The average zoölogist will readily distinguish skulls of juveniles and
young from adults but usually fails to distinguish subadults from
adults. Nevertheless, subadults must be distinguished from adults if
geographic variation is to be measured accurately. The reason for this
is that such differences in the form (not size) of the skull as result
from increasing age equal and often exceed the differences of a
geographic sort which serve for distinguishing subspecies that have
adjoining geographic ranges. All sutures in the skull, except those
between the tympanic bulla and the braincase, and those on the dorsal
face of the rostrum, are obliterated while the animal is a subadult.
Most kinds of mammals retain sutures throughout life or until the
animals are well into adulthood. Therefore, skulls of weasels offer
fewer features for estimating age than do those of most mammals and the
skulls of weasels that are subadults or older are more difficult to
classify accurately as to age than are the skulls of most other
mammals. More reliance on shape of entire skull and less reliance on
extent and shape of any individual bone is necessary in estimating the
age of a weasel. Wright (1947:344) shows that the weight of the baculum
(os penis) is a certain means of differentiating adults from males of
lesser age. When approximately eleven months old, _Mustela frenata
oribasus_ of western Montana molts from the white winter coat into the
brown summer coat. At that time spermatogenesis starts for the first
time and the weight of the baculum increases from less than 30
milligrams to more than 52 milligrams.
In the autumn and early winter, most of the specimens are subadults.
Ordinarily the few adults obtained in these seasons can easily be
segregated from the subadults because ontogenetic development in the
twelve additional months of life of each of the older animals has
obliterated the sutures on the rostrum, heightened (vertically) and
lengthened (anteriorly) the sagittal crest, widened the rostrum, and
produced still other changes in form that are revealed by direct
comparison of specimens of the two ages.
Secondary Sexual Variation
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