• Title of article

    Differential effects of genetically distinct mechanisms of elevating amylose on barley starch characteristics

  • Author/Authors

    Regina، نويسنده , , Ahmed and Blazek، نويسنده , , Jaroslav and Gilbert، نويسنده , , Elliot and Flanagan، نويسنده , , Bernadine M. and Gidley، نويسنده , , Michael J. and Cavanagh، نويسنده , , Colin and Ral، نويسنده , , Jean-Philippe and Larroque، نويسنده , , Oscar and Bird، نويسنده , , Anthony R. and Li، نويسنده , , Zhongyi and Morell، نويسنده , , Matthew K.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    13
  • From page
    979
  • To page
    991
  • Abstract
    The relationships between starch structure and functionality are important in underpinning the industrial and nutritional utilisation of starches. In this work, the relationships between the biosynthesis, structure, molecular organisation and functionality have been examined using a series of defined genotypes in barley with low (<20%), standard (20–30%), elevated (30–50%) and high (>50%) amylose starches. A range of techniques have been employed to determine starch physical features, higher order structure and functionality. The two genetic mechanisms for generating high amylose contents (down-regulation of branching enzymes and starch synthases, respectively) yielded starches with very different amylopectin structures but similar gelatinisation and viscosity properties driven by reduced granular order and increased amylose content. Principal components analysis (PCA) was used to elucidate the relationships between genotypes and starch molecular structure and functionality. Parameters associated with granule order (PC1) accounted for a large percentage of the variance (57%) and were closely related to amylose content. Parameters associated with amylopectin fine structure accounted for 18% of the variance but were less closely aligned to functionality parameters.
  • Keywords
    Amylose , barley , Starch , NMR , SAXS , Amylopectin
  • Journal title
    CARBOHYDRATE POLYMERS
  • Serial Year
    2012
  • Journal title
    CARBOHYDRATE POLYMERS
  • Record number

    1623769