What could explain 13C signature of dryland biocrusts? Evaluating potential resource transfer between plants and biocrusts.
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https://portal.edirepository.org/nis/mapbrowse?packageid=knb-lter-sev.322.1
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Dryland ecosystems are increasing in geographic extent and contribute greatly to interannual variability in global carbon dynamics. Disentangling interactions among dominant primary producers can help partition their contributions to dryland C dynamics. We measured the δ13C signatures of biological soil crusts and dominant plant species (C3 and C4) across a regional scale in the southwestern USA to determine if biocrust cyanobacteria were coupled to plant productivity (using plant-derived C mixotrophically), or independent of plant activity (and therefore purely autotrophic).
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Environmental Data Initiative



