Chilling induces a decrease in pyrophosphate-dependent H +-accumulation associated with a ΔpHvac-stat in mung bean, a chill-sensitive plant

12Citations
Citations of this article
11Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

Chilling leads to cytoplasmic acidification in chill-sensitive plants. A possible explanation for this observation is that a ΔpH-stat between the cytosol and vacuole (ΔpHvac-stat) is perturbed by chilling. To understand the nature of this ΔpHvac-stat, the effect of temperature, between 20 and 0°C, on pyrophosphate (PPi)- or ATP-dependent acidification of vacuolar vesicles, isolated from mung bean hypocotyls, was determined. Over the temperature range investigated, the H+-influx mediated by PPase was balanced with the H+-efflux, which was PPi-dependently suppressed, and consequently a constant pH in vesicles (pH in) of ca. 5 was maintained against temperature changes. However, the ΔpHin driven by ATP decreased as the temperature dropped. Thus, the PPi-dependent H+-accumulation may function as an essential factor to form a ΔpHvac-stat against temperature changes. Next, to study the chilling sensitivity of PPi-dependent H+-accumulation, vacuolar vesicles were isolated from control seedlings or from seedlings chilled at 0°C for 1 d. Chilling treatment resulted in a decrease in the H +-accumulation rate and in the steady-state ΔpHin formed by PPi, the causes of which were enhanced by PPi-dependent H +-efflux and reduced by H+-influx driven by PPase. Together, the results suggest that the decrease of PPi-dependent H +-accumulation associated with the ΔpHvac-stat could result in cytoplasmic acidification. © 2007 The Author.

Cite

CITATION STYLE

APA

Kawamura, Y. (2008). Chilling induces a decrease in pyrophosphate-dependent H +-accumulation associated with a ΔpHvac-stat in mung bean, a chill-sensitive plant. Plant, Cell and Environment, 31(3), 288–300. https://doi.org/10.1111/j.1365-3040.2007.01762.x

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free