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Your search keyword '"Maximova Siela N"' showing total 31 results

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31 results on '"Maximova Siela N"'

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1. The cacao gene atlas: a transcriptome developmental atlas reveals highly tissue-specific and dynamically-regulated gene networks in Theobroma cacao L.

2. A combination of conserved and diverged responses underlies Theobroma cacao's defense response to Phytophthora palmivora.

3. Evaluation of cacao projects in Colombia: The case of the rural Productive Partnerships Project (PAAP).

4. Transcriptomic analyses of cacao flavonoids produced in photobioreactors.

5. Gene Expression Modularity Reveals Footprints of Polygenic Adaptation in Theobroma cacao.

6. Resistant and susceptible cacao genotypes exhibit defense gene polymorphism and unique early responses to Phytophthora megakarya inoculation.

7. Glucocorticoid receptor-regulated TcLEC2 expression triggers somatic embryogenesis in Theobroma cacao leaf tissue.

8. Transcriptomic analyses of cacao cell suspensions in light and dark provide target genes for controlled flavonoid production.

9. Theobroma cacao L. pathogenesis-related gene tandem array members show diverse expression dynamics in response to pathogen colonization.

10. Enhanced resistance in Theobroma cacao against oomycete and fungal pathogens by secretion of phosphatidylinositol-3-phosphate-binding proteins.

11. Two Theobroma cacao genotypes with contrasting pathogen tolerance show aberrant transcriptional and ROS responses after salicylic acid treatment.

12. Tc-MYBPA an Arabidopsis TT2-like transcription factor and functions in the regulation of proanthocyanidin synthesis in Theobroma cacao.

13. Enhanced somatic embryogenesis in Theobroma cacao using the homologous BABY BOOM transcription factor.

14. Proteome analysis during pod, zygotic and somatic embryo maturation of Theobroma cacao.

15. Application of glycerol as a foliar spray activates the defence response and enhances disease resistance of Theobroma cacao.

16. Genome-wide analysis reveals divergent patterns of gene expression during zygotic and somatic embryo maturation of Theobroma cacao L., the chocolate tree.

17. The Theobroma cacao B3 domain transcription factor TcLEC2 plays a duel role in control of embryo development and maturation.

18. TcNPR3 from Theobroma cacao functions as a repressor of the pathogen defense response.

19. The genome of Theobroma cacao.

20. Functional analysis of the Theobroma cacao NPR1 gene in Arabidopsis.

21. Over-expression of a cacao class I chitinase gene in Theobroma cacao L. enhances resistance against the pathogen, Colletotrichum gloeosporioides.

22. Developmental expression of stress response genes in Theobroma cacao leaves and their response to Nep1 treatment and a compatible infection by Phytophthora megakarya.

23. Isolation of ESTs from cacao (Theobroma cacao L.) leaves treated with inducers of the defense response.

26. Clovamide, a Hydroxycinnamic Acid Amide, Is a Resistance Factor Against Phytophthora spp. in Theobroma cacao.

27. Application of glycerol as a foliar spray activates the defence response and enhances disease resistance of Theobroma cacao

28. Tc-MYBPA is an Arabidopsis TT2-like transcription factor and functions in the regulation of proanthocyanidin synthesis in Theobroma cacao.

29. The Theobroma cacao B3 domain transcription factor TcLEC2 plays a duel role in control of embryo development and maturation.

30. TcNPR3 from Theobroma cacao functions as a repressor of the pathogen defense response.

31. Moxalactam as a counter-selection antibiotic for Agrobacterium-mediated transformation and its positive effects on Theobroma cacao somatic embryogenesis

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