## Abstract Rock phosphate effect on English mint (__Mentha piperita__ L.) grown on steamed perlite:vermiculite (1:1, v:v) substrate, with and without rock phosphate, was evaluated in greenhouse experiments. Five treatments were carried out by inoculation with an arbuscular mycorrhizal fungus __Glo
Production of Glomus intraradices propagules, an arbuscular mycorrhizal fungus, in an airlift bioreactor
β Scribed by M. Jolicoeur; R. D. Williams; C. Chavarie; J. A. Fortin; J. Archambault
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 131 KB
- Volume
- 63
- Category
- Article
- ISSN
- 0006-3592
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β¦ Synopsis
This work addresses the symbiotic culture of the arbuscular mycorrhizal (AM) fungus Glomus intraradices with Daucus carota hairy roots transformed by Agrobacterium rhizogenes, in two submerged culture systems: Petri dish and airlift bioreactor. AM fungi play an active role in plant nutrition and protection against plant pathogens. These fungi are obligate biotrophs as they depend on a host plant for their needs in carbohydrates. The effect of the mycorrhizal roots inoculum-tomedium volume ratio on the growth of both symbionts was studied. A critical inoculating condition was observed at βΌ0.6 g dry biomass (DW) ΠΈ L -1 medium, above which root growth was significantly reduced when using a low-salt minimal (M) liquid medium previously developed for hairy root-AM fungi co-culture. Below critical inoculum conditions the maximum specific root growth and specific G. intraradices spore production rates of 0.021 and 0.035 d -1 , respectively, were observed for Petri dish cultures. Maximum spore production in the airlift bioreactor was ten times lower than that of Petri dish cultures and obtained with the lowest inoculum assessed (0.13 g DW ΠΈ L -1 medium) with 1.82 Γ 10 5 Β± 4.05 Γ 10 4 (SEM) spores (g DW inoculum) -1 (L medium) -1 in 107 d. This work proposes a second-generation bioprocess for AM fungi propagule production in bioreactors.
π SIMILAR VOLUMES
Large-scale cultivation of murine bone marrow cells was accomplished in an airlift packed bed bioreactor system designed to mimic t h e in vivo bone marrow environment. The attachment-dependent stromal cell population, which provides the necessary microenvironment, including growth factors for subse