Q.Give two differences between a flagellum and a cilium.
Concept understanding — Flagellar and Ciliary Locomotion
Flagella and cilia share the same internal "9+2" axoneme — nine outer doublet microtubules ringed around a central pair of single microtubules. Each outer doublet bears dynein arms, ATP-powered motor proteins that slide adjacent doublets past each other, and this sliding, constrained by structural links, is converted into the bending/beating motion.
In ciliates, cilia are organised into longitudinal rows called kineties, which help coordinate beating. Ciliary beating may be synchronous (all cilia beating together, in phase) or metachronous (a coordinated, sequential wave passing across the ciliated surface, each cilium slightly out of phase with its neighbour) — metachronous beating, as in Paramecium, generally gives smoother, more effective directional movement. A flagellum is typically longer, present singly or in small numbers, and moves with an undulating wave; a cilium is shorter, present in large numbers, and beats with a two-part effective/recovery stroke.
[!TLDR] Flagella are longer and fewer per cell with a wave-like beat; cilia are shorter and more numerous with an oar-like effective/recovery stroke.
[!ANSWER] A flagellum is typically much longer than a cilium and occurs singly or in small numbers per cell, moving with an undulating wave-like beat; a cilium is much shorter, occurs in large numbers covering the cell surface, and beats with a distinct effective (power) stroke and recovery stroke.
[!ANSWER] Flagella and cilia share the identical internal 9+2 axoneme, but differ clearly in length, number and beat pattern.
A flagellum is relatively long compared with the size of the cell, and a flagellate cell usually bears only one or a small number of them (Euglena, for instance, has a single emergent flagellum); its movement is an undulating, wave-like beat that propagates along its length, propelling the cell forward in the direction of the flagellum's axis.
A cilium, by contrast, is much shorter than a flagellum, and a ciliated cell such as Paramecium is typically covered by very large numbers of them; each cilium beats with a two-part stroke — a stiff, oar-like effective (power) stroke that pushes against the surrounding fluid, followed by a more flexible recovery stroke that returns the cilium to its starting position with minimal resistance — and the many cilia across the cell coordinate this beating into synchronous or metachronous wave patterns.
[!ANSWER] Flagellum: long, few per cell, undulating wave-like beat. Cilium: short, many per cell, a distinct effective-stroke/recovery-stroke beat pattern, often coordinated across the cell surface.
- Assuming flagella and cilia differ in internal structure — they share the identical 9+2 axoneme; the differences are in length, number and beat pattern.
- Describing only one of the two required differences instead of both.
- CBSE 2025Set ANNUAL2 marksQ.What is a kinety?
›Reveal solutionSolution
A kinety is a longitudinal row of ciliary basal bodies (kinetosomes) with their connecting fibril (kinetodesma) below the pellicle of ciliates; together the kineties form the infraciliature.
Explanation:
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In ciliate protozoans (such as Paramecium), the cilia arise from basal granules called kinetosomes (basal bodies) lying just below the pellicle.
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A KINETY is a longitudinal ROW of these kinetosomes, together with a fine fibril, the kinetodesma, that connects them along the row.
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All the kineties of the body collectively form the INFRACILIATURE.
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Function: the infraciliature coordinates the beating of the cilia so that ciliary movement is synchronised for locomotion.
✓Final answerA kinety is a longitudinal row of kinetosomes (ciliary basal bodies) along with the connecting kinetodesma fibril, lying beneath the pellicle in ciliate protozoans like Paramecium. Together the kineties form the infraciliature, which coordinates ciliary movement.
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- CBSE 2024Set ANNUAL2 marksQ.What is a kinety?
›Reveal solutionSolution
A kinety is the basic unit of the infraciliature in ciliate protozoans - a row of kinetosomes and fibrils that anchors and coordinates a longitudinal line of cilia.
In ciliated protozoans such as Paramecium, the body surface is covered by rows of cilia arranged in longitudinal lines. Beneath the pellicle, each such row of cilia is underlain by a corresponding row of basal bodies (kinetosomes), interconnected by fine longitudinal and transverse fibrils. This entire longitudinal unit - one row of kinetosomes plus its associated fibril system - is called a kinety.
The complete set of kineties covering the body forms the infraciliature (the sub-pellicular fibrillar system). The kinety system:
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Anchors the cilia to the cell cortex.
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Coordinates the metachronal (wave-like) beating of the cilia within that row, and, together with neighbouring kineties, over the whole body surface - enabling smooth, directed swimming.
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Is used taxonomically, since the pattern and number of kineties is a stable, distinguishing feature used to classify ciliates.
✓Final answerA kinety is a longitudinal row of kinetosomes (basal bodies) and their fibrils beneath the ciliate's pellicle, forming part of the infraciliature that anchors and coordinates the cilia of that row.
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- CBSE 2023Set ANNUAL2 marksQ.What is a kinety?
›Reveal solutionSolution
A kinety is a longitudinal row of ciliary basal bodies (kinetosomes) with their connecting fibril (kinetodesma) below the pellicle of ciliates; the kineties together form the infraciliature.
Explanation:
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In ciliate protozoans (such as Paramecium), the numerous cilia arise from basal granules called kinetosomes (basal bodies), lying just below the pellicle.
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A KINETY is a longitudinal ROW of these kinetosomes together with a fine fibril, the kinetodesma, that runs along and connects them.
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All the kineties of the body collectively make up the INFRACILIATURE.
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Function: the infraciliature (the system of kineties) coordinates and controls the beating of the cilia, so that ciliary movement is synchronised for locomotion.
✓Final answerA kinety is a longitudinal row of kinetosomes (ciliary basal bodies) along with the connecting kinetodesma fibril, lying beneath the pellicle in ciliate protozoans like Paramecium. Together the kineties form the infraciliature, which coordinates ciliary movement.
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- CBSE 2023Set ANNUAL2 marksQ.Distinguish between synchronous and metachronous movements.
›Reveal solutionSolution
Synchronous movement = all cilia beat together at once; metachronous movement = cilia beat one after another in sequence, producing a wave that moves along the body.
Distinction between synchronous and metachronous movements (of cilia):
Synchronous movement:
- All the cilia in a transverse row beat together, at the SAME time and in the same phase (as if in unison).
- Such beating is less common.
Metachronous movement:
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The cilia beat one after another in a regular sequence (each cilium slightly out of phase with the one in front), so that a WAVE of beating passes along the length of the rows of cilia (like wind passing over a field of grass).
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This is the usual pattern in ciliates (e.g. Paramecium) and produces smooth, effective locomotion by pushing water backward.
✓Final answerSynchronous movement is the beating of all the cilia together at the same time and in the same phase, whereas metachronous movement is the beating of cilia one after another in sequence, producing a wave-like motion along the rows of cilia (the usual mode of ciliary locomotion).
- CBSE 2020Set ANNUAL2 marksQ.List any two differences between a flagellum and a cilium.
›Reveal solutionSolution
Cilia and flagella are both hair-like locomotory organelles with a common 9+2 microtubule structure, but they differ in number, length and the way they beat.
Both cilia and flagella are motile, hair-like extensions of the cell membrane with an internal 9+2 arrangement of microtubules (the axoneme), and both are used for locomotion in protozoans (e.g., Paramecium uses cilia, Euglena/Trypanosoma use flagella). However, they differ in the following ways:
- Number and length: Cilia are numerous and comparatively short, covering the cell surface densely (e.g., thousands in Paramecium). Flagella are few in number — usually only one or two per cell — and are much longer relative to the cell.
- Pattern of beating: Cilia beat in a coordinated, wave-like sequence called a metachronal rhythm (like oars), each cilium performing an effective power stroke followed by a recovery stroke. Flagella move in an undulating, whip-like fashion, propagating a wave along their length to push or pull the cell.
(A further difference: ciliates like Paramecium rely on cilia mainly for both locomotion and feeding currents, while flagellates like Euglena rely on flagella chiefly for propulsion.)
✓Final answerCilia: many, short, beat in coordinated metachronal waves. Flagella: few (1-2), long, move with an undulating whip-like motion.
- CBSE 2019Set ANNUAL2 marksQ.What are dynein arms? What is their significance?
›Reveal solutionSolution
Dynein arms are the molecular motors of cilia and flagella — they convert the chemical energy of ATP into the mechanical sliding of microtubules that produces ciliary/flagellar bending.
What are dynein arms?
In the 9+2 axoneme of a cilium or flagellum, nine peripheral doublet microtubules surround a central pair of single microtubules. Each peripheral doublet carries two rows of small projections called dynein arms — an outer dynein arm and an inner dynein arm — attached to microtubule A of the doublet and reaching toward microtubule B of the adjacent doublet. Dynein itself is a large motor protein with ATPase activity.
Significance:
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Dynein hydrolyses ATP and uses the released energy to "walk" along the neighbouring doublet's microtubule B, causing the doublets to slide relative to one another (the sliding-microtubule mechanism of ciliary movement).
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Because the doublets are held together at their base and by radial spokes/nexin links, sliding is converted into local bending of the axoneme instead of free sliding.
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Coordinated, sequential activation of dynein arms along the length of the axoneme produces the characteristic whip-like or oar-like beating of cilia and flagella, which powers locomotion in ciliates/flagellates (e.g. Paramecium, Euglena) and movement of fluids over ciliated epithelium.
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Defective dynein arms (as in genetic ciliary dyskinesia) abolish normal ciliary beating, underscoring their essential motor role.
✓Final answerDynein arms (outer + inner) are ATPase motor proteins on the peripheral doublet microtubules of the axoneme; by hydrolysing ATP they slide adjacent doublets past each other, converting chemical energy into the bending/beating movement of cilia and flagella.
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- CBSE 2019Set ANNUAL2 marksQ.What is a Kinety?
›Reveal solutionSolution
A kinety is the basic organisational unit of a ciliate's ciliary system — a lengthwise row of basal bodies with connecting fibrils that anchors and coordinates a line of cilia.
In ciliate protozoans (e.g., Paramecium), the body surface is covered with numerous cilia arranged in longitudinal rows. Each cilium is anchored in the pellicle by a basal body (kinetosome). A single longitudinal row of these kinetosomes, together with the fine fibrous strands (kinetodesmal fibrils and other rootlet fibrils) that interconnect them, constitutes one kinety.
The complete set of kineties covering the ciliate's body is called the infraciliature — it lies just beneath the pellicle and forms a coordinating skeletal-cum-conductive network. The kinety system:
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Anchors the cilia mechanically to the cell surface.
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Provides a pathway believed to help coordinate the metachronal (wave-like) beating of the cilia within a row.
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Is an important taxonomic character, since the number, arrangement and pattern of kineties differ between ciliate species and are used in their classification.
✓Final answerA kinety = a longitudinal row of kinetosomes (basal bodies) plus their connecting rootlet fibrils in a ciliate; it anchors and helps coordinate a row of cilia and is a key taxonomic feature of ciliates.
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- CBSE 2018Set ANNUAL2 marksQ.List any two differences between a flagellum and a cilium.
›Reveal solutionSolution
Flagella and cilia are both microtubule-based (9+2) locomotory organelles, but they differ in number, length, and beat pattern.
Difference 1 — Number and length: A flagellated cell (e.g. Euglena) usually bears only one or two long flagella, whereas a ciliated cell (e.g. Paramecium) is covered by hundreds to thousands of short cilia arranged in longitudinal rows over the body surface.
Difference 2 — Movement pattern: Flagella move with an undulating, whip-like (sinusoidal) beat that pulls or pushes the cell along the flagellar axis, giving a smooth gliding motion. Cilia beat with an oar-like effective stroke followed by a recovery stroke, and neighbouring cilia beat in a coordinated, wave-like sequence called metachronal rhythm, propelling the cell in a direction roughly perpendicular to the row of cilia.
(Additional points, any two of which may be cited: flagella are chiefly used only for locomotion, while cilia may also move the surrounding medium/capture food; ciliary beating is generally faster and generates more force per unit length than flagellar beating.)
✓Final answerFlagella are few and long with an undulating whip-like beat (e.g. Euglena); cilia are numerous and short with a coordinated oar-like metachronal beat (e.g. Paramecium).
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