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The matrix metalloproteinase gene GmMMP2 is activated in response to pathogenic infections in soybean

Y Liu1, C Dammann, M K Bhattacharyya

  • 1Plant Biology Division, The Samuel Roberts Noble Foundation, Ardmore, Oklahoma 73402, USA. yll@ornl.gov

Plant Physiology
|December 18, 2001
PubMed

Insights

Soybean plants possess a novel metalloproteinase gene, GmMMP2, that activates during pathogen infection and wounding. This suggests GmMMP2 plays a role in soybean

Area of Science:

  • Plant molecular biology
  • Biochemistry
  • Plant pathology

Background:

  • Matrix metalloproteinases (MMPs) are crucial in mammalian host defense, producing antimicrobial peptides.
  • Plant metalloproteinases' functions remain largely unknown, though implicated in development and senescence.
  • Soybean (Glycine max) metalloproteinase gene GmMMP2 was identified and characterized.

Purpose of the Study:

  • To investigate the function and regulation of the novel soybean metalloproteinase gene, GmMMP2.
  • To determine GmMMP2's role in plant defense responses against pathogens.
  • To explore GmMMP2's activation under various stress conditions.

Main Methods:

  • Gene identification and sequence analysis of GmMMP2.
  • Expression and purification of GmMMP2 in Escherichia coli.
  • In vitro enzymatic activity assay using myelin basic protein.
  • Quantitative analysis of GmMMP2 transcript levels in response to pathogen infection, wounding, and dehydration.

Main Results:

  • GmMMP2 encodes a preproprotein with characteristic MMP domains.
  • Recombinant GmMMP2 demonstrated myelin basic protein degrading activity in vitro.
  • GmMMP2 transcript levels significantly increased upon infection by Phytophthora sojae and Pseudomonas syringae pv. glycinea.
  • GmMMP2 activation was also observed in response to wounding and dehydration.
  • GmMMP2 activation did not correlate with hypersensitive response or senescence-induced cell death.

Conclusions:

  • GmMMP2 is a functional metalloproteinase in soybean.
  • GmMMP2 is rapidly induced by pathogen infection, wounding, and dehydration.
  • GmMMP2 is likely involved in a novel soybean defense mechanism against pathogens, independent of programmed cell death pathways.

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