Itay Tesler , Jaim Sivan , Abraham Allan Degen , Michael Kam
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引用次数: 2
Abstract
Venomous viperid snakes possess relatively large and fragile hollow fangs that are an integral part of the envenomation apparatus for predation. We hypothesized that fangs serve like disposable needles and predicted a high loss rate and, hence, high replacement rate in free-ranging snakes. Snakes also possess smaller rear teeth that aid in gripping and swallowing the prey. We reasoned that these teeth are less delicate than fangs and predicted that their loss would be at a slower rate than fangs. To test our predictions, we analyzed fecal samples of free-ranging Saharan sand vipers, Cerastesvipera, in the Northern Negev desert, Israel. Close to 25% of fecal samples contained fangs, averaging more than one fang per sample and, consequently, our first prediction was supported. We estimated that fangs are replaced each fourth predation, and that replacement rate under natural conditions is at a high rate of approximately every twenty days. Fecal samples contained rear teeth at the same proportion as fangs, which indicated that the rapid replacement of teeth was not limited only to fangs and, therefore, our second prediction was not supported. These findings reflect the importance of both front fangs and rear teeth in the hunting of prey in free-ranging C. vipera. This is the first quantitative report of fang and rear teeth loss in a free-ranging viperid which is based on their recovery in feces; and we believe that similar high rates of loss occur in other viperid species.
期刊介绍:
Zoology is a journal devoted to experimental and comparative animal science. It presents a common forum for all scientists who take an explicitly organism oriented and integrative approach to the study of animal form, function, development and evolution.
The journal invites papers that take a comparative or experimental approach to behavior and neurobiology, functional morphology, evolution and development, ecological physiology, and cell biology. Due to the increasing realization that animals exist only within a partnership with symbionts, Zoology encourages submissions of papers focused on the analysis of holobionts or metaorganisms as associations of the macroscopic host in synergistic interdependence with numerous microbial and eukaryotic species.
The editors and the editorial board are committed to presenting science at its best. The editorial team is regularly adjusting editorial practice to the ever changing field of animal biology.