Impact of freeze–thaw-induced pit aspiration on stem water transport in the subalpine conifer Abies veitchii

Author:

Taneda Haruhiko1ORCID,Ogasa Mayumi Y2ORCID,Yazaki Kenichi3ORCID,Funayama-Noguchi Sachiko1,Miyazawa Yoshiyuki4,Mayr Stefan5ORCID,Maruta Emiko6ORCID

Affiliation:

1. Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo , Japan

2. Forest Ecology Group, Kansai Research Center, Forestry and Forest Products Research Institute , Kyoto, Japan

3. Soil-Plant Ecosystem Group, Hokkaido Research Center, Forestry and Forest Products Research Institute , Sapporo, Japan

4. Campus Planning Office, Kyushu University , Fukuoka, Japan

5. Department of Botany, University of Innsbruck , Innsbruck, Austria

6. Department of Biological Sciences, Faculty of Science, Kanagawa University , Yokohama, Japan

Abstract

Abstract During winter, subalpine conifers experience frequent freeze–thaw cycles in stem xylem that may cause embolism and pit aspiration due to increased water volume during the sap to ice transition. This study examined the occurrence and ecological impacts of a combination of freeze–thaw-induced pit aspiration and embolism triggered by natural and artificial stem freezing. In subalpine Veitch’s fir (Abies veitchii) trees, the fraction of closed pits and embolized tracheids as well as conductivity losses were measured to examine pit aspiration and its effects. When trees incurred mild drought stress in February and early March, 70%–80% of stem conductivity was lost. Cryo-scanning electron microscopy indicated <20% embolized tracheids but ∼90% closed pits. Severe drought stress in late March caused 96% ± 1.2% (mean ± standard error) loss of stem conductivity, while the fraction of embolized tracheids increased to 64% ± 6.6%, and aspirated pit fraction decreased to 23% ± 5.6%. Experimental freeze–thaw cycles also increased pit aspiration from 7.1% ± 0.89% to 49% ± 10%, and the fraction of closed pits was positively correlated to the percent loss of stem hydraulic conductivity. The results indicated that freezing-induced pit aspiration is an important factor for stem xylem dysfunction under mild drought, and upon severe drought in winter; stem water transport is predominantly inhibited by xylem embolism.

Funder

Japan Society for the Promotion of Science (JSPS) KAKENHI

Moriya research grant

Austrian Research Agency

“Mountain Regions” of the University of Innsbruck

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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