IRIS publication 160957690
What can bacterial genome research teach us about bacteria-plant interactions?
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TY - JOUR - Puhler, A,Arlat, M,Becker, A,Gottfert, M,Morrissey, JP,O'Gara, F - 2004 - April - Current Opinion In Plant Biology - What can bacterial genome research teach us about bacteria-plant interactions? - Validated - () - III SECRETION SYSTEM PV. TOMATO DC3000 DIFFERENTIALLY DISPLAYED PROTEINS AGROBACTERIUM-TUMEFACIENS C58/ CULTIVAR-SPECIFIC NODULATION PATHOGEN XYLELLA-FASTIDIOSA FLAVONOID-INDUCED PROTEINS SINORHIZOBIUM-MELILOTI PSEUDOMONAS-SYRINGAE PROTEOME ANALYSIS - 7 - 137 - 147 - Biological research is changing dramatically. Genomic and post-genomic research is responsible for the accumulation of enormous datasets, which allow the formation of holistic views of the organisms under investigation. In the field of microbiology, bacteria represent ideal candidates for this new development. It is relatively easy to sequence the genomes of bacteria, to analyse their transcriptomes and to collect information at the proteomic level. Genome research on symbiotic, pathogenic and associative bacteria is providing important information on bacteria-plant interactions, especially on type-III secretion systems (TTSS) and their role in the interaction of bacteria with plants. - DOI 10.1016/j.pbi.2004.01.009 DA - 2004/04 ER -
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@article{V160957690, = {Puhler, A and Arlat, M and Becker, A and Gottfert, M and Morrissey, JP and O'Gara, F }, = {2004}, = {April}, = {Current Opinion In Plant Biology}, = {What can bacterial genome research teach us about bacteria-plant interactions?}, = {Validated}, = {()}, = {III SECRETION SYSTEM PV. TOMATO DC3000 DIFFERENTIALLY DISPLAYED PROTEINS AGROBACTERIUM-TUMEFACIENS C58/ CULTIVAR-SPECIFIC NODULATION PATHOGEN XYLELLA-FASTIDIOSA FLAVONOID-INDUCED PROTEINS SINORHIZOBIUM-MELILOTI PSEUDOMONAS-SYRINGAE PROTEOME ANALYSIS}, = {7}, pages = {137--147}, = {{Biological research is changing dramatically. Genomic and post-genomic research is responsible for the accumulation of enormous datasets, which allow the formation of holistic views of the organisms under investigation. In the field of microbiology, bacteria represent ideal candidates for this new development. It is relatively easy to sequence the genomes of bacteria, to analyse their transcriptomes and to collect information at the proteomic level. Genome research on symbiotic, pathogenic and associative bacteria is providing important information on bacteria-plant interactions, especially on type-III secretion systems (TTSS) and their role in the interaction of bacteria with plants.}}, = {DOI 10.1016/j.pbi.2004.01.009}, source = {IRIS} }
Data as stored in IRIS
AUTHORS | Puhler, A,Arlat, M,Becker, A,Gottfert, M,Morrissey, JP,O'Gara, F | ||
YEAR | 2004 | ||
MONTH | April | ||
JOURNAL_CODE | Current Opinion In Plant Biology | ||
TITLE | What can bacterial genome research teach us about bacteria-plant interactions? | ||
STATUS | Validated | ||
TIMES_CITED | () | ||
SEARCH_KEYWORD | III SECRETION SYSTEM PV. TOMATO DC3000 DIFFERENTIALLY DISPLAYED PROTEINS AGROBACTERIUM-TUMEFACIENS C58/ CULTIVAR-SPECIFIC NODULATION PATHOGEN XYLELLA-FASTIDIOSA FLAVONOID-INDUCED PROTEINS SINORHIZOBIUM-MELILOTI PSEUDOMONAS-SYRINGAE PROTEOME ANALYSIS | ||
VOLUME | 7 | ||
ISSUE | |||
START_PAGE | 137 | ||
END_PAGE | 147 | ||
ABSTRACT | Biological research is changing dramatically. Genomic and post-genomic research is responsible for the accumulation of enormous datasets, which allow the formation of holistic views of the organisms under investigation. In the field of microbiology, bacteria represent ideal candidates for this new development. It is relatively easy to sequence the genomes of bacteria, to analyse their transcriptomes and to collect information at the proteomic level. Genome research on symbiotic, pathogenic and associative bacteria is providing important information on bacteria-plant interactions, especially on type-III secretion systems (TTSS) and their role in the interaction of bacteria with plants. | ||
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DOI_LINK | DOI 10.1016/j.pbi.2004.01.009 | ||
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