autotrophy - tradução para árabe
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autotrophy - tradução para árabe

CONVERSION OF CARBON FROM CO2 TO ORGANIC COMPOUNDS
Carbon assimilation; CO2 fixation; CO2 assimilation; Carbon fixing; Photosynthetic pathway; Carbon dioxide concentrating mechanism; Fixed carbon; Carbon Fixation; Carbon isotope discrimination; Carbon fixation
  • [[Cyanobacteria]] such as these carry out photosynthesis.  Their emergence foreshadowed the evolution of many photosynthetic plants and oxygenated Earth's atmosphere.
  • Graphic showing net annual amounts of CO<sub>2</sub> fixation by land and sea-based organisms.

autotrophy         
  • Overview of cycle between autotrophs and [[heterotroph]]s. [[Photosynthesis]] is the main means by which plants, algae and many bacteria produce organic compounds and oxygen from carbon dioxide and water (<span style=" color:green;">green arrow</span>).
  • Flowchart to determine if a species is autotroph, heterotroph, or a subtype
ORGANISM THAT PRODUCES COMPLEX ORGANIC COMPOUNDS (SUCH AS CARBOHYDRATES, FATS, AND PROTEINS) FROM SIMPLE SUBSTANCES PRESENT IN ITS SURROUNDINGS, GENERALLY USING ENERGY FROM LIGHT (PHOTOSYNTHESIS) OR INORGANIC CHEMICAL REACTIONS (CHEMOSYNTHESIS)
Producer species; Autotrophs; Autotrophy; Producer organism; Autotrophism; Primary producer; Producers (food chain); Autotrophic nutrition; Autotrophic; Producer (Ecology); Autotropic; Primary producers; Autotrophic process; Producer (ecology); Producer (biology)
ذاتِيَّةُ التَّغَذِّي
autotrophy         
  • Overview of cycle between autotrophs and [[heterotroph]]s. [[Photosynthesis]] is the main means by which plants, algae and many bacteria produce organic compounds and oxygen from carbon dioxide and water (<span style=" color:green;">green arrow</span>).
  • Flowchart to determine if a species is autotroph, heterotroph, or a subtype
ORGANISM THAT PRODUCES COMPLEX ORGANIC COMPOUNDS (SUCH AS CARBOHYDRATES, FATS, AND PROTEINS) FROM SIMPLE SUBSTANCES PRESENT IN ITS SURROUNDINGS, GENERALLY USING ENERGY FROM LIGHT (PHOTOSYNTHESIS) OR INORGANIC CHEMICAL REACTIONS (CHEMOSYNTHESIS)
Producer species; Autotrophs; Autotrophy; Producer organism; Autotrophism; Primary producer; Producers (food chain); Autotrophic nutrition; Autotrophic; Producer (Ecology); Autotropic; Primary producers; Autotrophic process; Producer (ecology); Producer (biology)
‎ ذاتِيَّةُ التَّغَذِّي‎
autotrophic         
  • Overview of cycle between autotrophs and [[heterotroph]]s. [[Photosynthesis]] is the main means by which plants, algae and many bacteria produce organic compounds and oxygen from carbon dioxide and water (<span style=" color:green;">green arrow</span>).
  • Flowchart to determine if a species is autotroph, heterotroph, or a subtype
ORGANISM THAT PRODUCES COMPLEX ORGANIC COMPOUNDS (SUCH AS CARBOHYDRATES, FATS, AND PROTEINS) FROM SIMPLE SUBSTANCES PRESENT IN ITS SURROUNDINGS, GENERALLY USING ENERGY FROM LIGHT (PHOTOSYNTHESIS) OR INORGANIC CHEMICAL REACTIONS (CHEMOSYNTHESIS)
Producer species; Autotrophs; Autotrophy; Producer organism; Autotrophism; Primary producer; Producers (food chain); Autotrophic nutrition; Autotrophic; Producer (Ecology); Autotropic; Primary producers; Autotrophic process; Producer (ecology); Producer (biology)
‎ ذاتِيُّ التَّغَذِّي‎

Definição

Autotrophic
·add. ·adj Capable of self-nourishment;
- said of all plants in which photosynthetic activity takes place, as opposed to parasitism or saprophytism.

Wikipédia

Biological carbon fixation

Biological carbon fixation or сarbon assimilation is the process by which inorganic carbon (particularly in the form of carbon dioxide) is converted to organic compounds by living organisms. The compounds are then used to store energy and as structure for other biomolecules. Carbon is primarily fixed through photosynthesis, but some organisms use a process called chemosynthesis in the absence of sunlight.

Organisms that grow by fixing carbon are called autotrophs, which include photoautotrophs (which use sunlight), and lithoautotrophs (which use inorganic oxidation). Heterotrophs are not themselves capable of carbon fixation but are able to grow by consuming the carbon fixed by autotrophs or other heterotrophs. "Fixed carbon", "reduced carbon", and "organic carbon" may all be used interchangeably to refer to various organic compounds. Chemosynthesis is carbon fixation driven by chemical energy, rather than from sunlight. Sulfur- and hydrogen-oxidizing bacteria often use the Calvin cycle or the reductive citric acid cycle.