For temperate-zone ectotherms, a potential cost of an aquatic lifestyle may be impaired locomotor performance, due to rapid cooling of the body when in cold water. Contrary to the hypothesis that more-aquatic species should be better adapted for locomotion at low temperatures, the decline in swimming performance with temperature was similar for three species of snakes (the northern water snake (Nerodia sipedon), eastern ribbon snake (Thamnophis sauritus) and common garter snake (Thamnophis sirtalis)) that varied in their association with aquatic habitats. The effect of temperature on antipredator behaviour was also similar for the three species; at lower body temperatures, snakes relied more on alternative defensive behaviours. However, antipredator behaviour was used less by water snakes than by garter and ribbon snakes. Except for the smallest individuals, all snakes crawled more slowly than they swam, and the difference in performance was greatest for the largest snakes. When crawling, all three species relied more on alternative defensive behaviours than when swimming. In the field, water snakes fled at greater distances from human "predators" than did garter and ribbon snakes, which tended to rely on crypsis. The greater dependence on flight as the primary antipredator behaviour by water snakes, and on other tactics such as crypsis by garter and ribbon snakes, does not conform to the generalization that a species' antipredator behaviour is related to its characteristic dorsal pigmentation pattern. Species differences in antipredator behaviour appear to be more strongly related to habitat use.
The dwarf hamsters Phodopus campbelli and P. sungorus are found in semi-arid areas of Siberia and northern Mongolia, but habitat and diet differences suggest species differences in water regulatory efficiency. These differences were investigated by examining the effect of moderate water restriction (50% of ad libitum consumption) on solitary dams and on their reproductive success. In response to water restriction, P. sungorus dams lost less body mass than P. campbelli dams, and despite similar litter sizes, P. sungorus produced heavier litters and pups than P. campbelli, indicating that P. sungorus pups were larger. These results suggest that P. sungorus is more tolerant of water restriction than P. campbelli. In a second experiment the possibility that paternal care may mitigate the effects of water restriction was examined by leaving the mated pair together throughout lactation. Pairing reduced mass loss by P. campbelli dams and increased the proportion of large P. campbelli pups at weaning, but had no effect on these measures in P. sungorus, eliminating interspecific differences in responses to water restriction. Results suggest that biparental care may be a facultative response to environmental stress in P. campbelli.
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