Long-chain alkenes of the haptophytes Isochrysis galbana and Emiliania huxleyi

被引:32
作者
Rieley, G
Teece, MA
Peakman, TM
Raven, AM
Greene, KJ
Clarke, TP
Murray, M
Leftley, JW
Campbell, CN
Harris, RP
Parkes, RJ
Maxwell, JR
机构
[1] Univ Bristol, Sch Chem, Bristol BS8 1TS, Avon, England
[2] Dunstaffnage Marine Lab, Oban PA34 4AD, Argyll, Scotland
[3] Univ Bristol, Dept Geol, Bristol BS8 1RJ, Avon, England
[4] Plymouth Marine Lab, Plymouth PL1 3DH, Devon, England
基金
英国自然环境研究理事会;
关键词
D O I
10.1007/s11745-998-0248-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The major alkenes of the haptophytes Isochrysis galbana (strain CCAP 927/14) and Emiliania huxleyi (strains CCAP 920/2 and VAN 556) have been identified by nuclear magnetic resonance spectroscopy and by mass spectrometric analysis of their dimethyl disulfide adducts. The dominant alkene in I, galbana is (22Z)-1,22-hentriacontadiene, with 1,24-hentriacontadiene and 1,24-tritriacontadiene present in much lower abundance; (22Z)-1,22-hentriacontadiene also occurs in E. huxleyi (strain CCAP 920/2), together with (2Z,22Z)-2,22-hentriacontadiene (the major hydrocarbon) and (3Z,22Z)-3,22-hentriacontadiene. Minor abundances of 2,24-hentriacontadiene and 2,24-tritriacontadiene are also present in this strain. In contrast, the dominant alkene in E. huxleyi (strain VAN 556) is (15 E,22 E)-1,16,23-heptatriacontatriene with the related alkatriene 1,15,22-octatriacontatriene also present and (22Z)-1,22-hentriacontadiene occurring as a minor component. From structural relationships (15E,22 E)-1,15,22-heptatriacontatriene is proposed to derive from the same biosynthetic pathway as that of the characteristic C(37) alkenones which occur in both E. huxleyi and I. galbana. The C(31) and C(33) dienes likely derive from chain extension and decarboxylation of (Z)-9-octadecenoic acid or (Z)-7-hexadecenoic acid, using a pathway analogous to that elucidated previously in the chlorophyte Botryococcus braunii. Therefore, long-chain dienes and trienes, which can co-occur in haptophytes, may have distinct biosynthetic pathways.
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页码:617 / 625
页数:9
相关论文
共 17 条
  • [1] AYLWARD F, 1962, CHEM IND-LONDON, P484
  • [2] Brassell S.C., 1993, ORG GEOCHEM, P699
  • [3] MOLECULAR STRATIGRAPHY - A NEW TOOL FOR CLIMATIC ASSESSMENT
    BRASSELL, SC
    EGLINTON, G
    MARLOWE, IT
    PFLAUMANN, U
    SARNTHEIN, M
    [J]. NATURE, 1986, 320 (6058) : 129 - 133
  • [4] DIMETHYL DISULFIDE DERIVATIVES OF LONG-CHAIN ALKENES, ALKADIENES, AND ALKATRIENES FOR GAS-CHROMATOGRAPHY MASS-SPECTROMETRY
    CARLSON, DA
    ROAN, CS
    YOST, RA
    HECTOR, J
    [J]. ANALYTICAL CHEMISTRY, 1989, 61 (14) : 1564 - 1571
  • [5] ANALYSIS OF NMR SPECTRA BY LEAST SQUARES
    CASTELLANO, S
    BOTHNERB.AA
    [J]. JOURNAL OF CHEMICAL PHYSICS, 1964, 41 (12) : 3863 - +
  • [6] LIPID BIOMARKER DIVERSITY IN THE COCCOLITHOPHORID EMILIANIA-HUXLEYI (PRYMNESIOPHYCEAE) AND THE RELATED SPECIES GEPHYROCAPSA-OCEANICA
    CONTE, MH
    THOMPSON, A
    EGLINTON, G
    GREEN, JC
    [J]. JOURNAL OF PHYCOLOGY, 1995, 31 (02) : 272 - 282
  • [7] CONTE MH, 1993, HAPTOPHYTE ALGAE, P351
  • [8] COREY EJ, 1961, TETRAHEDRON LETT, V11, P347
  • [9] BOTRYOCOCCENE - TETRAMETHYLATED ACYCLIC TRITERPENOID OF ALGAL ORIGIN
    COX, RE
    BURLINGAME, AL
    WILSON, DM
    EGLINTON, G
    MAXWELL, JR
    [J]. JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1973, (08) : 284 - 285
  • [10] HUNIG S, 1961, TETRAHEDRON LETT, V11, P353