A leaf-expressedTERMINAL FLOWER1ortholog from coffee with alternate splice forms alters flowering time and inflorescence branching inArabidopsis DOI Creative Commons
Carlos Henrique Cardon,

Victoria Lesy,

Catherine Fust

и другие.

bioRxiv (Cold Spring Harbor Laboratory), Год журнала: 2024, Номер unknown

Опубликована: Авг. 15, 2024

ABSTRACT Perennial, polycarpic species, such as Coffea sp L. (coffee), exhibit asynchronous flowering while maintaining concomitant vegetative growth. This growth dichotomy is associated directly with fruit development and maturation time. To identify molecular components that underlie flowering, we isolated phosphatidylethanolamine binding protein (PEBP) homologs expressed in coffee identified a gene high similarity to Arabidopsis TERMINAL FLOWER1-like . In Arabidopsis, interaction of TFL1 (AtTFL1) bZIP transcription factor floral regulator FD (AtFD) forms repressor complex maintains inflorescence meristems an indeterminate state. Unlike AtTFL1 , which only the shoot apical meristem, CaTFL1 transcript was detected exclusively leaves. Moreover, this retained intron, not reported for characterized through heterologous expression analysis. Ectopic overexpression transgenic plants caused extreme late or prevented flowering. However, most severe repressive activity occurred spliced out extra intron from Yeast two hybrid assay revealed encoded by mRNA interacts AtFD, well 14-3-3 protein. These findings suggest acts leaf-expressed repressor, whose controlled alternate splicing, may contribute coffee.

Язык: Английский

Layers of crosstalk between circadian regulation and environmental signalling in plants DOI Creative Commons
Pirita Paajanen, Luíza Lane de Barros Dantas, Antony N. Dodd

и другие.

Current Biology, Год журнала: 2021, Номер 31(8), С. R399 - R413

Опубликована: Апрель 1, 2021

Язык: Английский

Процитировано

25

Circadian regulation of the transcriptome in a complex polyploid crop DOI Creative Commons
Hannah Rees, Rachel Rusholme‐Pilcher, Paul Bailey

и другие.

PLoS Biology, Год журнала: 2022, Номер 20(10), С. e3001802 - e3001802

Опубликована: Окт. 13, 2022

The circadian clock is a finely balanced timekeeping mechanism that coordinates programmes of gene expression. It currently unknown how the regulates expression homoeologous genes in polyploids. Here, we generate high-resolution time-course dataset to investigate balance between sets 3 (triads) from hexaploid bread wheat. We find large proportion triads exhibit imbalanced rhythmic patterns, with no specific subgenome favoured. In wheat, period lengths transcripts are found be longer and have higher level variance than other plant species. Expression associated controlled biological processes largely conserved wheat Arabidopsis; however, striking differences seen agriculturally critical such as starch metabolism. Together, this work highlights ongoing selection for versus diversification homoeologs identifies clock-controlled pathways might provide important targets future breeding.

Язык: Английский

Процитировано

19

Spatially specific mechanisms and functions of the plant circadian clock DOI Creative Commons
William M. Davis, Motomu Endo, James Locke

и другие.

PLANT PHYSIOLOGY, Год журнала: 2022, Номер 190(2), С. 938 - 951

Опубликована: Май 28, 2022

Abstract Like many organisms, plants have evolved a genetic network, the circadian clock, to coordinate processes with day/night cycles. In plants, clock is pervasive regulator of development and modulates aspects physiology. Clock-regulated range from correct timing growth cell division interactions root microbiome. Recently developed techniques, such as single-cell time-lapse microscopy RNA-seq, are beginning revolutionize our understanding this regulation, revealing surprising degree organ, tissue, cell-type specificity. review, we highlight recent advances in spatial view across plant, both terms how it regulated regulates diversity output processes. We outline these spatially specific functions will help reveal ways that provides fitness benefit for plant.

Язык: Английский

Процитировано

17

Circadian- and Light-Driven Rhythmicity of Interconnected Gene Networks in Olive Tree DOI Open Access
Ivano Forgione, Tiziana Maria Sirangelo,

G. Godino

и другие.

International Journal of Molecular Sciences, Год журнала: 2025, Номер 26(1), С. 361 - 361

Опубликована: Янв. 3, 2025

A circadian clock (CC) has evolved in plants that synchronizes their growth and development with daily seasonal cycles. properly functioning contributes to increasing plant growth, reproduction, competitiveness. In plants, continuous light treatment been a successful approach for obtaining novel knowledge about the clock. The olive tree (Olea europaea L.) is one of most important crops Mediterranean area, and, so far, limited information available on its CC gene network. Here, we studied behavior rhythm genes under LD (light/darkness) LL (light/light) conditions, relationships this network, ability treatments modulate expression photoprotective pigment lipid biosynthesis pathways. One month conditions increased performance, but exposure also caused reductions vegetative chlorophyll accumulation. panel was designed study transcription levels involved perception, CC, secondary metabolite fatty acid biosynthesis. Our results revealed 78% transcripts exhibited intraday differences them retained rhythmicity after two months conditions. Furthermore, co-regulation within complex network among photoreceptors, anthocyanidins, acids orchestrated by factor HY5. This research enriches our trees grown prolonged irradiation, which may be attractive scientific community breeding programs improvement species.

Язык: Английский

Процитировано

0

Stable and dynamic gene expression patterns over diurnal and developmental timescales in Arabidopsis thaliana DOI Creative Commons
Ethan J. Redmond, James Ronald, Seth J Davis

и другие.

New Phytologist, Год журнала: 2025, Номер unknown

Опубликована: Март 20, 2025

Developmental processes are known to be circadian-regulated in plants. For instance, the circadian clock regulates genes involved photoperiodic flowering pathway and initiation of leaf senescence. Furthermore, signals that entrain clock, such as energy availability, vary strength over plant development. However, diel oscillations Arabidopsis transcriptome have typically been measured seedlings. We collected RNA sequencing (RNA-seq) data from leaves developmental timescales, concurrently: every 4 h d-1, on three separate days after a synchronised vegetative-to-reproductive transition. Gene expression varied more timescale than timescale, including related key sensor: sucrose nonfermenting-1-related protein kinase complex. Moreover, regulatory targets core displayed changes rhythmicity amplitude Cell-type-specific showed patterns amplitude, but not phase, Some previously identified reverse transcription quantitative polymerase chain reaction housekeeping display undesirable levels variation both timescales. identify which common most stable across In summary, we establish transcriptional regulation development, demonstrating how change

Язык: Английский

Процитировано

0

Circadian coordination of cellular processes and abiotic stress responses DOI Creative Commons
Titouan Bonnot,

Emily J. Blair,

Samantha J. Cordingley

и другие.

Current Opinion in Plant Biology, Год журнала: 2021, Номер 64, С. 102133 - 102133

Опубликована: Ноя. 10, 2021

Diel changes in the environment are perceived by circadian clock which transmits temporal information throughout plant cell to synchronize daily and seasonal environmental signals with internal biological processes. Dynamic modulations of diverse levels gene regulation within impacted stress. Recent insights into control cellular processes such as alternative splicing, polyadenylation, noncoding RNAs discussed. We highlight studies on reactive oxygen species, calcium signaling, gating temperature stress responses. Finally, we briefly summarize recent work translation-specific rhythmicity cycle genes subcellular localization relocalization oscillator components. Together, this mini-review highlights these events context responses Arabidopsis.

Язык: Английский

Процитировано

22

The circadian clock and thermal regulation in plants: novel insights into the role of positive circadian clock regulators in temperature responses DOI
María José de Leone, Marcelo J. Yanovsky

Journal of Experimental Botany, Год журнала: 2024, Номер 75(10), С. 2809 - 2818

Опубликована: Фев. 19, 2024

Abstract The impact of rising global temperatures on crop yields is a serious concern, and the development heat-resistant varieties crucial for mitigating effects climate change agriculture. To achieve this, better understanding molecular basis thermal responses plants necessary. circadian clock plays central role in modulating plant biology synchrony with environmental changes, including temperature fluctuations. Recent studies have uncovered transcriptional activators core network responses. This expert view highlights key novel findings regarding RVE LNK gene families controlling expression patterns growth under different conditions, ranging from regular diurnal oscillations to extreme stress temperatures. These reinforce essential adaptation changing provide future improvement.

Язык: Английский

Процитировано

3

Regulatory principles of photoperiod-driven clock function in plants DOI Creative Commons

Alberto González-Delgado,

José M. Jiménez‐Gómez, Krzysztof Wabnik

и другие.

Trends in Plant Science, Год журнала: 2025, Номер unknown

Опубликована: Фев. 1, 2025

The circadian clock provides a fundamental timing mechanism for plant fitting to seasonal changes in the photoperiod. Although photoperiodic regulation of developmental transition has been studied several species, our understanding core parallelisms across species is sparse. Here we present comparative analysis networks by identifying common regulatory principles that govern key genes transition. Using time-course transcriptomic datasets from long-day plants and short-day taken different photoperiods, propose model integrates minimal set components predict necessary conditions governing species-specific outputs. This study identifies patterns associated with function plants, linking photoperiod interpretation architecture.

Язык: Английский

Процитировано

0

48-Hour and 24-Hour Time-lapse Single-nucleus Transcriptomics Reveal Cell-type specific Circadian Rhythms in Arabidopsis DOI Creative Commons

Yuwei Qin,

Z Liu, Shiqi Gao

и другие.

Nature Communications, Год журнала: 2025, Номер 16(1)

Опубликована: Май 5, 2025

Functional circadian clock is critical to the adaptation and survival of organisms. In land plants, comprehensive profiling gene expression at single-cell level largely unknown partly due challenges in obtaining precisely-timed single cells embedded within cell walls. To bridge this gap, we employ time-lapse single-nucleus RNA sequencing (snRNA-seq) on Arabidopsis seedlings collected over a 48-hour window 4-hour intervals, as well 24-hour day 2-hour yielding total 77,142 130,000 nuclei. Here, find that four clusters shoot share coherent rhythm, while around 3000 genes display cell-type specific rhythmic expression. Our analysis indicates encoding regulators oscillate multiple types, majority them are well-documented core genes, suggesting snRNA-seq data could be used identify more components oscillating cell-autonomous way. We ABF1 regulator, whose overexpression shortens period. provides resource for plant rhythmicity (hosted https://zhailab.bio.sustech.edu.cn/sc_circadian ).

Язык: Английский

Процитировано

0

Regulatory links between the circadian clock and stress-induced biomolecular condensates DOI Creative Commons

Gwynne D. Brown,

Dawn H. Nagel

Deleted Journal, Год журнала: 2025, Номер 2(1)

Опубликована: Май 27, 2025

Язык: Английский

Процитировано

0