Q.Assertion (A) : DNA cannot pass through cell membrane of a bacterial cell. Reason (R) : DNA is a hydrophilic molecule.
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Start your 14-day free trial to unlock the full solution →Both the assertion and reason are true, and the reason correctly explains the assertion: DNA's hydrophilic nature prevents it from crossing the hydrophobic lipid bilayer of bacterial cell membranes.
The bacterial cell membrane is a selectively permeable barrier built from a phospholipid bilayer. This structure has hydrophobic (water-fearing) fatty acid tails facing inward and hydrophilic (water-loving) phosphate heads facing outward toward the aqueous environments inside and outside the cell. The interior of this bilayer is essentially a non-polar, oily zone that repels charged or polar molecules.
DNA is a large, highly charged macromolecule. Its sugar-phosphate backbone bristles with negatively charged phosphate groups, making the entire molecule intensely hydrophilic. Water molecules cluster around these charges, and the DNA strand is effectively "dressed" in a hydration shell. This is precisely why DNA dissolves readily in aqueous solutions inside cells but cannot simply drift through a lipid membrane.
When a hydrophilic molecule like DNA approaches the lipid bilayer, it encounters an energetic barrier. Stripping away the hydration shell and forcing the charged backbone into the hydrophobic core of the membrane would require enormous energy—energy that is not available under normal physiological conditions. Small, uncharged molecules like oxygen or carbon dioxide can slip through, but DNA, with its size and charge, cannot. …
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