Q.In Bacteria the site of respiration is :
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Mesosomes and Chromatophores – First Look
Imagine a bacterial cell. It has no mitochondria, no chloroplasts, no membrane-bound organelles at all. Yet it still needs to breathe, make energy, and sometimes photosynthesise. How does it manage? It folds its own cell membrane inward, creating specialised pockets. That is the core idea behind both mesosomes and chromatophores.
Mesosomes – The Folded Powerhouse
Intuition: A prokaryote's cell membrane is its only lipid bilayer. To increase surface area for chemical reactions (like respiration), the membrane pushes inward, forming twisted, pocket-like structures. These are mesosomes.
Precise statement: Mesosomes are invaginations (infoldings) of the plasma membrane in prokaryotic cells. They are not separate organelles — they are continuous with the membrane itself.
What do they do?
- Respiration: They house enzymes for electron transport and ATP synthesis, acting like a primitive mitochondrion.
- Secretion: They help export enzymes and toxins out of the cell.
- Cell wall formation: During cell division, mesosomes attach to the bacterial chromosome and help pull it apart, while also depositing new cell wall material at the septum.
Mesosomes were once thought to be permanent structures. Modern electron microscopy shows they may be artifacts of chemical fixation — but the functional idea (membrane infoldings aiding respiration and division) remains valid in textbooks.
Chromatophores – The Light Catchers
Intuition: Some bacteria photosynthesise, but they have no chloroplasts. Instead, they use flattened, sac-like infoldings of the cell membrane that hold photosynthetic pigments. These are chromatophores.
Precise statement: Chromatophores are membrane-bound structures in photosynthetic prokaryotes (e.g., purple bacteria, cyanobacteria) that contain bacteriochlorophyll or chlorophyll and carotenoid pigments. They are the site of light-dependent reactions.
Key features:
- They are not separate organelles — they are derived from the plasma membrane.
- In cyanobacteria, chromatophores are called thylakoids and are arranged in stacks.
- They capture light energy and convert it to chemical energy (ATP and NADPH).
Think of chromatophores as the prokaryotic equivalent of chloroplast thylakoids — same job, simpler architecture.
The Big Picture …
Bacteria have no mitochondria; a fold of their plasma membrane carries out respiratory functions instead. …
Bacterial respiration occurs at the mesosome.
Bacteria lack membrane-bound organelles like mitochondria. Infoldings of the plasma membrane called mesosomes bear the respiratory enzymes and function as the site of respiration (and help in cell wall formation and DNA replication). So re …
- CBSE 2026Set ANNUAL1 markMCQQ.A special membranous structure in prokaryotic cells, which is formed by the extension of plasma membrane into the cell is(a) mesosome(b) ribosome(c) cilia(d) pili
›Reveal solutionSolution
A mesosome is an inward extension (infolding) of the plasma membrane in a prokaryotic cell.
Prokaryotic cells lack most membrane-bound organelles, but the plasma membrane itself can fold inward to form vesicular, tubular, or lamellar structures called mesosomes. These extensions increase the effective surface area of the membrane and help with cell-wall formation, DNA replication and its distribution to daughter cells, respiration, secretion, and increasing enzymatic cont …
- CBSE 2026Set ANNUAL1 markMCQQ.Mesosome is present in -(a) Amoeba(b) Bacteria(c) Euglena(d) Yeast
›Reveal solutionSolution
Mesosomes are folded extensions of the plasma membrane found only in bacterial (prokaryotic) cells, not in eukaryotic cells such as Amoeba, Euglena or Yeast.
Mesosomes are formed by the invagination of the plasma membrane in the form of vesicles, tubules, and lamellae into the cytoplasm of bacterial cells. These extensions increase the surface area of the plasma membrane and help in cell wall formation, DNA replication and distribution to daughter cells, and respiration (they may carry respiratory enzymes).
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- CBSE 2023Set ANNUAL1 markMCQQ.In Bacteria the site of respiration is :(a) cytoplasm(b) mesosome(c) episome(d) plasmid
›Reveal solutionSolution
Bacterial respiration occurs at the mesosome.
Bacteria lack membrane-bound organelles like mitochondria. Infoldings of the plasma membrane called mesosomes bear the respiratory enzymes and function as the site of respiration (and help in cell wall formation and DNA replication). So re …
- CBSE 2022Set ANNUAL1 markMCQQ.Mesosomes are found in:(a) virus(b) Bacteria(c) Algae(d) Fungi
›Reveal solutionSolution
Mesosomes are plasma-membrane infoldings of prokaryotes → (b) Bacteria.
From the NCERT Class 11 Biology account of prokaryotic cell structure:
- A mesosome is formed by the infolding of the plasma membrane in bacteria. …
- CBSE 2019Set ANN1 markMCQQ.Choose the CORRECT answer. A structure seen in bacterial cell is ...........(a) Nucleus(b) Lysosome(c) Plastid(d) Mesosome
›Reveal solutionSolution
Bacteria are prokaryotes; among the given options, only the mesosome is found in a bacterial cell.
Bacterial cells lack a true nucleus (they have a nucleoid instead), and they lack membrane-bound organelles such as lysosomes and plastids — these are features of eukaryotic cells only.
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