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Plants tightly control growth of their lateral organs, which led to the concept of apical dominance. However, outgrowth of the dormant lateral primordia is sensitive to the plant's nutritional status, resulting in an immense plasticity in plant architecture. While the impact of hormonal regulation on apical dominance is well characterized, the prime importance of sugar signaling to unleash lateral organ formation has just recently emerged. Here, we aimed to identify transcriptional regulators, which control the trade-off between growth of apical versus lateral organs. Making use of locally inducible gain-of-function as well as single and higher-order loss-of-function approaches of the sugar-responsive S-basic-leucine-zipper (S-bZIP) transcription factors, we disclosed their largely redundant function in establishing apical growth dominance. Consistently, comprehensive phenotypical and analytical studies of S-bZIP mutants show a clear shift of sugar and organic nitrogen (N) allocation from apical to lateral organs, coinciding with strong lateral organ outgrowth. Tissue-specific transcriptomics reveal specific clade III sugar transporters, crucial for long-distance sugar transport to apical sinks and the glutaminase , involved in N homeostasis, as direct S-bZIP targets, linking the architectural and metabolic mutant phenotypes to downstream gene regulation. Based on these results, we propose that S-bZIPs control carbohydrate (C) partitioning from source leaves to apical organs and tune systemic N supply to restrict lateral organ formation by C/N depletion. Knowledge of the underlying mechanisms controlling plant C/N partitioning is of pivotal importance for breeding strategies to generate plants with desired architectural and nutritional characteristics.
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http://dx.doi.org/10.1073/pnas.2313343121 | DOI Listing |
Birth Defects Res
September 2025
School of Human Health Sciences, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Background: In mouse embryos, the body axis typically follows a right-handed helical pattern; however, a definitive orientation in human embryos has not been established. This study aimed to characterize the body axis orientation in human embryos (CS13-CS17) from the Kyoto Collection.
Methods: Embryos were classified as right-helical (RH), left-helical (LH), and middle (M) using MRI-based morphological assessment.
FASEB Bioadv
August 2025
Scientific Research Center, The Seventh Affiliated Hospital Sun Yat-Sen University Shenzhen P. R. China.
Oxidative stress is characterized by an imbalance between the production and elimination of free radicals, where the rate of free radical generation surpasses the rate of their removal. This imbalance can lead to tissue and organ damage, contributing to the pathogenesis of various diseases. The nervous system, due to its high oxygen consumption, is particularly susceptible to oxidative stress.
View Article and Find Full Text PDFBackground: Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disorder with a largely unknown duration and pathophysiology of the pre-diagnostic phase, especially for the common non-monogenic form.
Methods: We leveraged the European Prospective Investigation into Cancer and Nutrition (EPIC) cohort with up to 30 years of follow-up to identify incident ALS cases across five European countries. Pre-diagnostic plasma samples from initially healthy participants underwent high-throughput proteomic profiling (7,285 protein markers, SomaScan).
J Foot Ankle Res
September 2025
Department of Orthopaedic Surgery, Faculty of Medicine, The University of Tokyo, Tokyo, Japan.
Introduction: We developed a smartphone application capable of automatically measuring the hallux valgus angle (HVA) and various intermetatarsal angles by capturing radiographic images displayed on a monitor. This study aimed to evaluate the accuracy of these measurements using the application.
Methods: Three users-a board-certified orthopedic surgeon, a resident, and a nonhealthcare professional (Users 1, 2, and 3)-independently used the application to measure angles on 92 radiographs from 92 consecutive patients.
Neural Regen Res
September 2025
National Engineering Laboratory for AIDS Vaccine, School of Life Sciences, Jilin University, Changchun, Jilin Province, China.
In recent years, an increasing number of researchers have become interested in the bidirectional communication between the gut microbiota and the central nervous system. This communication occurs through the microbiota-gut-brain axis. As people age, the composition of the gut microbiota undergoes considerable changes, which are now known to play an important role in the development of many neurodegenerative diseases.
View Article and Find Full Text PDF