Fig. 5. Putative biogenetic pathways of the isolated compounds 1–13.Published as part of Meesakul, Pornphimol, Jaidee, Wuttichai, Richardson, Christopher, Andersen, Raymond J., Patrick, Brian O., Willis, Anthony C., Muanprasat, Chatchai, Wang, Jin, Lei, Xiaoguang, Hadsadee, Sarinya, Jungsuttiwong, Siriporn, Pyne, Stephen G. & Laphookhieo, Surat, 2020, Styryllactones from Goniothalamus tamirensis, pp. 1-7 in Phytochemistry (112248) 171 on page 6, DOI: 10.1016/j.phytochem.2019.112248, http://zenodo.org/record/829391
Fig. 9. Plausible biogenetic pathway of compounds 1–7.Published as part of Duan, Yulin, Bu, Pengfei,...
Fig. 6. Plausible biogenetic pathway of 3,4-seco-tirucallanes (1–4) in E. angolense.Published as par...
Fig. 5. Plausible Biogenetic Pathway of Compounds 1–13.Published as part of Sun, Mo-Han, Ma, Xian-Ji...
Meesakul, Pornphimol, Jaidee, Wuttichai, Richardson, Christopher, Andersen, Raymond J., Patrick, Bri...
Fig. 1. The structures of compounds from G. tamirensis twigs and leaves.Published as part of Meesaku...
Fig. 3. X-ray ORTEP diagram of compounds 1, 6, 8, and10–12.Published as part of Meesakul, Pornphimol...
Fig. 2. The key HMBC correlations of compounds 1–3.Published as part of Meesakul, Pornphimol, Jaidee...
Fig. 4. ECD spectra of compounds 2, 3, 6, and 9–12. (A) Experimental and TDDFT calculated ECD spectr...
The thesis titled “Stereoselective synthesis of bio-active styryllactones” comprises an introduction...
A new styryl lactone, 5R,6R-5-hydroxy-6-styryltetrahydropyrane-2-one 2 was isolated from the roots o...
Fig. 6. Hypothetical biosynthetic pathways of 1–7.Published as part of Mo, Qing-Hu, Yan, Meng-Qi, Zh...
Phytochemical studies were conducted on the stem bark, stem, root and fruit of Goniothalamus ridleyi...
A new styryl lactone, 5R,6R-5-hydroxy-6-styryltetrahydropyrane-2-one 2 was isolated from the roots o...
Phytochemical studies were conducted on the stem bark, stem, root and fruit of Goniothalamus ridleyi...
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D (230–233).Published as part of Zhao, ...
Fig. 9. Plausible biogenetic pathway of compounds 1–7.Published as part of Duan, Yulin, Bu, Pengfei,...
Fig. 6. Plausible biogenetic pathway of 3,4-seco-tirucallanes (1–4) in E. angolense.Published as par...
Fig. 5. Plausible Biogenetic Pathway of Compounds 1–13.Published as part of Sun, Mo-Han, Ma, Xian-Ji...
Meesakul, Pornphimol, Jaidee, Wuttichai, Richardson, Christopher, Andersen, Raymond J., Patrick, Bri...
Fig. 1. The structures of compounds from G. tamirensis twigs and leaves.Published as part of Meesaku...
Fig. 3. X-ray ORTEP diagram of compounds 1, 6, 8, and10–12.Published as part of Meesakul, Pornphimol...
Fig. 2. The key HMBC correlations of compounds 1–3.Published as part of Meesakul, Pornphimol, Jaidee...
Fig. 4. ECD spectra of compounds 2, 3, 6, and 9–12. (A) Experimental and TDDFT calculated ECD spectr...
The thesis titled “Stereoselective synthesis of bio-active styryllactones” comprises an introduction...
A new styryl lactone, 5R,6R-5-hydroxy-6-styryltetrahydropyrane-2-one 2 was isolated from the roots o...
Fig. 6. Hypothetical biosynthetic pathways of 1–7.Published as part of Mo, Qing-Hu, Yan, Meng-Qi, Zh...
Phytochemical studies were conducted on the stem bark, stem, root and fruit of Goniothalamus ridleyi...
A new styryl lactone, 5R,6R-5-hydroxy-6-styryltetrahydropyrane-2-one 2 was isolated from the roots o...
Phytochemical studies were conducted on the stem bark, stem, root and fruit of Goniothalamus ridleyi...
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D (230–233).Published as part of Zhao, ...
Fig. 9. Plausible biogenetic pathway of compounds 1–7.Published as part of Duan, Yulin, Bu, Pengfei,...
Fig. 6. Plausible biogenetic pathway of 3,4-seco-tirucallanes (1–4) in E. angolense.Published as par...
Fig. 5. Plausible Biogenetic Pathway of Compounds 1–13.Published as part of Sun, Mo-Han, Ma, Xian-Ji...