Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.

Soils are highly variable at many spatial scales, which makes designing studies to accurately estimate the mean value of soil properties across space challenging. The spatial correlation structure is critical to develop robust sampling strategies (e.g., sample size and sample spacing). Current guide...

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Main Authors: Henry Loescher, Edward Ayres, Paul Duffy, Hongyan Luo, Max Brunke
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3894938?pdf=render
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spelling doaj-eadc9ff8e63943149ad2933e61187f0e2020-11-25T01:49:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8321610.1371/journal.pone.0083216Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.Henry LoescherEdward AyresPaul DuffyHongyan LuoMax BrunkeSoils are highly variable at many spatial scales, which makes designing studies to accurately estimate the mean value of soil properties across space challenging. The spatial correlation structure is critical to develop robust sampling strategies (e.g., sample size and sample spacing). Current guidelines for designing studies recommend conducting preliminary investigation(s) to characterize this structure, but are rarely followed and sampling designs are often defined by logistics rather than quantitative considerations. The spatial variability of soils was assessed across ∼1 ha at 60 sites. Sites were chosen to represent key US ecosystems as part of a scaling strategy deployed by the National Ecological Observatory Network. We measured soil temperature (Ts) and water content (SWC) because these properties mediate biological/biogeochemical processes below- and above-ground, and quantified spatial variability using semivariograms to estimate spatial correlation. We developed quantitative guidelines to inform sample size and sample spacing for future soil studies, e.g., 20 samples were sufficient to measure Ts to within 10% of the mean with 90% confidence at every temperate and sub-tropical site during the growing season, whereas an order of magnitude more samples were needed to meet this accuracy at some high-latitude sites. SWC was significantly more variable than Ts at most sites, resulting in at least 10× more SWC samples needed to meet the same accuracy requirement. Previous studies investigated the relationship between the mean and variability (i.e., sill) of SWC across space at individual sites across time and have often (but not always) observed the variance or standard deviation peaking at intermediate values of SWC and decreasing at low and high SWC. Finally, we quantified how far apart samples must be spaced to be statistically independent. Semivariance structures from 10 of the 12-dominant soil orders across the US were estimated, advancing our continental-scale understanding of soil behavior.http://europepmc.org/articles/PMC3894938?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Henry Loescher
Edward Ayres
Paul Duffy
Hongyan Luo
Max Brunke
spellingShingle Henry Loescher
Edward Ayres
Paul Duffy
Hongyan Luo
Max Brunke
Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.
PLoS ONE
author_facet Henry Loescher
Edward Ayres
Paul Duffy
Hongyan Luo
Max Brunke
author_sort Henry Loescher
title Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.
title_short Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.
title_full Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.
title_fullStr Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.
title_full_unstemmed Spatial variation in soil properties among North American ecosystems and guidelines for sampling designs.
title_sort spatial variation in soil properties among north american ecosystems and guidelines for sampling designs.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Soils are highly variable at many spatial scales, which makes designing studies to accurately estimate the mean value of soil properties across space challenging. The spatial correlation structure is critical to develop robust sampling strategies (e.g., sample size and sample spacing). Current guidelines for designing studies recommend conducting preliminary investigation(s) to characterize this structure, but are rarely followed and sampling designs are often defined by logistics rather than quantitative considerations. The spatial variability of soils was assessed across ∼1 ha at 60 sites. Sites were chosen to represent key US ecosystems as part of a scaling strategy deployed by the National Ecological Observatory Network. We measured soil temperature (Ts) and water content (SWC) because these properties mediate biological/biogeochemical processes below- and above-ground, and quantified spatial variability using semivariograms to estimate spatial correlation. We developed quantitative guidelines to inform sample size and sample spacing for future soil studies, e.g., 20 samples were sufficient to measure Ts to within 10% of the mean with 90% confidence at every temperate and sub-tropical site during the growing season, whereas an order of magnitude more samples were needed to meet this accuracy at some high-latitude sites. SWC was significantly more variable than Ts at most sites, resulting in at least 10× more SWC samples needed to meet the same accuracy requirement. Previous studies investigated the relationship between the mean and variability (i.e., sill) of SWC across space at individual sites across time and have often (but not always) observed the variance or standard deviation peaking at intermediate values of SWC and decreasing at low and high SWC. Finally, we quantified how far apart samples must be spaced to be statistically independent. Semivariance structures from 10 of the 12-dominant soil orders across the US were estimated, advancing our continental-scale understanding of soil behavior.
url http://europepmc.org/articles/PMC3894938?pdf=render
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