NARA Discovery
Article Details
← Back to Search Results
Journal Article

Analysis of the effect of permeant solutes on the hydraulic resistance of the plasma membrane in cells of Chara corallina

Masashi Tazawa; Randy Wayne; Maki Katsuhara
Protoplasma · Vol. 262, Issue 2 · pp. 385-395 · 2025

Abstract

In the cells of Chara corallina , permeant monohydric alcohols including methanol, ethanol and 1-propanol increased the hydraulic resistance of the membrane ( L p m −1 ). We found that the relative value of the hydraulic resistance ( r L p m −1 ) was linearly dependent on the concentration ( C s ) of the alcohol. The relationship is expressed in the equation: r L p m −1 = ρ m C s + 1, where ρ m is the hydraulic resistance modifier coefficient of the membrane. Ye et al. (2004) showed that membrane-permeant glycol ethers also increased L p −1 . We used their data to estimate L p m −1 and r L p m −1 . The values of r L p m −1 fit the above relation we found for alcohols. When we plotted the ρ m values of all the permeant alcohols and glycol ethers against their molecular weights (MW), we obtained a linear curve with a slope of 0.014 M −1 /MW and with a correlation coefficient of 0.99. We analyzed the influence of the permeant solutes on the relative hydraulic resistance of the membrane ( r Lp m −1 ) as a function of the external (π 0 ) and internal (π i ) osmotic pressures. The analysis showed that the hydraulic resistance modifier coefficients (ρ m ) were linearly related to the MW of the permeant solutes with a slope of 0.012 M −1 /MW and with a correlation coefficient of 0.84. The linear relationship between the effects of permeating solutes on the hydraulic resistance modifier coefficient (ρ m ) and the MW can be explained in terms of the effect of the effective osmotic pressure on the hydraulic conductivity of water channels. The result of the analysis suggests that the osmotic pressure and not the size of the permeant solute as proposed by (Ye et al., J Exp Bot 55:449–461, 2004) is the decisive factor in a solute’s influence on hydraulic conductivity. Thus, characean water channels (aquaporins) respond to permeant solutes with essentially the same mechanism as to impermeant solutes.

Bibliographic Information

JournalProtoplasma
PublisherSpringer
Publication Date2025-03-01
Publication Year2025
Volume262
Issue2
Pages385-395
Document TypeJournal Article
Print ISSN0033-183X
eISSN1615-6102
DOI10.1007/s00709-024-02000-6

Access Information

NARA Access Coverage1926-01-01~Current
Journal Homepagehttps://www.springer.com/journal/709
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.