Tsuga canadensis (L.) Carr. mortality will impact hydrologic processes in southern appalachian forest ecosystems

被引:118
作者
Ford, Chelcy R. [1 ]
Vose, James M. [1 ]
机构
[1] USDA, FS SRS, Otto, NC 28763 USA
关键词
Appalachian Mountains; conductance; eastern hemlock; hemlock woolly adelgid (HWA); hydrology; sap flux; scaling; time-series; transpiration; Tsuga canadensis ( L.) Carr; water relations; water use;
D O I
10.1890/06-0027
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Eastern hemlock ( Tsuga canadensis ( L.) Carr.) is one of the principal riparian and cove canopy species in the southern Appalachian Mountains. Throughout its range, eastern hemlock is facing potential widespread mortality from the hemlock woolly adelgid (HWA). If HWA-induced eastern hemlock mortality alters hydrologic function, land managers will be challenged to develop management strategies that restore function or mitigate impacts. To estimate the impact that the loss of this forest species will have on the hydrologic budget, we quantified and modeled transpiration over a range of tree sizes and environmental conditions. We used heat dissipation probes, leaf-level gas-exchange measurements, allometric scaling, and time series modeling techniques to quantify whole-tree and leaf-level transpiration (E-L) of eastern hemlock. We monitored trees ranging from 9.5 to 67.5 cm in diameter along a riparian corridor in western North Carolina, USA during 2004 and 2005. Maximum rates of daily tree water use varied by diameter and height, with large trees transpiring a maximum of 178-186 kg H2O center dot tree(-1) . d(-1). Values of E-L could be predicted from current and lagged environmental variables. We forecasted eastern hemlock E-L for inventoried stands and estimated a mean annual transpiration rate of 63.3 mm/yr for the hemlock component, with 50% being transpired in the winter and spring. In typical southern Appalachian stands, eastern hemlock mortality would thus reduce annual stand-level transpiration by similar to 10% and reduce winter and spring stand-level transpiration by similar to 30%. Eastern hemlock in the southern Appalachians has two distinct ecohydrological roles: an evergreen tree that maintains year-round transpiration rates and a riparian tree that has high transpiration rates in the spring. No other native evergreen in the southern Appalachians will likely fill the ecohydrological role of eastern hemlock if widespread mortality occurs. With the loss of this species, we predict persistent increases in discharge, decreases in the diurnal amplitude of streamflow, and increases in the width of the variable source area.
引用
收藏
页码:1156 / 1167
页数:12
相关论文
共 54 条
[1]   POLLEN IN LAMINATED SEDIMENTS PROVIDES EVIDENCE FOR A MIDHOLOCENE FOREST PATHOGEN OUTBREAK [J].
ALLISON, TD ;
MOELLER, RE ;
DAVIS, MB .
ECOLOGY, 1986, 67 (04) :1101-1105
[2]   A long-term study of tree seedling recruitment in southern Appalachian forests: the effects of canopy gaps and shrub understories [J].
Beckage, B ;
Clark, JS ;
Clinton, BD ;
Haines, BL .
CANADIAN JOURNAL OF FOREST RESEARCH, 2000, 30 (10) :1617-1631
[3]   A REVIEW OF CATCHMENT EXPERIMENTS TO DETERMINE THE EFFECT OF VEGETATION CHANGES ON WATER YIELD AND EVAPO-TRANSPIRATION [J].
BOSCH, JM ;
HEWLETT, JD .
JOURNAL OF HYDROLOGY, 1982, 55 (1-4) :3-23
[4]   Effects of slope vegetation removal on the diurnal variations of a small mountain stream [J].
Bren, LJ .
WATER RESOURCES RESEARCH, 1997, 33 (02) :321-331
[5]  
BROWN J, 2004, IMPACTS HEMLOCK WOOL
[6]  
Burnham K. P., 2002, A practical informationtheoretic approach, DOI [DOI 10.1007/B97636, 10.1007/b97636]
[7]  
Campbell G.S., 1998, INTRO ENV BIOPHYSICS, P147, DOI DOI 10.1007/978-1-4612-1626-1_10
[8]   Coupling whole-tree transpiration and canopy photosynthesis in coniferous and broad-leaved tree species [J].
Catovsky, S ;
Holbrook, NM ;
Bazzaz, FA .
CANADIAN JOURNAL OF FOREST RESEARCH, 2002, 32 (02) :295-309
[9]  
Clinton Barton D., 1996, Castanea, V61, P38
[10]   SEEDLING RESPONSE OF 4 BIRCH SPECIES TO SIMULATED NITROGEN DEPOSITION - AMMONIUM VS NITRATE [J].
CRABTREE, RC ;
BAZZAZ, FA .
ECOLOGICAL APPLICATIONS, 1993, 3 (02) :315-321