Home Profiles Search Statistics About Contact Us Geolocation FAIR Data Cite Us

πŸ“„ Publication Info

Title influence of eight chosen essential oils in the vapor phase on the growth of rhizopus stolonifer and rhizopus lyococcus
Journal potravinarstvo slovak journal of food sciences
Year 2021
DOI https://doi.org/10.5219/1586
Cited By 5
OpenAlex View β†—
Full Text View Full Publication β†—
Abstract
this study aimed to evaluate the fungicidal effect of eight essential oils against five strains of the genus rhizopus. strains were obtained from various moldy foods, namely rhizopus stolonifer kmi 383 from chestnut, r. stolonifer kmi 510 from strawberry, r. stolonifer kmi 511 from nectarine, r. stolonifer kmi 524 from cherry tomatoes, and r. lyococcus kmi 512 from blackberry. the essential oils (eo) used in this study were jasmine eo (extract from jasminum officinale l.), bergamot eo (mentha aquatica l. var. citrata (her.) fresen), bitter orange eo (from citrus aurantium l.), grapefruit eo (citrus paradisi macfady), sweet flag eo (east asian calamus, from acorus calamus l. var. angustatus bes), star anise eo (from illicium verum j.d.hook), geranium eo (from pelargonium graveolens), and lemongrass eo (from cymbopogon citratus dc). the semi-quantitative composition of the essential oil samples was determined by gas chromatography coupled with mass spectrometry (gc-ms). the antifungal activity of essential oils against the strains of r. stolonifer and r. lyococcus was determined during 7 days, using the micro-atmosphere method (0.625 l.ml-1 of air). two essential oils, geranium and lemongrass, completely inhibited the growth of all isolates. bitter orange essential oil inhibited the growth of all isolates of rhizopus stolonifer, but isolate of rhizopus lyococcus began to grow after four days of cultivation. in conclusion, certain essential oils are highly effective in the vapor phase. these could be used in further tests of their antifungal activity and could be used in the control of rhizopus spp. or other fungal pathogens.
5
Plants
49
Compounds
0
Records

πŸ”— Publication Network

πŸ”— Standard
βš–οΈ Weighted (by Amount)
Loading network…
Compounds
Plants
Plant Parts
All Records
CompoundCount
(-)-linalool4
geraniol4
beta-myrcene3
beta-citral3
alpha-citral3
geranyl acetate3
beta-caryophyllene3
(+)-alpha-pinene3
(-)-beta-pinene2
thujone2
cis-limonene oxide2
(+)-rose oxide2
(+/-)-citronellal2
beta-phellandrene2
(r)-(+)-limonene2
cedrola1
gamma-eudesmol1
caryophyllene oxide1
tau-cadinol1
beta-eudesmol1
estragol1
(+)-carvone acetate1
alpha-eudesmol1
-phellandrene1
1,8-cineole1
(1r)-(+)-camphor1
4-carvomenthenola1
cinnamaldehyde1
beta-citronellola1
(-)-carvone1
cymene1
citronellyl formate1
6-methylhept-5-en-2-ol1
gamma-terpinene1
farnesene1
beta-ocimene1
alpha-terpineol1
neryl acetate1
(-)-borneol1
citronellol1
acetyl eugenol1
carvacrola1
delta-elemene1
alpha-copaene1
citronellyl propionate1
germacrene-d1
beta-bisabolene1
gamma-cadinene1
myristicina1
PlantFamily
Citrus aurantiumrutaceae
Citrus paradisirutaceae
Cymbopogon citratuspoaceae
Illicium verumschisandraceae
Pelargonium graveolensgeraniaceae
Plant PartCount
PlantCompoundPart%