Results for:
PubChem ID: 5283324

(E)-oct-2-enal

Mass-Spectra

Compound Details

Synonymous names
trans-2-Octenal
(E)-2-Octenal
(E)-Oct-2-enal
2548-87-0
2-OCTENAL
trans-2-Octen-1-al
(E)-2-Octen-1-al
2-Octenal, (E)-
2-Octenal, (2E)-
2-Octenel
2363-89-5
oct-2-enal
trans-oct-2-enal
2-Octen-1-al
FEMA No. 3215
2-trans-octenal
octene-1-oxide
trans-octen-2-al
(2E)-2-Octenal
OCTENAL
CHEBI:61748
55N91D7775
25447-69-2
2-(E)-octenal
oct-(e)-2-enal
Oct-2(E)-enal
oct-2-en-1-al
(2E)-oct-2-enal
CCRIS 3418
EINECS 219-115-4
EINECS 219-833-8
CHEBI:61725
UNII-2MU4QO235A
AI3-36269
UNII-55N91D7775
(2E)-octenal
(2E)-2-Octenal #
2-OCTENAL [FHFI]
methyl2-isothiocyanatobenzoate
SCHEMBL159708
2MU4QO235A
CHEMBL448058
LVBXEMGDVWVTGY-VOTSOKGWSA-
DTXSID40858789
BCP18963
LMFA06000029
MFCD00007011
(E)-2-OCTEN-1-AL [FCC]
AKOS015915261
trans-2-Octenal, technical grade, 94%
AS-75664
HY-113146
trans-2-Octenal, >=95%, stabilized, FG
CS-0062276
CS-0200283
NS00013087
O0176
C21138
D91827
trans-2-Octenal, analytical reference material
A817874
A1-01903
J-016016
Q2448755
trans-2-Octenal stabilized with 0.50% alpha-tocopherol
InChI=1/C8H14O/c1-2-3-4-5-6-7-8-9/h6-8H,2-5H2,1H3/b7-6+
Microorganism:

Yes

IUPAC name(E)-oct-2-enal
SMILESCCCCCC=CC=O
InchiInChI=1S/C8H14O/c1-2-3-4-5-6-7-8-9/h6-8H,2-5H2,1H3/b7-6+
FormulaC8H14O
PubChem ID5283324
Molweight126.2
LogP2.6
Atoms9
Bonds5
H-bond Acceptor1
H-bond Donor0
Chemical Classificationaldehydes
CHEBI-ID61725
Supernatural-IDSN0216238-02

Species emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
ProkaryotaPseudomonas AeruginosaNANALu et al. 2022
ProkaryotaPseudomonas AeruginosaNANABean et al. 2012
ProkaryotaPseudomonas AeruginosaNANADavis et al. 2020
EukaryotaFomes Fomentarius160-year-old beech forest,51°46´N 9°34´E,Solling,low mountain range,central GermanyHolighaus et al. 2014
ProkaryotaBrevibacillus Agristimulate growth in Arabidopsis thaliana seedlings depending on inoculum concentrationavocado trees (Persea americana) rhizosphereGamboa-Becerra et al. 2022
ProkaryotaPseudomonas Azotoformansisolate from Irish potato soilsHeenan-Daly et al. 2021
EukaryotaTuber Magnatumcollected from natural truffle orchards in Istria (Croatia) during one truffle season (October 2018–January 2019)Niimi et al. 2021
EukaryotaTuber Magnatumcollected from natural truffle orchards in Baranya (Hungary) during one truffle season (October 2018–January 2019)Niimi et al. 2021
EukaryotaTuber Magnatumcollected from natural truffle orchards in Somogy (Hungary) during one truffle season (October 2018–January 2019)Niimi et al. 2021
EukaryotaTuber Magnatumcollected from natural truffle orchards in Abruzzo (Italy) during one truffle season (October 2018–January 2019)Niimi et al. 2021
EukaryotaTuber Magnatumcollected from natural truffle orchards in Kalubara (Serbia) during one truffle season (October 2018–January 2019)Niimi et al. 2021
EukaryotaTuber Magnatumcollected from natural truffle orchards in Srem (Serbia) during one truffle season (October 2018–January 2019)Niimi et al. 2021
ProkaryotaErwinia Amylovoraenhances Arabidopsis thaliana shoot and root growthbacterial collection of the LabParmagnani et al. 2023
EukaryotaTrichoderma VirideNAHung et al. 2013
EukaryotaGanoderma Lucidumnasaprophytic on deciduous treesCampos Ziegenbein et al. 2006
EukaryotaSpongiporus Leucomallellusnasaprophytic mostly on wet, old pinesCampos Ziegenbein et al. 2006
EukaryotaTuber Aestivumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al. 2003
EukaryotaTuber Melanosporumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al. 2003
ProkaryotaClostridium Difficileoutbreak 2006 UKRees et al. 2016
EukaryotaTuber AestivumnaTarsul (as normal forest); Daix (man made orchard)Molinier et al. 2015
EukaryotaTuber Uncinatumn/aFrance, Italy, Switzerland, the UK, Austria, Romania, and HungarySplivallo et al. 2012
EukaryotaTuber IndicumInhibit the development of Arabidopsis thaliana and modify its oxidative metabolismNASplivallo et al. 2007
EukaryotaTuber AestivumBurgundy regionMolinier et al. 2015
ProkaryotaLentilactobacillus BuchneriNANASquara et al. 2022
ProkaryotaLacticaseibacillus ParacaseiNANASquara et al. 2022
ProkaryotaLactobacillus PlantarumNANAZhang et al. 2022
Saccharomyces CerevisiaeQin et al. 2024
Fusarium GraminearumBallot et al. 2023
Lactobacillus PlantarumMa et al. 2023
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
ProkaryotaPseudomonas AeruginosaTH mediumGC-IMSno
ProkaryotaPseudomonas Aeruginosalysogeny brothSPME/GCxGC-MSno
ProkaryotaPseudomonas AeruginosaLB brothSPME/GCxGC-MSno
EukaryotaFomes FomentariusGC-MS (SIM)yes
ProkaryotaBrevibacillus AgriLB mediaSPME/GC-MSno
ProkaryotaPseudomonas AzotoformansTSB mediaSPME/GC-MSno
EukaryotaTuber MagnatumGC-MS-Ono
ProkaryotaErwinia AmylovoraSBSE/GC-MSno
EukaryotaTrichoderma VirideMalt extract agar Headspace volatiles collected with colomn/TD-GC-MSyes
EukaryotaGanoderma LucidumnaGC/MSno
EukaryotaSpongiporus LeucomallellusnaGC/MSno
EukaryotaTuber Aestivumn/an/ano
EukaryotaTuber Melanosporumn/an/ano
ProkaryotaClostridium Difficilebrain heart infusionGCxGC-TOF-MSyes
EukaryotaTuber AestivumnaSPME-GC/MSno
EukaryotaTuber Uncinatumn/aSPME-GC-MSno
EukaryotaTuber Indicumn/an/ano
EukaryotaTuber AestivumHS-SPME/GC-MS yes
ProkaryotaLentilactobacillus Buchnerimaize silageHS-SPME coupled with GC-TOF MSno
ProkaryotaLacticaseibacillus Paracaseimaize silageHS-SPME coupled with GC-TOF MSno
ProkaryotaLactobacillus Plantarumchickpea milkUHPLC/MSno
Saccharomyces Cerevisiaefermentation of mulberry wineHS-SPME-GC-MSno
Fusarium Graminearumtryptone soy (TS medium; Carl Roth, Karlsruhe, Germany)GC-QQQ-MSno
Lactobacillus Plantarumtuna cooking liquidHS-SPME-GC/MSno