Cold and exogenous calcium alter Allium fistulosum cell wall pectin to depress intracellular freezing temperatures

Author:

Liu Jun1,Willick Ian R1ORCID,Hiraki Hayato2,Forand Ariana D1,Lawrence John R3,Swerhone George D W3,Wei Yangdou4ORCID,Ghosh Supratim5,Lee Yeon Kyeong6,Olsen Jorunn E6,Usadel Björn78,Wormit Alexandra7ORCID,Günl Markus8,Karunakaran Chithra9,Dynes James J9,Tanino Karen K1ORCID

Affiliation:

1. Department of Plant Sciences, University of Saskatchewan , Saskatoon, SK , Canada

2. The United Graduate School of Agricultural Sciences, Iwate University , Morioka , Japan

3. Watershed Hydrology and Ecology Research Division, Environment and Climate Change Canada , Saskatoon, SK , Canada

4. Biology Department, University of Saskatchewan , Saskatoon, SK , Canada

5. Department of Food and Bioproducts Sciences, University of Saskatchewan , Saskatoon, SK , Canada

6. Department of Plant Sciences, Faculty of BioSciences, Norwegian University of Life Sciences , Ås , Norway

7. RWTH Aachen University, Institute for Biology I , Aachen , Germany

8. IBG-2: Plant Sciences , Forschungszentrum Jülich , Germany

9. Canadian Light Source , Saskatoon, SK , Canada

Abstract

Abstract De-methyl esterification of homogalacturonan and subsequent cross-linking with Ca2+ is hypothesized to enhance the freezing survival of cold acclimated plants by reducing the porosity of primary cell walls. To test this theory, we collected leaf epidermal peels from non- (23/18 °C) and cold acclimated (2 weeks at 12/4 °C) Japanese bunching onion (Allium fistulosum L.). Cold acclimation enhanced the temperature at which half the cells survived freezing injury by 8 °C (LT50 =–20 °C), and reduced tissue permeability by 70-fold compared with non-acclimated epidermal cells. These effects were associated with greater activity of pectin methylesterase (PME) and a reduction in the methyl esterification of homogalacturonan. Non-acclimated plants treated with 50 mM CaCl2 accumulated higher concentrations of galacturonic acid, Ca2+ in the cell wall, and a lower number of visible cell wall pores compared with that observed in cold acclimated plants. Using cryo-microscopy, we observed that 50 mM CaCl2 treatment did not lower the LT50 of non-acclimated cells, but reduced the lethal intracellular ice nucleation to temperatures observed in cold acclimated epidermal cells. We postulate that the PME-homogalacturonan-mediated reduction in cell wall porosity is integral to intracellular freezing avoidance strategies in cold acclimated herbaceous cells.

Funder

Natural Sciences and Engineering Research Council

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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