Related Experiment Video
Updated: Jan 20, 2026
Plant Adaptations that Reduce Water Loss
Published on: October 23, 2025
A phylogenetic approach to total evaporative water loss in mammals
Matthew J Van Sant1, Christopher E Oufiero, Agustí Muñoz-Garcia
1Department of Biology, University of California, Riverside, CA 92507, USA. mvans001@ucr.edu
Abstract:
Maintaining appropriate water balance is a constant challenge for terrestrial mammals, and this problem can be exacerbated in desiccating environments. It has been proposed that natural selection has provided desert-dwelling mammals physiological mechanisms to reduce rates of total evaporative water loss. In this study, we evaluated the relationship between total evaporative water loss and body mass in mammals by using a recent phylogenetic hypothesis. We compared total evaporative water loss in 80 species of arid-zone mammals to that in 56 species that inhabit mesic regions, ranging in size from 4 g to 3,500 kg, to test the hypothesis that mammals from arid environments have lower rates of total evaporative water loss than mammals from mesic environments once phylogeny is taken into account. We found that arid species had lower rates of total evaporative water loss than mesic species when using a dichotomous variable to describe habitat (arid or mesic). We also found that total evaporative water loss was negatively correlated with the average maximum and minimum environmental temperature as well as the maximum vapor pressure deficit of the environment. Annual precipitation and the variable Q (a measure of habitat aridity) were positively correlated with total evaporative water loss. These results support the hypothesis that desert-dwelling mammals have lower rates of total evaporative water loss than mesic species after controlling for body mass and evolutionary relatedness regardless of whether categorical or continuous variables are used to describe habitat.
Related Concept Videos
Phylogenetic Trees
Adaptations that Reduce Water Loss
Turbidity and Total Solids in Surface Water
Turbidity and total solids are related measurements addressing clarity of surface waters. Turbidity is an indirect measure of water clarity that determines the amount of light that can pass through the water. Total solids is a direct measurement of solid particles suspended in water determined by weight.
High levels of turbidity and total solids are caused by soil erosion, waste discharge, runoff, or changes in...
08:57Using Phylogenetic Analysis to Investigate Eukaryotic Gene Origin
09:44Neuro-rehabilitation Approach for Sudden Sensorineural Hearing Loss
12:00A Practical Guide to Phylogenetics for Nonexperts
