General Information of Natural Product (ID: NP0403)
  Natural Product Name
2-Undecenal
  Synonyms
trans-2-Undecenal; 2-UNDECENAL; (E)-Undec-2-enal; 53448-07-0; 2463-77-6; (2E)-2-Undecenal; (E)-2-undecenal; 2-Undecen-1-al; 2-Undecenal, (2E)-; Undec-2-enal; trans-2-Undecen-1-al; 2-Undecenal, (E)-; UNII-FNP3S9MG30; trans-undec-2-enal; 1337-83-3; FNP3S9MG30; 2-UNDECENAL (HIGH TRANS); 2-Undecenal, E-; Aldehyde iso C-11; FEMA No. 3423; undecenal (2e-); 2(E)-Undecenal; EINECS 215-656-5; EINECS 219-564-6; EINECS 258-559-3; 2-Undecenal, trans; Undec-2(E)-enal; (2E)-undec-2-enal; AI3-36265; (e)-2-undecen-1-al; CHEMBL451328; FEMA 3423; DTXSID20904470; CHEBI:132843; CHEBI:133173; trans-2-Undecenal, >=95%, FG; ZINC1849946; LMFA06000065; MFCD00014680; AKOS015901935; ZINC585138973; LS-14008; U592; U0046; A817413; Q27278090; 2-Undecenal (High trans) stabilized with alpha-tocopherol; UNII-090E982ABR component PANBRUWVURLWGY-MDZDMXLPSA-N; UNII-F851M0LYFD component PANBRUWVURLWGY-MDZDMXLPSA-N
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  Formula C11H20O
  Weight 168.28
  Structure Could Not Find 2D Structure
3D Structure Download 2D Structure Download
  InChI InChI=1S/C11H20O/c1-2-3-4-5-6-7-8-9-10-11-12/h9-11H,2-8H2,1H3/b10-9+
  InChI Key PANBRUWVURLWGY-MDZDMXLPSA-N
  Isomeric SMILES CCCCCCCC/C=C/C=O
  Canonical SMILES CCCCCCCCC=CC=O
  External Links PubChem ID 5283356
CAS ID 53448-07-0
NPASS ID NPC287397
CHEMBL ID CHEMBL451328
  NP Activity Charts   Click to show/hide

 The Content Variation of Natural Product Induced by Different Factor(s)
      Species Name: Coriandrum sativum
  Factor Name: NaCl Treatment [1]
              Species Info Factor Info
               Experiment Detail
Plant material: Coriander (Coriandrum sativum L.) fruits were collected from cultivated plants in the region of Korba (northeastern Tunisia) in April 2006. Seeds were set to germinate at 25 ℃. Ten-day-old coriander seedlings were grown in quarter-strength Hoagland's solution laced with 0 mM, 25 mM, 50 mM and 75 mM of NaCl. The culture was placed in a greenhouse with 25 ℃ day maximum and 18 ℃ night minimum, under artificial light of 141 µmol/m2 /s (6000 lux) with 16 h photoperiod and 60-80% air humidity. Nutrient solution was continuously aerated. Growth parameters: Plants were harvested at the seedling stage 3 weeks after treatment.
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               Factor Function
Essential oil content was 1762.64 µg/g dry weight (DW) (0.18%) and 1255.77 µg/g DW (0.12%) in stems and leaves, respectively. At low and moderate stress, a significant difference in the essential oil content was developed between stems, with a significant decrease, and leaves, with an increase up to 43%. Under high salinity, the oil content of both organs decreased significantly. The major volatile compound of stems and leaves was (E)-2-decenal with 24% and 52%, respectively. Other important components were decanal, (E)-2-dodecenal, dodecanal, (E)-2-undecenal, (E)-2-tridecenal and (E)-2-undecanal. Further, the content of these compounds were affected differently by the treatment level and by the organ type.
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               Factor Part Location NP Content
 
0 mM NaCl (Control)
Leaves Tunisia
NP Content: 3.39 %
 
0 mM NaCl (Control)
Stems Tunisia
NP Content: 6.04 %
 
25mM NaCl
Leaves Tunisia
NP Content: 4.42 %
 
25mM NaCl
Stems Tunisia
NP Content: 3.52 %
 
50 mM NaCl
Leaves Tunisia
NP Content: 8.52 %
 
50 mM NaCl
Stems Tunisia
NP Content: 4.38 %
 
75 mM NaCl
Leaves Tunisia
NP Content: 8.16 %
 
75 mM NaCl
Stems Tunisia
NP Content: 10.18 %
References
1 Salinity Impact on Growth, Essential Oil Content and Composition of Coriander (Coriandrum sativum L.) Stems and Leaves