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Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique

Among Australian endemic tephritid fruit flies, the sibling species Bactrocera tryoni and Bactrocera neohumeralis have been serious horticultural pests since the introduction of horticulture in the nineteenth century. More recently, Bactrocera jarvisi has also been declared a pest in northern Austra...

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Autores principales: Raphael, Kathryn A, Shearman, Deborah CA, Gilchrist, A Stuart, Sved, John A, Morrow, Jennifer L, Sherwin, William B, Riegler, Markus, Frommer, Marianne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4255846/
https://www.ncbi.nlm.nih.gov/pubmed/25470996
http://dx.doi.org/10.1186/1471-2156-15-S2-S9
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author Raphael, Kathryn A
Shearman, Deborah CA
Gilchrist, A Stuart
Sved, John A
Morrow, Jennifer L
Sherwin, William B
Riegler, Markus
Frommer, Marianne
author_facet Raphael, Kathryn A
Shearman, Deborah CA
Gilchrist, A Stuart
Sved, John A
Morrow, Jennifer L
Sherwin, William B
Riegler, Markus
Frommer, Marianne
author_sort Raphael, Kathryn A
collection PubMed
description Among Australian endemic tephritid fruit flies, the sibling species Bactrocera tryoni and Bactrocera neohumeralis have been serious horticultural pests since the introduction of horticulture in the nineteenth century. More recently, Bactrocera jarvisi has also been declared a pest in northern Australia. After several decades of genetic research there is now a range of classical and molecular genetic tools that can be used to develop improved Sterile Insect Technique (SIT) strains for control of these pests. Four-way crossing strategies have the potential to overcome the problem of inbreeding in mass-reared strains of B. tryoni. The ability to produce hybrids between B. tryoni and the other two species in the laboratory has proved useful for the development of genetically marked strains. The identification of Y-chromosome markers in B. jarvisi means that male and female embryos can be distinguished in any strain that carries a B. jarvisi Y chromosome. This has enabled the study of homologues of the sex-determination genes during development of B jarvisi and B. tryoni, which is necessary for the generation of genetic-sexing strains. Germ-line transformation has been established and a draft genome sequence for B. tryoni released. Transcriptomes from various species, tissues and developmental stages, to aid in identification of manipulation targets for improving SIT, have been assembled and are in the pipeline. Broad analyses of the microbiome have revealed a metagenome that is highly variable within and across species and defined by the environment. More specific analyses detected Wolbachia at low prevalence in the tropics but absent in temperate regions, suggesting a possible role for this endosymbiont in future control strategies.
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spelling pubmed-42558462014-12-05 Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique Raphael, Kathryn A Shearman, Deborah CA Gilchrist, A Stuart Sved, John A Morrow, Jennifer L Sherwin, William B Riegler, Markus Frommer, Marianne BMC Genet Research Among Australian endemic tephritid fruit flies, the sibling species Bactrocera tryoni and Bactrocera neohumeralis have been serious horticultural pests since the introduction of horticulture in the nineteenth century. More recently, Bactrocera jarvisi has also been declared a pest in northern Australia. After several decades of genetic research there is now a range of classical and molecular genetic tools that can be used to develop improved Sterile Insect Technique (SIT) strains for control of these pests. Four-way crossing strategies have the potential to overcome the problem of inbreeding in mass-reared strains of B. tryoni. The ability to produce hybrids between B. tryoni and the other two species in the laboratory has proved useful for the development of genetically marked strains. The identification of Y-chromosome markers in B. jarvisi means that male and female embryos can be distinguished in any strain that carries a B. jarvisi Y chromosome. This has enabled the study of homologues of the sex-determination genes during development of B jarvisi and B. tryoni, which is necessary for the generation of genetic-sexing strains. Germ-line transformation has been established and a draft genome sequence for B. tryoni released. Transcriptomes from various species, tissues and developmental stages, to aid in identification of manipulation targets for improving SIT, have been assembled and are in the pipeline. Broad analyses of the microbiome have revealed a metagenome that is highly variable within and across species and defined by the environment. More specific analyses detected Wolbachia at low prevalence in the tropics but absent in temperate regions, suggesting a possible role for this endosymbiont in future control strategies. BioMed Central 2014-12-01 /pmc/articles/PMC4255846/ /pubmed/25470996 http://dx.doi.org/10.1186/1471-2156-15-S2-S9 Text en Copyright © 2014 Raphael et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Raphael, Kathryn A
Shearman, Deborah CA
Gilchrist, A Stuart
Sved, John A
Morrow, Jennifer L
Sherwin, William B
Riegler, Markus
Frommer, Marianne
Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique
title Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique
title_full Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique
title_fullStr Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique
title_full_unstemmed Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique
title_short Australian endemic pest tephritids: genetic, molecular and microbial tools for improved Sterile Insect Technique
title_sort australian endemic pest tephritids: genetic, molecular and microbial tools for improved sterile insect technique
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4255846/
https://www.ncbi.nlm.nih.gov/pubmed/25470996
http://dx.doi.org/10.1186/1471-2156-15-S2-S9
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