Arid
DOI10.1093/treephys/28.11.1641
A case-study of water transport in co-occurring ring- versus diffuse-porous trees: contrasts in water-status, conducting capacity, cavitation and vessel refilling
Taneda, Haruhiko1,2; Sperry, John S.1
通讯作者Sperry, John S.
来源期刊TREE PHYSIOLOGY
ISSN0829-318X
出版年2008
卷号28期号:11页码:1641-1651
英文摘要

Recent work has suggested that the large earlywood vessels of ring-porous trees can be extraordinarily vulnerable to cavitation making it necessary that these trees maintain a consistent and favorable water status. We compared cavitation resistance, vessel refilling, transport capacity and water status in a study of ring-porous Quercus gambelii Nutt. (oak) and diffuse-porous Acer grandidentatum Nutt. (maple). These species co-dominate summer-dry foothills in the western Rocky Mountains of the USA. Native embolism measurements, dye perfusions and balance pressure exudation patterns indicated that the large earlywood vessels of 2-3-year-old oak stems cavitated extensively on a daily basis as predicted from laboratory vulnerability curves, resulting in a more than 80% reduction in hydraulic conductivity. Maple branches showed virtually no cavitation. Oak vessels refilled on a daily basis, despite negative xylem pressure in the transpiration stream, indicating active pressurization of embolized vessels. Conductivity and whole-tree water use in oak were between about one-half and two-thirds that in maple on a stern-area basis; but were similar or greater on a leaf-area basis. Oak maintained steady and modest negative xylem pressure potentials during the growing season despite little rainfall, indicating isohydric water status and reliance on deep soil water. Maple was markedly anisohydric and developed more negative pressure potentials during drought, suggesting use of shallower soil water. Although ring porosity may have evolved as a mechanism for coping with winter freezing, this study suggests that it also has major consequences for xylem function during the growing season.


英文关键词Acer grandidentatum drought stress Granter sensors hydraulic architecture Quercus gambelii sap flux vulnerability curves xylem embolism
类型Article
语种英语
国家USA ; Japan
收录类别SCI-E
WOS记录号WOS:000260855200005
WOS关键词OAK QUERCUS-GAMBELII ; XYLEM CAVITATION ; LAURUS-NOBILIS ; SAP FLOW ; HYDRAULIC CONDUCTIVITY ; SUMMER PRECIPITATION ; BETULA-OCCIDENTALIS ; EMBOLIZED VESSELS ; SONORAN DESERT ; WOOD ANATOMY
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/2XILL650/159317
作者单位1.Univ Utah, Dept Biol, Salt Lake City, UT 84112 USA;
2.Univ Tokyo, Grad Sch Sci, Dept Biol Sci, Bunkyo Ku, Tokyo 1130033, Japan
推荐引用方式
GB/T 7714
Taneda, Haruhiko,Sperry, John S.. A case-study of water transport in co-occurring ring- versus diffuse-porous trees: contrasts in water-status, conducting capacity, cavitation and vessel refilling[J],2008,28(11):1641-1651.
APA Taneda, Haruhiko,&Sperry, John S..(2008).A case-study of water transport in co-occurring ring- versus diffuse-porous trees: contrasts in water-status, conducting capacity, cavitation and vessel refilling.TREE PHYSIOLOGY,28(11),1641-1651.
MLA Taneda, Haruhiko,et al."A case-study of water transport in co-occurring ring- versus diffuse-porous trees: contrasts in water-status, conducting capacity, cavitation and vessel refilling".TREE PHYSIOLOGY 28.11(2008):1641-1651.
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