PubMed Health⌕ Search

Biomedical subjects

L A Alekseevich

Publications and source records attributed to L A Alekseevich.

5 recordsLinked to original sources

[Mapping the chicken genome: problems and perspectives].

Various molecular methods are now used to map the chicken genome, including chromosome scraping, flow cytofluorimetry, zonal centrifugation, construction of chromosome-specific libraries, genetic analysis with polymorphic DNA markers, and in situ hybridization. Two main drawbacks are characteristic of existing maps of chicken chromosomes. First, classic genetic maps (i.e., linkage groups of genes for morphological, physiological, and biochemical characters), physical maps of chromosomes, and new genetic maps constructed on the basis of polymorphic DNA markers (RFLP, RAPD, VNTR, SSR, and CR1-PCR) do not coordinate with one another. Second, a relatively low number of genes is present in classic genetic maps and physical chromosome maps. Application of cytogenetic methods to chromosome mapping in birds is limited because of some specific features characteristic of the organization of avian genomes. For the same reason, studying the location and expression of avian genes is very important. Since mammalian and avian genomes differ in structure, revealing their possible common functional characteristics will provide for a better understanding of the general mechanisms that control biologically important characters in higher animals.

Animals↗

[Localization of various DNA sequences on the mitotic chromosomes of the chicken].

The chromosomal localization of the chicken transferrin receptor gene, as well as sequences that were homologous to the viral oncogene v-fos and the human gene families ZFY and SRY were determined by the method of nonisotopic DNA-DNA in situ hybridization. A correspondence was revealed between the Comptonian linkage group 10 and chromosome 1. A common origin of avian chromosome Z and mammalian chromosome Y is hypothesized.

Animals↗

[The special genetics of the chicken].

Studies on inheritance of a number of traits, peculiarities of the karyotype, and chromosome mapping in chicken are reviewed. Prominent among these are studies on behavioral genetics, which are performed at different levels and in different aspects: neuromuscular apparatus and entire organism, behavior and population structure, and behavior and individual fecundity. Creation of lines that differed in neural reactivity provided a model for study of systemic control of cytogenetic processes. On the basis of data on genetic control of feather color, a hypothesis was proposed concerning the mechanism of action of the eumelanin suppressor gene. In the Department of Genetics and Breeding of St. Petersburg State University, research was reformed on the relationships between hereditary and non-hereditary variability, as well as the determination and realization of the genotype reaction norm. In the framework of this research, a study on the variability of chicken growth was performed. A single short-term cooling of chickens during the first week of life resulted in a prolonged (up to eight-week) alteration of growth rate. The following structural genes were mapped in chicken mitotic chromosomes by the method of in situ hybridization: the gene for the transferrin receptor, the beta-globin gene cluster, the homologues of the human ZFY and SRY gene families, the viral oncogene v-fos, and a TG-rich minisatellite.

Animals↗