We developed eleven microsatellite loci for the turtleheaded sea snake, Emydocephalus annulatus, from partial genomic DNA libraries using a repeat enrichment protocol. Nine loci had high numbers of alleles (11–32) per locus, while the other two loci had six alleles each. All eleven loci amplified successfully and were polymorphic in six of seven sea snake species from the sister genus Aipysurus, while ten loci amplified successfully for the seventh species. Based on these highly successful cross-amplifications we expect these loci to be useful markers for evaluating population genetic structure, gene flow, relatedness and effective population sizes for all Aipysurus group sea snakes
Previous studies of polyandry and population genetics in garter snakes have been hampered by the lim...
Sea snakes of the genus Hydrophis are important components of animal diversity in Iranian waters of ...
Studies of population genetics increasingly use next-generation DNA sequencing to identify microsate...
We developed eleven microsatellite loci for the turtleheaded sea snake, Emydocephalus annulatus, fro...
We developed ten microsatellite loci for the elegant sea snake, Hydrophis elegans, from partial geno...
We developed 13 microsatellite loci for the olive sea snake, Aipysurus laevis, using both enriched a...
A total of 15 microsatellite primers pairs were developed for the Australian small-eyed snake Rhinop...
Using a suite of 10 highly variable microsatellite loci, we conducted genetic paternity analyses for...
Optimal integration of next-generation sequencing into mainstream research requires re-evaluation of...
Using a suite of 10 highly variable microsatelite loci, we conducted genetic paternity analyses for ...
Using a suite of 10 highly variable microsatelite loci, we conducted genetic paternity analyses for ...
Polymorphic microsatellites are widely considered more powerful for resolving population structure t...
Studies of population genetics increasingly use next-generation DNA sequencing to identify microsate...
Polymorphic microsatellites are widely considered more powerful for resolving population structure t...
Optimal integration of next-generation sequencing into mainstream research requires re-evaluation of...
Previous studies of polyandry and population genetics in garter snakes have been hampered by the lim...
Sea snakes of the genus Hydrophis are important components of animal diversity in Iranian waters of ...
Studies of population genetics increasingly use next-generation DNA sequencing to identify microsate...
We developed eleven microsatellite loci for the turtleheaded sea snake, Emydocephalus annulatus, fro...
We developed ten microsatellite loci for the elegant sea snake, Hydrophis elegans, from partial geno...
We developed 13 microsatellite loci for the olive sea snake, Aipysurus laevis, using both enriched a...
A total of 15 microsatellite primers pairs were developed for the Australian small-eyed snake Rhinop...
Using a suite of 10 highly variable microsatellite loci, we conducted genetic paternity analyses for...
Optimal integration of next-generation sequencing into mainstream research requires re-evaluation of...
Using a suite of 10 highly variable microsatelite loci, we conducted genetic paternity analyses for ...
Using a suite of 10 highly variable microsatelite loci, we conducted genetic paternity analyses for ...
Polymorphic microsatellites are widely considered more powerful for resolving population structure t...
Studies of population genetics increasingly use next-generation DNA sequencing to identify microsate...
Polymorphic microsatellites are widely considered more powerful for resolving population structure t...
Optimal integration of next-generation sequencing into mainstream research requires re-evaluation of...
Previous studies of polyandry and population genetics in garter snakes have been hampered by the lim...
Sea snakes of the genus Hydrophis are important components of animal diversity in Iranian waters of ...
Studies of population genetics increasingly use next-generation DNA sequencing to identify microsate...