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1.
PLoS One ; 3(1): e1426, 2008 Jan 09.
Artículo en Inglés | MEDLINE | ID: mdl-18183306

RESUMEN

BACKGROUND: Diatoms are unicellular algae responsible for approximately 20% of global carbon fixation. Their evolution by secondary endocytobiosis resulted in a complex cellular structure and metabolism compared to algae with primary plastids. METHODOLOGY/PRINCIPAL FINDINGS: The whole genome sequence of the diatom Phaeodactylum tricornutum has recently been completed. We identified and annotated genes for enzymes involved in carbohydrate pathways based on extensive EST support and comparison to the whole genome sequence of a second diatom, Thalassiosira pseudonana. Protein localization to mitochondria was predicted based on identified similarities to mitochondrial localization motifs in other eukaryotes, whereas protein localization to plastids was based on the presence of signal peptide motifs in combination with plastid localization motifs previously shown to be required in diatoms. We identified genes potentially involved in a C4-like photosynthesis in P. tricornutum and, on the basis of sequence-based putative localization of relevant proteins, discuss possible differences in carbon concentrating mechanisms and CO(2) fixation between the two diatoms. We also identified genes encoding enzymes involved in photorespiration with one interesting exception: glycerate kinase was not found in either P. tricornutum or T. pseudonana. Various Calvin cycle enzymes were found in up to five different isoforms, distributed between plastids, mitochondria and the cytosol. Diatoms store energy either as lipids or as chrysolaminaran (a beta-1,3-glucan) outside of the plastids. We identified various beta-glucanases and large membrane-bound glucan synthases. Interestingly most of the glucanases appear to contain C-terminal anchor domains that may attach the enzymes to membranes. CONCLUSIONS/SIGNIFICANCE: Here we present a detailed synthesis of carbohydrate metabolism in diatoms based on the genome sequences of Thalassiosira pseudonana and Phaeodactylum tricornutum. This model provides novel insights into acquisition of dissolved inorganic carbon and primary metabolic pathways of carbon in two different diatoms, which is of significance for an improved understanding of global carbon cycles.


Asunto(s)
Metabolismo de los Hidratos de Carbono , Diatomeas/metabolismo , Genoma , Modelos Biológicos , Dióxido de Carbono/metabolismo
2.
Science ; 306(5693): 79-86, 2004 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-15459382

RESUMEN

Diatoms are unicellular algae with plastids acquired by secondary endosymbiosis. They are responsible for approximately 20% of global carbon fixation. We report the 34 million-base pair draft nuclear genome of the marine diatom Thalassiosira pseudonana and its 129 thousand-base pair plastid and 44 thousand-base pair mitochondrial genomes. Sequence and optical restriction mapping revealed 24 diploid nuclear chromosomes. We identified novel genes for silicic acid transport and formation of silica-based cell walls, high-affinity iron uptake, biosynthetic enzymes for several types of polyunsaturated fatty acids, use of a range of nitrogenous compounds, and a complete urea cycle, all attributes that allow diatoms to prosper in aquatic environments.


Asunto(s)
Evolución Biológica , Diatomeas/genética , Ecosistema , Genoma , Análisis de Secuencia de ADN , Adaptación Fisiológica , Proteínas Algáceas/química , Proteínas Algáceas/genética , Proteínas Algáceas/fisiología , Animales , Núcleo Celular/genética , Cromosomas , ADN/genética , Diatomeas/química , Diatomeas/citología , Diatomeas/metabolismo , Metabolismo Energético , Hierro/metabolismo , Luz , Complejos de Proteína Captadores de Luz/química , Complejos de Proteína Captadores de Luz/genética , Complejos de Proteína Captadores de Luz/metabolismo , Mitocondrias/genética , Datos de Secuencia Molecular , Nitrógeno/metabolismo , Fotosíntesis , Plastidios/genética , Mapeo Restrictivo , Alineación de Secuencia , Ácido Silícico/metabolismo , Simbiosis , Urea/metabolismo
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