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1.
Philos Trans R Soc Lond B Biol Sci ; 370(1662): 20140060, 2015 Feb 19.
Article in English | MEDLINE | ID: mdl-25561679

ABSTRACT

Rates of biodiversity loss are higher in freshwater ecosystems than in most terrestrial or marine ecosystems, making freshwater conservation a priority. However, prioritization methods are impeded by insufficient knowledge on the distribution and conservation status of freshwater taxa, particularly invertebrates. We evaluated the extinction risk of the world's 590 freshwater crayfish species using the IUCN Categories and Criteria and found 32% of all species are threatened with extinction. The level of extinction risk differed between families, with proportionally more threatened species in the Parastacidae and Astacidae than in the Cambaridae. Four described species were Extinct and 21% were assessed as Data Deficient. There was geographical variation in the dominant threats affecting the main centres of crayfish diversity. The majority of threatened US and Mexican species face threats associated with urban development, pollution, damming and water management. Conversely, the majority of Australian threatened species are affected by climate change, harvesting, agriculture and invasive species. Only a small proportion of crayfish are found within the boundaries of protected areas, suggesting that alternative means of long-term protection will be required. Our study highlights many of the significant challenges yet to come for freshwater biodiversity unless conservation planning shifts from a reactive to proactive approach.


Subject(s)
Animal Distribution , Astacoidea/physiology , Conservation of Natural Resources/methods , Endangered Species , Animals , Australia , Conservation of Natural Resources/trends , Fresh Water , Geography , Population Dynamics , Species Specificity
2.
Mol Phylogenet Evol ; 50(3): 580-98, 2009 Mar.
Article in English | MEDLINE | ID: mdl-19118635

ABSTRACT

Phylogenetic relationships and species boundaries of Australian burrowing freshwater crayfish belonging to the genera Engaeus, Engaewa, Geocharax, Gramastacus and Tenuibranchiurus are investigated using combined mitochondrial and nuclear DNA sequence data and Bayesian and Maximum Parsimony methods. Phylogenies are statistically compared to previously published hypotheses. Engaeus, Engaewa, Geocharax, Gramastacus and Tenuibranchiurus form a strongly supported monophyletic clade. This grouping is independently supported by morphology but unites geographically highly disjunct lineages. Our data show two cryptic species in Geocharax, one cryptic species in Gramastacus and two cryptic species within the highly divergent Engaeus lyelli lineage. Using a Bayesian relaxed molecular clock method, the 16S rDNA data show generic-level diversification coinciding with the transition from a wet to arid palaeoclimate near the mid Miocene.


Subject(s)
Astacoidea/genetics , Evolution, Molecular , Phylogeny , Animals , Astacoidea/classification , Australia , Bayes Theorem , Cell Nucleus/genetics , DNA, Mitochondrial/genetics , Genetic Speciation , RNA, Ribosomal, 16S/genetics , Sequence Alignment , Sequence Analysis, DNA
3.
Mol Ecol ; 17(24): 5291-314, 2008 Dec.
Article in English | MEDLINE | ID: mdl-19120999

ABSTRACT

Historical sea levels have been influential in shaping the phylogeography of freshwater-limited taxa via palaeodrainage and palaeoshoreline connections. In this study, we demonstrate an approach to phylogeographic analysis incorporating historical sea-level information in a nested clade phylogeographic analysis (NCPA) framework, using burrowing freshwater crayfish as the model organism. Our study area focuses on the Bass Strait region of southeastern Australia, which is marine region encompassing a shallow seabed that has emerged as a land bridge during glacial cycles connecting mainland Australia and Tasmania. Bathymetric data were analysed using Geographical Information Systems (GIS) to delineate a palaeodrainage model when the palaeocoastline was 150 m below present-day sea level. Such sea levels occurred at least twice in the past 500 000 years, perhaps more often or of larger magnitude within the last 10 million years, linking Victoria and Tasmania. Inter-locality distance measures confined to the palaeodrainage network were incorporated into an NCPA of crayfish (Engaeus sericatus Clark 1936) mitochondrial 16S rDNA haplotypes. The results were then compared to NCPAs using present-day river drainages and traditional great-circle distance measures. NCPA inferences were cross-examined using frequentist and Bayesian procedures in the context of geomorphological and historical sea-level data. We found distribution of present-day genetic variation in E. sericatus to be partly explained not only by connectivity through palaeodrainages but also via present-day drainages or overland (great circle) routes. We recommend that future studies consider all three of these distance measures, especially for studies of coastally distributed species.


Subject(s)
Astacoidea/genetics , Evolution, Molecular , Phylogeny , Animals , Australia , DNA, Mitochondrial/genetics , Genetic Variation , Geography , Haplotypes , Models, Genetic , RNA, Ribosomal, 16S/genetics , Rivers , Sequence Alignment , Sequence Analysis, DNA
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