Results 211 to 220 of about 40,885 (261)
DNA barcoding and phylogenetic analysis to characterize biodiversity of some freshwater fish species in Lake Nasser and River Nile. [PDF]
Ashour EM, Ahmed RA, Abass NY.
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Conservation of Verbascum sinaiticum Benth using innovative tissue culture technique and DNA barcoding. [PDF]
Ali MA, Gowda NR, Allam MA, Fayed SA.
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The brown copper moth, <i>Tridentaforma browncopper</i>: DNA barcoding reveals a second species in the family Tridentaformidae (Lepidoptera, Adeloidea). [PDF]
Monckton SK +6 more
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2023
DNA barcoding is a technique used to identify plant species by using specific sections of DNA. The conventional approach to species identification is gradually diminishing due to constraints such as potential misinterpretation, overlooking morphologically cryptic.The two key coding regions, rbcL and matK, serve as primary DNA barcode markers for ...
Alheyalee, Rayyan +1 more
openaire +2 more sources
DNA barcoding is a technique used to identify plant species by using specific sections of DNA. The conventional approach to species identification is gradually diminishing due to constraints such as potential misinterpretation, overlooking morphologically cryptic.The two key coding regions, rbcL and matK, serve as primary DNA barcode markers for ...
Alheyalee, Rayyan +1 more
openaire +2 more sources
Trends in Ecology & Evolution, 2009
DNA barcoding - taxon identification using a standardized DNA region - has received much attention recently, and is being further developed through an international initiative. We anticipate that DNA barcoding techniques will be increasingly used by ecologists.
Valentini, A. +2 more
openaire +3 more sources
DNA barcoding - taxon identification using a standardized DNA region - has received much attention recently, and is being further developed through an international initiative. We anticipate that DNA barcoding techniques will be increasingly used by ecologists.
Valentini, A. +2 more
openaire +3 more sources
Mitochondrial DNA, 2011
DNA barcoding is a method promising fast and accurate identification of animal species based on the sequencing of the mitochondrial c oxidase subunit (COI) gene. In this study, we explore the prospects for DNA barcoding in one particular fish group, the billfishes (suborder Xiphioidei--swordfish, marlins, spearfishes, and sailfish).
Hanner, Robert +4 more
openaire +3 more sources
DNA barcoding is a method promising fast and accurate identification of animal species based on the sequencing of the mitochondrial c oxidase subunit (COI) gene. In this study, we explore the prospects for DNA barcoding in one particular fish group, the billfishes (suborder Xiphioidei--swordfish, marlins, spearfishes, and sailfish).
Hanner, Robert +4 more
openaire +3 more sources
Acta Tropica, 2012
Due to the difficulty in morphological identification the development of reliable molecular tools for species distinction is a priority for piroplasma. Previous studies based on 18S rRNA and other gene sequences provided a backbone for the phylogeny of piroplasma. However, it is difficult to discriminate species in a comprehensive sample.
Huitian, Gou +11 more
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Due to the difficulty in morphological identification the development of reliable molecular tools for species distinction is a priority for piroplasma. Previous studies based on 18S rRNA and other gene sequences provided a backbone for the phylogeny of piroplasma. However, it is difficult to discriminate species in a comprehensive sample.
Huitian, Gou +11 more
openaire +2 more sources
Molecular Ecology Resources, 2010
AbstractDNA barcoding is based on the use of short DNA sequences to provide taxonomic tags for rapid, efficient identification of biological specimens. Currently, reference databases are being compiled. In the future, it will be important to facilitate access to these databases, especially for nonspecialist users.
Mihai, Albu +3 more
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AbstractDNA barcoding is based on the use of short DNA sequences to provide taxonomic tags for rapid, efficient identification of biological specimens. Currently, reference databases are being compiled. In the future, it will be important to facilitate access to these databases, especially for nonspecialist users.
Mihai, Albu +3 more
openaire +2 more sources
Protist, 2006
We have developed a simple method for subtyping the intestinal protistan parasite Blastocystis using an approach equivalent to DNA barcoding in animals. Amplification of a 600 bp region of the small subunit ribosomal RNA gene followed by single primer sequencing of the PCR product provides enough data to assign isolates to specific subtypes ...
Stephanie M, Scicluna +2 more
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We have developed a simple method for subtyping the intestinal protistan parasite Blastocystis using an approach equivalent to DNA barcoding in animals. Amplification of a 600 bp region of the small subunit ribosomal RNA gene followed by single primer sequencing of the PCR product provides enough data to assign isolates to specific subtypes ...
Stephanie M, Scicluna +2 more
openaire +2 more sources
2012
Conventional DNA barcoding uses an approximately 650 bp DNA barcode of the mitochondrial gene COI for species identification in animal groups. Similar size fragments from chloroplast genes have been proposed as barcode markers for plants. While PCR amplification and sequencing of a 650 bp fragment is consistent in freshly collected and well-preserved ...
Mehrdad, Hajibabaei, Charly, McKenna
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Conventional DNA barcoding uses an approximately 650 bp DNA barcode of the mitochondrial gene COI for species identification in animal groups. Similar size fragments from chloroplast genes have been proposed as barcode markers for plants. While PCR amplification and sequencing of a 650 bp fragment is consistent in freshly collected and well-preserved ...
Mehrdad, Hajibabaei, Charly, McKenna
openaire +2 more sources

