Two selected brown algae (Taonia atomaria and Padina pavonica from the family Dictyotaceae, order Dictyotales) growing in the same area (island Vis, central Adriatic Sea) were collected at the same time. Their phytochemical composition of the headspace volatile organic compounds (HS-VOCs; first time report) was determined by headspace solid-phase microextraction (HS-SPME). Hydrodistillation was applied for the isolation of their volatile oils (first report on T. atomaria volatile oil). The isolates were analyzed by gas chromatography (GC-FID) and mass spectrometry (GC-MS). The headspace and oil composition of T. atomaria were quite similar (containing germacrene D, epi-bicyclosesquiphellandrene, β-cubebene and gleenol as the major comp...
Volatile organic compounds (VOCs) are produced by macroalgae in response to environmental stresses. ...
Marine algae synthesize secondary metabolites such as polyphenols that function as defense and prote...
Marine algae produce a great amount of secondary metabolites (e.g. terpenoids, fatty acids, steroids...
Two selected brown algae (Taonia atomaria and Padina pavonica from the family Dictyotaceae, order Di...
Alge čine raznoliku skupinu organizama te predstavljaju bogati izvor spojeva. U ovom radu je dan pre...
The production of volatile organic compounds (VOC) by plants is well known. However, few scientific ...
Volatile oils of algae contain a variety of compounds. The main group, terpenes, contains acyclic: l...
The volatile organic compounds (VOCs) of fresh (FrCC) and air-dried (DrCC) Cystoseria corniculata an...
Marine macroalgae are well known to release a wide spectrum of volatile organic components, the rele...
Due to the lack of less-volatile compounds composition data of macroalgal supercritical CO2 (SC-CO2)...
Marine macroalgae are well known to release a wide spectrum of volatile organic components, the rele...
Several photosynthetic pigments from two algae, namely Padina pavonica and Codium fragile, were extr...
The marine ecology is diverse with innumerable types of natural substances, both of plant and animal...
Red algae of the Laurencia genus contain a wide range of unusual secondary metabolites, many of whic...
Copyright © 2014 Masayoshi Yamamoto et al. This is an open access article distributed under the Crea...
Volatile organic compounds (VOCs) are produced by macroalgae in response to environmental stresses. ...
Marine algae synthesize secondary metabolites such as polyphenols that function as defense and prote...
Marine algae produce a great amount of secondary metabolites (e.g. terpenoids, fatty acids, steroids...
Two selected brown algae (Taonia atomaria and Padina pavonica from the family Dictyotaceae, order Di...
Alge čine raznoliku skupinu organizama te predstavljaju bogati izvor spojeva. U ovom radu je dan pre...
The production of volatile organic compounds (VOC) by plants is well known. However, few scientific ...
Volatile oils of algae contain a variety of compounds. The main group, terpenes, contains acyclic: l...
The volatile organic compounds (VOCs) of fresh (FrCC) and air-dried (DrCC) Cystoseria corniculata an...
Marine macroalgae are well known to release a wide spectrum of volatile organic components, the rele...
Due to the lack of less-volatile compounds composition data of macroalgal supercritical CO2 (SC-CO2)...
Marine macroalgae are well known to release a wide spectrum of volatile organic components, the rele...
Several photosynthetic pigments from two algae, namely Padina pavonica and Codium fragile, were extr...
The marine ecology is diverse with innumerable types of natural substances, both of plant and animal...
Red algae of the Laurencia genus contain a wide range of unusual secondary metabolites, many of whic...
Copyright © 2014 Masayoshi Yamamoto et al. This is an open access article distributed under the Crea...
Volatile organic compounds (VOCs) are produced by macroalgae in response to environmental stresses. ...
Marine algae synthesize secondary metabolites such as polyphenols that function as defense and prote...
Marine algae produce a great amount of secondary metabolites (e.g. terpenoids, fatty acids, steroids...