Nghĩa của từ chromatin nucleolus bằng Tiếng Việt
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Đặt câu có từ "chromatin nucleolus"
1. The nucleolus is an informative model structure for studying how Chromatin-regulated transcription relates to nuclear organisation
2. • Nucleolus
• Hạch nhân
3. Chromatin synonyms, Chromatin pronunciation, Chromatin translation, English dictionary definition of Chromatin
4. Chromatin: Chromatin is a single, unpaired fibres
5. Chromatin: Chromatin fibres are thin, long, uncoiled structures
6. Chromosomes, Chromatids and chromatin
7. Chromosomes, chromatids and chromatin
8. Anti-Chromatin-Chromatin immune complexes can bind to the glomerular basement membrane in vivo
9. The key difference between Chromatin and nucleosome is that Chromatin is a whole structure of complex DNA and proteins while nucleosome is a basic unit of Chromatin
10. …a dense, compact fibre called Chromatin
11. Further condensation of Chromatin 5
12. Condensed chromatin fibers form Chromosomes
13. Chromatin: Chromatin allows the genetic material to be packed into the nucleus while regulating the gene
14. Key words: Hepatica, satellited B, end to end association, origin, nucleolus organizing regions.
15. The FEAR regulatory network promotes Cdc14p release from the nucleolus during anaphase.
16. Chromatin (Nucleosomal) Antibody - Chromatin Antibody plays a central role in the autoimmune response in systemic lupus erythematosus (SLE)
17. Chromatin structure is organized at several levels
18. Chromatin: is the carrier of genetic information
19. Nucleosomes coiled into a Chromatin fiber 4
20. The Chromatin is organized in seven progressive
21. A new inducer of chromatin condensation was recently identified and designated Acinus (for apoptotic chromatin condensation inducer in the nucleus).
22. A new inducer of chromatin condensation was recently identified and designated Acinus (for apoptotic chromatin condensation inducer in the nucleus).
23. Learn the difference between Chromatin and chromosomes here
24. Chromatin is responsible for packaging DNA double helix
25. We computationally infer Chromatin potential as a quantitative measure of Chromatin lineage-priming and use it to predict cell fate outcomes