Journal of Biotechnology, Computational Biology and Bionanotechnology
Committee on Biotechnology PAS ; Institute of Bioorganic Chemistry PAS
The largest, megabase, somatic chromosome of P. tetraurelia was isolated and sequenced in order to explore its organization and gene content. The AT-rich chromosome is compact with very small introns, short intergenic regions and a coding density of at least 74%, higher than that reported for budding yeast or any other free-living eukaryote. Homology to known proteins could be detected only for 57% of the 464 potential protein coding genes. Subsequently, the megabase chromosome sequence was used during the whole genome sequencing project as a reference to evaluate sequence assembly and gene annotation accuracy. In a pilot project of the global analysis of P. tetraurelia gene expression during autogamy, DNA microarrays were used. Statistical data analysis allowed the identification of four clusters of co-ex- pressed genes. Screening for silencing phenotypes of 15 autogamy specific genes revealed that 4 genes were essential during vegetative growth and 3 others were essential for successful sexual process.
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Biotechnologia, vol.91, 4 (2010)-.
oai:rcin.org.pl:69216 ; 0860-7796
Library of Institute of Bioorganic Chemistry PAS
Creative Commons Attribution BY-SA 4.0 license
Institute of Bioorganic Chemistry of the Polish Academy of Science
Institute of Bioorganic Chemistry of the Polish Academy of Science
Oct 2, 2020
Mar 8, 2019
1187
https://rcin.org.pl./publication/90466
Edition name | Date |
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Sekwencjonowanie największego chromosomu Paramecium tetraurelia - przykład opracowania metody | Oct 2, 2020 |
Borkowska, Bożenna
Ziółkowski, Piotr Babula- Skowrońska, Danuta Kaczmarek, Małgorzata Cieśla, Agata Sadowski, Jan
Gasior, E. Augustyniak, J. Lorkiewicz, Z. Obermann, H.