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Mazyrski [523]
4 years ago
10

Write four different between parenchyma and collenchyma?​

Biology
1 answer:
AveGali [126]4 years ago
5 0

Answer:

The major distinction between parenchyma, collenchyma, and sclerenchyma cells is that parenchyma cells are engaged in photosynthesis, storage, and secretion, whereas collenchyma cells support and transport nutrients, and sclerenchyma cells support, protect, and transport water.

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a ________ is a material whose conductivity is between that of an electrical conductor and an electrical insulator
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<em>Electron transport inhibitors: Cyanide, Rotenone</em>

<em> Uncoupling agents: trifluorocarbonylcyanide phenylhydrazone (FCCP)(FCCP)</em>

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<em>Electron transport inhibitors: Cyanide, Rotenone</em>

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.Rotenone blocks electron transfer at NADH dehydrogenase (NAD−Q(NAD−Q oxidoreductase) by preventing electron transfer from Fe-S center to ubiquinone.

<em> Uncoupling agents: trifluorocarbonylcyanide phenylhydrazone (FCCP)(FCCP)</em>

The transfer of electrons  from NADH through the respiratory chain to molecularoxygen is coupled to proton pumping from the inner mitochondrial matrix to the intermembrane space. This generates a proton motive force which is utilized in ATP synthesis. Trifluorocarbonylcyanide phenylhydrazone (FCCP)(FCCP) increases membrane proton permeability, causing protons to leak back into the mitochondrial matrix, thereby uncoupling the processs of ATP synthesis and proton flux.

<em> ATP synthase inhibitors: Oligomycin</em>

ATP synthase is the enzyme rensponsible for ATP synthesis. It has two functional domains,: F₁ and F₀. Oligomycin binds to F₀ and blocks the proton channel preventing rotation of the F₁ subuni, thus, preventing ATP synthesis from ADP.

<em>Transport inhibitors: Bongkrekic acid</em>

Adenine  nucleotide translocase is a transport protein that  transports free ADP from the cytoplasm into the mitochondrial matrix, while ATP produced from oxidative phosphorylation is transported from the mitochondrial matrix to the cytoplasm o the cell.

Bongkrekic acid inhibits Adenine nucleotide translocase, thus preventing ATP from leaving the mitochondria and starving cells of needed energy.

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