C4 plant - translation to russian
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C4 plant - translation to russian

PHOTOSYNTHETIC PROCESS USED BY SOME PLANTS
C4 plants; C4 photosynthesis; C4 plant; C4 crops; C4 crop; C4 pathway; C₄ carbon fixation; Kranz anatomy; C4 cycle; Kranz Anatomy; Hatch-Slack pathway; C-4 pathway; C-4 Photosynthesis; C 4 Photosynthesis; C-4 cycle; C4 carbon cycle; C4 Photosynthesis; C4 Rice Project; C4 fixation; C4 photosynthetic
  • [[Leaf]] anatomy in most {{C4}} plants. <br /> A: [[Mesophyll]] cell<br />B: [[Chloroplast]]<br />C: [[Vascular tissue]]<br />D: [[Bundle sheath cell]]<br /> E: [[Stoma]]<br /> F: [[Vascular tissue]]<br />1. {{CO2}} is fixed to produce a four-carbon molecule ([[malate]] or [[aspartate]]).<br /> 2. The molecule exits the cell and enters the bundle sheath cells.<br /> 3. It is then broken down into {{CO2}} and [[pyruvate]]. {{CO2}} enters the [[Calvin cycle]] to produce carbohydrates.<br /> 4. Pyruvate reenters the mesophyll cell, where it is reused to produce malate or aspartate.
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  • Cross section of a [[maize]] leaf, a {{C4}} plant. Kranz anatomy (rings of cells) shown

C4 plant         

общая лексика

C4-растение (по типу фотосинтеза)

mechanical plant         
  • Fiber optic splicing in a mobile lab.
  • Port Stanvac Desalination Plant by the water.
  • Air conditioning and exhaust plant on a rooftop in [[Auckland, New Zealand]].
NECESSARY INFRASTRUCTURE USED IN OPERATION AND MAINTENANCE OF A GIVEN FACILITY
Mechanical plant; Plant operations; Plant ops; Industrial plant; Transmitter plant

строительное дело

механизированное оборудование (стройплощадок)

industrial plant         
  • Fiber optic splicing in a mobile lab.
  • Port Stanvac Desalination Plant by the water.
  • Air conditioning and exhaust plant on a rooftop in [[Auckland, New Zealand]].
NECESSARY INFRASTRUCTURE USED IN OPERATION AND MAINTENANCE OF A GIVEN FACILITY
Mechanical plant; Plant operations; Plant ops; Industrial plant; Transmitter plant

общая лексика

техническое растение

строительное дело

промышленная установка

завод

Definition

НИЗ
1. нижние ноты (спец.).
Брать низы.
2. В эксплуататорском обществе: непривилегированные классы и слои населения.
Революция дает свободу низам.
3. широкие массы населения.
Опираться на инциативу низов.
4. часть само основание.
Н. колонны. Уложить книги под самый н. или в самый н. (в ни жнюю часть чего-н.). Во флигеле сдается н. (нижний этаж).
5. (устар. и обл.). То же, что низовье.
Ветер дует с низов.

Wikipedia

C4 carbon fixation

C4 carbon fixation or the Hatch–Slack pathway is one of three known photosynthetic processes of carbon fixation in plants. It owes the names to the 1960's discovery by Marshall Davidson Hatch and Charles Roger Slack that some plants, when supplied with 14CO2, incorporate the 14C label into four-carbon molecules first.

C4 fixation is an addition to the ancestral and more common C3 carbon fixation. The main carboxylating enzyme in C3 photosynthesis is called RuBisCO, which catalyses two distinct reactions using either CO2 (carboxylation) or oxygen (oxygenation) as a substrate. The latter process, oxygenation, gives rise to the wasteful process of photorespiration. C4 photosynthesis reduces photorespiration by concentrating CO2 around RuBisCO. To ensure that RuBisCO works in an environment where there is a lot of carbon dioxide and very little oxygen, C4 leaves generally differentiate two partially isolated compartments called mesophyll cells and bundle-sheath cells. CO2 is initially fixed in the mesophyll cells by the enzyme PEP carboxylase which reacts the three carbon phosphoenolpyruvate (PEP) with CO2 to form the four carbon oxaloacetic acid (OAA). OAA can be chemically reduced to malate or transaminated to aspartate. These intermediates diffuse to the bundle sheath cells, where they are decarboxylated, creating a CO2-rich environment around RuBisCO and thereby suppressing photorespiration. The resulting pyruvate (PYR), together with about half of the phosphoglycerate (PGA) produced by RuBisCO, diffuses back to the mesophyll. PGA is then chemically reduced and diffuses back to the bundle sheath to complete the reductive pentose phosphate cycle (RPP). This exchange of metabolites is essential for C4 photosynthesis to work.

On one hand, these additional steps require more energy in the form of ATP to regenerate PEP. On the other hand, concentrating CO2 allows high rates of photosynthesis at higher temperatures. Higher concentration overcomes the reduction of gas solubility with temperature (Henry's law). The CO2 concentrating mechanism also maintains high gradients of CO2 concentration across the stomatal pores. This means that C4 plants have generally lower stomatal conductance, reduced water losses and have generally higher water-use efficiency. C4 plants are also more efficient in using nitrogen, since PEP carboxylase is much cheaper to make than RuBisCO. However, since the C3 pathway does not require extra energy for the regeneration of PEP, it is more efficient in conditions where photorespiration is limited, typically at low temperatures and in the shade.

What is the Russian for C4 plant? Translation of &#39C4 plant&#39 to Russian