Influence of climate-driven shifts in biomass allocation on water transport and storage in ponderosa pine

被引:147
作者
Maherali, H [1 ]
DeLucia, EH [1 ]
机构
[1] Univ Illinois, Dept Plant Biol, Urbana, IL 61801 USA
基金
美国国家科学基金会;
关键词
biomass allocation; leaf-specific hydraulic conductance; transpiration; water storage; xylem cavitation;
D O I
10.1007/s004420100758
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Conifers decrease the amount of biomass apportioned to leaves relative to sapwood in response to increasing atmospheric evaporative demand. We determined how these climate-driven shifts in allocation affect the aboveground water relations of ponderosa pine growing in contrasting and (desert) and humid (montane) climates. To support higher transpiration rates, a low leaf:sapwood area ratio (A(L)/A(S)) in desert versus montane trees could increase leaf-specific hydraulic conductance (K-L). Alternatively, a high sapwood volume:leaf area ratio in the desert environment may increase the contribution of stored water to transpiration. Transpiration and hydraulic conductance were determined by measuring sap flow (J(S)) and shoot water potential during the summer (June-July) and fall (August-September). The daily contribution of stored water to transpiration was determined using the lag between the beginning of transpiration from the crown at sunrise and J(S). In the summer, mean maximum J(S) was 31.80 +/-5.74 and 24.34 +/-3.05 g m(-2) s(-1) for desert and montane trees (a 30.6% difference), respectively. In the fall, J(S) was 25.33 +/-8.52 and 16.36 +/-4.64 g m(-2) s(-1) in desert and montane trees (a 54.8% difference), respectively. J(S) was significantly higher in desert relative to montane trees during summer and fall (P <0.05). Predawn and midday shoot water potential and sapwood relative water content did not differ between environments. Desert trees had a 129% higher K-L than montane trees in the summer (2.41x10(-5) versus 1.05x10(-5) kg m(-2) s(-1) MPa-1, P <0.001) and a 162% higher K-L in the fall (1.97x10(-5) versus 0.75x10(-5) kg m(-2) s(-1) MPa-1, P <0.001). Canopy conductance decreased with D in all trees at all measurement periods (P <0.05). Maximum g(C) was 3.91 times higher in desert relative to montane trees averaged over the summer and fall. Water storage capacity accounted for It kg (11%) and 10.6 kg (17%) of daily transpiration in the summer and fall, respectively, and did not differ between desert and montane trees. By preventing xylem tensions from reaching levels that cause xylem cavitation, high K-L in desert ponderosa pine may facilitate its avoidance. Thus, the primary benefit of low leaf:sapwood allocation in progressively and environments is to increase K-L and not to increase the contribution of stored water to transpiration.
引用
收藏
页码:481 / 491
页数:11
相关论文
共 63 条
[41]  
Piñol J, 2000, FUNCT ECOL, V14, P538, DOI 10.1046/j.1365-2435.2000.t01-1-00451.x
[42]   Hydraulic limits to tree height and tree growth [J].
Ryan, MG ;
Yoder, BJ .
BIOSCIENCE, 1997, 47 (04) :235-242
[43]   Transpiration and whole-tree conductance in ponderosa pine trees of different heights [J].
Ryan, MG ;
Bond, BJ ;
Law, BE ;
Hubbard, RM ;
Woodruff, D ;
Cienciala, E ;
Kucera, J .
OECOLOGIA, 2000, 124 (04) :553-560
[44]   The effect of tree height on crown level stomatal conductance [J].
Schäfer, KVR ;
Oren, R ;
Tenhunen, JD .
PLANT CELL AND ENVIRONMENT, 2000, 23 (04) :365-375
[45]   NUTRIENT-USE EFFICIENCY OF WOODY-PLANTS ON CONTRASTING SOILS IN THE WESTERN GREAT-BASIN, NEVADA [J].
SCHLESINGER, WH ;
DELUCIA, EH ;
BILLINGS, WD .
ECOLOGY, 1989, 70 (01) :105-113
[46]   CANOPY TRANSPIRATION AND WATER FLUXES IN THE XYLEM OF THE TRUNK OF LARIX AND PICEA TREES - A COMPARISON OF XYLEM FLOW, POROMETER AND CUVETTE MEASUREMENTS [J].
SCHULZE, ED ;
CERMAK, J ;
MATYSSEK, R ;
PENKA, M ;
ZIMMERMANN, R ;
VASICEK, F ;
GRIES, W ;
KUCERA, J .
OECOLOGIA, 1985, 66 (04) :475-483
[47]  
Siau J.F., 1971, FLOW IN WOOD
[48]  
Sokal R. R., 1995, BIOMETRY PRINCIPLES
[49]   Limitation of plant water use by rhizosphere and xylem conductance: results from a model [J].
Sperry, JS ;
Adler, FR ;
Campbell, GS ;
Comstock, JP .
PLANT CELL AND ENVIRONMENT, 1998, 21 (04) :347-359
[50]   SIMPLE DIFFUSION-MODEL OF TRANSPIRATION APPLIED TO A THINNED DOUGLAS-FIR STAND [J].
TAN, CS ;
BLACK, TA ;
NNYAMAH, JU .
ECOLOGY, 1978, 59 (06) :1221-1229