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Microbial assemblages reflect environmental heterogeneity in alpine streams

  • Scott Hotaling
  • , Mary E. Foley
  • , Lydia H. Zeglin
  • , Debra S. Finn
  • , Lusha M. Tronstad
  • , J. Joseph Giersch
  • , Clint C. Muhlfeld
  • , David W. Weisrock

Producción científica: Articlerevisión exhaustiva

60 Citas (Scopus)

Resumen

Alpine streams are dynamic habitats harboring substantial biodiversity across small spatial extents. The diversity of alpine stream biota is largely reflective of environmental heterogeneity stemming from varying hydrological sources. Globally, alpine stream diversity is under threat as meltwater sources recede and stream conditions become increasingly homogeneous. Much attention has been devoted to macroinvertebrate diversity in alpine headwaters, yet to fully understand the breadth of climate change threats, a more thorough accounting of microbial diversity is needed. We characterized microbial diversity (specifically Bacteria and Archaea) of 13 streams in two disjunct Rocky Mountain subranges through 16S rRNA gene sequencing. Our study encompassed the spectrum of alpine stream sources (glaciers, snowfields, subterranean ice, and groundwater) and three microhabitats (ice, biofilms, and streamwater). We observed no difference in regional (γ) diversity between subranges but substantial differences in diversity among (β) stream types and microhabitats. Within-stream (α) diversity was highest in groundwater-fed springs, lowest in glacier-fed streams, and positively correlated with water temperature for both streamwater and biofilm assemblages. We identified an underappreciated alpine stream type—the icy seep—that are fed by subterranean ice, exhibit cold temperatures (summer mean <2°C), moderate bed stability, and relatively high conductivity. Icy seeps will likely be important for combatting biodiversity losses as they contain similar microbial assemblages to streams fed by surface ice yet may be buffered against climate change by insulating debris cover. Our results show that the patterns of microbial diversity support an ominous trend for alpine stream biodiversity; as meltwater sources decline, stream communities will become more diverse locally, but regional diversity will be lost. Icy seeps, however, represent a source of optimism for the future of biodiversity in these imperiled ecosystems.

Idioma originalEnglish
Páginas (desde-hasta)2576-2590
Número de páginas15
PublicaciónGlobal Change Biology
Volumen25
N.º8
DOI
EstadoPublished - ago 2019

Nota bibliográfica

Publisher Copyright:
© 2019 John Wiley & Sons Ltd

Financiación

We thank the Spring 2016 BIO199 “STEMCat” class at the University of Kentucky for their assistance with laboratory work, analyses, and synthesizing results. Funding was provided by re‐ search grants from the University of Wyoming‐National Park Service, Teton Conservation District, and an HHMI Sustaining Excellence Award to Vincent M. Cassone (#52008116). S.H. was supported by a University of Kentucky Gertrude Flora Ribble Graduate Research Fellowship. We also acknowledge Abbe Kesterson and Jennifer Webb for providing primers and perform‐ ing the sequencing, Linda Wilhelm for input on study design, Rose Marks for analytical input, and Lynn Hotaling for editorial comments. We thank the Spring 2016 BIO199 ?STEMCat? class at the University of Kentucky for their assistance with laboratory work, analyses, and synthesizing results. Funding was provided by research grants from the University of Wyoming-National Park Service, Teton Conservation District, and an HHMI Sustaining Excellence Award to Vincent M. Cassone (#52008116). S.H. was supported by a University of Kentucky Gertrude Flora Ribble Graduate Research Fellowship. We also acknowledge Abbe Kesterson and Jennifer Webb for providing primers and performing the sequencing, Linda Wilhelm for input on study design, Rose Marks for analytical input, and Lynn Hotaling for editorial comments.

FinanciadoresNúmero del financiador
HHMI Sustaining Excellence
Teton Conservation District, Wyoming Governor’s Office
University of Maryland, University of Wisconsin, University of California-Berkeley
University of Kentucky Gertrude Flora Ribble
University of Wyoming-National Park Service
Howard Hughes Medical Institute52008116

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Climate action
      Climate action

    ASJC Scopus subject areas

    • Global and Planetary Change
    • Environmental Chemistry
    • Ecology
    • General Environmental Science

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