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1.
Phytopathology ; 105(7): 966-81, 2015 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-25760519

RESUMO

Phytophthora infestans has been a named pathogen for well over 150 years and yet it continues to "emerge", with thousands of articles published each year on it and the late blight disease that it causes. This review explores five attributes of this oomycete pathogen that maintain this constant attention. First, the historical tragedy associated with this disease (Irish potato famine) causes many people to be fascinated with the pathogen. Current technology now enables investigators to answer some questions of historical significance. Second, the devastation caused by the pathogen continues to appear in surprising new locations or with surprising new intensity. Third, populations of P. infestans worldwide are in flux, with changes that have major implications to disease management. Fourth, the genomics revolution has enabled investigators to make tremendous progress in terms of understanding the molecular biology (especially the pathogenicity) of P. infestans. Fifth, there remain many compelling unanswered questions.


Assuntos
Interações Hospedeiro-Patógeno , Phytophthora infestans/fisiologia , Doenças das Plantas/história , Solanum lycopersicum/microbiologia , Solanum tuberosum/microbiologia , Genômica , História do Século XIX , História do Século XX , História do Século XXI , Doenças das Plantas/microbiologia
2.
J Extracell Vesicles ; 8(1): 1590116, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30911363

RESUMO

All living organisms secrete molecules for intercellular communication. Recent research has revealed that extracellular vesicles (EVs) play an important role in inter-organismal cell-to-cell communication by transporting diverse messenger molecules, including RNA, DNA, lipids and proteins. These discoveries have raised fundamental questions regarding EV biology. How are EVs biosynthesized and loaded with messenger/cargo molecules? How are EVs secreted into the extracellular matrix? What are the EV uptake mechanisms of recipient cells? As EVs are produced by all kind of organisms, from unicellular bacteria and protists, filamentous fungi and oomycetes, to complex multicellular life forms such as plants and animals, basic research in diverse model systems is urgently needed to shed light on the multifaceted biology of EVs and their role in inter-organismal communications. To help catalyse progress in this emerging field, a mini-symposium was held in Munich, Germany in August 2018. This report highlights recent progress and major questions being pursued across a very diverse group of model systems, all united by the question of how EVs contribute to inter-organismal communication.

3.
Mol Plant Microbe Interact ; 18(4): 343-53, 2005 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-15828686

RESUMO

Seven new genes controlled by the quorum-sensing signal molecule N-(3-oxohexanoyl)-L-homoserine lactone (OHHL) have been identified in Erwinia carotovora subsp. carotovora. Using TnphoA as a mutagen, we enriched for mutants defective in proteins that could play a role in the interaction between E. carotovora subsp. carotovora and its plant hosts, and identified NipEcc and its counterpart in E. carotovora subsp. atroseptica. These are members of a growing family of proteins related to Nep1 from Fusarium oxysporum which can induce necrotic responses in a variety of dicotyledonous plants. NipEcc produced necrosis in tobacco, NipEca affected potato stem rot, and both affected virulence in potato tubers. In E. carotovora subsp. carotovora, nip was shown to be subject to weak repression by the LuxR family regulator, EccR, and may be regulated by the negative global regulator RsmA.


Assuntos
4-Butirolactona/análogos & derivados , 4-Butirolactona/metabolismo , Regulação Bacteriana da Expressão Gênica , Genes Bacterianos , Homosserina/análogos & derivados , Homosserina/metabolismo , Pectobacterium carotovorum/genética , Sequência de Aminoácidos , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Elementos de DNA Transponíveis , Teste de Complementação Genética , Dados de Sequência Molecular , Mutagênese , Proteínas Recombinantes de Fusão/genética , Proteínas Recombinantes de Fusão/metabolismo , Alinhamento de Sequência , Solanum tuberosum/genética
4.
Proc Natl Acad Sci U S A ; 101(30): 11105-10, 2004 Jul 27.
Artigo em Inglês | MEDLINE | ID: mdl-15263089

RESUMO

The bacterial family Enterobacteriaceae is notable for its well studied human pathogens, including Salmonella, Yersinia, Shigella, and Escherichia spp. However, it also contains several plant pathogens. We report the genome sequence of a plant pathogenic enterobacterium, Erwinia carotovora subsp. atroseptica (Eca) strain SCRI1043, the causative agent of soft rot and blackleg potato diseases. Approximately 33% of Eca genes are not shared with sequenced enterobacterial human pathogens, including some predicted to facilitate unexpected metabolic traits, such as nitrogen fixation and opine catabolism. This proportion of genes also contains an overrepresentation of pathogenicity determinants, including possible horizontally acquired gene clusters for putative type IV secretion and polyketide phytotoxin synthesis. To investigate whether these gene clusters play a role in the disease process, an arrayed set of insertional mutants was generated, and mutations were identified. Plant bioassays showed that these mutants were significantly reduced in virulence, demonstrating both the presence of novel pathogenicity determinants in Eca, and the impact of functional genomics in expanding our understanding of phytopathogenicity in the Enterobacteriaceae.


Assuntos
Genoma Bacteriano , Pectobacterium carotovorum/genética , Pectobacterium carotovorum/patogenicidade , Doenças das Plantas/microbiologia , Solanum tuberosum/microbiologia , Virulência/genética , Sequência de Bases , Evolução Biológica , Primers do DNA , Meio Ambiente , Dados de Sequência Molecular , Reação em Cadeia da Polimerase
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