Mollusca and Annelida. Relationship of Mollusca and Annelida Similar patterns of embryology True...

61
Mollusca and Annelida

Transcript of Mollusca and Annelida. Relationship of Mollusca and Annelida Similar patterns of embryology True...

Page 1: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Mollusca and Annelida

Page 2: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Relationship of Mollusca and Annelida

Similar patterns of embryologyTrue coelomFluid filled cavity within the mesoderm

Page 3: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Advantages of a Coelom

Digestion independent of locomotionCirculatory system functions without interference from other organsHydrostatic skeleton against which the muscles can contract

Page 4: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Trochophore Larvae

Larval Similarities between Annelids and MollusksPear shaped ciliated larvaeCilia on both ends and middleDispersal of offspringAdvantage for shell burdened adultsTerrestrial forms develop within the egg; Not free-living

Page 5: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Importance of Mollusks

100,000 speciesSome are filter feedersOthers are active predatorsSome are alternative parasitic hostsSome cause considerable economic damage to cropsOthers are valued by collectors

Page 6: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

CharacteristicsTrue coelomDistinct partsMuscular footHeadVisceral massBilateral symmetryOne or more shells in most species

Page 7: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Organ Systems

RespiratoryDigestiveCirculatoryExcretoryNervousReproduction

Page 8: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Body Plan

Muscular foot for locomotionHead contains mouth, sense organs and central gangliaVisceral mass containing heart, digestive, excretory, and reproductive organs

Page 9: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Mantle

Epidermal layer secretes shell Covers visceral mass

Page 10: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Shell

Calcium carbonate shells evolved earlyAdaptation to protect soft body from predationReduces surface area for gas exchange

Page 11: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Gill

Large surface areaRich supply of bloodSpecialized for gas exchangeProtected within mantle cavityBetween mantle and visceral mass

Page 12: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Class Polyplacophora

ChitonsShells divided into 8 overlapping plates

Page 13: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Class Gastropoda

75,000 speciesSnails, slugs, abalones, nudibranchs, and conchesSingle shell (valve) or none

Page 14: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Body Plan

Based on ancestral mollusksTorsion results from twisting during larval developmentVisceral mass twists 180 degrees in relation to the headMantle cavity in front of animalAllows head to be drawn into mantle cavity

Page 15: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Snails

Wide variety of habitatsTerrestrialAquatic (freshwater and marine)

Page 16: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Respiration - Aquatic Snails

Respire through gills in mantle cavity

Page 17: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Respiration - Terrestrial Snails

Mantle cavity acts as modified lungAllows gas exchange with airMembrane must be keep moist to allow gas exchangeRetreats into shell and seals opening with mucus in dry environment

Page 18: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Circulation

Open circulatory systemBlood does not circulate entirely within vesselsCollected from gills (lungs) and pumped through heartReleased directly into spaces in the tissue (hemocoel)Returned via gills or lungs to heart

Page 19: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Digestion

Saw like radula with flexible tongue like strip covered with chitinous teethScrape up algae (aquatic)Saw off leaves

Page 20: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Reproduction

Land snails hermaphroditicMost aquatic species have distinct sexesInternal fertilization

Page 21: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Movement

Muscular contractions of the footGlands in foot secrete layer of mucus

Page 22: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Sensory

2 eyes on retractable tentacles

Page 23: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Other Gastropods

Slugs Lack shellsMoist environment

Oyster DrillsDrill like radula

Page 24: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Bivalvia

Clams, oysters, scallops, and shipwormsSessileFilter feeders2 valves (shells)Muscular footLack distinct head regionAnterior ganglia

Page 25: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Shell

3 layers secreted by mantle

Thin outer layerProtects shell against acidic conditions

Thick middle layerComposed of calcium carbonate crystalsStrengthens shell

Smooth inner layerProtects animals soft body

Page 26: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Mantle secretes mother of pearlHinge connects the two valvesPowerful adductor muscles

Page 27: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Clams

Adapted for filter feedingBeating cilia on gills setup currentWater enters incurrent siphonPropelled over gillsExit through excurrent siphon

Page 28: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Digestion

Food trapped in sticky mucusCilia moves mucus into mouth

Page 29: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Respiration

Water passes over gillsOxygen diffuses into bloodCarbon dioxide diffuses out

Page 30: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Nervous

Cells along edge of mantle respond to light and touchGanglia located above mouth, in the digestive system, and footConnected by 2 pairs of long nerve cords

Page 31: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Reproduction

Separate sexesShed sperm and eggs into waterExternal fertilizationZygote -> trochophore larvaeLarvae settles to bottom -> adult

Page 32: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Other BivalvesOystersPermanently attached to substrateScallops move by jet propulsionTeredo (shipworm) bores into driftwoodSymbiotic protozoa that digests cellulose

Page 33: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Cephalopoda

Octopuses, squids, cuttlefish, and chambered nautilusesWell developed headProminent foot divided into tentaclesFree swimmingPredatoryStrong suckersRadula and sharp beak

Page 34: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Closed circulatory systemBlood circulates entirely within blood vesselsAllows for high metabolic rate

Page 35: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

SquidsMarineLargest invertebrate (20 M; 3,360 kg)Large complex brainHighly developed nervous systemLarge pair of vertebrate like eyes

Page 36: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Ten tentaclesLargest pair used to capture preySmaller pairs force prey into mouthMuscular mantel propels by pumping water through siphonExcrete inky substance when threatened

Page 37: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Chromatophores - change colorInternal fertilizationLay mass of gelatinous encased eggsMaternal protection until hatching

Page 38: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Octopus

Eight tentaclesSimilar to squidsScrawl along bottom looking for prey

Page 39: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Chambered Nautilus

Retain exterior shellLives in outer chamber of its shellSecretes gas into other chamberRegulates buoyancy

Page 40: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Annelida

Segmented wormsFeather worms, earthworms, and leechesTrue coelomBody divided into segments (metamerism)

Page 41: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Some segments fusedWell developed organ systemMost have external bristles (setae)

Page 42: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Classification

Based on number of setae and presence or absence of parapodia (fleshy appendages)

Page 43: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Class Oligochaeta No parapodia and few setae

Class HirudineaNo setae or parapodia

Class PolychaetaMany setae and parapodia

Page 44: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Class OligochaetaEarthworms

Page 45: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Structure

More than 100 segmentsSegments separated by partitions that divide coelomSegments identical except when specialized and fussedAnterior and posterior ends

Page 46: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Cephalization specialized for burrowingHead contains sense organsCircular and longitudinal muscles

Page 47: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Movement

Setae anchored during movementCircular muscles contractHydrostatic pressure increases in anterior coelomic cavities

Page 48: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Body elongates pushing head forwardAnterior setae grip groundLongitudinal muscles contractPosterior pulled alongCoelomic divisions allow simultaneous contraction and expansion of segments  

Page 49: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Feeding

Feed on organic matter in soilDigest organic matterWastes and undigested soil eliminated as castingLoosens and aerates soil

Page 50: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Digestion

Soil sucked in by pharynx -> Esophagus ->Crop (storage) ->Gizzard (grinds soil releasing organic matter) -> Intestines (nutrients absorbed) Intestines (nutrients absorbed)

Page 51: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Circulation

Transport oxygen, nutrients, and wastesFlow of blood toward posterior via ventral blood vesselFlow of blood toward anterior via dorsal blood vessel

Page 52: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

5 pair of aortic arches link vessels near anteriorSmaller vessels branch into segmentsContraction of ventral vessel and aortic arches forces blood through body

Page 53: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Respiration

Lack respiratory organsOxygen and carbon dioxide diffuse across skinRequires moist skinLimited habitatSecrete mucusThin cuticle

Page 54: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Excretion

Elimination of nitrogen wastesLong tubules (nephridia) excrete wastesCoelomic fluid enters nephridium through ciliated funnel openingSome water reabsorbed by bloodRemaining fluid excreted through ventral pores

Page 55: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Nervous

Sensitive to touch, light, moisture, chemicals, temperature, and vibrationsLight receptors on head and tailSense direction

Anterior Ganglia Ventral Nerve cord

Page 56: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Most other sense organs and nerves that control muscle contractions found in individual segmentsPair of ganglia in each segment coordinate movement with adjacent segments Cerebral ganglion in headControls total body Ventral nerve cord connects brain with ganglia

Page 57: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Reproduction

HermaphroditesCannot self fertilizeWorms join head to tailForm mucus coat around bodiesEach inject sperm into mucus

Page 58: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Sperm move to seminal receptacleEggs move through oviducts to female genital poreClitellum secretes mucus and chitinous sheathWorm wiggles to slip off sheathEggs and sperm join

Page 59: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Class Polychaeta

PolychaetesMarineSome free swimming predators with strong jawsSome burrowing

Page 60: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Numerous setae projecting from parapodia used for movementSome parapodia function in respirationHave antennae and specialized mouth parts

Page 61: Mollusca and Annelida. Relationship of Mollusca and Annelida  Similar patterns of embryology  True coelom  Fluid filled cavity within the mesoderm.

Hirudinea

LeechesNo setaeAnterior and posterior sucker (walking motion)Fresh water