during the first section we discussed basics of marine science. now we’ll begin taking a look at...

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• During the first sect we discussed basics marine science. • Now we’ll begin takin a look at marine life all of it’s diversity

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Page 1: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

• During the first section we discussed basics of marine science.

• Now we’ll begin taking a look at marine life and all of it’s diversity.

Page 2: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 3: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

The MicrobialWorld

Page 4: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 5: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Introduction

• We begin our survey of ocean life with the smallest of marine organisms, the bacteria and archea.

• Both groups contain members which are capable of photosynthesis an are known as primary producers.

• These primary producers are responsible for directly or indirectly feeding most marine organisms.

Page 6: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Whale shark, Rhincodon typusWhale shark, Rhincodon typus

From the largest…From the largest…

Page 7: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

To the smallest…

Octopus larvaeOctopus larvae

Page 8: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Prokaryotes

• The first organisms we will consider will be the prokaryotes.

• Prokaryotes are the smallest, simplest (and oldest) organisms around.

• Unlike other animals we will study, prokaryotes lack a nucleus.

• Two main categories of prokayotes are Archea and Bacteria

Page 9: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

• Marine bacteria take on many shapes, including spheres such as Thiomargarita namibiensis, a benthic bacteria which can be seen with the naked eye.

• Other shapes include rods, rings and spirals.

• Some may form into large calcium containing mounds (stromatolites).

• Still others break down organics and cycle nutrients. Stromatolites, Exuma Cays, B.I

Page 10: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 11: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Life and Death

• Perhaps one of the most interesting evolutions of bacteria cocerns the development of bioluminescence and toxins (tetrodotoxin).

• Whether used as a flashlight fish’s trick for attracting prey, or giving a good buzz to your fugu sushi, bacteria occupy some amazing niches in the marine world!

Page 12: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 13: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Cyanobacteria:Red Tide

• Planktonic spp. such as

cyanobacteria (which can

cause red tides) often multiply

very rapidly.

• The contain red pigments!

Go figure…

• Red tides (Karenia brevis)-can be caused by

dinoflagellates too (photo)

.

Page 14: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Archaea: Extreme ConditionsArchaea: Extreme Conditions

• Archaea are similar to bacteria, but they are able to tolerate conditions most other bacteria wouldn’t be caught dead around...

okay, maybe they would be caught dead hear!

• Some are able to tolerate temperatures near hydrothermal vents (176°F, 80°C).

• Archaea are similar to bacteria, but they are able to tolerate conditions most other bacteria wouldn’t be caught dead around...

okay, maybe they would be caught dead hear!

• Some are able to tolerate temperatures near hydrothermal vents (176°F, 80°C).

Page 15: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Prokaryotic Metabolism

Page 16: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

How do you eat??

• Many bacteria (autotrophs) are perfectly capable of feeding themselves, making their own organic compounds by photo- or chemosynthesis.

• Bacterial photosynthesis can be different than that found in plants (i.e. you might produce S instead of O2).

• Some autotrophs which produce methane as products are being used to meet our energy needs.

Page 17: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

How do you eat (cont.)??

• Bacteria which utilize other sources of carbon (organics) to exist are known as heterotrophs.

• Many heterotrophs are involved in decay processes and some even exist in anoxic (no O2) conditions.

• Still others are actively fixing nitrogen from gas to molecules which other animals can use as food during primary production.

Page 18: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Unicellular Algae• Being composed of one cell isn’t an evolutionary

dead end.

• Alagae, Diatoms, Dinoflagellates, and Radiolarans all have been aound for millions of years (if not billions).

• Being eukaryotic, unicellular organisms such as these use a variety of methods to eat, metabolize, and reproduce.

• As a group these organisms are known as Protist!

Page 19: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

• Diatoms contain many organelles that enable them to exist under potentially harsh conditions.

• Most diatoms constist of strikingly delicate outter shells of SiO2 (frustules) which provide limited protection and light penetration.

Page 20: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Diatoms reproduce asexually (cell division) and sexually (auxospore), depending on external conditions.

Page 21: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Dinoflagellate, Gonyaulax polyedra

Dinoflagellates exhibit two flagella which permit movement.

Groove

Theca

One flagella is located within thegroove and the otheris located at the lower end (not visible).

Page 22: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Slilicoflagellates are characterized by star-shaped internalskeletons. Some may be used for aging marine sediments.

Page 23: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Still others, like these Coccolithophorids are surrounded by shells of calcium carbonate (CaCO3) and are responsible for

significant primary production!

Umbilicosphaera sibogae

Page 24: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

• Some eukaryotes are more like animals than like plants!

• In fact, having a single cell is about the only thing that these critters have in common with other eukaryotes we have observed.

• Foraminiferans and radiolarans

utilize specialized pseudopodia

(spine-like projections) to capture food.

Page 25: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

The outer shell, or test,is made of CaCO3 and serves as a protectivestructure.

Page 26: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Ciliates are protozoans which utilize cillia for feeding and in some cases locomotion.

Page 27: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 28: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity

Bahia Fosforescente, Puerto Rico

At night this bay is illuminated by Pyrodinium bahamense, a phosphorescent dinoflagellate.

Page 29: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 30: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity
Page 31: During the first section we discussed basics of marine science. Now we’ll begin taking a look at marine life and all of it’s diversity