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Altered viscoelastic properties of the Nicotiana tabacum BY-2 suspension cell lines adapted to high concentrations of NaCl and mannitol

bioRxiv · 30 Apr 2024 · 10.1101/2024.04.29.591580

Abstract

To survive and grow, plant cells must regulate the properties of their cellular microenvironment in response to ever changing external factors. How the biomechanical balance across the cells internal structures is established and maintained during environmental variations remains a nurturing question. To provide insight into this issue we used two micro-mechanical imaging techniques, namely Brillouin light scattering and BODIPY-based molecular rotors Fluorescence Lifetime Imaging, to study Nicotiana tabacum suspension BY-2 cells long-term adapted to high concentrations of NaCl and mannitol. We discuss our results in terms of molecular crowding in cytoplasm and vacuoles, as well as tension in plasma membrane. The viscoelastic behavior was elucidated relative to cells external environments revealing the difference between the responses of cytoplasm and vacuole in the adapted cells. To understand how sudden changes in osmolarity affect cellular mechanics, the response of control and already adapted cells to further short-term osmotic stimulus was also examined. The applied correlative approach provides evidence that adaptation to hyperosmotic stress leads to different ratios of protoplast and environmental qualities that help to maintain cell integrity. Presented results demonstrate that the viscoelastic properties of protoplasts are an element of plant cells adaptation to high osmolarity.

Plant phenotyping relevance

植物細胞の粘弾性という生理・力学的形質を、Brillouin光散乱と蛍光寿命イメージングで測定する手法の実質的な適用が研究の中心であり、単なるルーチン測定ではない。

abstractwe used two micro-mechanical imaging techniques, namely Brillouin light scattering and BODIPY-based molecular rotors Fluorescence Lifetime Imaging, to study Nicotiana tabacum suspension BY-2 cells
abstractThe viscoelastic behavior was elucidated relative to cells external environments
abstractThe applied correlative approach provides evidence that adaptation to hyperosmotic stress leads to different ratios of protoplast and environmental qualities

Code and data availability

The supplied blocks describe FLIM/BODIPY rotor and Brillouin light scattering measurements on adapted BY-2 cell lines, but contain no public phenotype dataset, image, code, or model deposit. Supplements (SI_BDP_synthesis.pdf, SI_BDPimage.pdf) are referenced without any public URL or repository, and no data availability

No evidence-backed public reproduction asset is currently recorded.

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