Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/73631
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Type: Journal article
Title: Development of twenty-three novel microsatellite markers for the seagrass, Zostera muelleri from Australia
Author: Sherman, C.
Stanley, A.
Keogh, M.
Gardner, M.
Macreadie, P.
Citation: Conservation Genetics Resources, 2012; 4(3):689-693
Publisher: Springer Netherlands
Issue Date: 2012
ISSN: 1877-7252
1877-7260
Statement of
Responsibility: 
Craig D.H. Sherman, Annalise M. Stanley, Michael J. Keough, Michael G. Gardner and Peter I. Macreadie
Abstract: Seagrasses are one of the most productive and economically important habitats in the coastal zone, but they are disappearing at an alarming rate, with more than half the world’s seagrass area lost since the 1990s. They now face serious threat from climate change, and there is much current speculation over whether they will survive the coming decades. The future of seagrasses depends on their ability to recover and adapt to environmental change—i.e. their ‘resilience’. Key to this, is understanding the role that genetic diversity plays in the resilience of this highly clonal group of species. To investigate population structure, genetic diversity, mating system (sexual versus asexual reproduction) and patterns of connectivity, we isolated and characterised 23 microsatellite loci using next generation sequencing for the Australian seagrass species, Zostera muelleri (syn. Z. capricorni), which is regarded as a globally significant congeneric species. Loci were tested for levels of variation based on eight individuals sampled from Lake Macquarie, New South Wales, Australia. We detected high to moderate levels of genetic variation across most loci with a mean allelic richness of 3.64 and unbiased expected hetrozygosity of 0.562. We found no evidence for linkage disequilibrium between any loci and only three loci (ZosNSW25, ZosNSW2, and ZosNSW47) showed significant deviations from Hardy–Weinberg expectations. All individuals displayed a unique multi-locus genotype and the combined probability of identity across all loci was low (PID = 1.87 9 10-12) indicating a high level of power in detecting unique genotypes. These 23 markers will provide an important tool for future population genetic assessments in this important keystone species.
Keywords: Seagrass
dispersal
genetic structure
mating system
gene flow
sexual
asexual
clonal
recruitment
life history
Zostera capricorni Seagrasses are highly productive group of plant species
Rights: © Springer Science+Business Media B.V. 2012
DOI: 10.1007/s12686-012-9623-8
Published version: http://dx.doi.org/10.1007/s12686-012-9623-8
Appears in Collections:Aurora harvest 5
Earth and Environmental Sciences publications
Environment Institute publications

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