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Xenopus Cytogenetics and Chromosomal Evolution
V. Krylov, T. Tlapakova,
Jazyk angličtina Země Švýcarsko
Typ dokumentu srovnávací studie, časopisecké články, práce podpořená grantem
NLK
ProQuest Central
od 2001 do 2015-11-30
Medline Complete (EBSCOhost)
od 2002-01-01 do Před 1 rokem
Health & Medicine (ProQuest)
od 2001 do 2015-11-30
PubMed
26022679
DOI
10.1159/000406550
Knihovny.cz E-zdroje
- MeSH
- chromozomy genetika ultrastruktura MeSH
- diploidie MeSH
- druhová specificita MeSH
- genetické markery MeSH
- genom MeSH
- malování chromozomů MeSH
- mapování chromozomů MeSH
- molekulární evoluce * MeSH
- oocyty ultrastruktura MeSH
- polymorfismus genetický MeSH
- syntenie genetika MeSH
- tandemové repetitivní sekvence MeSH
- tetraploidie MeSH
- vznik druhů (genetika) * MeSH
- Xenopus laevis genetika MeSH
- Xenopus klasifikace genetika MeSH
- zvířata MeSH
- Check Tag
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- srovnávací studie MeSH
The genus Xenopus represents important model organisms in the field of developmental biology and chromosomal evolution. Developmental processes are tightly coupled with the analysis of gene function via genetic linkage and mapping. Cytogenetic techniques such as chromosome banding or FISH are essential tools for the determination of gene position and subsequently for the construction of linkage and physical maps. Here, we present a summary of key achievements in X. tropicalis and X. laevis cytogenetics with emphasis on the gene localization to chromosomes. The second part of this review is focused on the chromosomal evolution regarding both above-mentioned species. With respect to methodology, hybridization techniques such as FISH and chromosome-specific painting FISH are highlighted.
Citace poskytuje Crossref.org
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- $a The genus Xenopus represents important model organisms in the field of developmental biology and chromosomal evolution. Developmental processes are tightly coupled with the analysis of gene function via genetic linkage and mapping. Cytogenetic techniques such as chromosome banding or FISH are essential tools for the determination of gene position and subsequently for the construction of linkage and physical maps. Here, we present a summary of key achievements in X. tropicalis and X. laevis cytogenetics with emphasis on the gene localization to chromosomes. The second part of this review is focused on the chromosomal evolution regarding both above-mentioned species. With respect to methodology, hybridization techniques such as FISH and chromosome-specific painting FISH are highlighted.
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