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Long-term ecological research in freshwaters enabled by regional biodiversity collections, stable isotope analysis, and environmental informatics

  • Thomas F. Turner
  • , Henry L. Bart
  • , Frank Mccormick
  • , Alexi C. Besser
  • , Rachel E. Bowes
  • , Krista A. Capps
  • , Emily S. Dearmon
  • , Casey B. Dillman
  • , Katelyn P. Driscoll
  • , Aubrey Dugger
  • , Gregor L. Hamilton
  • , Phillip M. Harris
  • , Dean A. Hendrickson
  • , Joel Hoffman
  • , Jason H. Knouft
  • , Ryan F. Lepak
  • , Hernán López-Fernández
  • , Carmen G. Montaña
  • , Seth D. Newsome
  • , Allison A. Pease
  • W. Leo Smith, Christopher A. Taylor, Rachel L. Welicky
  • University of New Mexico
  • Tulane University
  • United States Department of Agriculture
  • Emporia State University
  • University of Georgia
  • Cornell University Museum of Vertebrates
  • Department of Biological Sciences
  • University of Texas at Austin
  • U.S. Environmental Protection Agency Office of Research and Development
  • Saint Louis University
  • National Great Rivers Research and Education Center
  • Neumann University
  • University of Michigan, Ann Arbor
  • Stephen F. Austin State University
  • North West University
  • University of Kansas
  • University of Illinois at Urbana-Champaign

Research output: Contribution to journalReview articlepeer-review

10 Scopus citations

Abstract

Biodiversity collections are experiencing a renaissance fueled by the intersection of informatics, emerging technologies, and the extended use and interpretation of specimens and archived databases. In this article, we explore the potential for transformative research in ecology integrating biodiversity collections, stable isotope analysis (SIA), and environmental informatics. Like genomic DNA, SIA provides a common currency interpreted in the context of biogeochemical principles. Integration of SIA data across collections allows for evaluation of long-term ecological change at local to continental scales. Challenges including the analysis of sparse samples, a lack of information about baseline isotopic composition, and the effects of preservation remain, but none of these challenges is insurmountable. The proposed research framework interfaces with existing databases and observatories to provide benchmarks for retrospective studies and ecological forecasting. Collections and SIA add historical context to fundamental questions in freshwater ecological research, reference points for ecosystem monitoring, and a means of quantitative assessment for ecosystem restoration.

Original languageEnglish
Pages (from-to)479-493
Number of pages15
JournalBioScience
Volume73
Issue number7
DOIs
StatePublished - Jul 2023

Keywords

  • biodiversity collections
  • ecosystem restoration
  • environmental stressors
  • freshwater biology
  • stable isotope analysis

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