Showing posts with label FISHES. Show all posts
Showing posts with label FISHES. Show all posts

Saturday, March 7, 2020

LECTURE NOTES ON ACCESSORY RESPIRATORY ORGANS IN FISHES

Accessory Respiratory (Extrabranchial) Organs in fishes.
Fishes are aquatic, gill breathing vertebrates. They possess gills for branchial mode of respiration. However, in many fishes, either due to poorly developed branchial respiration or due to environmental stresses, additional respiratory structures have been developed. Such extrabranchial organs that supplement gills in respiration are collectively referred to as accessory respiratory organs.
Several reasons have been suggested for the existence of accessory respiratory organs:
1. To meet the environmental oxygen deficiency.
2. To compensate the degenerate gills.
3. To maintain life during aestivation (summer sleep).
4. To counter balance the intemal oxygen deficiency.
5. Air breathing may be obligatory (habitual) in some fishes.
These take different form and structure that suit the habit and habitat of the fish. Some accessory respiratory organs commonly found in fishes are skin, buccopharyngeal epithelium, gut epithelium, pelvic fins, pharyngeal diverticula, branchial diverticula and air bladder (swim bladder).
1.Skin:The skin of eels and many other fishes is richly supplied with blood vessels and serves as accessory respiratory organ. lt performs the respiratory function both in water and on land. Anguilla anguilla and Amphiopnous cuchia (eels) often move on land through wet vegetation. This feature is especially useful when the eels undertake extensive migratory journeys. In Periophthalmus (mud skipper) too skin functions as an accessory respiratory organ.
2.Bucco pharyngeal Epithelium:The buccal cavity and pharynx of Periophthalmus and Symbranchus are lined with highly vascular epithelium. Fresh air is gulped into these cavities and exchange of respiratory gases occurs through the epithelium.
3.Gut Epithelium: In a few fishes, certain regions of the alimentary canal are highly vascular and become modified for aerial respiration. ln Misgurus fossilis, for example, the region behind stomach serves as an accessory respiratory organ. The intestine of Lepidosiren and the rectum of Callichthyes also function as accessory respiratory organs. In these cases, fresh air enters the gut either through mouth or anus. The expiratory air goes out through anus.
3.Pelvic Fins:In the American lung fish Lepidosiren, during breeding season, the pelvic fins of the male fish enlarge in size, become highly vascular and form filamentous out growths. These fin; besides serving as accessory respiratory organs supply oxygen to the eggs guarded by them.
4.Pharyngeal Diverticula:The pharynx of the fishes Periophthalmus, Amphiopneus , Channa (Ophiocephalus), etc. forms sac-like outgrowth called diverticulum, which is lined by vascular epithelium. Sometimes the sac extends above the gill pouch.Air is drawn into the diverticulum, and oxygen and carbon dioxide are exchanged.Amphiopnous possesses a small and smooth diverticulum,which opens through midventral gill slits . The diverticulum of Channa is folded . In all these cases, the diverticula function as accessory respiratory organs during aestivation or when the oxygen content of the water is too low.


5.Branchial Diverticula : In many fishes the outgrowths or diverticula formed from gill  (branchial) chambers contain complex accessory respiratory organs for  aerial respiration. These include tubular diverticula, labyrinthine organs  and dendritic or arborescent organs.
a.Tubular Diverticula: in Heteropneustes (Sacchobranchus) a pair of  long tubular air sacs arises from the gill chamber one on either side and  extends up to the tail. Exchange of respiratory gases takes place  through the highly vascular wall of the diverticulum.
b. Labyrinthine organs: Anabas (lnclian climbing perch) often comes  to water gurface and gulp down fresh air for aerial respiration. lt has twospacious suprabranchial cavities as dorsal outgrowths of the gill chambers. Each of these cavities contains an accessory respiratory organ called labyrinthine organ . It is formed by much folded concentric bony plates, which develop from the first epibranchial bone. This organ is covered by vascular mucous membrane. Fresh air reaches the suprabranchial chamber through the mouth and after gas exchange the expiratory air is expelled through the opercular opening. InTrichogaster fasciates, a similar but simple a similar but simpler labyrinthine organ is present
c.Dendritic(Arborescent) Organs: In Clarias (Indian cat fish), the wall of the gill chamber on either side evaginates to form a pair of suprabranchial cavities. These cavities contain highly branched and tree-like accessory air breathing organs  called dendritic or arborescent organ.Exchange of respiratory gases occurs through the highly vascularized mucous membrane covering these organs.
6.Air bladder (Swim Bladder): Air bladder or swim bladder is found in all bony fishes. ln teleosts, it functions as a hydrostatic organ. However, in lower bony fishes such as Dipnoans, ganoids, etc. gills are poorly developed and the air bladder functions as an accessory respiratory organ. lt is vascular and contains many alveolus-like structures. ln Amia and Lepisosteus, single air bladder is present, which opens dorsally into pharynx. in Lepidosiren and Protopterus, the air bladder is bilobed, ventral and opens ventrally into pharynx.
7. Oral Papilla In electric eel (Electrophorus), the mucous membrane of the mouth is raised into oral papillae. They are well vascularized and they   help in aenal respiration.
8.Lungs:Lungs are present in Dipnoi. Eg.Protopterus, Lepidosiren, etc. They have apair of lungs. They open into the oesophagus by a common opening called glottis The lungs contain alveoli and are well vascularized. In Dipnoi, lungs are used for aerial respiration during aestivatiom.


Friday, October 4, 2019

Lecture notes on fish migration

Migration is the of mass movement of animals from one place to another for food,shelter,mates and escaping from extreme environmental condition.+The reason for migration vary accordingly with the types of animals.In fishes migratory behaviour is a regular phenomenon. 
  
Types fish migration on the basis of needs:

  1. Feeding or Alimental migration: migration in search of food and feeding ground. It occur when food resources get diminished.
  2.  Spwaning or gametic migration: it occur during breeding period  in search of the suitable breeding ground.
  3. Seasonal or climatic migration: migration in search for suitable climatic condition.
  4. Osmo-regulatory migration: migration for maintaining water and ionic balance.It occurs  from sea to fresh water and vice-versa.
  5. Juvenile migration: it is migration of larvae from breeding ground to the feeding grounds of their parent.

Examples for migratory Fishes
The following are the examples for migratory fishes:
1. Eels- Anguilla Anguilla,A. vulgaris, A. rostra, etc.
2. Salmon - Salmo solar,Oncorhynchus nerka
3. Indian shad - Hilsa hilisa
Causes for Fish Migration
The migration of fish is caused by the following factors:
1. Sexual maturity is a stimulus for migration
2. Hormones play significant role in migration.
3. Instinct is an important causes of fish migration.
4. To avoid predators and competition
5. Scarcity of food resources
6.Environmental factors like  light, temperature, salinity, pH, water currents, turbidity, etc.
Speed of Migration
The average speed of migration is 3 times the length of the fish per second. If the length of the fish is 12 inches, the speed of migration is 12x3=36 inches per second.
Types of Migration
Fish migration is classified into four main types. They are as follows:
1. Oceanodromous,
2. Potamodromous,
3. Catadromous,
4.Anadromous.
5.Latitudinal migration:
6. Vertical migration: 
7. Shore ward migration:

1. Oceanodromous migration
Long journeys within the sea for breed- ing is called oceanodromous migration. Eg.
Herrings (Clupea), Mackerels, Tunas, etc.
2. Potamodromous migration: Long travels within freshwater is called potamodromous migration. Eg. Carps and trouts and catfish
3. Catadromous migration:The journey of freshwater fishes to the for spawning is called catadromous migration. Eg. Eels.
4.Anadromous migration: The journey of marine fishes to fresh- water is called anadromous migration. Eg.Salmon, Indian shad, etc.
5.Latitudinal migration:In this type fishes  migrate to north in spring and to south in autumn.This is performed by fishes like Sphyraena and swordfish  of the warm tropical seas. 
6. Vertical migration:Vertical migration is  performed by many marine and freshwater fishes and is related to light, search of food, protection and also to spawning. Example:Mackeral rises into the surface waters when there is a rich development of plankton.After eating plankton they go to deep layers after feeding.
7.Shore ward migration:In this type of migration there is a temporary movement of fishes from water to land.  The common eel travel from one pond to another through moist meadow grass.
 Migration in Eel
(Catadromous Migration)
Eels are freshwater fishes. They travel long distance into the sea for breeding. Hence they are said to be catadromous fishes and the migration is called catadromous migration.Sexually mature female eels, migrate to- wards the sea.Males follow the females. During the travel the reproductive organs ripen and the alimentary canal shrinks. They stop feed-They travel 5000-6000 kms in the sea and reach a depth of about 500 metres. Here they spawn and die after spawning. The eggs hatch into a larva called Leptocephalus. It looks like a nerium leafand is transparent. It leads a pelagic life.Certain leptocephalus larva grows to alength of 62.5 inches. After 2 or 3 years it becomes a cylindrical larva, called Elver's larva
Elver's larva, after some time, migrates to fresh-water, reaches the place where their parents lived and grows into adults. It is a mystery how he young eels in the absence of their parents find their way and reach the same place wheretheir parents lived.
Migration of salmon
(Anadromous Migration)
Salmon is a marine fish. It migrates to reshwater for breeding. Hence it is an anadroaous fish and the migration is called anadromous migration. They migrate in pairs.Theytravel thousands of kilometres to reach the breeding ground. The males develop red spots and the females develop black spots.On entering freshwater, they stop feeding anddepend on the body fat for energy. On reaching the breeding ground, the female makes a saucer-like depression in the river bed and lays the eggs. Then the male releases the sperms and the eggs are fertilized. After spawning the parents return to their feeding ground. The fertilized eggs hatch into young salmons which after a few days migrate to the sea. These offspring, after attaining sexual maturity, take the same route and reach the same breeding ground for spawning.
Significance of fish migration
  1. Migration helps to find suitable feeding and spawning ground
  2. Migration gives protection from predators
  3. Migration helps in survival from extreme climatic conditions
  4. Migration increases genetic diversity
  5. it is an adaptation for the survival of species.



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