Effect of alginic acid decomposing bacterium on the growth of Laminaria japonica (Phaeophyceae)

J Environ Sci (China). 2006;18(3):543-51.

Abstract

We collected the diseased blades of Laminaria japonica from Yantai Sea Farm from October to December 2002, and the alginic acid decomposing bacterium on the diseased blade was isolated and purified, and was identified as Alteromonas espejiana. This bacterium was applied as the causative pathogen to infect the blades of L. japonica under laboratory conditions. The aim of the present study was to identify the effects of the bacterium on the growth of L. japonica, and to find the possibly effective mechanism. Results showed that: (1) The blades of L. japonica exhibited symptoms of lesion, bleaching and deterioration when infected by the bacterium, and their growth and photosynthesis were dramatically suppressed. At the same time, the reactive oxygen species (ROS) generation enhanced obviously, and the relative membrane permeability increased significantly. The contents of malonaldehyde (MDA) and free fatty acid in the microsomol membrane greatly elevated, but the phospholipid content decreased. Result suggested an obvious peroxidation and deesterrification in the blades of L. japonica when infected by the bacterium. (2) The simultaneous assay on the antioxidant enzyme activities demonstrated that superoxide dismutase (SOD) and catalase (CAT) increased greatly when infected by the bacterium, but glutathione peroxidase (Gpx) and ascorbate peroxidase (APX) did not exhibit active responses to the bacterium throughout the experiment. (3) The histomorphological observations gave a distinctive evidence of the severity of the lesions as well as the relative abundance in the bacterial population on the blades after infection. The bacterium firstly invaded into the endodermis of L. japonica and gathered around there, and then resulted in the membrane damage, cells corruption and ultimately, the death of L. japonica.

Publication types

  • Comparative Study

MeSH terms

  • Alteromonas / isolation & purification*
  • Alteromonas / pathogenicity
  • Catalase / metabolism
  • Cell Membrane Permeability / physiology
  • China
  • Laminaria / enzymology
  • Laminaria / growth & development*
  • Laminaria / microbiology*
  • Malondialdehyde / analysis
  • Microsomes / chemistry
  • Phospholipids / analysis
  • Photosynthesis / physiology
  • Plant Diseases / immunology
  • Plant Diseases / microbiology*
  • Reactive Oxygen Species / metabolism
  • Superoxide Dismutase / metabolism

Substances

  • Phospholipids
  • Reactive Oxygen Species
  • Malondialdehyde
  • Catalase
  • Superoxide Dismutase