases expression, which are negative regulators of the ABA signaling pathway. This feedback regulatory scheme is likely important for the modulation of ABA signal transduction. Here, we provide a new insight into the mechanisms underlying the ABA-induced negative control of PYR/PYL/RCAR expression in Arabidopsis thaliana. The strong and sustained repression of PYR/PYL/RCARs revealed by ABA time course treatment defines the regulation of receptors genes as an important step in resetting the ABA signaling pathway. Transcription inhibition by cordycepin showed that destabilization of PYL1/4/5/6 mRNA is involved in ABA-induced repression of these genes. Furthermore, genetic evidence indicated that decapping may play a role in PYL4/5/6 mRNAs decay. In addition, we provide evidence that the Arabidopsis-specific microRNA5628 (miR5628), which is transiently induced by the ABA core signaling pathway, guides the cleavage of PYL6 transcript in response to ABA. After cleavage, the resulting RISC 5- and 3-cleaved fragments of PYL6 mRNA may be degraded by exoribonuclease XRN4. MiR5628 is an evolutionary novelty that may contribute, with decapping and XRN4 activities, to enhance PYL6 mRNA degradation. Thus, control of stability of PYR/PYL/RCAR transcripts is an important step in maintaining homeostasis of ABA signaling. One Sentence SummaryAttenuation of ABA signaling involves destabilization of PYL1/4/5/6 transcripts. ABA core signaling induces miR5628 expression to enhance PYL6 mRNA degradation in conjunction with decapping and XRN4 activities.

plant biology↗