De novo transcriptome sequencing in Monsonia burkeana revealed putative genes for key metabolic pathways involved in tea quality and medicinal value
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Summary
The M. burkeana leaf transcriptome gives insight into tea and drug-specific products, therefore representing basis in further investigation of the plant.
- Type
- article
- Published
- 2016-11-19
- Cited by
- 4
- References
- 41
- Access
- Open access
- OpenAlex
- https://openalex.org/W2551518539
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13375662
Keywords
Transcriptome, KEGG, Biology, Gene, Metabolic pathway
References
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- Three-stage quality control strategies for DNA re-sequencing data
- Biotechnology of flavonoids and other phenylpropanoid‐derived natural products. Part I: Chemical diversity, impacts on plant biology and human health
- BIGpre: A Quality Assessment Package for Next-Generation Sequencing Data
- Global transcriptome profiles of Camellia sinensis during cold acclimation
- Interactive Tree Of Life v2: online annotation and display of phylogenetic trees made easy
- Broad Phylogenomic Sampling and the Sister Lineage of Land Plants
- The phylogeny of Monsonia L. (Geraniaceae)
- Basic local alignment search tool.
- De novo sequence assembly and characterisation of a partial transcriptome for an evolutionarily distinct reptile, the tuatara (Sphenodon punctatus)
- Time for tea: mood, blood pressure and cognitive performance effects of caffeine and theanine administered alone and together
- Alkaloids: an overview of their antibacterial, antibiotic-enhancing and antivirulence activities.
- Deep sequencing of the Camellia sinensis transcriptome revealed candidate genes for major metabolic pathways of tea-specific compounds
- Gene Ontology: tool for the unification of biology
- The Gene Ontology Annotation (GOA) Database: sharing knowledge in Uniprot with Gene Ontology
- Neuroprotective actions of flavones and flavonols: mechanisms and relationship to flavonoid structural features.
Cited by
- Identification and characterization of protein coding genes in monsonia (Monsonia burkeana Planch. ex harv) using a combination of approaches
- Prevalence of Bacillus in the interior tissues of Monsonia burkeana and other medicinal plants in South Africa
- An integrated analysis of metabolomic and transcriptomic profiles reveals flavonoid metabolic differences between Anoectochilus roxburghii and Anoectochilus formosanus
- Decades of medicinal plant biotechnology research in South Africa: The success, challenges, and prospects
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