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Chloroplast division, a process tightly linked to the energy demands of plants, is initiated by the formation of the stromal filamenting temperature-sensitive Z (FtsZ) ring. The Z ring is highly dynamic, and its constriction provides the essential force for chloroplast division. However, the regulatory mechanisms governing Z-ring dynamics and constriction remain poorly understood. Here, we report that the chloroplast inner envelope membrane (IEM) protein ACCUMULATION AND REPLICATION OF CHLOROPLASTS6 (ARC6) interacts with the chloroplast stromal protein ARC3, and this interaction is negatively regulated by the conserved J-like domain of ARC6. ARC3 is found both distributed throughout the stroma and localized to a ring-like structure at the chloroplast division site. We demonstrate that ARC6 recruits ARC3 to the division site to form a ring-like structure, likely through direct interaction. This ARC6-ARC3 interaction enables ARC3 to bind FtsZs. Furthermore, we show that the ARC6-ARC3 complex significantly promotes the dynamics of chloroplast Z rings reconstituted in a heterologous system. Finally, the constriction of these reconstituted Z rings is markedly enhanced by ARC6-ARC3. Our findings reveal a regulatory mechanism that governs Z-ring dynamics and constriction, shedding light on the molecular mechanisms underlying chloroplast division.
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http://dx.doi.org/10.1073/pnas.2425129122 | DOI Listing |
Mitochondrial DNA B Resour
September 2025
Department of Forestry and Nature Resources, National Chiayi University, Chiayi, Taiwan.
Hayata 1916 is a unique bamboo species endemic to Taiwan, typically found at elevations ranging from 500 to 1,500 meters. This study provides a detailed analysis of the complete chloroplast genome of for the first time. The genome spans 139,664 base pairs (bp) and consists of a large single-copy (LSC) region of 83,192 bp, a small single-copy (SSC) region of 12,869 bp, and two inverted repeat (IR) regions, each 21,798 bp in length.
View Article and Find Full Text PDFSci Rep
August 2025
Center of Excellence in DNA Barcoding of Thai Medicinal Plants, Department of Pharmacognosy and Pharmaceutical Botany, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok, 10330, Thailand.
Kaempferia L., a medicinal genus of Zingiberaceae family, is widely distributed from India to Southeast Asia and is rich in terpenoids, flavonoids, phenolics, and volatile oils. Recently, it has gained attention for its diverse biological activities, including antioxidant, anticancer, analgesic, anti-inflammatory, and anti-tuberculosis effects.
View Article and Find Full Text PDFBiochim Biophys Acta Gen Subj
August 2025
Molecular Biology Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India; Homi Bhabha National Institute, Anushakti Nagar, Mumbai 400094, India.. Electronic address:
Photosynthetic organisms often rely on two-component regulatory system to adapt to environmental changes. This system is crucial for connecting external signals with the response mechanism by controlling gene expression, eventually allowing the organism to acclimatize to various stresses. Cyanobacteria, in particular, possess a large number of these two-component systems.
View Article and Find Full Text PDFPlant Cell Physiol
August 2025
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kitashirakawa-Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.
F1FO-ATP synthase, the enzyme complex responsible for ATP production, is universally conserved and central to cellular energy metabolism in bacteria as well as in mitochondria and plastids - organelles derived from ancestral bacteria. Although its basic structure and rotational catalytic mechanism are conserved, F1FO-ATP synthase exhibits remarkable regulatory diversity, which is evident in its structural variations, tissue-specific isoforms, and ATP synthesis and hydrolysis mechanisms, reflecting the metabolic demands and environmental contexts of different organisms and organelles. Among the diverse F1FO-ATP synthase isoforms, the plastid F1FO-ATP synthase exhibits unique regulatory features, including redox-dependent modulation, which adjusts enzyme activity in response to light availability.
View Article and Find Full Text PDFPlant Cell Environ
August 2025
Division of Crop Production and Protection, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow, India.
Pelargonium graveolens, valued for its essential oil, is significantly influenced by its endosymbiotic associations impacting its physiology and phytochemistry, though the exact mechanisms driving this modulation remain largely unexplored. This study unveils that inoculating Pseudomonas oryzihabitans CB24 into P. graveolens significantly alters plant's lipid dynamics, leading to increased accumulation of chloroplast glycerolipids like monogalactosyldiacylglycerol (MGDG) and sulfolipids, sulfoquinovosyldiacylglycerol (SQDG).
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