Arid
DOI10.1890/03-0346
Reconstructing plant root area and water uptake profiles
Ogle, K; Wolpert, RL; Reynolds, JF
通讯作者Ogle, K
来源期刊ECOLOGY
ISSN0012-9658
出版年2004
卷号85期号:7页码:1967-1978
英文摘要

A major challenge in plant ecology is quantifying how roots obtain water and nutrients from the soil. Stable-isotope analysis of hydrogen and oxygen in plant and soil water is one of the best and least destructive methods for elucidating plant-soil interactions. Plant roots obtain water from various depths in the soil and the isotopic signature of plant stem water reflects the soil water sources. Current methods for inferring plant water sources based on stable isotopes ("simple linear mixing models") are limited. First, their formulation restricts the number of water sources to a maximum of three (e.g., surface, intermediate, deep-soil water); estimation of additional sources leads to an identifiability problem. Second, simple linear mixing models do not appropriately reflect uncertainty, and most importantly, they cannot be employed to elucidate behavior of the root system itself, such as root activity for water uptake. This study introduces the RAPID (root area profile and isotope deconvolution) algorithm, a powerful approach for reconstructing plant water uptake and root area profiles. The RAPID algorithm overcomes the nonidentifiability problem by incorporating a biophysical model for root water uptake into a Bayesian framework such that the biophysics and prior distributions place biologically realistic constraints on the profiles. Posterior distributions for the proportions of active root area and water acquired from each soil layer are obtained via Markov chain Monte Carlo. We apply the RAPID algorithm to data collected for a desert shrub and examine its sampling implications.


英文关键词Bayesian creosotebush deconvolution delta D delta O-18 inverse problem Larrea tridentata plant water relations RAPID soil texture soil water water uptake
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000223113500029
WOS关键词STABLE-ISOTOPES ; CHIHUAHUAN DESERT ; PINUS-TAEDA ; SOIL ; PATTERNS ; SHRUBS ; TREES ; DEUTERIUM ; DYNAMICS ; FOREST
WOS类目Ecology
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/146609
作者单位(1)Duke Univ, Dept Biol, Durham, NC 27708 USA;(2)Duke Univ, Inst Stat & Decis Sci, Durham, NC 27708 USA;(3)Duke Univ, Nicholas Sch Environm & Earth Sci, Durham, NC 27708 USA
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Ogle, K,Wolpert, RL,Reynolds, JF. Reconstructing plant root area and water uptake profiles[J],2004,85(7):1967-1978.
APA Ogle, K,Wolpert, RL,&Reynolds, JF.(2004).Reconstructing plant root area and water uptake profiles.ECOLOGY,85(7),1967-1978.
MLA Ogle, K,et al."Reconstructing plant root area and water uptake profiles".ECOLOGY 85.7(2004):1967-1978.
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