• Title of article

    Limitation of photosynthetic carbon metabolism by dark chilling in temperate and tropical soybean genotypes

  • Author/Authors

    Van Heerden، نويسنده , , Philippus D.R. and Viljoen، نويسنده , , Melanie M. and De Villiers، نويسنده , , Magdaleen F. and Krüger، نويسنده , , Gert H.J.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    8
  • From page
    117
  • To page
    124
  • Abstract
    In the experiments reported in this paper, we characterised the physiological and biochemical factors involved in the chilling-induced inhibition of photosynthetic carbon metabolism in soybean [Glycine max (L.) Merr.] genotypes of temperate and tropical adaptation. Plants of Maple Arrow (temperate genotype) and Java 29 (tropical genotype) were exposed to a single night at 8 °C. Dark chilling resulted in the inhibition of diurnal CO2 assimilation rate and decreased stomatal conductance in both genotypes. Further analysis, however, revealed a difference in the response of the two genotypes. Stomatal limitation was largely responsible for the inhibition of CO2 assimilation in Maple Arrow, whereas mesophyll limitation dominated the inhibition in Java 29. The results indicate that inhibition of stromal fructose-1,6-bisphosphatase (sFBPase; EC 3.1.3.11) activity and impaired electron transport capacity were responsible for the decrease in ribulose-1,5-bisphosphate (RuBP) regeneration capacity in Java 29. Sucrose-phosphate synthase (SPS; EC 2.4.1.14) activity was progressively inhibited during the light period in this genotype and might impose an additional constraint on photosynthesis. Maple Arrow appears to possess, at least with respect to photosynthetic carbon metabolism, physiological and biochemical characteristics that contribute towards its superior dark chilling tolerance.
  • Keywords
    RUBISCO , Photosystem II , sucrose-phosphate synthase , fructose-1 , 6-bisphosphatase , GLYCINE MAX , Night temperatures , Photosynthesis
  • Journal title
    Plant Physiology and Biochemistry
  • Serial Year
    2004
  • Journal title
    Plant Physiology and Biochemistry
  • Record number

    2120881