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  3. Pattern of xylem phenology in conifers of cold ecosystems at the Northern Hemisphere
 

Pattern of xylem phenology in conifers of cold ecosystems at the Northern Hemisphere

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BORIS DOI
10.7892/boris.89659
Publisher DOI
10.1111/gcb.13317
Description
The interaction between xylem phenology and climate assesses forest growth and productivity and carbon storage across biomes under changing environmental conditions. We tested the hypothesis that patterns of wood formation are maintained unaltered despite the temperature changes across cold ecosystems. Wood microcores were collected weekly or biweekly throughout the growing season for periods varying between 1 and 13 years during 1998–2014 and cut in transverse sections for assessing the onset and ending of the phases of xylem differentiation. The data set represented 1321 trees belonging to 10 conifer species from 39 sites in the Northern Hemisphere and covering an interval of mean annual temperature exceeding 14 K. The phenological events and mean annual temperature of the sites were related linearly, with spring and autumnal events being separated by constant intervals across the range of temperature analysed. At increasing temperature, first enlarging, wall-thickening and mature tracheids appeared earlier, and last enlarging and wall-thickening tracheids occurred later. Overall, the period of wood formation lengthened linearly with the mean annual temperature, from 83.7 days at −2 °C to 178.1 days at 12 °C, at a rate of 6.5 days °C−1. April–May temperatures produced the best models predicting the dates of wood formation. Our findings demonstrated the uniformity of the process of wood formation and the importance of the environmental conditions occurring at the time of growth resumption. Under warming scenarios, the period of wood formation might lengthen synchronously in the cold biomes of the Northern Hemisphere.
Date of Publication
2016-10
Publication Type
Article
Subject(s)
900 History > 910 Geography & travel
Language(s)
en
Contributor(s)
Rossi, Sergio
Anfodillo, Tommaso
Čufar, Katarina
Cuny, Henri E.
Deslauriers, Annie
Fonti, Patrick
Geographisches Institut, Physische Geographie
Frank, David
Lehrkörper, Phil.-nat. Fakultät
Gričar, Jožica
Gruber, Andreas
Huang, Jian-Guo
Jyske, Tuula
Kašpar, Jakub
King, Gregory
Krause, Cornelia
Liang, Eryuan
Mäkinen, Harri
Morin, Hubert
Nöjd, Pekka
Oberhuber, Walter
Prislan, Peter
Rathgeber, Cyrille B.K.
Saracino, Antonio
Swidrak, Irene
Treml, Václav
Additional Credits
Geographisches Institut, Physische Geographie
Lehrkörper, Phil.-nat. Fakultät
Series
Global Change Biology
Publisher
Blackwell Science
ISSN
1354-1013
Access(Rights)
restricted
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