Five bovine polymorphic dinucleotide microsatellite markers: FBN5, FBN16, FBN17, FBN18, and FBN19. 1998

R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
Institut für die Biologie landwirtschaftlicher Nutztiere, Forschungsbereich Molekularbiologie, Dummerstorf, Germany. weikard@uranus.fbn-dummerstorf.de

UI MeSH Term Description Entries
D008297 Male Males
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D011110 Polymorphism, Genetic The regular and simultaneous occurrence in a single interbreeding population of two or more discontinuous genotypes. The concept includes differences in genotypes ranging in size from a single nucleotide site (POLYMORPHISM, SINGLE NUCLEOTIDE) to large nucleotide sequences visible at a chromosomal level. Gene Polymorphism,Genetic Polymorphism,Polymorphism (Genetics),Genetic Polymorphisms,Gene Polymorphisms,Polymorphism, Gene,Polymorphisms (Genetics),Polymorphisms, Gene,Polymorphisms, Genetic
D002417 Cattle Domesticated bovine animals of the genus Bos, usually kept on a farm or ranch and used for the production of meat or dairy products or for heavy labor. Beef Cow,Bos grunniens,Bos indicus,Bos indicus Cattle,Bos taurus,Cow,Cow, Domestic,Dairy Cow,Holstein Cow,Indicine Cattle,Taurine Cattle,Taurus Cattle,Yak,Zebu,Beef Cows,Bos indicus Cattles,Cattle, Bos indicus,Cattle, Indicine,Cattle, Taurine,Cattle, Taurus,Cattles, Bos indicus,Cattles, Indicine,Cattles, Taurine,Cattles, Taurus,Cow, Beef,Cow, Dairy,Cow, Holstein,Cows,Dairy Cows,Domestic Cow,Domestic Cows,Indicine Cattles,Taurine Cattles,Taurus Cattles,Yaks,Zebus
D002874 Chromosome Mapping Any method used for determining the location of and relative distances between genes on a chromosome. Gene Mapping,Linkage Mapping,Genome Mapping,Chromosome Mappings,Gene Mappings,Genome Mappings,Linkage Mappings,Mapping, Chromosome,Mapping, Gene,Mapping, Genome,Mapping, Linkage,Mappings, Chromosome,Mappings, Gene,Mappings, Genome,Mappings, Linkage
D005260 Female Females
D000483 Alleles Variant forms of the same gene, occupying the same locus on homologous CHROMOSOMES, and governing the variants in production of the same gene product. Allelomorphs,Allele,Allelomorph
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001483 Base Sequence The sequence of PURINES and PYRIMIDINES in nucleic acids and polynucleotides. It is also called nucleotide sequence. DNA Sequence,Nucleotide Sequence,RNA Sequence,DNA Sequences,Base Sequences,Nucleotide Sequences,RNA Sequences,Sequence, Base,Sequence, DNA,Sequence, Nucleotide,Sequence, RNA,Sequences, Base,Sequences, DNA,Sequences, Nucleotide,Sequences, RNA
D016133 Polymerase Chain Reaction In vitro method for producing large amounts of specific DNA or RNA fragments of defined length and sequence from small amounts of short oligonucleotide flanking sequences (primers). The essential steps include thermal denaturation of the double-stranded target molecules, annealing of the primers to their complementary sequences, and extension of the annealed primers by enzymatic synthesis with DNA polymerase. The reaction is efficient, specific, and extremely sensitive. Uses for the reaction include disease diagnosis, detection of difficult-to-isolate pathogens, mutation analysis, genetic testing, DNA sequencing, and analyzing evolutionary relationships. Anchored PCR,Inverse PCR,Nested PCR,PCR,Anchored Polymerase Chain Reaction,Inverse Polymerase Chain Reaction,Nested Polymerase Chain Reaction,PCR, Anchored,PCR, Inverse,PCR, Nested,Polymerase Chain Reactions,Reaction, Polymerase Chain,Reactions, Polymerase Chain

Related Publications

R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
June 1996, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
December 1995, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
December 1995, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
February 1994, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
October 1996, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
October 1999, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
December 1998, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
October 1995, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
December 2009, Animal genetics,
R Weikard, and T Goldammer, and C Kühn, and P Laurent, and H Levéziel, and W Barendse, and M Schwerin
October 2001, Animal genetics,
Copied contents to your clipboard!