Recommanded Product: 103-26-4. In 2020.0 PHYTOCHEMISTRY published article about FUNCTIONAL-CHARACTERIZATION; GERANYL PYROPHOSPHATE; BORNYL PYROPHOSPHATE; GENES; MONOTERPENES; PLANTS; COMPARTMENTATION; DEHYDROGENASE; METABOLITES; TRANSPORT in [Singh, Priyanka; Kalunke, Raviraj M.; Shukla, Anurag; Giri, Ashok P.] CSIR Natl Chem Lab, Div Biochem Sci, Pune 411008, Maharashtra, India; [Singh, Priyanka; Thulasiram, Hirekodathakallu, V] CSIR Natl Chem Lab, Div Organ Chem, Pune 411008, Maharashtra, India; [Tzfadia, Oren] Univ Ghent, Dept Plant Syst Biol, Ghent, Belgium; [Thulasiram, Hirekodathakallu, V] CSIR Inst Genom & Integrat Biol, Mall Rd, New Delhi 110007, India in 2020.0, Cited 43.0. The Name is Methyl 3-phenyl-2-propenoate. Through research, I have a further understanding and discovery of 103-26-4.
In Ocimum kilimandscharicum, the relative volatile composition of camphor in leaves was as high as 55%, while that of eugenol in roots was 57%. These metabolites were differentially partitioned between the aerial and root tissues. Global metabolomics revealed tissue-specific biochemical specialization, evident by the differential distribution of 2588 putative metabolites across nine tissues. Next-generation sequencing analysis indicated differential expression of 51 phenylpropanoid and 55 terpenoid pathway genes in aerial and root tissues. By integrating metabolomics with transcriptomics, the camphor biosynthesis pathway in O. kilimandscharicum was elucidated. In planta bioassays revealed the role of geranyl diphosphate synthase (gpps) and borneol dehydrogenase (bdh) in camphor biosynthesis. Further, the partitioning of camphor was attributed to tissue-specific gene expression of both the pathway entry point (gpps) and terminal (bdh) enzyme. Unlike camphor, eugenol accumulated more in roots; however, absence of the eugenol synthase gene in roots indicated long distance transport from aerial tissues. In silico co-expression analysis indicated the potential involvement of ATP-binding cassette, multidrug and toxic compound extrusion, and sugar transporters in eugenol transport. Similar partitioning was evident across five other Ocimum species. Overall, our work indicates that metabolite partitioning maybe a finely regulated process, which may have implications on plant growth, development, and defense.
Recommanded Product: 103-26-4. Welcome to talk about 103-26-4, If you have any questions, you can contact Singh, P; Kalunke, RM; Shukla, A; Tzfadia, O; Thulasiram, HV; Giri, AP or send Email.
Reference:
Article; Weng, Shiue-Shien; Ke, Chih-Shueh; Chen, Fong-Kuang; Lyu, You-Fu; Lin, Guan-Ying; Tetrahedron; vol. 67; 9; (2011); p. 1640 – 1648;,
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