Isozyme phenotypes for the identification of meloidogyne species.
P. R. Esbenshade, A. C. Triantaphyllou
Abstract
P. R. Esbenshade, A. C. Triantaphyllou
Abstract
Extensive studies during the last 20 years have demonstrated that enzyme phenotypes, especially those of esterases, are species-specific for Meloidogyne and can be used as reliable taxonomic characters for identification of most major and several minor species of this genus. Recent progress in electrophoretic procedures and advanced computer technology have made available automated electrophoretic apparati that can process very thin polyacrylamide slab gels on which the phenotypes of two or more enzymes can be revealed from the protein extract of a single Meloidogyne female. Presently, such apparati facilitate objective species identification. They also are convenient for performing routine field surveys to determine the relative distribution of major Meloidogyne species, conducting population dynamics studies in the field and in microplots, and testing the purity of greenhouse cultures.
OpenAlex reports 199 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.
Extensive studies during the last 20 years have demonstrated that enzyme phenotypes, especially those of esterases, are species-specific for Meloidogyne and can be used as reliable taxonomic characters for identification of most major and several minor species of this genus. Recent progress in electrophoretic procedures and advanced computer technology have made available automated electrophoretic apparati that can process very thin polyacrylamide slab gels on which the phenotypes of two or more enzymes can be revealed from the protein extract of a single Meloidogyne female. Presently, such apparati facilitate objective species identification. They also are convenient for performing routine field surveys to determine the relative distribution of major Meloidogyne species, conducting population dynamics studies in the field and in microplots, and testing the purity of greenhouse cultures.
Key concepts: Biology, Identification (biology), Population, Meloidogyne arenaria, Zoology, Nematode, Host (biology), Evolutionary biology