The potential applications of ancient DNA (aDNA) techniques have been realized relatively recently, and have been revolutionized by the advent of PCR techniques in the mid 1980s. Although these techniques have been proven valuable in ancient specimens of up to 100,000 yrs old, their use in the marine realm has been largely limited to mammals and fish. Using modifications of techniques developed for skeletons of whales and mammals, we have produced a method for extracting and amplifying aDNA from sub-fossil (not embedded in rock) deep-water corals that has been successful in yielding 351 base pairs of the ITS2 region in sub-fossil Desmophyllum dianthus (Esper, 1794) and Lophelia pertusa (Linnaeus, 1758). The comparison of DNA sequences from ...
Precious corals encompass various species belonging to three different orders (Alcyonacea, Zoanthide...
Retrieving ancient DNA (aDNA) from fossils in warm, tropical environments remains a challenge. This ...
Abstract Marine sedimentary ancient DNA (sedaDNA) is increasingly used to study past ocean ecosystem...
The potential applications of ancient DNA (aDNA) techniques have been realized relatively recently, ...
Author Posting. © University of Miami - Rosenstiel School of Marine and Atmospheric Science, 2007. ...
Ancient DNA (aDNA) has been applied to evolutionary questions across a wide variety of taxa. Here, f...
The field of molecular paleontology has recently made significant contributions to anthropology and ...
Deep-sea subsurface sediments are the most important archives of marine biodiversity. Until now, the...
International audienceDeep-sea subsurface sediments are the most important archives of marine biodiv...
Ancient DNA (aDNA) provides powerful evidence for detecting the genetic basis for adaptation to envi...
Ancient DNA (aDNA) provides powerful evidence for detecting the genetic basis for adaptation to envi...
Ancient DNA (aDNA) provides powerful evidence for detecting the genetic basis for adaptation to envi...
Marine environments face acute pressures from human impacts, often resulting in substantial changes ...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
Sedimentary ancient DNA (sedaDNA) offers a novel approach to investigating past marine ecosystems—fr...
Precious corals encompass various species belonging to three different orders (Alcyonacea, Zoanthide...
Retrieving ancient DNA (aDNA) from fossils in warm, tropical environments remains a challenge. This ...
Abstract Marine sedimentary ancient DNA (sedaDNA) is increasingly used to study past ocean ecosystem...
The potential applications of ancient DNA (aDNA) techniques have been realized relatively recently, ...
Author Posting. © University of Miami - Rosenstiel School of Marine and Atmospheric Science, 2007. ...
Ancient DNA (aDNA) has been applied to evolutionary questions across a wide variety of taxa. Here, f...
The field of molecular paleontology has recently made significant contributions to anthropology and ...
Deep-sea subsurface sediments are the most important archives of marine biodiversity. Until now, the...
International audienceDeep-sea subsurface sediments are the most important archives of marine biodiv...
Ancient DNA (aDNA) provides powerful evidence for detecting the genetic basis for adaptation to envi...
Ancient DNA (aDNA) provides powerful evidence for detecting the genetic basis for adaptation to envi...
Ancient DNA (aDNA) provides powerful evidence for detecting the genetic basis for adaptation to envi...
Marine environments face acute pressures from human impacts, often resulting in substantial changes ...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
Sedimentary ancient DNA (sedaDNA) offers a novel approach to investigating past marine ecosystems—fr...
Precious corals encompass various species belonging to three different orders (Alcyonacea, Zoanthide...
Retrieving ancient DNA (aDNA) from fossils in warm, tropical environments remains a challenge. This ...
Abstract Marine sedimentary ancient DNA (sedaDNA) is increasingly used to study past ocean ecosystem...