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Do arid species use less water than mesic species in an irrigated common garden?

机译:在灌溉的普通花园中,干旱物种的用水量是否少于中等物种?

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摘要

There is an increasing need to consider the water use of horticultural plants grown in arid and semi-arid garden settings. Species that originate from arid and semi-arid regions are often considered suitable for xeriscaping, but there have been relatively few direct measurements of important water relations parameters such as gas exchange, resistance to cavitation, and water use efficiency (WUE) in irrigated urban gardens. In this study, we compared plant gas exchange, cavitation resistance, and WUE in evergreen shrub species from arid, temperate, and tropical environments grown in an irrigated common garden environment. Contrary to expectations, arid and non-riparian species had greater transpiration rates than temperate and riparian species, and lower specific leaf area than tropical and riparian species. Temperate species had the highest WUE as measured with the isotopic composition of leaf soluble sugar. Cavitation resistance and maximum hydraulic conductivity were not different among species from different biomes. These results indicate that under well-watered conditions, species from temperate environments may use less water than species from arid environments. In addition, native habitat is not a strong predictor of resistance to cavitation, which has implications for plant responses to water stress and drought.
机译:人们越来越需要考虑在干旱和半干旱花园环境中种植的园艺植物的用水情况。来自干旱和半干旱地区的物种通常被认为适合进行干缩景观,但是在灌溉的城市花园中,重要的水关系参数(例如气体交换,抗气蚀性和用水效率(WUE))的直接测量相对较少。 。在这项研究中,我们比较了灌溉普通花园环境中生长的干旱,温带和热带环境中常绿灌木物种的植物气体交换,抗气蚀性和WUE。与预期相反,干旱和非河岸物种比温带和河岸物种具有更高的蒸腾速率,比热带和河岸物种具有更低的比叶面积。用叶可溶性糖的同位素组成测得,温带物种的WUE最高。来自不同生物群落的物种之间的抗气蚀性和最大水力传导率没有差异。这些结果表明,在水源充足的条件下,来自温带环境的物种所消耗的水可能比来自干旱环境的物种所消耗的水少。此外,本地生境并不是抗气蚀性的强力指标,而抗气蚀性对植物对水分胁迫和干旱的反应具有影响。

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