Aug 2026· Science Advances· Vol 12· 0 citations· 65 references
Medicine
TL;DR
It is shown that developing leaves form a spatiotemporal oxygen gradient that is sensed through the oxygen-sensing machinery, revealing that oxygen acts as a positional cue in normal growth, guiding developmental trajectories.
Abstract
Oxygen availability underpins energy production in multicellular organisms, yet internal oxygen gradients arise in both plants and animals. Plants sense these variations via the plant cysteine oxidase branch of the N-degron pathway, which regulates the stability of key transcription factors. Originally linked to metabolic control, this pathway recently emerged as a development regulator. While the shoot apical meristem was shown to be hypoxic, the oxygen dynamics of organs originating from this low-oxygen niche remain unknown. Here, we show that developing leaves form a spatiotemporal oxygen gradient that is sensed through the oxygen-sensing machinery. This pathway integrates local oxygen availability to regulate leaf morphogenesis: Early hypoxia restricts cell expansion, whereas subsequent distal-to-proximal oxygenation depletes group VII ethylene response factors enabling specialized cell-fate acquisition and controlling proliferation. Our findings reveal that oxygen acts as a positional cue in normal growth, guiding developmental trajectories. This highlights opportunities to harness oxygen gradients and sensing to direct plant form and function.
Hypoxia in plants is detrimental to plant growth and crop productivity. It typically arises from adverse environmental conditions that limit oxygen availability, thereby restricting mitochondrial respiration. However, hypoxia also occurs in specific plant tissues where oxygen levels are low due to intense respiratory a...
E. Loreti, P. Perata· Cold Spring Harbor Perspecti...· 0 citations
This Tansley review synthesizes advances in how the SAM perceives and integrates key environmental signals including light, temperature, oxygen, and humidity to direct adaptive growth to highlight conserved sensing and signalling modules within meristematic tissues that influence plant growth plasticity.
Yi-Min Zhu, Han Han, Wei-Bing Yang· New Phytologist· 0 citations
The sensing of molecular oxygen is an essential component of development and environmental response in both animals and plants. Few substrates of the plant oxygen-sensing PLANT CYSTEINE OXIDASE (PCO) N-degron pathway have been identified. Here we show that HYPOXIA TRANSDUCER1 (HYT1, previously named HYPOXIA-RESPONS...
Recent discoveries have fundamentally transformed the paradigm of plant oxygen sensing. Hypoxia is no longer viewed solely because of environmental stress, such as flooding, but as a dynamic, intrinsic physiological signal that actively controls normal plant development. At the molecular level, this homeostatic oxygen...
N. La Monaca, S. Castellana, E. Loreti et al.· Journal of Experimental Bota...· 0 citations
This review provides an integrative overview of developmental PCD across vegetative and generative stages, from reproductive development and embryogenesis to vascular differentiation, aerenchyma formation, organ shaping, senescence, and abscission, and summarizes current knowledge of the molecular, cellular, and physio...
Jacek Łuc, M. Kwiatkowska, A. Słomka et al.· Journal of Experimental Bota...· 0 citations
A novel, auxin-guided role for the polar PAX protein in establishing cell and tissue polarity that precedes and is independent of the polarization and activity of PIN auxin transporters is uncovered.
Alkistis E. Lanassa Bassukas, Yao Xiao, Namuk Kim et al.· Nature Plants· 0 citations
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