• Title of article

    Rhizobitoxine-induced Chlorosis Occurs in Coincidence with Methionine Deficiency in Soybeans

  • Author/Authors

    Okazaki، Shin-ya نويسنده , , Sugawara، Masayuki نويسنده , , Yuhashi، Ken-Ichi نويسنده , , Minamisawa، Kiwamu نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    -54
  • From page
    55
  • To page
    0
  • Abstract
    Background and Aims: Rhizobitoxine, produced by the legume symbiont Bradyrhizobium elkanii, inhibits cystathionine-(beta)-lyase (EC 4.4.1.8) in methionine biosynthesis and 1-aminocyclopropane-1-carboxylate synthase (ACC) in ethylene biosynthesis. Rhizobitoxine production by B. elkanii enhances nodulation of host legumes via the inhibition of ethylene synthesis, but causes foliar chlorosis in susceptible soybeans, though how it does so remains to be investigated. The aim of this study was to examine the physiological basis of rhizobitoxine-induced chlorosis in soybeans. Methods: Wild-type B. elkanii and a rhizobitoxine-deficient mutant were inoculated in Glycine max ʹLeeʹ. Thirty days after inoculation, the upper parts of soybean shoots were analysed for amino acid contents. Chlorotic soybeans inoculated with wild-type B. elkanii were treated with methionine and ACC to assess the effects of the chemicals on the chlorosis. Key Results: Chlorotic upper shoots of soybeans inoculated with wild-type B. elkanii had a lower methionine content and higher accumulation of the methionine precursors than those with the rhizobitoxine-deficient mutant. In addition, the foliar chlorosis was alleviated by the application of methionine. Conclusions: Rhizobitoxine-induced chlorosis occurs in coincidence with methionine deficiency as a result of cystathione-(beta)-lyase inhibition during methionine biosynthesis.
  • Keywords
    nodulation , Chlorosis , methionine , rhizobitoxine , Glycine max , Soybean , Bradyrhizobium elkanii
  • Journal title
    Annals of Botany
  • Serial Year
    2007
  • Journal title
    Annals of Botany
  • Record number

    118681