Morphological Approach to Genetic Variability of the Asiatic Wild Ass ( Equus hemionus ) Using Non-metric Skull Characters
The Asiatic wild ass ( Equus hemionus ) is a globally endangered large mammal threatened by competition with livestock, poaching as well as habitat fragmentation and loss. Because of these environmental stresses it can be assumed that the species suff ers from lower developmental...
Main Authors: | , , , , , , |
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Format: | Article |
Language: | English |
Published: |
National University of Mongolia
2015-12-01
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Series: | Mongolian Journal of Biological Sciences |
Subjects: | |
Online Access: | http://mjbs.num.edu.mn/uploads/files/MJBS%20Volume%2013%20Number%201-2%20December%202015/PDF/mjbs-13,3-12-lkhagvasuren_2015.pdf |
Summary: | The Asiatic wild ass (
Equus hemionus
) is a globally endangered large mammal
threatened by competition with livestock, poaching as well as habitat fragmentation
and loss. Because of these environmental stresses it can be assumed that the species
suff ers from lower developmental stability and that barrier eff ects could cause genetic
isolation. To gain more insight into the population genetics of the Asiatic wild ass,
a series of 440 skulls found in two Gobi regions of Mongolia were examined. The
epigenetic variability and epigenetic distance between the samples as well as their
fl uctuating asymmetry were studied by using 62 non-metric skull characters to test and
evaluate possible genetic depletion, genetic isolation and the general infl uences during
ontogenesis. The high epigenetic variability, I
ev
= 0.39 did not diff er between the two
regions indicating no evidence of genetic depression. The very low, but signifi cant
epigenetic divergence of MMD = 0.05 between the Dzungarian Gobi and the Southern
Gobi suggests restricted connectivity. The moderate degree of fl uctuating asymmetry
(FA = 0.11 – 0.15) found gives no signs of reduced developmental stability. Thus,
our results suggest that Asiatic wild ass from Mongolia are from genetically viable
populations. |
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ISSN: | 1684-3908 2225-4994 |