Change in hydraulic traits of Mediterranean Quercus ilex subjected to long-term throughfall exclusion

被引:84
作者
Limousin, Jean-Marc [1 ]
Longepierre, Damien
Huc, Roland [1 ,2 ]
Rambal, Serge [1 ]
机构
[1] CNRS, CEFE, F-34293 Montpellier 5, France
[2] Ecol Forets Mediterraneennes URFM, INRA, UR629, F-84194 Avignon 9, France
关键词
drought; embolism; hydraulic conductivity; Quercus ilex; throughfall exclusion; vulnerability; xylem anatomy; REGIONAL CLIMATE MODEL; INDUCED XYLEM EMBOLISM; PONDEROSA PINE; CAVITATION RESISTANCE; STOMATAL CONDUCTANCE; VULNERABILITY CURVES; GAS-EXCHANGE; SCOTS PINE; DROUGHT; CONDUCTIVITY;
D O I
10.1093/treephys/tpq062
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Mediterranean tree species experience unpredictable climate environments and severe summer droughts and they may be impaired by the trend of decline in precipitation projected as a consequence of global climate change. The response of Quercus ilex to drought was studied by measuring hydraulic traits of trees growing in a mature forest subjected to partial throughfall exclusion for 6 years. We measured hydraulic conductivity, xylem vulnerability to embolism, and anatomical features in branches and roots. Xylem vulnerability to embolism was higher in the dry treatment than in the control treatment, P-50 of branches was on average -3.88 +/- 0.80 MPa for the control treatment compared with -3.41 +/- 0.80 MPa for the dry treatment, but the difference was not statistically significant. A similar difference between treatments was observed for roots, which exhibited lower P-50 values. This change of xylem vulnerability to embolism was not linked to modification of the hydraulic conductivity or vessel anatomy, which remained unaffected by the throughfall exclusion treatment. The xylem density of branches was lower in the dry treatment. The hydraulic conductivity was correlated with the mean vessel diameter of xylem, but the P-50 was not. The main response of trees from the dry treatment to reduced water availability appeared to be a reduction in the transpiring leaf area, which resulted in significantly increased leaf-specific conductivity.
引用
收藏
页码:1026 / 1036
页数:11
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