Aquaculture and fisheries management require tools for identifying individuals or groups of aquatic organisms for the purpose of monitoring performance (growth, survival and behavior) and stock structure. In aquaculture research, commercially important traits of tagged individuals are assessed to generate supportive data for selective breeding, genetic improvement and commercial-scale fish farming. Fisheries management employs identification systems for the evaluation of stock abundance, population dynamics and documentation of wild and hatchery-bred stocks. Stock structure analysis is useful in the planning and implementation of sound stock management and more importantly, in stock enhancement programs. Blankenship and Leber (1995) undersc...
Over the past few years, application of molecular genetic markers in fisheries has increased dramati...
As researchers have gained a greater understanding of the contribution that population genetic proce...
The use of reproductive and genetic technologies can increase the efficiency of selective breeding p...
Aquaculture and fisheries management require tools for identifying individuals or groups of aquatic ...
Abstract Development of molecular genetic markers provides aquaculture with tools for a number of re...
In the past, world fisheries appeared to have unlimited growth and potential. Although consumer dema...
An increase in aquatic animal production can be achieved by extending aquaculture areas geographical...
International audienceThe use of genetic, biochemical and electronic markers in population biology a...
Development of molecular genetic markers provides aquaculture with tools for a number of research an...
Thirty years of industrial fishing have led to overexploitation of many species, triggering the urge...
DNA marker technologies have revolutionized the way aquaculture genetics research is being conducted...
Establishment of genetic markers is the prerequisite for stock structure analysis. The markers can d...
DNA-level markers find several applications in fisheries research analysis and aquaculture. Species ...
Determining changes in the genetic diversity of selected hatchery stocks through DNA-level polymorph...
Herein, we have developed molecular markers for nuclear genes to use in multiplex-PCR and PCR-RFLP, ...
Over the past few years, application of molecular genetic markers in fisheries has increased dramati...
As researchers have gained a greater understanding of the contribution that population genetic proce...
The use of reproductive and genetic technologies can increase the efficiency of selective breeding p...
Aquaculture and fisheries management require tools for identifying individuals or groups of aquatic ...
Abstract Development of molecular genetic markers provides aquaculture with tools for a number of re...
In the past, world fisheries appeared to have unlimited growth and potential. Although consumer dema...
An increase in aquatic animal production can be achieved by extending aquaculture areas geographical...
International audienceThe use of genetic, biochemical and electronic markers in population biology a...
Development of molecular genetic markers provides aquaculture with tools for a number of research an...
Thirty years of industrial fishing have led to overexploitation of many species, triggering the urge...
DNA marker technologies have revolutionized the way aquaculture genetics research is being conducted...
Establishment of genetic markers is the prerequisite for stock structure analysis. The markers can d...
DNA-level markers find several applications in fisheries research analysis and aquaculture. Species ...
Determining changes in the genetic diversity of selected hatchery stocks through DNA-level polymorph...
Herein, we have developed molecular markers for nuclear genes to use in multiplex-PCR and PCR-RFLP, ...
Over the past few years, application of molecular genetic markers in fisheries has increased dramati...
As researchers have gained a greater understanding of the contribution that population genetic proce...
The use of reproductive and genetic technologies can increase the efficiency of selective breeding p...