Fig. 1. Molecular structures of glomelliferic acid 1 and glomellic acid 2 and their fluorescent behaviour upon addition of K. Key 2-oxoalkyl motif highlighted in blue. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)Published as part of Ferron, S., J, P., ehan, Guillory, X. & Uriac, P., 2022, Intramolecular transesterification of depsides yields fluorescent 1H-isochromen-1-ones: Application as a chemical probe for lichen determination, pp. 1-10 in Phytochemistry (113139) 198 on page 2, DOI: 10.1016/j.phytochem.2022.113139, http://zenodo.org/record/823587
Fig. 8. Fragmentation patterns in negative mode of A) compound H and B) UA; common fragments are hig...
Fig. 5. Comparison of HPLC chromatograms of B. weihenstephanensis extracts with UA at 0.01 mg/mL aft...
Fig. 4. HPLC chromatograms of S. cyaneofuscatus cultures with or without UA: A) At the beginning of ...
Fig. 2. δ-keto ester-containing depsides considered in this study. 1 (Elix and Whitton, 1989); 2 (El...
Fig. 6. UV and fluorescence spectra of the isochromen-1-ones 9 and 11.Published as part of Ferron, S...
Fig. 3. Reactivity of depsides with K.Published as part of Ferron, S., J, P., ehan, Guillory, X. & U...
Fig. 5. A Reactivity of the α-alectoronic acid 18 and the α-collatolic acid 19 with K. B Structure o...
Ferron, S., J, P., ehan, Guillory, X., Uriac, P. (2022): Intramolecular transesterification of depsi...
Fig. 4. Reactivity of the methyl, 2′-O-methylmicrophyllinate 4′ with K.Published as part of Ferron, ...
Fig. 11. Structural data of compound s8 (NMR in acetone-d6).Published as part of Ferron, S., J, P., ...
Fig. 9. KUV probe on extracts of P. cinereoatra C, P. speirea var speirea S, P. irriguaI I, P. macro...
Fig. 8. Relaxed coordinate scans of simplified despides under A. neutral and B. basic conditions; C....
Fig. 7. A. Depsides rearrangement mechanisms with K; B. MS fragmentation.Published as part of Ferron...
Fig. 10. A. Direct application of the KUV probe on the medulla of P. cinereoatra; B. KUV probe on th...
Fig. 2. (A) Proposed reaction route of DPBA complexing with cyanidin CY; (B) 1HNMR spectra at 400 MH...
Fig. 8. Fragmentation patterns in negative mode of A) compound H and B) UA; common fragments are hig...
Fig. 5. Comparison of HPLC chromatograms of B. weihenstephanensis extracts with UA at 0.01 mg/mL aft...
Fig. 4. HPLC chromatograms of S. cyaneofuscatus cultures with or without UA: A) At the beginning of ...
Fig. 2. δ-keto ester-containing depsides considered in this study. 1 (Elix and Whitton, 1989); 2 (El...
Fig. 6. UV and fluorescence spectra of the isochromen-1-ones 9 and 11.Published as part of Ferron, S...
Fig. 3. Reactivity of depsides with K.Published as part of Ferron, S., J, P., ehan, Guillory, X. & U...
Fig. 5. A Reactivity of the α-alectoronic acid 18 and the α-collatolic acid 19 with K. B Structure o...
Ferron, S., J, P., ehan, Guillory, X., Uriac, P. (2022): Intramolecular transesterification of depsi...
Fig. 4. Reactivity of the methyl, 2′-O-methylmicrophyllinate 4′ with K.Published as part of Ferron, ...
Fig. 11. Structural data of compound s8 (NMR in acetone-d6).Published as part of Ferron, S., J, P., ...
Fig. 9. KUV probe on extracts of P. cinereoatra C, P. speirea var speirea S, P. irriguaI I, P. macro...
Fig. 8. Relaxed coordinate scans of simplified despides under A. neutral and B. basic conditions; C....
Fig. 7. A. Depsides rearrangement mechanisms with K; B. MS fragmentation.Published as part of Ferron...
Fig. 10. A. Direct application of the KUV probe on the medulla of P. cinereoatra; B. KUV probe on th...
Fig. 2. (A) Proposed reaction route of DPBA complexing with cyanidin CY; (B) 1HNMR spectra at 400 MH...
Fig. 8. Fragmentation patterns in negative mode of A) compound H and B) UA; common fragments are hig...
Fig. 5. Comparison of HPLC chromatograms of B. weihenstephanensis extracts with UA at 0.01 mg/mL aft...
Fig. 4. HPLC chromatograms of S. cyaneofuscatus cultures with or without UA: A) At the beginning of ...