Ancient relicts or recent dispersal: how long have cycads been in central A ustralia?
Author(s) -
Ingham James A.,
Forster Paul I.,
Crisp Michael D.,
Cook Lyn G.
Publication year - 2013
Publication title -
diversity and distributions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.918
H-Index - 118
eISSN - 1472-4642
pISSN - 1366-9516
DOI - 10.1111/j.1472-4642.2012.00936.x
Subject(s) - biological dispersal , taxon , ecology , lineage (genetic) , cycad , occupancy , habitat , geography , biology , haplotype , population , gene , biochemistry , genotype , sociology , demography
Aim The geology and hydrology of the C entral R anges of A ustralia provide refuge for more mesic‐adapted taxa unable to survive in the surrounding deserts. Whether this area has been a long‐term refuge for mesic‐adapted taxa is uncertain. Mesic‐adapted taxa in the region have been argued as ‘relicts’, remnants of wet forests once covering the region. This scenario hypothesizes that ‘relicts’ survived in pockets of moist habitat in the C entral R anges as the A ustralian arid zone expanded. Here, we test an hypothesis of long‐term occupancy in the C entral R anges for a cycad, M acrozamia macdonnellii , a taxon of conservation concern and also one frequently described as an ‘ancient relict’. Location A ustralia. Methods A haplotype network, derived from DNA sequences of two chloroplast regions, was used to infer the biogeographical history of M acrozamia across A ustralia. Specifically, the question of long‐term occupancy of the C entral A ustralian R anges is addressed. Results M acrozamia macdonnellii shares a haplotype with five eastern species. However, unique haplotypes restricted to only a part of the M ac D onnell R anges I nterim B iogeographic R egionalisation of A ustralia region are also present. Western A ustralian species of M acrozamia form a lineage distinct from those in the rest of A ustralia. Main conclusions The shared haplotype, nested within haplotypes from eastern A ustralia, indicates that M . macdonnellii is relatively recently derived from ancestral lineages of eastern A ustralia. This starkly contrasts with species of M acrozamia in Western A ustralia, which show long‐term isolation from those in the east. Unique haplotypes in populations of M . macdonnellii indicate that the species has occupied the region for sufficient time to accumulate variation. Furthermore, this variation appears to be geographically structured. If so, it indicates that M . macdonnellii is undergoing population differentiation, and possible speciation, in different regions of the M ac D onnell R anges. Isolated populations with unique haplotypes might be evolutionarily significant units that should be conserved.
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