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1.
Sci Rep ; 6: 19252, 2016 Jan 20.
Article in English | MEDLINE | ID: mdl-26786712

ABSTRACT

Although sexual reproduction is believed to play a major role in the high diversification rates and species richness of diatoms, a mechanistic understanding of diatom life cycle control is virtually lacking. Diatom sexual signalling is controlled by a complex, yet largely unknown, pheromone system. Here, a sex-inducing pheromone (SIP(+)) of the benthic pennate diatom Seminavis robusta was identified by comparative metabolomics, subsequently purified, and physicochemically characterized. Transcriptome analysis revealed that SIP(+) triggers the switch from mitosis-to-meiosis in the opposing mating type, coupled with the transcriptional induction of proline biosynthesis genes, and the release of the proline-derived attraction pheromone. The induction of cell cycle arrest by a pheromone, chemically distinct from the one used to attract the opposite mating type, highlights the existence of a sophisticated mechanism to increase chances of mate finding, while keeping the metabolic losses associated with the release of an attraction pheromone to a minimum.


Subject(s)
Cell Cycle Checkpoints , Diatoms/physiology , Sex Attractants/metabolism , Sexual Behavior, Animal , Animals , Cell Cycle Checkpoints/drug effects , Gene Expression Regulation/drug effects , Glutamic Acid/metabolism , Guanylate Cyclase/genetics , Guanylate Cyclase/metabolism , Meiosis , Metabolic Networks and Pathways , Metabolome , Metabolomics/methods , Mitosis , Phosphoric Diester Hydrolases/genetics , Phosphoric Diester Hydrolases/metabolism , Proline/metabolism , Sex Attractants/pharmacology , Transcription, Genetic
3.
Plant Physiol ; 148(3): 1394-411, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18820084

ABSTRACT

Despite the growing interest in diatom genomics, detailed time series of gene expression in relation to key cellular processes are still lacking. Here, we investigated the relationships between the cell cycle and chloroplast development in the pennate diatom Seminavis robusta. This diatom possesses two chloroplasts with a well-orchestrated developmental cycle, common to many pennate diatoms. By assessing the effects of induced cell cycle arrest with microscopy and flow cytometry, we found that division and reorganization of the chloroplasts are initiated only after S-phase progression. Next, we quantified the expression of the S. robusta FtsZ homolog to address the division status of chloroplasts during synchronized growth and monitored microscopically their dynamics in relation to nuclear division and silicon deposition. We show that chloroplasts divide and relocate during the S/G2 phase, after which a girdle band is deposited to accommodate cell growth. Synchronized cultures of two genotypes were subsequently used for a cDNA-amplified fragment length polymorphism-based genome-wide transcript profiling, in which 917 reproducibly modulated transcripts were identified. We observed that genes involved in pigment biosynthesis and coding for light-harvesting proteins were up-regulated during G2/M phase and cell separation. Light and cell cycle progression were both found to affect fucoxanthin-chlorophyll a/c-binding protein expression and accumulation of fucoxanthin cell content. Because chloroplasts elongate at the stage of cytokinesis, cell cycle-modulated photosynthetic gene expression and synthesis of pigments in concert with cell division might balance chloroplast growth, which confirms that chloroplast biogenesis in S. robusta is tightly regulated.


Subject(s)
Cell Cycle , Chloroplasts/physiology , Diatoms/genetics , Diatoms/physiology , RNA, Messenger/genetics , Chromatography, High Pressure Liquid , DNA, Complementary , Diatoms/cytology , Flow Cytometry , Gene Expression Profiling , Molecular Sequence Data , Reverse Transcriptase Polymerase Chain Reaction
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