Effectiveness of Different Frankia Cell Types as Inocula for the Actinorhizal Plant Casuarina
Stephen Burleigh, John G. Torrey
Abstract
Open-access reader
Stephen Burleigh, John G. Torrey
Abstract
Open-access reader
The soil bacterium Frankia of the Actinomycetales, capable of forming N(2)-fixing symbiotic root nodules on a diverse array of actinorhizal plants, has several morphological forms when grown in pure culture. Fresh hydrated preparations of whole cells, hyphae, and spores were all infective on seedlings of Casuarina at different dilutions. Desiccated hyphae showed no infection capacity, while desiccated spores remained infective, although at a reduced level. On the basis of most-probable-number statistics, spore suspensions were 3 orders of magnitude more infective than hyphae.
OpenAlex reports 32 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The soil bacterium Frankia of the Actinomycetales, capable of forming N(2)-fixing symbiotic root nodules on a diverse array of actinorhizal plants, has several morphological forms when grown in pure culture. Fresh hydrated preparations of whole cells, hyphae, and spores were all infective on seedlings of Casuarina at different dilutions. Desiccated hyphae showed no infection capacity, while desiccated spores remained infective, although at a reduced level. On the basis of most-probable-number statistics, spore suspensions were 3 orders of magnitude more infective than hyphae.
Key concepts: Frankia, Actinorhizal plant, Casuarina, Hypha, Biology, Spore, Botany, Microbiology