Q.Draw a labelled diagram of sperm.
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Start your 14-day free trial to unlock the full solution →A sperm cell is a highly specialised male gamete with four distinct regions — head (containing nucleus and acrosome), neck, middle piece (packed with mitochondria), and tail (flagellum) — each adapted for its role in fertilisation.
The human sperm is a marvel of cellular engineering, designed for a single purpose: to deliver the male genetic material to the egg. Unlike most cells in the body, which are roughly spherical or polygonal, the sperm is elongated and motile, built for travel through the female reproductive tract. Understanding its structure reveals how form follows function at the most fundamental level of reproduction.
The sperm can be divided into four main regions, each with a specific job. At the front sits the head, which is flattened and oval. This region houses the nucleus, containing the tightly packed haploid set of chromosomes (23 in humans). Covering the anterior two-thirds of the nucleus like a cap is the acrosome, a specialised structure derived from the Golgi apparatus. The acrosome is filled with enzymes — hyaluronidase and proteases — that will later help the sperm penetrate the outer layers of the egg during fertilisation. Without this enzymatic arsenal, the sperm would be unable to breach the zona pellucida.
Just behind the head lies the neck, a short connecting segment. This region contains the centriole, which plays a crucial role in the first cell division after fertilisation. Though small, the neck is the structural link between the head and the rest of the sperm.
The middle piece follows, and it is here that the sperm's power plant resides. Wrapped in a tight spiral around the axial filament (the core of the tail) are numerous mitochondria. These organelles generate the ATP required for the whip-like movements of the tail. The middle piece is essentially an energy factory, ensuring the sperm has the fuel for its long journey — which can last hours or even days inside the female reproductive system.
Finally, the tail or flagellum extends from the middle piece and makes up the bulk of the sperm's length. This long, slender structure is built around a characteristic 9+2 arrangement of microtubules (nine doublets surrounding two central singlets), the same pattern found in cilia and flagella across the living world. The tail's rhythmic beating propels the sperm forward at speeds of about 1–3 mm per minute.
The entire sperm cell is about 60 micrometres long, with the tail accounting for roughly 50 micrometres of that length. It is one of the smallest cells in the human body, yet it carries half the genetic blueprint for a new individual.
Labelled Diagram of Sperm
Acrosome
___________
/ \
| Nucleus | ← HEAD
\___________/
|
_____|_____ ← NECK (Centriole)
| …
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