PhytoplanctonLe 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.
Marine microorganismsMarine 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.
Efflorescence algaleUne 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).
Critical depthIn 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.
Planctonthumb|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.
Harmful algal bloomA harmful algal bloom (HAB), or excessive algae growth, is an algal bloom that causes negative impacts to other organisms by production of natural algae-produced toxins, mechanical damage to other organisms, or by other means. HABs are sometimes defined as only those algal blooms that produce toxins, and sometimes as any algal bloom that can result in severely lower oxygen levels in natural waters, killing organisms in marine or fresh waters. Blooms can last from a few days to many months.
Spring bloomThe 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.
ZooplanctonLe zooplancton (du grec ancien , « animal ») est un plancton animal. Il se nourrit de matière vivante, certaines espèces étant herbivores et d’autres carnivores. Il descend pendant la nuit vers des eaux plus profondes, et remonte pendant la journée vers la surface, pour se nourrir de phytoplancton attiré par la lumière. Ce mouvement du zooplancton (dit de migration verticale quotidienne) suit un rythme nycthéméral commandé par la lumière du Soleil.
Deep chlorophyll maximumThe deep chlorophyll maximum (DCM), also called the subsurface chlorophyll maximum, is the region below the surface of water with the maximum concentration of chlorophyll. The DCM generally exists at the same depth as the nutricline, the region of the ocean where the greatest change in the nutrient concentration occurs with depth. A DCM is not always present - sometimes there is more chlorophyll at the surface than at any greater depth - but it is a common feature of most aquatic ecosystems, especially in regions of strong thermal stratification.
BacillariophytaLes Bacillariophyta, ou Diatomées, sont un embranchement d'eucaryotes unicellulaires (de deux micromètres à un millimètre) présents dans tous les milieux aquatiques et majoritaires dans certains biofilms (avec une préférence pour les eaux froides) et enveloppés par un squelette externe siliceux nommé frustule. Les diatomées peuvent être libres ou fixées, et vivre isolées ou en colonie. Les formes pélagiques appartiennent au phytoplancton, les formes benthiques appartiennent au microphytobenthos.
Marine primary productionMarine 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.
Total organic carbonTotal organic carbon (TOC) is an analytical parameter representing the concentration of organic carbon in a sample. TOC determinations are made in a variety of application areas. For example, TOC may be used as a non-specific indicator of water quality, or TOC of source rock may be used as one factor in evaluating a petroleum play. For marine surface sediments average TOC content is 0.5% in the deep ocean, and 2% along the eastern margins.
PicoplanctonPicoplankton is the fraction of plankton composed by cells between 0.2 and 2 μm that can be either prokaryotic and eukaryotic phototrophs and heterotrophs: photosynthetic Photosynthetic picoplankton heterotrophic Heterotrophic picoplankton They are prevalent amongst microbial plankton communities of both freshwater and marine ecosystems. They have an important role in making up a significant portion of the total biomass of phytoplankton communities. In general, plankton can be categorized on the basis of physiological, taxonomic, or dimensional characteristics.
Carbone organique dissousLe carbone organique dissous ou COD (en anglais, dissolved organic carbon ou DOC) est un paramètre global de la chimie de l'eau utilisé pour caractériser et suivre l’évolution du taux de carbone dissous dans les eaux (douces, saumâtres ou marines), ou la pollution organique des milieux aquatiques. C'est une fraction parfois importante du Carbone organique total (COT). La pollution par certaines matières organiques et le carbone dissous tend à augmenter dans le monde, dont en France, en Bretagne par exemple.
Cycle du carbonevignette|redresse=2|Schéma du cycle du carbone : l'immense réservoir de carbone est la lithosphère qui stocke 80 000 000 Gigatonnes (Gt) de carbone minéral, sous forme de roches carbonatées et 14 000 Gt de carbone dans la matière organique fossile (réévaluation par rapport aux données du schéma). L'hydrosphère est un réservoir intermédiaire qui stocke 39 000 Gt de carbone sous forme de . L’atmosphère et la biosphère sont des petits réservoirs : le premier stocke 750 Gt principalement sous forme de , le second deux à trois fois plus selon les auteurs.
Particulate inorganic carbonParticulate inorganic carbon (PIC) can be contrasted with dissolved inorganic carbon (DIC), the other form of inorganic carbon found in the ocean. These distinctions are important in chemical oceanography. Particulate inorganic carbon is sometimes called suspended inorganic carbon. In operational terms, it is defined as the inorganic carbon in particulate form that is too large to pass through the filter used to separate dissolved inorganic carbon. Most PIC is calcium carbonate, CaCO3, particularly in the form of calcite, but also in the form of aragonite.
Zone photiquethumb|right|250px|Diagramme des couches de la zone pélagique. La zone photique, aussi nommée zone euphotique, zone épipélagique ou couche photique, est la zone aquatique d’un lac ou d’un océan exposée à une lumière suffisante pour que la photosynthèse s'y produise. La profondeur de la zone photique peut être grandement affectée par la turbidité et la latitude. Elle s’étend jusqu’à une profondeur à laquelle l’intensité lumineuse résiduelle correspond à 1 % de celle en surface (également appelée « profondeur euphotique »).
High-nutrient, low-chlorophyll regionsHigh-nutrient, low-chlorophyll (HNLC) regions are regions of the ocean where the abundance of phytoplankton is low and fairly constant despite the availability of macronutrients. Phytoplankton rely on a suite of nutrients for cellular function. Macronutrients (e.g., nitrate, phosphate, silicic acid) are generally available in higher quantities in surface ocean waters, and are the typical components of common garden fertilizers. Micronutrients (e.g., iron, zinc, cobalt) are generally available in lower quantities and include trace metals.
Microbial loopThe microbial loop describes a trophic pathway where, in aquatic systems, dissolved organic carbon (DOC) is returned to higher trophic levels via its incorporation into bacterial biomass, and then coupled with the classic food chain formed by phytoplankton-zooplankton-nekton. In soil systems, the microbial loop refers to soil carbon. The term microbial loop was coined by Farooq Azam, Tom Fenchel et al. in 1983 to include the role played by bacteria in the carbon and nutrient cycles of the marine environment.
Particulate organic matterParticulate organic matter (POM) is a fraction of total organic matter operationally defined as that which does not pass through a filter pore size that typically ranges in size from 0.053 millimeters (53 μm) to 2 millimeters. Particulate organic carbon (POC) is a closely related term often used interchangeably with POM. POC refers specifically to the mass of carbon in the particulate organic material, while POM refers to the total mass of the particulate organic matter.