Tobias Schultes
Biographic Data
| ID | 4182588 |
|---|---|
| NAME | Tobias Schultes |
| GIVEN NAMES | Tobias |
| FAMILY NAME | Schultes |
| SIGNATURE | SCHULTES T |
| AFFILIATIONS | University of Göttingen |
| VERIFIED | No |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 12 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 1997 |
| LATEST PUBLICATION YEAR | 2000 |
| H-INDEX | 2 |
STR Allelic Frequencies in a German Skeleton Collection
Chromosomal DNA was isolated from bones from a German skeleton collection (Goslar, 18th century) and detected by PCR. Nine microsatellite regions were amplified by multiplex reactions using the AmpFlSTR Profiler Plus kit and analysed to obtain their allelic distribution. A statistical evaluation of the results revealed no allelic differentiation between the historic sample and a modern German one at each locus.
Megaplex DNA typing can provide a strong indication of the authenticity of ancient DNA amplifications by clearly recognizing any possible type of modern contamination
Recent experiments revealed the perfect applicability of megaplex typing by autosomal short tandem repeats (STRs) to degraded DNA. The advantages of megaplex approaches lie in reduced amounts of sample material that are necessary and in remarkable time saving. Furthermore, megaplex typing clearly recognizes possible contaminations and thus has a large potential for indicating authenticity in ancient DNA analysis. This is demonstrated by three exa…
Ancient DNA-typing approaches for the determination of kinship in a disturbed collective burial site
Several DNA-typing approaches are applied for identification and kinship analysis. Autosomal Short Tandem Repeat (STR) typing produces the genetic fingerprint that is unique to an individual. Y-chromosomal STR typing identifies individuals of the same paternal lineage, and sequence analysis of the hypervariable region of the mitochondrion can identify maternally related individuals. The combined approach of these DNA-typing methods allows the det…
Assignment of isolated skeletal elements by aDNA typing
Analysis of ancient DNA of material found in the Lichtensteinhöhle, a burial site of the Younger Bronze Age has been used for the first time to assign isolated skeletal elements to corresponding individuals. The method involved DNA typing through amplification of five Short Tandem Repeat loci which are also used in forensic genetics for the determination of kinship and identification. From all of the examined bone samples DNA was successfully ext…
Ancient DNA-typing approaches for the determination of kinship in a disturbed collective burial site
Several DNA-typing approaches are applied for identification and kinship analysis. Autosomal Short Tandem Repeat (STR) typing produces the genetic fingerprint that is unique to an individual. Y-chromosomal STR typing identifies individuals of the same paternal lineage, and sequence analysis of the hypervariable region of the mitochondrion can identify maternally related individuals. The combined approach of these DNA-typing methods allows the det…
Megaplex DNA typing can provide a strong indication of the authenticity of ancient DNA amplifications by clearly recognizing any possible type of modern contamination
Recent experiments revealed the perfect applicability of megaplex typing by autosomal short tandem repeats (STRs) to degraded DNA. The advantages of megaplex approaches lie in reduced amounts of sample material that are necessary and in remarkable time saving. Furthermore, megaplex typing clearly recognizes possible contaminations and thus has a large potential for indicating authenticity in ancient DNA analysis. This is demonstrated by three exa…
STR Allelic Frequencies in a German Skeleton Collection
Chromosomal DNA was isolated from bones from a German skeleton collection (Goslar, 18th century) and detected by PCR. Nine microsatellite regions were amplified by multiplex reactions using the AmpFlSTR Profiler Plus kit and analysed to obtain their allelic distribution. A statistical evaluation of the results revealed no allelic differentiation between the historic sample and a modern German one at each locus.
Assignment of isolated skeletal elements by aDNA typing
Analysis of ancient DNA of material found in the Lichtensteinhöhle, a burial site of the Younger Bronze Age has been used for the first time to assign isolated skeletal elements to corresponding individuals. The method involved DNA typing through amplification of five Short Tandem Repeat loci which are also used in forensic genetics for the determination of kinship and identification. From all of the examined bone samples DNA was successfully ext…
STR Allelic Frequencies in a German Skeleton Collection
Chromosomal DNA was isolated from bones from a German skeleton collection (Goslar, 18th century) and detected by PCR. Nine microsatellite regions were amplified by multiplex reactions using the AmpFlSTR Profiler Plus kit and analysed to obtain their allelic distribution. A statistical evaluation of the results revealed no allelic differentiation between the historic sample and a modern German one at each locus.
Megaplex DNA typing can provide a strong indication of the authenticity of ancient DNA amplifications by clearly recognizing any possible type of modern contamination
Recent experiments revealed the perfect applicability of megaplex typing by autosomal short tandem repeats (STRs) to degraded DNA. The advantages of megaplex approaches lie in reduced amounts of sample material that are necessary and in remarkable time saving. Furthermore, megaplex typing clearly recognizes possible contaminations and thus has a large potential for indicating authenticity in ancient DNA analysis. This is demonstrated by three exa…
Ancient DNA-typing approaches for the determination of kinship in a disturbed collective burial site
Several DNA-typing approaches are applied for identification and kinship analysis. Autosomal Short Tandem Repeat (STR) typing produces the genetic fingerprint that is unique to an individual. Y-chromosomal STR typing identifies individuals of the same paternal lineage, and sequence analysis of the hypervariable region of the mitochondrion can identify maternally related individuals. The combined approach of these DNA-typing methods allows the det…
Biology (4 works) · Evolutionary biology (4 works) · Forensic and Genetic Research (4 works) · Gene (4 works) · Genetics (4 works) · Microsatellite (4 works) · Archaeology and ancient environmental studies (3 works) · DNA (3 works) · DNA profiling (3 works) · Typing (3 works)