Abstract

The lack of consistent success of biological control of soilborne plant pathogens may be due to the introduction of the organism into a foreign environment. We hypothesized that wood chip-polyacrylamide (PAM) cores surrounding host plant roots could alter the soil environment to favour growth of introduced biocontrol microorganisms, thereby reducing Verticillium dahliae infection of potato ( Solanum tuberosum L.) in a greenhouse. A 7cm diameter 2 15cm deep hole (core) was drilled in the center of a 20 2 30cm deep pot (1.9 kg) containing soil infested with V. dahliae inoculum. Cores were then filled with wood chip-PAM-biocontrol organism mixtures. Soils that had Streptomyces lydicus inoculated into wood chip-PAM cores had lower levels of V. dahliae symptoms ( V vis ) and V. dahliae isolations ( V iso ) than all other treatments in three soils. V vis and V iso on plants growing in soils amended with S. lydicus or Pseudomona corrugata inoculated into the soil itself (without wood chip-PAM cores) did not differ from soils that were unamended with these biocontrol organisms. V. dahliae biomass was lower in wood chip-PAM cores inoculated with S. lydicus than control or wood chip-PAM cores without biocontrol bacteria. Soils with wood chip-PAM cores inoculated with S. lydicus or P. corrugata generally had higher microbial biomass/ V. dahliae biomass (MB/VB) ratios than control soils, or soils with S. lydicus or P. corrugata inoculated into the soil. Wood chipPAM cores alone and wood chip-PAM cores inoculated with S. lydicus had higher MB/VB ratios than wood chip-PAM cores inoculated with P. corrugata . V vis and V iso were curvilinearly correlated with the MB/VB ratios in negative relationships, respectively (r 2 = 0.68, r 2 = 0.68). As the MB/VB ratio increased, V vis and V iso decreased. Although field studies and economic evaluations are necessary, amending soil with wood chips-PAM and a biocontrol bacterium may be a valuable method to increase the effectiveness of biocontrol organisms.

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