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HERO ID
191526
Reference Type
Journal Article
Title
Morphological and physiological responses of Scots pine fine roots to water supply in a dry climatic region in Switzerland
Author(s)
Brunner, I; Pannatier, EG; Frey, B; Rigling, A; Landolt, W; Zimmermann, S; Dobbertin, M
Year
2009
Is Peer Reviewed?
1
Journal
Tree Physiology
ISSN:
0829-318X
Volume
29
Issue
4
Page Numbers
541-550
DOI
10.1093/treephys/tpn046
Web of Science Id
WOS:000265850100007
URL
http://treephys.oxfordjournals.org/cgi/doi/10.1093/treephys/tpn046
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Abstract
In recent decades. Scots pine (Pinus sylvestris L.) forests in inner-Alpine dry valleys of Switzerland have suffered from drought and elevated temperatures, resulting in a higher mortality rate of trees than the mean mortality rate in Switzerland. We investigated the responses of fine roots (standing crop, morphological and physiological features) to water supply in a Scots pine forest in the Rhone valley. Before irrigation started in 2003, low- and high-productivity Scots pine trees were selected based on their crown transparency. The fine root standing crop measured in spring from 2003 to 2005 was unaffected by the irrigation treatment. However, irrigation significantly enhanced the fine root standing crop during the vegetation period when values from spring, were compared with values from fall in 2005. Irrigation slightly increased specific root length but decreased root tissue density. Fine root O-2-consumption capacity decreased slightly in response to the irrigation treatment. Using ingrowth cores to observe the responses of newly produced fine roots, irrigation had a significantly positive effect on the length of fine roots, but there were no differences between the low- and high-productivity trees. In contrast to the weak response to fine roots to the irrigation, the aboveground parts responded positively to irrigation with more dense crown. The lack of marked response of the fine root biomass to irrigation in the low- and high-productivity trees suggests that fine roots have a high priority for within-tree carbon allocation.
Keywords
drought; fine root growth; fine root physiological and morphological properties; fine root standing crop; high- and low-productivity pines; ingrowth cores; irrigation; Pinus sylvestris
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ISA-Ozone (2013 Final Project Page)
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