The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep
Abstract Background Several lineages of herbivorous mammals have evolved hypsodont cheek teeth to increase the functional lifespan of their dentition. While the selective drivers of this trend and the developmental processes involved have been studied in greater detail, thus far no quantitative info...
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doaj-d8a85399a8b44f1d952313b22ab8b6e52021-09-02T12:26:22ZengBMCBMC Evolutionary Biology1471-21482018-12-0118111410.1186/s12862-018-1332-9The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheepCarsten Witzel0Uwe Kierdorf1Kai Frölich2Horst Kierdorf3Department of Biology, University of HildesheimDepartment of Biology, University of HildesheimDepartment of Biology, University of HildesheimDepartment of Biology, University of HildesheimAbstract Background Several lineages of herbivorous mammals have evolved hypsodont cheek teeth to increase the functional lifespan of their dentition. While the selective drivers of this trend and the developmental processes involved have been studied in greater detail, thus far no quantitative information is available on the relationship between additional investment into tooth growth and the resulting extension of the functional period of these teeth. To achieve this, we performed a detailed analysis of molar crown growth in known-age Soay sheep repeatedly injected with different fluorochromes. Results Our study revealed that in sheep molars especially the formation of the crown base portion is prolonged in comparison with other herbivorous artiodactyl species. Our results demonstrate that growth of the crown base accounted for more than half of the total crown formation time (CFT) of the anterior lobes of the first (approx. 220 days of total CFT of 300 days), second (approx. 260 of 460 days) and third (approx. 300 of at least 520 days) molars, and that the formation of this crown portion occurred largely after the teeth had already reached functional occlusion. By combining data on wear-related changes in crown morphology from the literature with the reconstructed additional investment into the crown base portion, it was possible to relate this additional investment to a prolongation of the functional periods of the molars ranging from 4 years in the M1 to 6 years in the M3. Conclusions Our results allow to establish a quantitative link between an additional investment into molar crown growth of sheep and the extension of the functional period of these teeth. The reported findings enable an assessment of the adaptive value, in terms of increased longevity, of an additional investment into crown elongation in a mammalian herbivore.http://link.springer.com/article/10.1186/s12862-018-1332-9HypsodontyEnamelTooth wearFluorochrome labelingTooth developmentLongevity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Carsten Witzel Uwe Kierdorf Kai Frölich Horst Kierdorf |
spellingShingle |
Carsten Witzel Uwe Kierdorf Kai Frölich Horst Kierdorf The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep BMC Evolutionary Biology Hypsodonty Enamel Tooth wear Fluorochrome labeling Tooth development Longevity |
author_facet |
Carsten Witzel Uwe Kierdorf Kai Frölich Horst Kierdorf |
author_sort |
Carsten Witzel |
title |
The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep |
title_short |
The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep |
title_full |
The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep |
title_fullStr |
The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep |
title_full_unstemmed |
The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep |
title_sort |
pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of soay sheep |
publisher |
BMC |
series |
BMC Evolutionary Biology |
issn |
1471-2148 |
publishDate |
2018-12-01 |
description |
Abstract Background Several lineages of herbivorous mammals have evolved hypsodont cheek teeth to increase the functional lifespan of their dentition. While the selective drivers of this trend and the developmental processes involved have been studied in greater detail, thus far no quantitative information is available on the relationship between additional investment into tooth growth and the resulting extension of the functional period of these teeth. To achieve this, we performed a detailed analysis of molar crown growth in known-age Soay sheep repeatedly injected with different fluorochromes. Results Our study revealed that in sheep molars especially the formation of the crown base portion is prolonged in comparison with other herbivorous artiodactyl species. Our results demonstrate that growth of the crown base accounted for more than half of the total crown formation time (CFT) of the anterior lobes of the first (approx. 220 days of total CFT of 300 days), second (approx. 260 of 460 days) and third (approx. 300 of at least 520 days) molars, and that the formation of this crown portion occurred largely after the teeth had already reached functional occlusion. By combining data on wear-related changes in crown morphology from the literature with the reconstructed additional investment into the crown base portion, it was possible to relate this additional investment to a prolongation of the functional periods of the molars ranging from 4 years in the M1 to 6 years in the M3. Conclusions Our results allow to establish a quantitative link between an additional investment into molar crown growth of sheep and the extension of the functional period of these teeth. The reported findings enable an assessment of the adaptive value, in terms of increased longevity, of an additional investment into crown elongation in a mammalian herbivore. |
topic |
Hypsodonty Enamel Tooth wear Fluorochrome labeling Tooth development Longevity |
url |
http://link.springer.com/article/10.1186/s12862-018-1332-9 |
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