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Bat guano isotope systems (δ13C, δ15N, and δ2H) integrate environmental, climatic, and ecological signals

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posted on 2024-06-12, 16:51 authored by JOSHUA CAMPBELLJOSHUA CAMPBELL, Alexandra Tsalickis, Matthew N. Waters, Richard S. Vachula

Bat guano is an emergent paleoenvironmental archive and isotopic compositions of bat guano have been tied to climate, vegetation, and trophic processing in isolated studies. However, a comprehensive, multi-isotope assessment of bat guano has not been established, hindering the proliferation of guano-based paleoenvironmental research. In this study, we comprehensively examine isotopic compositions of a 12,000-year long bat guano core from Cave Springs Cave, Alabama as well as relevant isotopic data from other sources to improve our understanding of each isotope system (δ13C, δ15N, and δ2H), the source-to-sink components of guano isotope pathways, and the fractionation occurring along each multi-step isotopic pathway from sources (i.e., soil, atmosphere, rainfall) to guano formation. We find the δ13C values of guano from Cave Springs Cave primarily reflect local vegetation with a large shift that coincides with the onset of the Anthropocene (after 1950 C.E.). We also determine that the δ15N values of Cave Springs Cave guano were not associated with precipitation or any other climatic variable but instead reflect a change in bat diet and agricultural intensification during the past 600 years. Overall, these data adds to the existing body of bat guano research and supports bat guano as a reliable archive for paleoenvironmental reconstructions.

Funding

National Speleological Society

Auburn University

History

Data contact name

Campbell, Joshua W.

Data contact email

joshua.campbell@usda.gov

Publisher

Ag Data Commons

Temporal Extent Start Date

2018-01-01

Theme

  • Not specified

Geographic location - description

Cave Springs Cave, Alabama

ISO Topic Category

  • climatologyMeteorologyAtmosphere
  • environment
  • biota

National Agricultural Library Thesaurus terms

animal manures; carbon; stable isotopes; nitrogen; paleoecology; Chiroptera; climate; vegetation; Alabama; fractionation; soil; rain; Anthropocene epoch; diet; intensive farming

OMB Bureau Code

  • 005:18 - Agricultural Research Service

OMB Program Code

  • 005:040 - National Research

ARS National Program Number

  • 304

Pending citation

  • No

Related material without URL

Tsalickis, A., Waters, M.N., Campbell, J.W. and Vachula, R.S., 2024. Bat guano isotope systems (δ13C, δ15N, and δ2H) integrate environmental, climatic, and ecological signals. Quaternary Science Reviews, 334, p.108711.

Public Access Level

  • Public

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