Literature DB >> 14965987

Dormancy release and chilling requirement of buds of latitudinal ecotypes of Betula pendula and B. pubescens.

T Myking1, O M Heide.   

Abstract

Bud burst and dormancy release of latitudinal ecotypes of Betula pendula Roth and B. pubescens Ehrh. from Denmark ( approximately 56 degrees N), mid-Norway ( approximately 64 degrees N) and northern Norway ( approximately 69 degrees N) were studied in controlled environments. Dormant seedlings were chilled at 0, 5 or 10 degrees C from October 4 onward and then, at monthly intervals from mid-November to February, batches of seedlings were held at 15 degrees C in an 8-h (SD) or 24-h (LD) photoperiod to permit flushing. A decline in days to bud burst occurred with increasing chilling time in all ecotypes. In November, after 44 chilling days, time to bud burst was least in plants chilled at 0 and 5 degrees C. The difference diminished with increasing chilling time, and in February, after 136 chilling days, bud burst was earliest in plants chilled at 10 degrees C. Long photoperiods during flushing significantly reduced thermal time after short chilling periods (44 and 74 days), but had no effect when the chilling requirement was fully met after 105 or more chilling days. No significant difference in these responses was found between the two species. In both species, chilling requirement decreased significantly with increasing latitude of origin. Bud burst was normal in seedlings overwintered at 12 degrees C, but was erratic and delayed in seedlings overwintered at 15 and especially at 21 degrees C, indicating that the critical overwintering temperature is between 12 and 15 degrees C. We conclude that there is little risk of a chilling deficit in birch under Scandinavian winter conditions even with a climatic warming of 7-8 degrees C. The likely effects of a climatic warming include earlier bud burst, a longer growing season and increased risk of spring frost injury, especially in high latitude ecotypes.

Entities:  

Year:  1995        PMID: 14965987     DOI: 10.1093/treephys/15.11.697

Source DB:  PubMed          Journal:  Tree Physiol        ISSN: 0829-318X            Impact factor:   4.196


  25 in total

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4.  Seventeen-year trends in spring and autumn phenophases of Betula pubescens in a boreal environment.

Authors:  Jarmo Poikolainen; Anne Tolvanen; Jouni Karhu; Eero Kubin
Journal:  Int J Biometeorol       Date:  2015-12-19       Impact factor: 3.787

5.  Spatial heterogeneity in the timing of birch budburst in response to future climate warming in Ireland.

Authors:  Amelia Caffarra; Fabio Zottele; Emily Gleeson; Alison Donnelly
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6.  Regional trends for bud burst and flowering of woody plants in Norway as related to climate change.

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7.  Chilling and heat requirements for leaf unfolding in European beech and sessile oak populations at the southern limit of their distribution range.

Authors:  Cécile F Dantec; Yann Vitasse; Marc Bonhomme; Jean-Marc Louvet; Antoine Kremer; Sylvain Delzon
Journal:  Int J Biometeorol       Date:  2014-01-23       Impact factor: 3.787

8.  Simulating changes in the leaf unfolding time of 20 plant species in China over the twenty-first century.

Authors:  Quansheng Ge; Huanjiong Wang; Junhu Dai
Journal:  Int J Biometeorol       Date:  2013-05-22       Impact factor: 3.787

9.  Simulation of forest tree species' bud burst dates for different climate scenarios: chilling requirements and photo-period may limit bud burst advancement.

Authors:  Maximilian Lange; Jörg Schaber; Andreas Marx; Greta Jäckel; Franz-Werner Badeck; Ralf Seppelt; Daniel Doktor
Journal:  Int J Biometeorol       Date:  2016-04-08       Impact factor: 3.787

10.  Growing seasons of Nordic mountain birch in northernmost Europe as indicated by long-term field studies and analyses of satellite images.

Authors:  E Shutova; F E Wielgolaski; S R Karlsen; O Makarova; N Berlina; T Filimonova; E Haraldsson; P E Aspholm; L Flø; K A Høgda
Journal:  Int J Biometeorol       Date:  2006-07-11       Impact factor: 3.787

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