Class 11 Biology Animal behavior Notes

UNIT 09 • BIOTA AND ENVIRONMENT
CLASS 11 BIOLOGY • ZOOLOGY

Animal Behavior

Chapter 9.2

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Animal Behavior

The action shown by an animal as a response to any kind of external stimulus is called animal behavior.
The science which deals with the study of animal behavior is called ethology.

The handwritten notes divide animal behavior into two broad types:

1. Learned Behavior

The acquired behavior which develops in animals due to learning or experience during the lifetime is known as learned or acquired behavior.

The source describes it as a non-inherited type of behavior and gives examples such as:

Singing Painting Swimming Driving

2. Innate Behavior

If all members of a species show similar sequences of response under the same environmental conditions, the behavior is called innate or stereotyped behavior.

The source lists the following under innate behavior:

Reflex action Taxis Tropism Kinesis Dominance Leadership Migratory behavior

Reflex Action

Reflex action is an innate type of animal behavior in which the body responds to a stimulus suddenly and involuntarily.

Examples Listed in the Source

  • Constriction of the pupil in response to an intense light source.
  • Release of saliva.
  • Swallowing food.
  • Blinking of the eye when an object passes close to the eye.
  • Withdrawal of the hand on touching a hot object.
  • Jerking of the knee.
  • Paleness of skin or erection of hair as a result of fear.

Sensory and Motor Nerves

Sensory / Afferent Nerves

Carry messages or impulses from receptors toward the central nervous system.

Motor / Efferent Nerves

Carry messages from the central nervous system toward the responding body part.

Taxis, Tropism and Kinesis

Taxis

Taxis is a type of orientation in an animal or organism which involves displacement and has a directional character.

Tropism

Tropism is a type of orientation mostly shown by plants. The source distinguishes it from taxis by stating that displacement is absent, although the direction changes.

Kinesis

Kinesis is a type of orientation in which an organism shows a behavioral response by non-directional or haphazard movement of the body.
Behavior Main Character in the Source
Taxis Directional movement with displacement.
Tropism Mostly plant orientation; direction changes without displacement as described in the notes.
Kinesis Non-directional or haphazard movement.

Types of Taxis

I. On the Basis of Direction of Movement

Positive Taxis

Movement of an animal toward the source of stimulus.

Example: some insects move toward a light source at night.

Negative Taxis

Movement of an organism away from the source of stimulus.

Example: earthworm moves away from a light source.

II. On the Basis of Type of Stimulus

a

Phototaxis

Movement of an organism toward or away from the source of light.

  • Positive: moth is attracted by light at night.
  • Negative: earthworm goes away from light.
b

Thermotaxis

Movement of an animal in response to temperature.

c

Chemotaxis

Movement of an animal in response to a chemical stimulus.

  • Positive: the source gives movement toward sugar solution.
  • Negative: earthworm moves away from formalin.
d

Geotaxis

Response of an animal toward gravity.

  • Positive: earthworm moves toward the earth / underground.
  • Negative: arboreal animals move opposite to the earth’s surface as described in the notes.
e

Thigmotaxis

A kind of taxis shown by animals in response to touch.

f

Rheotaxis

Response of an animal to flowing water or water current.

  • Positive: hill-stream fishes such as Glyptothorax move against the water current.
  • Negative: the source states that some fishes move with the flow of water.
g

Galvanotaxis

Response of an animal to the stimulus of an electric current.

Dominance and Leadership

Dominance

The source describes dominance as a social and innate behavior in which a dominant individual asserts itself over the group.

Leadership

Leadership is also described as social and innate behavior. The leader of the group gives guidance, coordinates members and looks after the welfare of the group.

Migration

Migration is the periodic movement of organisms from one place to another.

Fish Migration

The movement of fishes from fresh water to sea water, from sea water to fresh water, within fresh water or within sea water is called fish migration.

The notes classify fish migration in several ways:

By Purpose By Purpose & Route By Direction

Fish Migration on the Basis of Purpose

1

Alimental Migration

Migration mainly for feeding purposes. The source gives examples such as grass carp and Chinese carp moving from one place to another in search of a better feeding place.

2

Spawning Migration

Migration for spawning or reproduction. Salmon and eel are listed as examples of fishes moving between sea and river environments for breeding.

3

Climatic Migration

Migration caused by climatic conditions. The source describes fishes moving between different water conditions to protect themselves from unfavorable seasonal temperature.

4

Osmoregulatory Migration

Movement between sea and river for balancing water and mineral concentration in the body, especially under unfavorable conditions.

5

Over-wintering Migration

Migration from feeding grounds to wintering grounds. The notes state that some fishes enter a hibernation-like state during winter.

Fish Migration on the Basis of Purpose and Route

A. Diadromous Migration

Movement of fishes between sea water and fresh water for feeding and spawning is called diadromous migration.

The source divides diadromous migration into three types:

Anadromous Migration

Fishes such as salmon and hilsa move from salty or sea water to fresh water for breeding.

Catadromous Migration

Freshwater eels such as Anguilla move from fresh water or rivers to salty sea water.

Amphidromous Migration

Fishes move between sea and river mainly for feeding, not for breeding. The source gives globe fish as an example.

B. Potadromous Migration

Carp and trout travel a long distance within fresh water for spawning and return to the feeding place after laying eggs. This is called potadromous migration.

C. Oceanodromous Migration

Fishes such as Clupea, Thunnus and sharks migrate within sea water to an appropriate spawning site and later return to the original feeding area. This is called oceanodromous migration.
Diadromous Potadromous Oceanodromous

Fish Migration on the Basis of Direction

a

Latitudinal Migration

Migration from north to south or vice versa.

Examples: barracuda (Sphyraena) and swordfish (Xiphias).

b

Vertical Migration

Daily movement between deep and surface waters for food, protection or spawning. The source mentions swordfish and fishes of the group Scopeliformes.

c

Shoreward Migration

Temporary movement of fishes from water toward land or shore. The common eel is given as an example in the source.

Causes of Fish Migration

Physical Factors

Temperature Light intensity Photoperiod Turbidity Water pressure

Chemical Factors

Salinity pH Smell Taste

Biological Factors

Shortage of food Predators Competitors Hormonal secretions Blood pressure Sexual maturity Food memory

Advantages of Fish Migration

  • Helps fishes avoid unfavorable conditions.
  • Provides better opportunities for feeding and breeding.
  • Provides safer or more suitable dwelling conditions.

Disadvantages of Fish Migration

  • Migratory fishes are exposed to many risks during migration.
  • They may die because of adverse climatic conditions.
  • Lack of food, disease and predation may cause mortality during the journey.

Bird Migration

The movement of birds from one place to another in search of food, nesting grounds and protection is called bird migration.

Types of Bird Migration

1

Latitudinal Migration

Migration of birds from north to south or vice versa.

Example in the source: golden plovers migrating from North America to Argentina to spend winter.

2

Altitudinal Migration

Migration of birds from high mountains to lowlands or vice versa; also called vertical migration.

The source lists grebes and coots of the Andes and violet-green swallows among its examples.

3

Longitudinal Migration

Migration of birds from east to west or vice versa.

4

Seasonal Migration

Movement caused by seasonal changes.

Examples: snow bunting, fieldfare and redwing are listed as winter visitors.

5

Daily or Local Migration

Short-distance migration. The source gives house sparrow, golden crow and oriole as examples and states that they return to the nest afterward.

6

Partial Migration

Migration covering distances from a few to hundreds of miles.

Examples: herons and cranes.

Modes of Flight in Bird Migration

1. Diurnal and Nocturnal Migrants

Diurnal Migrants

Birds that migrate during daytime.

Examples: hawks, crows, robins and bluebirds.

Nocturnal Migrants

Birds that migrate at night.

Examples: warblers, sparrows and thrushes.

2. Altitude, Speed and Distance of Migration

The source lists altitude, speed and distance of migration as a heading but does not provide further explanatory notes under it on the supplied page.

3. Routes of Migration

Migratory birds usually follow the same route year after year. According to the notes, the position of the sun, stars and the Earth’s magnetic field help guide them along the route.

Sun Stars Earth’s magnetic field

Causes of Bird Migration

Biological Factors

The source mentions completion of the sexual cycle, hormonal secretions and metabolic activities.

Physical Factors

Temperature, snowfall, climatic changes, scarcity of food, shortening of daylight, increase in cold and velocity of wind are listed.

Advantages of Bird Migration

  • Helps birds avoid extreme cold or hot conditions.
  • Provides more food and better feeding and breeding places.
  • Helps birds obtain suitable nesting places.

Disadvantages of Bird Migration

  • Migration is a risky process.
  • Birds may be killed by severe climatic conditions such as heavy rainfall, snowfall or stormy wind.
  • They may be killed by predators such as humans and hawks, as listed in the source.
  • Some birds may die after striking lighthouses, monuments, large buildings or television towers.
  • Some birds may lose their way during severe weather and drown in the sea.

Sensitivity and Camouflage

Sensitivity

The ability of an animal to perceive stimuli—to recognize and react to changes in its surroundings—is known as sensitivity.

Camouflage

Camouflage is the art of disguising itself by an animal to deceive and escape from an enemy.

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