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36 results on '"Santalum genetics"'

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1. Identification of 3-hydroxy-3-methylglutaryl monoacyl-coenzyme A reductase (HMGR) associated with the synthesis of terpenoids in Santalum album L.

2. Structural analysis of the mitochondrial genome of Santalum album reveals a complex branched configuration.

3. Assessment of seed- and seedling-related traits in Santalum album (Indian sandalwood) reveals high adaptive potential.

4. Improved chromosome-level genome assembly of Indian sandalwood (Santalum album).

5. Characterization of sandalwood (E,E)-α-farnesene synthase whose overexpression enhances cold tolerance through jasmonic acid biosynthesis and signaling in Arabidopsis.

6. Chromosome-level genome assemblies from two sandalwood species provide insights into the evolution of the Santalales.

7. Cloning and functional analysis of 1-deoxy-d-xylulose-5-phosphate synthase (DXS) in Santalum album L.

8. Identification and function of miRNA-mRNA interaction pairs during lateral root development of hemi-parasitic Santalum album L. seedlings.

9. Integrated Transcriptomic, Metabolomic, and Physiological Analyses Reveal New Insights into Fragrance Formation in the Heartwood of Phoebe hui .

10. Rothia santali sp. nov., endophytic bacteria isolated from sandalwood (Santalum album L.) seedling.

11. Establishing Komagataella phaffii as a Cell Factory for Efficient Production of Sesquiterpenoid α-Santalene.

12. Comparative transcriptome profiling of high and low oil yielding Santalum album L.

13. Cloning and expression analysis of mevalonate kinase and phosphomevalonate kinase genes associated with the MVA pathway in Santalum album.

14. Molecular Cloning and Functional Analysis of 1-Deoxy-D-Xylulose 5-Phosphate Reductoisomerase from Santalum album .

15. Functional characterization of an Indian sandalwood (Santalum album L.) dual-localized bifunctional nerolidol/linalool synthase gene involved in stress response.

16. Cloning, characterization, and functional analysis of acetyl-CoA C-acetyltransferase and 3-hydroxy-3-methylglutaryl-CoA synthase genes in Santalum album.

17. Raw transcriptomics data to gene specific SSRs: a validated free bioinformatics workflow for biologists.

18. Genome-Wide Characterization, Expression Profile Analysis of WRKY Family Genes in Santalum album and Functional Identification of Their Role in Abiotic Stress.

19. Identification and functional characterization of three new terpene synthase genes involved in chemical defense and abiotic stresses in Santalum album.

20. Selection and Validation of Novel RT-qPCR Reference Genes under Hormonal Stimuli and in Different Tissues of Santalum album.

21. Multi-Omics Driven Assembly and Annotation of the Sandalwood ( Santalum album ) Genome.

22. An extended model of heartwood secondary metabolism informed by functional genomics.

23. Sesquiterpene Variation in West Australian Sandalwood (Santalum spicatum).

24. Physiological and transcriptomic analyses reveal a response mechanism to cold stress in Santalum album L. leaves.

25. Heartwood-specific transcriptome and metabolite signatures of tropical sandalwood (Santalum album) reveal the final step of (Z)-santalol fragrance biosynthesis.

26. Sandalwood: basic biology, tissue culture, and genetic transformation.

27. Genomics-Based Discovery of Plant Genes for Synthetic Biology of Terpenoid Fragrances: A Case Study in Sandalwood oil Biosynthesis.

28. Functional Characterization of Novel Sesquiterpene Synthases from Indian Sandalwood, Santalum album.

29. The transcriptome of sesquiterpenoid biosynthesis in heartwood xylem of Western Australian sandalwood (Santalum spicatum).

30. Biosynthesis of Sandalwood Oil: Santalum album CYP76F cytochromes P450 produce santalols and bergamotol.

31. Sandalwood fragrance biosynthesis involves sesquiterpene synthases of both the terpene synthase (TPS)-a and TPS-b subfamilies, including santalene synthases.

32. Isolation of cDNAs and functional characterisation of two multi-product terpene synthase enzymes from sandalwood, Santalum album L.

33. Comparative molecular and phytochemical study of the tree species Santalum austrocaledonicum (Santalaceae) distributed in the New-Caledonian archipelago.

34. Extensive clonality and strong differentiation in the insular pacific tree Santalum insulare: implications for its conservation.

35. Genetic diversity and population structure of an insular tree, Santalum austrocaledonicum in New Caledonian archipelago.

36. Regional genetic differentiation in Western Australian sandalwood (Santalum spicatum) as revealed by nuclear RFLP analysis.

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