Sap flow response of Eucaylyptus (Eucalyptus urophylla) to environmental stress in South China.

Guang-cai Yin, Guo-yi Zhou, Jim Morris, Zhi-hong Huang, Guo-wei Chu, Guang-yi Zhou
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引用次数: 12

Abstract

Sap flow and environmental conditions were monitored at two Eucalyptus (Eucalyptus urophylla S.T.Blake) plantations at Hetou and Jijia, located in Leizhou, Zhanjiang, Guangdong Province. It was found that daily sap flux density (SFD) of Eucalyptus was closely related to daily atmospheric vapor pressure deficit (VPD) (R2 = 0.76, P = 0.01 at Hetou and R2 = 0.7021, P = 0.01 at Jijia) at both sites. No significant relationship existed between daily SFD and mean daily air temperature at both sites. Daily SFD varied with wind speed Y = -17585X3 + 15147X2 - 1250.7X + 2278.4 (R2 = 0.68; P = 0.01) at Hetou and Y = -101.67X3 - 1.65X2 - 376.4X + 1914.8 (R2 = 0.40, P = 0.05) at Jijia, where Y was daily SFD, X was daily wind speed. Experimental observations yielded the following data: (1) the critical lower and upper daily VPD threshold were 0 and 2 kPa, within which daily SFD varied from 540+/-70 L/(m2.d) to 4739+/-115 L/(m2.d) at Hetou site, from 397+/-26 L/(m2.d) to 3414+/-191 L/(m2.d) at Jijia site; (2) Diurnal SFDs at Hetou site were much higher under low relative humidity (< 30%) and slightly lower under high relative humidity (> 80%) compared with those at the Jijia site; (3) The upper and lower threshold of daily and diurnal RAD for the optimal water use of E. urophylla plantations were 18+/-2.7 and 2+/-1 MJ/(m2.d), 669 and 0 J/(cm2.h) during the observation period.

华南尾桉树液流对环境胁迫的响应
对广东湛江雷州河头和吉家两个尾叶桉人工林的液流和环境条件进行了监测。结果表明,两样地桉树日树液通量密度(SFD)与日大气水汽压差(VPD)密切相关(河头R2 = 0.76, P = 0.01,吉家R2 = 0.7021, P = 0.01)。两个站点的日平均空气温度与SFD无显著相关。日SFD随风速变化Y = - 17585x3 + 15147X2 - 1250.7X + 2278.4 (R2 = 0.68;河头地区P = 0.01),鸡家地区Y = -101.67 x3 - 1.65X2 - 376.4X + 1914.8 (R2 = 0.40, P = 0.05),其中Y为日SFD, X为日风速。实验结果表明:(1)日VPD临界值上下限分别为0和2 kPa,日SFD在河头站点为540+/-70 L/(m2.d) ~ 4739+/-115 L/(m2.d),鸡家站点为397+/-26 L/(m2.d) ~ 3414+/-191 L/(m2.d);(2)河头站点的日SFDs在低相对湿度(< 30%)条件下显著高于积家站点,在高相对湿度(> 80%)条件下略低于积家站点;(3)观测期内尾叶人工林最佳水分利用日和日RAD的上、下限分别为18+/-2.7和2+/-1 MJ/(m2.d)、669和0 J/(cm .h)。
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