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深度控制示踪技术测量亚热带草原中树木和草本植物的水分利用的垂直、水平和时间格局。

A depth-controlled tracer technique measures vertical, horizontal and temporal patterns of water use by trees and grasses in a subtropical savanna.

机构信息

Department of Biological Sciences, University of Alaska, Anchorage, AK 99508, USA.

出版信息

New Phytol. 2010 Oct;188(1):199-209. doi: 10.1111/j.1469-8137.2010.03338.x. Epub 2010 Jun 16.

Abstract

• As described in the two-layer hypothesis, woody plants are often assumed to use deep soils to avoid competition with grasses. Yet the direct measurements of root activity needed to test this hypothesis are rare. • Here, we injected deuterated water into four soil depths, at four times of year, to measure the vertical and horizontal location of water uptake by trees and grasses in a mesic savanna in Kruger National Park, South Africa. • Trees absorbed 24, 59, 14 and 4% of tracer from the 5, 20, 50, and 120  cm depths, respectively, while grasses absorbed 61, 29, 9 and 0.3% of tracer from the same depths. Only 44% of root mass was in the top 20 cm. Trees absorbed tracer under and beyond their crowns, while 98% of tracer absorbed by grasses came from directly under the stem. • Trees and grasses partitioned soil resources (20 vs 5  cm), but this partitioning did not reflect, as suggested by the two-layer hypothesis, the ability of trees to access deep soil water that was unavailable to grasses. Because root mass was a poor indicator of root activity, our results highlight the importance of precise root activity measurements.

摘要

• 正如双层假说所描述的,木本植物通常被认为利用深层土壤以避免与草本植物竞争。然而,为了验证这一假说,直接测量根系活动是罕见的。• 在这里,我们在四个季节的四个不同深度注入氘水,以测量南非克鲁格国家公园湿润热带草原中树木和草本植物的水分吸收的垂直和水平位置。• 树木分别从 5、20、50 和 120 厘米深度吸收示踪剂的 24%、59%、14%和 4%,而草本植物从相同深度吸收示踪剂的 61%、29%、9%和 0.3%。只有 44%的根系质量在表层 20 厘米内。树木在树冠下方和树冠外吸收示踪剂,而 98%的由草本植物吸收的示踪剂来自茎干正下方。• 树木和草本植物在土壤资源(20 厘米对 5 厘米)上进行了分配,但这种分配并不能反映双层假说所暗示的树木获取深层土壤水分的能力,而这种水分是草本植物无法获取的。由于根系质量是根系活性的一个很差的指标,因此我们的结果突出了精确测量根系活性的重要性。

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