Arid
DOI10.1007/s00468-018-1731-y
Multiple tree-ring parameters of Quercus brantii Lindel in SW Iran show a strong potential for intra-annual climate reconstruction
Arsalani, Mohsen1; Braeuning, Achim3; Pourtahmasi, Kambiz2; Azizi, Ghasem1; Mohammadi, Hosein1
通讯作者Arsalani, Mohsen
来源期刊TREES-STRUCTURE AND FUNCTION
ISSN0931-1890
EISSN1432-2285
出版年2018
卷号32期号:6页码:1531-1546
英文摘要

Key messageIntra-annual tree-ring parameters of Quercus brantii contain high-resolution intra-annual climate signals which enable us to trace seasonal aspects of climate change and to reconstruct high-resolution climate data for the semi-arid region.AbstractEnvironmental conditions affect growth potential and wood-anatomical features of tree species. Hence, valuable climate signals can be extracted from intra-annual tree-ring features. In this study, we evaluated the potential of intra-annual wood parameters of Quercus brantii Lindel growing in the semi-arid southern Zagros Mountains, Iran. We analyzed earlywood width (EWW), latewood width (LWW), total ring-width (TRW), and several vessel features of the oak species. Standard chronologies have been developed for ring-width and vessel parameters using dendrochronological and quantitative wood-anatomical approaches. Correlations with local climate data showed that precipitation during the pre-growing and growing seasons had positive effects on EWW, LWW, TRW, and latewood vessel size. In contrast, earlywood vessel size showed positive correlations with precipitation in the active growing period (January-April). EWW, LWW, and TRW showed negative correlations with temperature during the pre-growing and growing seasons. Earlywood and latewood vessel features showed stronger negative correlations with mean monthly temperatures during the vessel formation period. Our results revealed that EWW, LWW, and earlywood and latewood anatomical variables of the trees contain valuable climatic signals complementing each other over different seasons. Despite the often low common signal strength of the anatomical variables shared between trees, they showed strong climate-growth relationships which can be useful for the reconstruction of seasonally resolved climate parameters in a multi-parameter tree-ring approach.


英文关键词Dendroclimatology Climate proxy Quantitative wood anatomy Quercus brantii Zagros oak woodlands Earlywood and latewood vessels
类型Article
语种英语
国家Iran ; Germany
收录类别SCI-E
WOS记录号WOS:000452074300004
WOS关键词BEECH FAGUS-ORIENTALIS ; EARLYWOOD VESSELS ; ZAGROS MOUNTAINS ; ROBUR L. ; SPRING PRECIPITATION ; TIME-SERIES ; OAK ; FOREST ; FEATURES ; GROWTH
WOS类目Forestry
WOS研究方向Forestry
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/213509
作者单位1.Univ Tehran, Fac Geog, Dept Phys Geog, Tehran, Iran;
2.Univ Tehran, Fac Nat Resources, Dept Wood & Paper Sci & Technol, Tehran, Iran;
3.Univ Erlangen Nurnberg, Inst Geog, Erlangen, Germany
推荐引用方式
GB/T 7714
Arsalani, Mohsen,Braeuning, Achim,Pourtahmasi, Kambiz,et al. Multiple tree-ring parameters of Quercus brantii Lindel in SW Iran show a strong potential for intra-annual climate reconstruction[J],2018,32(6):1531-1546.
APA Arsalani, Mohsen,Braeuning, Achim,Pourtahmasi, Kambiz,Azizi, Ghasem,&Mohammadi, Hosein.(2018).Multiple tree-ring parameters of Quercus brantii Lindel in SW Iran show a strong potential for intra-annual climate reconstruction.TREES-STRUCTURE AND FUNCTION,32(6),1531-1546.
MLA Arsalani, Mohsen,et al."Multiple tree-ring parameters of Quercus brantii Lindel in SW Iran show a strong potential for intra-annual climate reconstruction".TREES-STRUCTURE AND FUNCTION 32.6(2018):1531-1546.
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