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1.
Nature ; 452(7183): 88-92, 2008 Mar 06.
Artigo em Inglês | MEDLINE | ID: mdl-18322534

RESUMO

Mycorrhizal symbioses--the union of roots and soil fungi--are universal in terrestrial ecosystems and may have been fundamental to land colonization by plants. Boreal, temperate and montane forests all depend on ectomycorrhizae. Identification of the primary factors that regulate symbiotic development and metabolic activity will therefore open the door to understanding the role of ectomycorrhizae in plant development and physiology, allowing the full ecological significance of this symbiosis to be explored. Here we report the genome sequence of the ectomycorrhizal basidiomycete Laccaria bicolor (Fig. 1) and highlight gene sets involved in rhizosphere colonization and symbiosis. This 65-megabase genome assembly contains approximately 20,000 predicted protein-encoding genes and a very large number of transposons and repeated sequences. We detected unexpected genomic features, most notably a battery of effector-type small secreted proteins (SSPs) with unknown function, several of which are only expressed in symbiotic tissues. The most highly expressed SSP accumulates in the proliferating hyphae colonizing the host root. The ectomycorrhizae-specific SSPs probably have a decisive role in the establishment of the symbiosis. The unexpected observation that the genome of L. bicolor lacks carbohydrate-active enzymes involved in degradation of plant cell walls, but maintains the ability to degrade non-plant cell wall polysaccharides, reveals the dual saprotrophic and biotrophic lifestyle of the mycorrhizal fungus that enables it to grow within both soil and living plant roots. The predicted gene inventory of the L. bicolor genome, therefore, points to previously unknown mechanisms of symbiosis operating in biotrophic mycorrhizal fungi. The availability of this genome provides an unparalleled opportunity to develop a deeper understanding of the processes by which symbionts interact with plants within their ecosystem to perform vital functions in the carbon and nitrogen cycles that are fundamental to sustainable plant productivity.


Assuntos
Basidiomycota/genética , Basidiomycota/fisiologia , Genoma Fúngico/genética , Micorrizas/genética , Micorrizas/fisiologia , Raízes de Plantas/microbiologia , Simbiose/fisiologia , Abies/microbiologia , Abies/fisiologia , Basidiomycota/enzimologia , Proteínas Fúngicas/classificação , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Regulação da Expressão Gênica , Genes Fúngicos/genética , Hifas/genética , Hifas/metabolismo , Micorrizas/enzimologia , Raízes de Plantas/fisiologia , Simbiose/genética
2.
Science ; 287(5461): 2185-95, 2000 Mar 24.
Artigo em Inglês | MEDLINE | ID: mdl-10731132

RESUMO

The fly Drosophila melanogaster is one of the most intensively studied organisms in biology and serves as a model system for the investigation of many developmental and cellular processes common to higher eukaryotes, including humans. We have determined the nucleotide sequence of nearly all of the approximately 120-megabase euchromatic portion of the Drosophila genome using a whole-genome shotgun sequencing strategy supported by extensive clone-based sequence and a high-quality bacterial artificial chromosome physical map. Efforts are under way to close the remaining gaps; however, the sequence is of sufficient accuracy and contiguity to be declared substantially complete and to support an initial analysis of genome structure and preliminary gene annotation and interpretation. The genome encodes approximately 13,600 genes, somewhat fewer than the smaller Caenorhabditis elegans genome, but with comparable functional diversity.


Assuntos
Drosophila melanogaster/genética , Genoma , Análise de Sequência de DNA , Animais , Transporte Biológico/genética , Cromatina/genética , Clonagem Molecular , Biologia Computacional , Mapeamento de Sequências Contíguas , Sistema Enzimático do Citocromo P-450/genética , Reparo do DNA/genética , Replicação do DNA/genética , Drosophila melanogaster/metabolismo , Eucromatina , Biblioteca Gênica , Genes de Insetos , Heterocromatina/genética , Proteínas de Insetos/química , Proteínas de Insetos/genética , Proteínas de Insetos/fisiologia , Proteínas Nucleares/genética , Biossíntese de Proteínas , Transcrição Gênica
3.
Science ; 287(5461): 2204-15, 2000 Mar 24.
Artigo em Inglês | MEDLINE | ID: mdl-10731134

RESUMO

A comparative analysis of the genomes of Drosophila melanogaster, Caenorhabditis elegans, and Saccharomyces cerevisiae-and the proteins they are predicted to encode-was undertaken in the context of cellular, developmental, and evolutionary processes. The nonredundant protein sets of flies and worms are similar in size and are only twice that of yeast, but different gene families are expanded in each genome, and the multidomain proteins and signaling pathways of the fly and worm are far more complex than those of yeast. The fly has orthologs to 177 of the 289 human disease genes examined and provides the foundation for rapid analysis of some of the basic processes involved in human disease.


Assuntos
Caenorhabditis elegans/genética , Drosophila melanogaster/genética , Genoma , Proteoma , Saccharomyces cerevisiae/genética , Animais , Apoptose/genética , Evolução Biológica , Caenorhabditis elegans/química , Caenorhabditis elegans/fisiologia , Adesão Celular/genética , Ciclo Celular/genética , Drosophila melanogaster/química , Drosophila melanogaster/fisiologia , Proteínas Fúngicas/química , Proteínas Fúngicas/genética , Genes Duplicados , Doenças Genéticas Inatas/genética , Genética Médica , Proteínas de Helminto/química , Proteínas de Helminto/genética , Humanos , Imunidade/genética , Proteínas de Insetos/química , Proteínas de Insetos/genética , Família Multigênica , Neoplasias/genética , Estrutura Terciária de Proteína , Saccharomyces cerevisiae/química , Saccharomyces cerevisiae/fisiologia , Transdução de Sinais/genética
4.
Science ; 287(5461): 2222-4, 2000 Mar 24.
Artigo em Inglês | MEDLINE | ID: mdl-10731138

RESUMO

Collections of nonredundant, full-length complementary DNA (cDNA) clones for each of the model organisms and humans will be important resources for studies of gene structure and function. We describe a general strategy for producing such collections and its implementation, which so far has generated a set of cDNAs corresponding to over 40% of the genes in the fruit fly Drosophila melanogaster.


Assuntos
DNA Complementar , Drosophila melanogaster/genética , Biblioteca Gênica , Genes de Insetos , Regiões 3' não Traduzidas , Regiões 5' não Traduzidas , Animais , Clonagem Molecular , Etiquetas de Sequências Expressas , Fases de Leitura Aberta
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