Fig. 1. Biosynthesis pathway proposal for disubstituted tricycloalternarenes.Published as part of Fraga, Braulio M. & Díaz, Carmen E., 2022, Proposal for structural revision of several disubstituted tricycloalternarenes, pp. 1-10 in Phytochemistry (113289) 201 on page 3, DOI: 10.1016/j.phytochem.2022.113289, http://zenodo.org/record/823508
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D (230–233).Published as part of Zhao, ...
Fig. 18. Structures of triterpenoids 214–222.Published as part of Zhao, Wen-Yu, Yi, Jing, Chang, Yi-...
Fig. 4. Proposed biosynthetic pathway for compounds 1 and 2.Published as part of Hu, Dong-Bao, Wei, ...
Fraga, Braulio M., Díaz, Carmen E. (2022): Proposal for structural revision of several disubstituted...
Fraga, Braulio M., Díaz, Carmen E. (2022): Proposal for structural revision of several monosubstitut...
Fig. 4. Plausible biosynthetic pathway for sydoxanthones D and E.Published as part of Akone, Sergi H...
Fig. 9. Hypothetical biosynthetic pathway of 2 and 3.Published as part of Kang, Xin, Yang, Wanqi, Zh...
Fig. 5. Plausible biosynthetic pathway of compounds 1–5.Published as part of Zhang, Juan, Shi, Lun-Y...
Fig. 6. Hypothetical biosynthetic pathways of 1–7.Published as part of Mo, Qing-Hu, Yan, Meng-Qi, Zh...
Fig. 4. Predicted biosynthetic pathway of triterpenoids in F. torulosa.Published as part of Noji, Ma...
Oxidosqualene cyclases are a group of enzymes that cyclize 2,3-oxidosqualene to any of over 80 trite...
Fig. 2. Synthesis and reactions of α-pinene. Biosynthetic pathway (orange); Synthetic starting point...
Fig. 1. Reaction scheme of acylation by Gt5,3′acyltransferase.Published as part of Murayama, Kazutak...
Fig. 2. Proposed metabolic network of isoquinoline alkaloids in the Macleaya genus. a the solid arro...
Fig. 7. Proposed biosynthetic pathway of triterpenoids in C.asiatica (Prasad et al., 2019). Abbrevia...
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D (230–233).Published as part of Zhao, ...
Fig. 18. Structures of triterpenoids 214–222.Published as part of Zhao, Wen-Yu, Yi, Jing, Chang, Yi-...
Fig. 4. Proposed biosynthetic pathway for compounds 1 and 2.Published as part of Hu, Dong-Bao, Wei, ...
Fraga, Braulio M., Díaz, Carmen E. (2022): Proposal for structural revision of several disubstituted...
Fraga, Braulio M., Díaz, Carmen E. (2022): Proposal for structural revision of several monosubstitut...
Fig. 4. Plausible biosynthetic pathway for sydoxanthones D and E.Published as part of Akone, Sergi H...
Fig. 9. Hypothetical biosynthetic pathway of 2 and 3.Published as part of Kang, Xin, Yang, Wanqi, Zh...
Fig. 5. Plausible biosynthetic pathway of compounds 1–5.Published as part of Zhang, Juan, Shi, Lun-Y...
Fig. 6. Hypothetical biosynthetic pathways of 1–7.Published as part of Mo, Qing-Hu, Yan, Meng-Qi, Zh...
Fig. 4. Predicted biosynthetic pathway of triterpenoids in F. torulosa.Published as part of Noji, Ma...
Oxidosqualene cyclases are a group of enzymes that cyclize 2,3-oxidosqualene to any of over 80 trite...
Fig. 2. Synthesis and reactions of α-pinene. Biosynthetic pathway (orange); Synthetic starting point...
Fig. 1. Reaction scheme of acylation by Gt5,3′acyltransferase.Published as part of Murayama, Kazutak...
Fig. 2. Proposed metabolic network of isoquinoline alkaloids in the Macleaya genus. a the solid arro...
Fig. 7. Proposed biosynthetic pathway of triterpenoids in C.asiatica (Prasad et al., 2019). Abbrevia...
Fig. 21. Postulated biogenetic pathway for aspertetranones A-D (230–233).Published as part of Zhao, ...
Fig. 18. Structures of triterpenoids 214–222.Published as part of Zhao, Wen-Yu, Yi, Jing, Chang, Yi-...
Fig. 4. Proposed biosynthetic pathway for compounds 1 and 2.Published as part of Hu, Dong-Bao, Wei, ...