Change institution

Miloslava Fojtová

Researcher
Email: ,
Phone: +420 54949 8063
Research Group: Chromatin Molecular Complexes - Jiří Fajkus
Researcher ID

2017

  • JURECKOVA, JF; SYKOROVA, E; HAFIDH, S; HONYS, D; FAJKUS, J; FOJTOVA, M, 2017:Tissue-specific expression of telomerase reverse transcriptase gene variants in Nicotiana tabacum. PLANTA 245 (3), p. 549 - 561.

2016

  • PONTVIANNE, F; CARPENTIER, MC; DURUT, N; PAVLISTOVA, V; JASKE, K; SCHOROVA, S; PARRINELLO, H; ROHMER, M; PIKAARD, CS; FOJTOVA, M; FAJKUS, J; SAEZ-VASQUEZ, J, 2016:Identification of Nucleolus-Associated Chromatin Domains Reveals a Role for the Nucleolus in 3D Organization of the A. thaliana Genome. CELL REPORTS 16 (6), p. 1574 - 1587.

2015

  • TRAN, TD; CAO, HX; JOVTCHEV, G; NEUMANN, P; NOVAK, P; FOJTOVA, M; VU, GTH; MACAS, J; FAJKUS, J; SCHUBERT, I; FUCHS, J, 2015:Centromere and telomere sequence alterations reflect the rapid genome evolution within the carnivorous plant genus Genlisea. PLANT JOURNAL 84 (6), p. 1087 - 1099.

2014

  • MAJEROVA, E; MANDAKOVA, T; VU, GTH; FAJKUS, J; LYSAK, MA; FOJTOVA, M, 2014:Chromatin features of plant telomeric sequences at terminal vs. internal positions. FRONTIERS IN PLANT SCIENCE 5 , p. 593 - .
  • OGROCKA, A; POLANSKA, P; MAJEROVA, E; JANEBA, Z; FAJKUS, J; FOJTOVA, M, 2014:Compromised telomere maintenance in hypomethylated Arabidopsis thaliana plants. NUCLEIC ACIDS RESEARCH 42 (5), p. 2919 - 2931.

2012

  • OGROCKA, A; SYKOROVA, E; FAJKUS, J; FOJTOVA, M, 2012:Developmental silencing of the AtTERT gene is associated with increased H3K27me3 loading and maintenance of its euchromatic environment. JOURNAL OF EXPERIMENTAL BOTANY 63 (11), p. 4233 - 4241.

2011

  • FOJTOVA, M; PESKA, V; DOBSAKOVA, Z; MOZGOVA, I; FAJKUS, J; SYKOROVA, E, 2011:Molecular analysis of T-DNA insertion mutants identified putative regulatory elements in the AtTERT gene. JOURNAL OF EXPERIMENTAL BOTANY 62 (15), p. 5531 - 5545.
  • MAJEROVA, E; FOJTOVA, M; MOZGOVA, I; BITTOVA, M; FAJKUS, J, 2011:Hypomethylating drugs efficiently decrease cytosine methylation in telomeric DNA and activate telomerase without affecting telomere lengths in tobacco cells. PLANT MOLECULAR BIOLOGY 77 (42128), p. 371 - 380.
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