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Mechanism of the Pulvinus-Driven Leaf Movement: An Overview. | LitMetric

AI Article Synopsis

  • Leaf movement helps plants adapt to their changing environments to enhance growth and development, primarily driven by the pulvinus.
  • Factors like blue light, auxin, and various ions influence water movement in pulvinus tissues, creating turgor pressure differences that control leaf movement.
  • Research on model plants suggests that genes involved in pulvinus movement also contribute to overall plant growth, highlighting the need for future studies on ion and water flux variations in this process.

Article Abstract

Leaf movement is a manifestation of plant response to the changing internal and external environment, aiming to optimize plant growth and development. Leaf movement is usually driven by a specialized motor organ, the pulvinus, and this movement is associated with different changes in volume and expansion on the two sides of the pulvinus. Blue light, auxin, GA, H-ATPase, K, Cl, Ca, actin, and aquaporin collectively influence the changes in water flux in the tissue of the extensor and flexor of the pulvinus to establish a turgor pressure difference, thereby controlling leaf movement. However, how these factors regulate the multicellular motility of the pulvinus tissues in a species remains obscure. In addition, model plants such as , , and have been used to study pulvinus-driven leaf movement, showing a similarity in their pulvinus movement mechanisms. In this review, we summarize past research findings from the three model plants, and using as an example, suggest that genes regulating pulvinus movement are also involved in regulating plant growth and development. We also propose a model in which the variation of ion flux and water flux are critical steps to pulvinus movement and highlight questions for future research.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11083266PMC
http://dx.doi.org/10.3390/ijms25094582DOI Listing

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