Le phytoplancton (du grec φυτόν, phyton, pour « plante » et πλαγκτός, planktos, errante) est le plancton autotrophe vis-à-vis du carbone, obtenant son énergie par la photosynthèse (comme les plantes). Le phytoplancton inclut des protistes, comme des dinoflagellés, et des bactéries telles que les cyanobactéries (anciennement « algues bleu-vert »). La plupart de ces organismes sont trop petits pour être visibles à l’œil nu, mais s'ils sont en quantité suffisante, ils apparaissent à la surface de l'eau comme des étendues colorées.
vignette|upright=1.5|Biomasse totale des organismes présents sur Terre vignette|upright=1.5|Biomasse totale des animaux présents sur Terre vignette|redresse=1.3|Selon les données « couleur de l'océan » recueillies par le capteur SeaWiFS, la production primaire dans l'océan mondial est sensiblement égale à celle sur les terres émergées, bien que la biomasse primaire océanique soit environ 500 fois moins importante que la biomasse terrestre, ce qui traduit la très grande efficacité du phytoplancton océanique.
Marine microorganisms are defined by their habitat as microorganisms living in a marine environment, that is, in the saltwater of a sea or ocean or the brackish water of a coastal estuary. A microorganism (or microbe) is any microscopic living organism or virus, that is too small to see with the unaided human eye without magnification. Microorganisms are very diverse. They can be single-celled or multicellular and include bacteria, archaea, viruses and most protozoa, as well as some fungi, algae, and animals, such as rotifers and copepods.
In biological oceanography, critical depth is defined as a hypothetical surface mixing depth where phytoplankton growth is precisely matched by losses of phytoplankton biomass within the depth interval. This concept is useful for understanding the initiation of phytoplankton blooms. Critical depth as an aspect of biological oceanography was introduced in 1935 by Gran and Braarud. It became prominent in 1953 when Harald Sverdrup published the "Critical Depth Hypothesis" based on observations he had made in the North Atlantic on the Weather Ship M.
Nutrient pollution, a form of water pollution, refers to contamination by excessive inputs of nutrients. It is a primary cause of eutrophication of surface waters (lakes, rivers and coastal waters), in which excess nutrients, usually nitrogen or phosphorus, stimulate algal growth. Sources of nutrient pollution include surface runoff from farm fields and pastures, discharges from septic tanks and feedlots, and emissions from combustion. Raw sewage is a large contributor to cultural eutrophication since sewage is high in nutrients.
Une efflorescence algale (parfois décrite avec un emprunt à l'anglais bloom algal ou bloom phytoplanctonique) est une augmentation relativement rapide de la concentration d'une (ou de plusieurs) espèce(s) d'algues (ou de bactéries, les cyanobactéries, anciennement appelées « algues bleues »), appartenant généralement au phytoplancton, dans un système aquatique d'eau douce, saumâtre ou salée. Cette prolifération se traduit généralement par une coloration de l'eau (en rouge, brun, brun-jaune ou vert).
Nutrient management is the science and practice directed to link soil, crop, weather, and hydrologic factors with cultural, irrigation, and soil and water conservation practices to achieve optimal nutrient use efficiency, crop yields, crop quality, and economic returns, while reducing off-site transport of nutrients (fertilizer) that may impact the environment. It involves matching a specific field soil, climate, and crop management conditions to rate, source, timing, and place (commonly known as the 4R nutrient stewardship) of nutrient application.
Marine primary production is the chemical synthesis in the ocean of organic compounds from atmospheric or dissolved carbon dioxide. It principally occurs through the process of photosynthesis, which uses light as its source of energy, but it also occurs through chemosynthesis, which uses the oxidation or reduction of inorganic chemical compounds as its source of energy. Almost all life on Earth relies directly or indirectly on primary production. The organisms responsible for primary production are called primary producers or autotrophs.
thumb|250px|right|Les diatomées sont une des bases des réseaux trophiques océaniques et d'eau douce. Certaines sont considérées comme bioindicatrices de la qualité de l'eau. thumb|250px|right|Zooplancton. Selon Hensen (1887), le plancton (du grec ancien , « errant, instable ») est un groupe polyphylétique d'organismes généralement unicellulaires vivant dans les eaux douces, saumâtres et salées, le plus souvent en suspension et apparemment passivement : gamètes, larves, animaux inaptes à lutter contre le courant (petits crustacés planctoniques, siphonophores et méduses), végétaux et algues microscopiques.
The spring bloom is a strong increase in phytoplankton abundance (i.e. stock) that typically occurs in the early spring and lasts until late spring or early summer. This seasonal event is characteristic of temperate North Atlantic, sub-polar, and coastal waters. Phytoplankton blooms occur when growth exceeds losses, however there is no universally accepted definition of the magnitude of change or the threshold of abundance that constitutes a bloom. The magnitude, spatial extent and duration of a bloom depends on a variety of abiotic and biotic factors.