土蚁对水分利用特性及生长的响应。在不同的水条件下

Lingli Yang, N. Miki, N. Harada, M. Hirobe, K. Sakamoto, K. Yoshikawa
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引用次数: 1

摘要

比较了不同生长水势条件对红木蚁生理形态水分利用特性的影响。是一种常绿灌木,广泛分布于中国毛乌素沙地的干旱和半干旱环境中。在-0.02 MPa(对照)、-0.10 MPa(中度水分胁迫)和-0.34 MPa(重度水分胁迫)水势条件下,对生长8年的岩屑进行了测量。中度胁迫下的蒸腾速率(Tr)显著低于重度胁迫和对照水分条件(分别比重度胁迫和对照平均低49%和45%)。中等水分胁迫下灌木叶片特异导水率(LSC)也显著低于严重水势条件下的叶片。相反,在严重水分胁迫下生长的荆芥叶片生物量低于中等水分胁迫和对照条件下。这些结果表明,生长在中等水分胁迫下的荆芥蒸腾速率往往由于其低LSC而降低;因此,它避免了对慢性水分胁迫的水分损失,而在严重水分胁迫下生长的植物往往通过减少叶片生物量来减少水分损失。这些结果表明,荆芥通过生理和形态上的灵活性对不同水势条件具有较高的适应能力。
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Response of water-use properties and growth of Sabina vulgaris Ant. in different water conditions
We compared effects of different growing water potential conditions on physiological and morphological water–use properties of Sabina vulgaris Ant., which is an evergreen shrub that is widely distributed in arid and semi-arid environments of the Mu Us Sandy Land, China. Measurements were taken of cuttings grown for eight years under -0.02 MPa (control), -0.10 MPa (moderate water stress), and -0.34 MPa (severe water stress) water potential conditions. The transpiration rate (Tr) under moderate stress was significantly lower than that under severe stress and control water conditions (49% and 45% lower, respectively, than severe stress and the control on average). The leaf-specific hydraulic conductivity (LSC) in shrubs growing under moderate water stress was also significantly lower than for those under the severe water potential condition. In contrast, S. vulgaris growing under severe water stress had less leaf biomass than under moderate stress or control conditions. These results suggest that S. vulgaris growing under moderate water stress tends to show a reduced transpiration rate derived from its low LSC; therefore it avoids water loss in response to chronic water stress, while plants growing under severe water stress tends to reduce water loss through decreased leaf biomass. These results suggest that S. vulgaris has a high capacity for acclimation to different water potential conditions through physiological and morphological flexibility.
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