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一种用于研究地下水位下降对杨树生长和存活影响的装置。

A device for studying the influence of declining water table on poplar growth and survival.

作者信息

Mahoney J M, Rood S B

机构信息

Department of Biological Sciences, University of Lethbridge, Alberta, Canada T1K 3M4.

出版信息

Tree Physiol. 1991 Apr;8(3):305-14. doi: 10.1093/treephys/8.3.305.

Abstract

Riparian poplar forests are declining downstream from many dams in the western prairie regions of North America. Drought-induced seedling and sapling mortality caused by abrupt drops in water table level following river flow regulation may be contributing to this forest decline. Here we describe a device, the rhizopod, for studying the influence of a changing water table on poplar seedling survival and growth. Seeds of a natural poplar hybrid (Populus deltoides x P. balsamifera) were planted in five rhizopods and treated to water table declines of 0, 1, 2, 4, or 8 cm day(-1). Each rhizopod consisted of 15 growth tubes connected to a central water reservoir through which the water level was regulated. Seedling survival was over 90% in rhizopods in which water table declined by 0, 1 or 2 cm day(-1), but was reduced to about 40% and less than 25% in rhizopods in which the water table level declined by 4 and 8 cm day(-1), respectively. Maximum shoot height, leaf number, and leaf area were observed in the rhizopod with a constant water table and decreased progressively with increasing rates of water table decline. Maximum root mass and length were observed in plants subjected to declines in water table level of 0 and 1 cm day(-1), respectively.

摘要

北美西部草原地区许多大坝下游的河岸杨树林正在减少。河流流量调节后地下水位突然下降导致的干旱诱导的幼苗和幼树死亡率可能是造成这种森林减少的原因。在这里,我们描述了一种装置——根足装置,用于研究地下水位变化对杨树幼苗存活和生长的影响。将一种天然杨树杂种(三角叶杨×香脂杨)的种子种植在五个根足装置中,并使其地下水位分别以0、1、2、4或8厘米/天(-1)的速度下降。每个根足装置由15个生长管组成,这些生长管连接到一个中央蓄水池,通过该蓄水池调节水位。在地下水位以0、1或2厘米/天(-1)的速度下降的根足装置中,幼苗存活率超过90%,但在地下水位分别以4和8厘米/天(-1)的速度下降的根足装置中,幼苗存活率分别降至约40%和不到25%。在地下水位恒定的根足装置中观察到最大苗高、叶片数量和叶面积,并且随着地下水位下降速度的增加而逐渐降低。在地下水位分别以0和1厘米/天(-1)的速度下降的植株中分别观察到最大根质量和根长度。

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