Anthropogenic water sources and the effects on Sonoran Desert small mammal communities

Aaron B. Switalski, Heather Bateman

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Anthropogenic water sources (AWS) are developed water sources used as a management tool for desert wildlife species. Studies documenting the effects ofAWSare often focused on game species; whereas, the effects on non-target wildlife are less understood.Weused live trapping techniques to investigate rodent abundance, biomass, and diversity metrics near AWS and paired control sites; we sampled vegetation to determine rodent-habitat associations in the Sauceda Mountains of the Sonoran Desert in Arizona. A total of 370 individual mammals representing three genera and eight species were captured in 4,800 trap nights from winter 2011 to spring 2012. A multi-response permutation procedure was used to identify differences in small mammal community abundance and biomass by season and treatment. Rodent abundance, biomass, and richness were greater atAWS compared to control sites. Patterns of abundance and biomass were driven by the desert pocket mouse (Chaetodipus penicillatus) which was the most common capture and two times more numerous at AWS compared to controls. Vegetation characteristics, explored using principal components analysis, were similar between AWS and controls. Two species that prefer vegetation structure, Bailey's pocket mouse (C. baileyi) and white-throated woodrat (Neotoma albigula), had greater abundances and biomass near AWS and were associated with habitat having high cactus density. Although small mammals do not drink free-water, perhaps higher abundances of some species of desert rodents at AWS could be related to artificial structure associated with construction or other resources. Compared to the 30-year average of precipitation for the area, the period of our study occurred during a dry winter. During dry periods, perhaps AWS provide resources to rodents related to moisture.

Original languageEnglish (US)
Article numbere4003
JournalPeerJ
Volume2017
Issue number11
DOIs
StatePublished - 2017

Keywords

  • Arid ecosystems
  • Arizona
  • Developed waters
  • Habitat structure
  • Military lands
  • Plants
  • Rodent
  • Rodentia
  • Species-habitat models
  • Wildlife waters

ASJC Scopus subject areas

  • General Neuroscience
  • General Biochemistry, Genetics and Molecular Biology
  • General Agricultural and Biological Sciences

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