Gregorová S
Academy of Sciences of the Czech Republic
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Featured researches published by Gregorová S.
Mammalian Genome | 2004
Radka Storchová; Gregorová S; Daniela Buckiova; Vendula Kyselova; Petr Divina; Jiří Forejt
Hybrid sterility is a common postzygotic reproductive isolation mechanism that appears in the early stages of speciation of various organisms. Musmusculusmusculus and Musmusculusdomesticus represent two recently separated mouse subspecies particularly suitable for genetic studies of hybrid sterility. Here we show that the introgression of Chr X of M. m. musculus origin (PWD/Ph inbred strain, henceforth PWD) into the genetic background of the C57BL/6J (henceforth B6) inbred strain (predominantly of M. m. domesticus origin) causes male sterility. The X-linked hybrid sterility is associated with reduced testes weight, lower sperm count, and morphological abnormalities of sperm heads. The analysis of recombinant Chr Xs in sterile and fertile males as well as quantitative trait locus (QTL) analysis of several fertility parameters revealed an oligogenic nature of the X-linked hybrid sterility. The Hstx1 locus responsible for male sterility was mapped near DXMit119 in the central part of Chr X. To ensure full sterility, the PWD allele of Hstx1 has to be supported with the PWD allelic form of loci in at least one proximal and/or one distal region of Chr X. Mapping and cloning of Hstx1 and other genes responsible for sterility of B6–XPWDYB6 males could help to elucidate the special role of Chr X in hybrid sterility and consequently in speciation.
PLOS Genetics | 2012
Petr Flachs; Ondřej Mihola; Petr Simecek; Gregorová S; John C. Schimenti; Yasuhisa Matsui; Frédéric Baudat; Bernard de Massy; Jaroslav Piálek; Jiří Forejt; Zdenek Trachtulec
The Dobzhansky-Muller model of incompatibilities explains reproductive isolation between species by incorrect epistatic interactions. Although the mechanisms of speciation are of great interest, no incompatibility has been characterized at the gene level in mammals. The Hybrid sterility 1 gene (Hst1) participates in the arrest of meiosis in F1 males of certain strains from two Mus musculus subspecies, e.g., PWD from M. m. musculus and C57BL/6J (henceforth B6) from M. m. domesticus. Hst1 has been identified as a meiotic PR-domain gene (Prdm9) encoding histone 3 methyltransferase in the male offspring of PWD females and B6 males, (PWD×B6)F1. To characterize the incompatibilities underlying hybrid sterility, we phenotyped reproductive and meiotic markers in males with altered copy numbers of Prdm9. A partial rescue of fertility was observed upon removal of the B6 allele of Prdm9 from the azoospermic (PWD×B6)F1 hybrids, whereas removing one of the two Prdm9 copies in PWD or B6 background had no effect on male reproduction. Incompatibility(ies) not involving Prdm9B6 also acts in the (PWD×B6)F1 hybrids, since the correction of hybrid sterility by Prdm9B6 deletion was not complete. Additions and subtractions of Prdm9 copies, as well as allelic replacements, improved meiotic progression and fecundity also in the progeny-producing reciprocal (B6×PWD)F1 males. Moreover, an increased dosage of Prdm9 and reciprocal cross enhanced fertility of other sperm-carrying male hybrids, (PWD×B6-C3H.Prdm9)F1, harboring another Prdm9 allele of M. m. domesticus origin. The levels of Prdm9 mRNA isoforms were similar in the prepubertal testes of all types of F1 hybrids of PWD with B6 and B6-C3H.Prdm9 despite their different prospective fertility, but decreased to 53% after removal of Prdm9B6. Therefore, the Prdm9B6 allele probably takes part in posttranscriptional dominant-negative hybrid interaction(s) absent in the parental strains.
Mammalian Genome | 1996
Gregorová S; M. Mňuková-Fajdelová; Zdenek Trachtulec; J. Čapková; M. Loudová; M. Hoglund; Renata M.J. Hamvas; Hans Lehrach; Vladimir Vincek; Jan Klein; Jiri Forejt
We have generated a high-resolution genetic map, 0.071 cM per backcross animal, of the 13 cM T-H2 region of the mouse Chromosome (Chr) 17. The map contains two phenotypic loci, T and Hst1, 12 RFLP markers, and 24 microsatellite loci. The Hst1 gene was mapped to a chromosomal interval contained within a single 580-kb YAC clone. The FFEH11 YAC is 0.44 cM long and carries, besides the Hst1 gene, five polymorphic DNA markers and recombination breakpoints of six backcross animals. Two candidate genes for Hst1 were identified based on their location and testicular expression. These are Tbp and D17Ph4e. The submilliMorgan map of the T-H2 region revealed significant clustering of (CA)n loci. The clustering, if shown to be a common feature in the mouse genome, may cause gaps in the physical map of the mouse genome.
Folia Biologica | 2000
Gregorová S; Jiri Forejt
Journal of Heredity | 2007
Jaroslav Piálek; Martina Vyskočilová; Barbora Vošlajerová Bímová; Dana Havelková; Jana Piálková; Petra Dufková; Věra Bencová; Ludovít Ďureje; Tomáš Albrecht; Heidi C. Hauffe; Miloš Macholán; Pavel Munclinger; Radka Storchová; Alena Zajicova; Vladimír Holáň; Gregorová S; Jiří Forejt
Proceedings of the National Academy of Sciences of the United States of America | 2005
Tomas Vacik; Ort M; Gregorová S; Strnad P; Blatny R; Conte N; Allan Bradley; Bures J; Jiri Forejt
Behavior Genetics | 2004
Cathy Fernandes; Lin Liu; Jose Luis Paya-Cano; Gregorová S; Jiri Forejt; Leonard C. Schalkwyk
Folia Biologica | 1972
Iványi P; Gregorová S; Micková M
Experimental Cell Research | 1999
Jiří Forejt; Jennifer R. Saam; Gregorová S; Shirley M. Tilghman
Folia Biologica | 1981
Gregorová S; Baranov Vs; Jiri Forejt