TY - JOUR
T1 - Using DNA from museum specimens to preserve the integrity of evolutionarily significant unit boundaries in threatened species
AU - Paplinska, Justyna Zofia
AU - Taggart, David A.
AU - Corrigan, Tony
AU - Eldridge, Mark D B
AU - Austin, Jeremy J.
PY - 2011/1
Y1 - 2011/1
N2 - Use of DNA from museum samples is a powerful tool to directly establish historical ESU boundaries in areas where populations of a species have been extirpated. The brush-tailed rock-wallaby (Petrogale penicillata) has suffered extensive reductions in range and population size since European settlement in Australia. Populations of this species have been grouped into three putative evolutionarily significant units (ESUs) which were likely once contiguous along the south-east coast of Australia. However, there is currently a gap of ∼320. km between extant populations of the southern and central ESUs. Conservation plans for the brush-tailed rock-wallaby include re-introductions of animals to locations within their former range. In order to preserve the historic geographic integrity of the genetic lineages within the species, it is necessary to map the boundary between the southern ESU and central ESU to allow more informed management decisions about which lineages should be used to re-stock specific geographic locations. We have extracted DNA from samples from museum specimens that come from locations between the southernmost extant colony of the central ESU and the remaining wild colony of the southern ESU. We sequenced a 177. bp interval of the left domain of the mitochondrial DNA control region and used phylogenetic analysis to group obtained sequences with previously published sequences belonging to the three ESUs. We have extended the range of the central ESU southwards and the range of the southern ESU northwards such that the gap between the ESUs is now approximately 160. km. We recommend that, where suitable historical museum collections exist, this technique be incorporated into re-introduction plans for other threatened species.
AB - Use of DNA from museum samples is a powerful tool to directly establish historical ESU boundaries in areas where populations of a species have been extirpated. The brush-tailed rock-wallaby (Petrogale penicillata) has suffered extensive reductions in range and population size since European settlement in Australia. Populations of this species have been grouped into three putative evolutionarily significant units (ESUs) which were likely once contiguous along the south-east coast of Australia. However, there is currently a gap of ∼320. km between extant populations of the southern and central ESUs. Conservation plans for the brush-tailed rock-wallaby include re-introductions of animals to locations within their former range. In order to preserve the historic geographic integrity of the genetic lineages within the species, it is necessary to map the boundary between the southern ESU and central ESU to allow more informed management decisions about which lineages should be used to re-stock specific geographic locations. We have extracted DNA from samples from museum specimens that come from locations between the southernmost extant colony of the central ESU and the remaining wild colony of the southern ESU. We sequenced a 177. bp interval of the left domain of the mitochondrial DNA control region and used phylogenetic analysis to group obtained sequences with previously published sequences belonging to the three ESUs. We have extended the range of the central ESU southwards and the range of the southern ESU northwards such that the gap between the ESUs is now approximately 160. km. We recommend that, where suitable historical museum collections exist, this technique be incorporated into re-introduction plans for other threatened species.
KW - Ancient DNA
KW - Conservation genetics
KW - Evolutionarily significant units
KW - Macropodid
KW - Marsupial
KW - Petrogale penicillata
UR - http://www.scopus.com/inward/record.url?scp=78751580425&partnerID=8YFLogxK
U2 - 10.1016/j.biocon.2010.09.005
DO - 10.1016/j.biocon.2010.09.005
M3 - Article
AN - SCOPUS:78751580425
VL - 144
SP - 290
EP - 297
JO - Biological Conservation
JF - Biological Conservation
SN - 0006-3207
IS - 1
ER -