Natural History of the Ornate Box Turtle, Terrapene ornata ornata AgassizLegler, John M.
Science
Natural History of the Ornate Box Turtle, Terrapene ornata ornata Agassiz
Legler, John M.
Ornate box turtle
Hibernating turtles and those experimentally chilled were usually
comatose but were almost never completely incapacitated even at
temperatures at or near zero degrees. Experimental pinching, probing,
and pulling revealed that muscles operating the neck, the limbs, and
the lobes of the plastron could be controlled by the turtle at low
temperatures; hissing, resulting from rapid expulsion of air through
the mouth and nostrils (when the head and limbs are drawn in
reflexively) occurred at all body temperatures but was sometimes
barely audible in the coldest turtles. Of all living turtles observed,
only two (hatchlings 1 and 2 in coldroom experiment) were completely
immobile at low temperatures, failing to respond even to pinpricks at
body temperatures of 0.8 and 1.7 degrees, respectively, although other
turtles, under the same experimental conditions, consistently gave at
least some response to the same stimulation.
Turtles chilled experimentally continued to move about voluntarily,
albeit sluggishly, at temperatures much lower (2.5° for each of four
adults; 10.0° and 6.2° for two juveniles) than those at which
locomotion was resumed in the warming phase (13° for the adults, 21.7°
and 20.1° for the juveniles). Hatchlings chilled so rapidly that it
was difficult to ascertain accurately the temperature at which
inactivity was induced. Juveniles became active gradually, moving
slowly about when the body temperature reached approximately 20
degrees but not attempting more strenuous activities such as climbing
the walls of enclosures, until body temperatures of 22 to 25 degrees
were attained. Adults, on the other hand, exhibited "normal" activity
as soon as they became voluntarily active.
The ability of ornate box turtles to move about when the body
temperature is near the lethal minimum probably enables those caught
in the open by a sudden drop in environmental temperature to find
cover that keeps them from freezing to death. Prolonged chilling, on
the other hand, seems to create a physiologically different situation;
the temperature at which activity is resumed is higher and subject to
less variation.
Juveniles were more rapidly affected by environmental temperatures,
were subject to different thresholds, and were inactive over a wider
range than were the adults. Indeed, the _rate_ of chilling, rather
than absolute body temperature alone, might in large measure influence
the reactions of turtles to environmental temperatures. If this be so,
smaller turtles, having a narrower thermal range of normal activity,
must lose at least some of the advantages gained by their ability to
warm up more rapidly.
Public-domain text, read in full here on John Shaqi.
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