Search results for "Chlorococcales"

showing 3 items of 3 documents

Nanochlorum eucaryotum: a Very Reduced Coccoid Species of Marine Chlorophyceae

1982

Nanochlorum eucaryotum was isolated from a sea water aquarium housing different sponge species, cucumarias, small crustaceans and annelids. This bright green marine alga differs from all other known coccoid species. Its most prominent features are its very small cell size (1.5 pm) and its reduced cellular organization. Its cell contains one nucleus, one chloroplast, one mitochondrium and small vacuoles. Sometimes a Golgi apparatus can be seen. No other subcellular features have been observed. The cell wall is thin and smooth and does not contain any material of high electron density; only dividing cells show a rougher surface. The cells split into two daughter cells. No sexual reproduction …

ChloroplastbiologyBotanyChlorophyceaeChlorococcalesNanochlorum eucaryotumbiology.organism_classificationGeneral Biochemistry Genetics and Molecular BiologyZeitschrift für Naturforschung C
researchProduct

A Comparative Ultrastructural Investigation of Some Nannochloris Species (Chlorococcales) with Particular Reference to the Systematic Position of Nan…

1989

Nanochlorum eucaryotum was described by Wilhelm et al. (1982) as a new algal species with an uncertain taxonomic position. Whereas some features were chlorococcacean, others suggested an isolated position in the sense of a “pre-eucaryote” (Wilhelm, 1983; Zahn, 1984; Geisert et al., 1987). Our comparative ultrastructural, physiological and biochemical examinations of coccoid microalgae (Menzel, 1988) gave no arguments for the separation of Nanochlorum eucaryotum from the genus Nannochloris. This paper is concerned with the ultrastructural composition of the cell wall and mode of reproduction in Nanochlorum eucaryotum as well as in three Nannochloris species. The systematic position of Nanoch…

Mode of reproductionAlgal speciesNannochlorisBotanyUltrastructureZoologyTaxonomy (biology)Plant ScienceBiologyChlorococcalesNanochlorum eucaryotumbiology.organism_classificationBotanica Acta
researchProduct

The compound internal pyrenoid in cultured cells of the green algaMonoraphidium griffithii (Berkel.) Komar.-Legner.

1979

The chloroplast ultrastructure ofMonoraphidium griffithii (Berkel.) Komar.-Legner. has been studied in axenic cultures of various ages. The algae have grown in a complete nutrient solution (illumination about 3,000 lx) and on its agar medium (illumination about 600 lx). The large parietal cup-shaped chloroplast of the cells includes a multiformed compound internal pyrenoid that is situated, especially in older cells, in the central part of the chloroplast opposite to the dictyosome and the nucleus. The chloroplast thylakoids either reach the edge of the pyrenoid or penetrate its matrix and run there parallel in more or less long bits. Starch grains were not found to form any sheath around t…

biologyStarchCell BiologyPlant ScienceGeneral MedicineChlorococcalesbiology.organism_classificationPyrenoidMonoraphidiumChloroplastchemistry.chemical_compoundAlgaechemistryBotanyUltrastructureAxenicProtoplasma
researchProduct