High-Throughput and Highly Sensitive Analysis Method for Polyisoprene in Plants by Pyrolysis-Gas Chromatography/Mass Spectrometry

    • TAKENO Shinya
    • Department of Biotechnology, Graduate School of Engineering, Osaka University
    • BAMBA Takeshi
    • Department of Biotechnology, Graduate School of Engineering, Osaka University
    • FUKUSAKI Eiichiro
    • Department of Biotechnology, Graduate School of Engineering, Osaka University

    • OKAZAWA Atsushi
    • Department of Biotechnology, Graduate School of Engineering, Osaka University
    • KOBAYASHI Akio
    • Department of Biotechnology, Graduate School of Engineering, Osaka University

Abstract

Natural polyisoprene is a biopolymer consisting of isoprene units (C5H8) that is used commercially in household, medical, and industrial materials. For the management of natural polyisoprene production, the selection of high-yield polyisoprene-producing trees, and an understanding of polyisoprene biosynthesis, a high-throughput and highly sensitive screening method for the quantification of polyisoprene is required. In this study, we examined pyrolysates from polyisoprenes, polyprenols, carotenoids, ubiquinone (CoQ-10), and sterols by pyrolysis gas chromatography/mass spectrometry (PyGC/MS) and determined that the amounts of isoprene and limonene released from polyprenols and polyisoprenes were dependent upon their molecular weights. Based on these results, we developed a relative quantification method for polyisoprene in leaves by direct analysis of 1 mg of leaves using PyGC/MS. This novel quantification method eliminated extraction steps and can be used in the measurement of polyisoprene contents in Eucommia ulmoides and Hevea brasiliensis.

Journal

Bioscience, Biotechnology, and Biochemistry  

Bioscience, Biotechnology, and Biochemistry 74(1), 13-17, 2010-01-23 

Japan Society for Bioscience, Biotechnology, and Agrochemistry

References:  10

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Codes

  • NII Article ID (NAID) :
    10027549817
  • NII NACSIS-CAT ID (NCID) :
    AA10824164
  • Text Lang :
    ENG
  • Article Type :
    ART
  • ISSN :
    09168451
  • NDL Article ID :
    10532628
  • NDL Source Classification :
    ZR7(科学技術--農林水産--農産) // ZR2(科学技術--生物学--生化学) // ZP1(科学技術--化学・化学工業)
  • NDL Call No. :
    Z53-G223
  • Databases :
    CJP  NDL  J-STAGE 

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