Using Isotopic Labeling to Investigate Artemisia ordosica Root Water Uptake Depth in the Eastern Margin of Mu Us Sandy Land
Yingming Yang,
Xikai Wang,
Yunlan He (),
Kaiming Zhang,
Fan Mo,
Weilong Zhang and
Gang Liu
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Yingming Yang: State Key Laboratory of Water Resource Protection and Utilization in Coal Ming, Beijing 102211, China
Xikai Wang: School of Geosciences and Surveying Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China
Yunlan He: State Key Laboratory of Coal Resources and Safe Mining, China University of Mining and Technology (Beijing), Beijing 100083, China
Kaiming Zhang: School of Geosciences and Surveying Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China
Fan Mo: School of Geosciences and Surveying Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China
Weilong Zhang: Shendong Coal Technology Research Institute, Shendong Coal Group Co., Ltd., Shenmu 719315, China
Gang Liu: Shendong Coal Technology Research Institute, Shendong Coal Group Co., Ltd., Shenmu 719315, China
Sustainability, 2022, vol. 14, issue 22, 1-16
Abstract:
The annual precipitation in the eastern Mu Us sandy land is about 400 mm, but the precipitation varies greatly between years and seasons and severe meteorological and seasonal droughts often occur, which makes the ecological environment very fragile. Artemisia ordosica is the most dominant species in the area. We used depth-controlled deuterium labeling technology to study the root water uptake depth of adult Artemisia ordosica to explore how Artemisia ordosica can survive in extreme droughts. In addition, the soil moisture content was analyzed after the rainy season in October 2020 and the dry season in June 2021. We found that under the influence of an extreme seasonal drought in the study area, the soil layer below 180 cm in depth still maintained high water content of more than 2%; the dry sandy soil in the surface layer inhibited the loss of soil water below 180 cm. The maximum water uptake depth of the roots of adult Artemisia ordosica can reach 240–260 cm. In periods of drought, Artemisia ordosica can still maintain life by absorbing deep soil water. In drought-prone environments, Artemisia ordosica evolved a deeper vertical root system to survive dry periods by absorbing soil water from deeper layers, showing a broad water intake capacity and strong adaptability to arid environments. This study can provide a reference for afforestation projects and ecological restoration in Mu Us sandy land and also provide a reference for the ecological restoration of coal mining areas in this area.
Keywords: root water uptake depth; natural shrubs; depth-controlled deuterium labeling; root ecological niche; Mu Us sandy land (search for similar items in EconPapers)
JEL-codes: O13 Q Q0 Q2 Q3 Q5 Q56 (search for similar items in EconPapers)
Date: 2022
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