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Polymorphism and expression of isoflavone synthase genes from soybean cultivars

  • Hyo Kyoung Kim
  • , Yun Hee Jang
  • , Il Sun Baek
  • , Jeong Hwan Lee
  • , Min Joo Park
  • , Young Soo Chung
  • , Jong Il Chung
  • , Jeong Kook Kim*
  • *Corresponding author for this work
  • Korea University
  • Dong-A Pharmaceutical Company
  • Dong-A University
  • Gyeongsang National University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Isoflavones are synthesized by isoflavone synthases via the phenylpropanoid pathway in legumes. We have cloned two isoflavone synthase genes, IFS1 and IFS2, from a total of 18 soybean cultivars. The amino acid residues of the proteins that differed between cultivars were dispersed over the entire coding region. However, amino acid sequence variation did not occur in conserved domains such as the ERR triad region, except that one conserved amino acid was changed in the IFS2 protein of the GS12 cultivar (R374G) and the IFS1 proteins of the 99M06 and Soja99s65 cultivars (A109T, F 105I). In three cultivars (99M06, 99M116, and Simheukpi), most of amino acid changes were such that the difference between the amino acid sequences of IFS1 and IFS2 was reduced. The expression profiles of three enzymes that convert naringenin to the isoflavone, genistein, chalcone isomerase (CHI), isoflavone synthase (IFS) and flavanone 3-hydroxylase (F3H) were examined. In general, IFS mRNA was more abundant in etiolated seedlings than mature plants whereas the levels of CHI and F3H mRNAs were similar in the two stages. During seed development, IFS was expressed a little later than CHI and F3H but expression of these three genes was barely detectable, if at all, during later seed hardening. In addition, we found that the levels of CHI, F3H, and IFS mRNAs were under circadian control. We also showed that IFS was induced by wounding and by application of methyl jasmonate to etiolated soybean seedlings.

Original languageEnglish
Pages (from-to)67-73
Number of pages7
JournalMolecules and Cells
Volume19
Issue number1
DOIs
StatePublished - 2005

Keywords

  • Abiotic Stress
  • Circadian Regulation
  • Isoflavone Synthase
  • Phenylpropanoid
  • Polymorphism
  • Soybean Cultivars

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