Difference between revisions of "AY Honors/Coral Reefs/Answer Key"
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− | <noinclude><translate><!--T: | + | <section begin="Body" /> |
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=1}} | ||
+ | <noinclude><translate><!--T:36--> | ||
</noinclude> | </noinclude> | ||
− | + | <!-- 1. What is a reef? Identify two types of "building blocks" of reefs. --> | |
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Reefs form in sea water and are a build-up of the remains of the hard parts of animals – mostly calcium carbonate. Some reefs can be over 30 m thick. Some reefs are formed from layers of oysters (or other species of mollusk) growing on top of each other – called oyster reefs. Some reefs are composed of layers of coral skeletons growing on top of each other – called coral reefs. | Reefs form in sea water and are a build-up of the remains of the hard parts of animals – mostly calcium carbonate. Some reefs can be over 30 m thick. Some reefs are formed from layers of oysters (or other species of mollusk) growing on top of each other – called oyster reefs. Some reefs are composed of layers of coral skeletons growing on top of each other – called coral reefs. | ||
− | ==2 | + | <!--T:37--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 1 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=2}} | ||
+ | <noinclude><translate><!--T:38--> | ||
+ | </noinclude> | ||
+ | <!-- 2. Answer the following: --> | ||
− | == | + | <!--T:39--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=2a}} <!--T:4--> | ||
+ | <noinclude><translate><!--T:40--> | ||
+ | </noinclude> | ||
Corals are animals. | Corals are animals. | ||
− | == | + | <!--T:41--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 2a --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=2b}} <!--T:5--> | ||
+ | <noinclude><translate><!--T:42--> | ||
+ | </noinclude> | ||
Corals are in the phylum Cnidaria (the C is silent - nigh dare ia). Some forms of Cnidaria are mobile and swim around like jellyfish, other types are sessile which means they are anchored to the substrate and do not move around. These are the corals that build coral reefs. | Corals are in the phylum Cnidaria (the C is silent - nigh dare ia). Some forms of Cnidaria are mobile and swim around like jellyfish, other types are sessile which means they are anchored to the substrate and do not move around. These are the corals that build coral reefs. | ||
− | == | + | <!--T:43--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 2b --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=2c}} <!--T:6--> | ||
+ | <noinclude><translate><!--T:44--> | ||
+ | </noinclude> | ||
Only the top layer of a reef is alive. As we will learn later, corals require sunlight to live so only those on top can survive. | Only the top layer of a reef is alive. As we will learn later, corals require sunlight to live so only those on top can survive. | ||
− | == | + | <!--T:45--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 2c --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=2d}} <!--T:7--> | ||
+ | <noinclude><translate><!--T:46--> | ||
+ | </noinclude> | ||
Hard corals are soft-bodied animals which secrete a hard calcium carbonate layer around them and have multiples of 8 tentacles used in feeding. These are the reef builders. Soft corals are soft bodied animals which secrete very little calcium carbonate so they are not hard, but can sway back and forth in the ocean currents. Soft corals have multiples 6 tentacles used in feeding. | Hard corals are soft-bodied animals which secrete a hard calcium carbonate layer around them and have multiples of 8 tentacles used in feeding. These are the reef builders. Soft corals are soft bodied animals which secrete very little calcium carbonate so they are not hard, but can sway back and forth in the ocean currents. Soft corals have multiples 6 tentacles used in feeding. | ||
− | ==3. Where are coral reefs found? Describe the conditions that are needed for healthy coral growth. | + | <!--T:47--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 2d --> | ||
+ | {{CloseReq}} <!-- 2 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=3}} | ||
+ | <noinclude><translate><!--T:48--> | ||
+ | </noinclude> | ||
+ | <!-- 3. Where are coral reefs found? Describe the conditions that are needed for healthy coral growth. --> | ||
Coral reefs are found between 30 degrees north and south of the equator. | Coral reefs are found between 30 degrees north and south of the equator. | ||
+ | [[File:Coral reef locations.jpg|thumb|400px|Coral reefs around the world]] | ||
<!--T:9--> | <!--T:9--> | ||
Line 37: | Line 62: | ||
# Shallow water (so that there is enough sunlight), | # Shallow water (so that there is enough sunlight), | ||
# Saltwater | # Saltwater | ||
+ | {{clear}} | ||
− | ==4. Describe and/or draw a diagram showing at least three different types of coral reefs.== <!--T: | + | <!--T:49--> |
− | + | <noinclude></translate></noinclude> | |
− | + | {{CloseReq}} <!-- 3 --> | |
− | + | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=4}} | |
− | + | <noinclude><translate><!--T:50--> | |
− | + | </noinclude> | |
− | ==5 | + | <!-- 4. Describe and/or draw a diagram showing at least three different types of coral reefs. --> |
+ | [[File:Coral reef diagram.jpg|thumb|200px|coral reef diagram]] | ||
+ | [[File:Atoll forming-Fringing reef.png|thumb|200px|Atoll Forming-fringing reef]] | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=4a}} | ||
+ | <noinclude><translate><!--T:51--> | ||
+ | </noinclude> | ||
+ | Fringing Reefs: grow near the shoreline of continents and islands and are usually separated from the land by a shallow body of water called a lagoon. | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 4a --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=4b}} | ||
+ | <noinclude><translate><!--T:52--> | ||
+ | </noinclude> | ||
+ | Barrier Reefs: similar to fringing reefs but are further away from shore often grow along the edge of the continental shelf. If they grow to the surface, ships cannot get through to the mainland and thus are called "barriers". The resulting lagoons are deeper and larger than in fringing reefs. | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 4b --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=4c}} | ||
+ | <noinclude><translate><!--T:53--> | ||
+ | </noinclude> | ||
+ | Atolls: a fringe reef that grows around a small island but then the island erodes away or sinks which leaves a ring of reef surrounding a lagoon. | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 4c --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=4d}} | ||
+ | <noinclude><translate><!--T:54--> | ||
+ | </noinclude> | ||
+ | Patch Reef: an isolated patch of reef that grows up from the floor of the lagoon of a barrier reef. They seldom reach the surface of the water. | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 4d --> | ||
+ | {{CloseReq}} <!-- 4 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=5}} | ||
+ | <noinclude><translate><!--T:56--> | ||
+ | </noinclude> | ||
+ | <!-- 5. Define zooxanthellae. --> | ||
Zooxanthellae are microscopic algae that live inside soft parts of corals. The different species of zooxanthellae give the corals their color (otherwise they would look white – the color of calcium carbonate). The calcium carbonate shell of the coral protects the delicate algae. The coral benefits by eating some of the sugar that the algae make using energy from the sun. This is a great example of symbiosis – both the coral and the algae benefit by living together. | Zooxanthellae are microscopic algae that live inside soft parts of corals. The different species of zooxanthellae give the corals their color (otherwise they would look white – the color of calcium carbonate). The calcium carbonate shell of the coral protects the delicate algae. The coral benefits by eating some of the sugar that the algae make using energy from the sun. This is a great example of symbiosis – both the coral and the algae benefit by living together. | ||
− | ==6. Answer the following questions about how corals get their food: | + | <!--T:57--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 5 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=6}} | ||
+ | <noinclude><translate><!--T:58--> | ||
+ | </noinclude> | ||
+ | <!-- 6. Answer the following questions about how corals get their food: --> | ||
− | == | + | <!--T:59--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=6a}} <!--T:13--> | ||
+ | <noinclude><translate><!--T:60--> | ||
+ | </noinclude> | ||
At night, the corals extend their soft tentacles out into the water to trap and collect food that is floating in the water. They use nematocytes which are microscopic harpoons loaded with venom to catch and stun their prey before eating it. | At night, the corals extend their soft tentacles out into the water to trap and collect food that is floating in the water. They use nematocytes which are microscopic harpoons loaded with venom to catch and stun their prey before eating it. | ||
− | == | + | <!--T:61--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 6a --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=6b}} <!--T:14--> | ||
+ | <noinclude><translate><!--T:62--> | ||
+ | </noinclude> | ||
Corals grow a garden of algae and eat sugars and other molecules produced by the garden of algae growing in their body (the zooxanthella). This is why corals can only grow in shallow water where there is enough sunlight for the zooxanthella to grow and do photosynthesis. It is also why only the top layer of a coral reef is alive. If another coral grows over top, the one below will die because its zooxanthella will not get any light and there won’t be food for the coral on the bottom. | Corals grow a garden of algae and eat sugars and other molecules produced by the garden of algae growing in their body (the zooxanthella). This is why corals can only grow in shallow water where there is enough sunlight for the zooxanthella to grow and do photosynthesis. It is also why only the top layer of a coral reef is alive. If another coral grows over top, the one below will die because its zooxanthella will not get any light and there won’t be food for the coral on the bottom. | ||
− | == | + | <!--T:63--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 6b --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=6c}} <!--T:32--> | ||
+ | <noinclude><translate><!--T:64--> | ||
+ | </noinclude> | ||
By filtering all the food particles out of the water (a above), the seawater around a reef is very clear. | By filtering all the food particles out of the water (a above), the seawater around a reef is very clear. | ||
− | ==7. Identify five corals that can be found on a reef.== <!--T: | + | <!--T:65--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 6c --> | ||
+ | {{CloseReq}} <!-- 6 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=7}} | ||
+ | <noinclude><translate><!--T:66--> | ||
+ | </noinclude> | ||
+ | <!-- 7. Identify five corals that can be found on a reef. --> | ||
+ | <gallery mode=packed> | ||
+ | File:Mushroom Coral (Fungia) Top Macro 91.JPG|''[[w:Fungia|Fungia]]'' sp. skeleton | ||
+ | File:Eusmilia fastigiata large.jpg|Polyps of ''[[w:Eusmilia fastigiata|Eusmilia fastigiata]]'' | ||
+ | File:Dendrogyra cylindrus (pillar coral) (San Salvador Island, Bahamas) 1 (15513345363).jpg|[[w:Pillar coral|Pillar coral]], ''Dendrogyra cylindricus'' | ||
+ | File:Brain coral.jpg|[[w:Brain coral|Brain coral]], ''[[w:Diploria labyrinthiformis|Diploria labyrinthiformis]]'' | ||
+ | File:Expl9356 (14318959907).jpg|''Paragorgia sp'' | ||
+ | File:Expl5235 (9667148758).jpg|Yellow octocoral with a white stylaster coral in left background | ||
+ | </gallery> | ||
+ | |||
+ | <!--T:67--> | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 7 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=8}} | ||
+ | <noinclude><translate><!--T:68--> | ||
+ | </noinclude> | ||
+ | <!-- 8. Identify ten fish that live in a coral reef. --> | ||
+ | 25% of the animals in oceans are found in reefs, although reefs account for only about 1% of the ocean surface area. | ||
− | == | + | <!--T:69--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 8 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=9}} | ||
+ | <noinclude><translate><!--T:70--> | ||
+ | </noinclude> | ||
+ | <!-- 9. Identify five species of non-coral invertebrates that might live on a reef. --> | ||
+ | stars, jellyfish, anemones, sand dollars, sea cucumbers, and many more. | ||
− | + | <!--T:34--> | |
+ | <gallery mode=packed> | ||
+ | File:CrownofThornsStarfish Fiji 2005-10-12.jpg| Crown of Thorns Starfish | ||
+ | [[File:Holothuria fuscopunctata.jpg|thumb|Holothuria fuscopunctata]] Sea Cucumber Culcitanovguineae | ||
+ | File:Holothuria fuscopunctata.jpg|''Sea Cucumber Holothuria fuscopunctata'' | ||
+ | File:Giant clam or Tridacna gigas.jpg|''Giant clam or Tridacna gigas'' | ||
+ | File:Reef0666 - Flickr - NOAA Photo Library.jpg|''Giant Triton'' | ||
+ | File:Chromodoris lochi (AA3).jpg|Nudibranch Chromodoria Iochi | ||
+ | </gallery> | ||
− | ==10. Define "bleaching" as it pertains to corals, and explore the impact this has on the reef. | + | <!--T:71--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 9 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=10}} | ||
+ | <noinclude><translate><!--T:72--> | ||
+ | </noinclude> | ||
+ | <!-- 10. Define "bleaching" as it pertains to corals, and explore the impact this has on the reef. --> | ||
When conditions change (temperature, pH, light levels salinity, etc.) the corals dump out their colorful zooxanthella and become white (the color of their calcium carbonate shells); then they take in new zooxanthella with different characteristics that might thrive better than the previous zooxanthella. It’s just a "gamble" to try to survive better with a different genetic combination. For some corals, the gamble is lost and they die. For other’s the new Zooxanthella do make a difference and the remaining coral takes over the reef building on top of the old coral. Climate change is resulting in increased temperature in the coral reef areas and is causing a lot of bleaching. Too much bleaching can cause the reef to die because it simply can’t keep up. | When conditions change (temperature, pH, light levels salinity, etc.) the corals dump out their colorful zooxanthella and become white (the color of their calcium carbonate shells); then they take in new zooxanthella with different characteristics that might thrive better than the previous zooxanthella. It’s just a "gamble" to try to survive better with a different genetic combination. For some corals, the gamble is lost and they die. For other’s the new Zooxanthella do make a difference and the remaining coral takes over the reef building on top of the old coral. Climate change is resulting in increased temperature in the coral reef areas and is causing a lot of bleaching. Too much bleaching can cause the reef to die because it simply can’t keep up. | ||
− | ==11. Identify at least one invasive species and how it affects reefs. | + | <!--T:73--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 10 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=11}} | ||
+ | <noinclude><translate><!--T:74--> | ||
+ | </noinclude> | ||
+ | <!-- 11. Identify at least one invasive species and how it affects reefs. --> | ||
+ | Lionfish have venomous spines and frilly fins. They are native to the Indian and Pacific Oceans. They were dumped into the Atlantic Ocean by pet owners that did not want to keep them anymore. They thrive in the coral reefs in the Atlantic where they eat many fish and invertebrates that are a crucial part of the reef ecosystem. They have no natural enemies so they continue to outgrow the reefs. | ||
− | + | <!--T:35--> | |
+ | Nudibranches eat the corals. Hawaii is experiencing a huge invasion by Nudibranches, many of which were once pets in tropical aquariums. | ||
− | == | + | <!--T:75--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 11 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=12}} | ||
+ | <noinclude><translate><!--T:76--> | ||
+ | </noinclude> | ||
+ | <!-- 12. Why are reefs an important community? List at least three ways that you can help protect a reef. --> | ||
+ | Corals are one of the most biologically diverse biomes in the world and one of the most productive. Young fish from the ocean hide in the corals to avoid their enemies until they are large enough to survive on their own. The coral reefs help protect the inner shorelines from erosion by large waves from the ocean. Coral caused shipwrecks of explores and merchant ships offshore, but now provide tourism and recreation which help the local economies. It’s always a good thing when we learn about and care for God’s creation – that’s a job we were all given to do in the Garden of Eden and it still applies to us today. | ||
− | + | <!--T:33--> | |
+ | # Don’t pollute – silt covers the coral and they can’t get enough sunlight | ||
+ | # Don’t collect live coral | ||
+ | # Don’t touch live coral – you damage the soft tentacles and they can’t feed at night. | ||
− | == | + | <!--T:77--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 12 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=13}} | ||
+ | <noinclude><translate><!--T:78--> | ||
+ | </noinclude> | ||
+ | <!-- 13. Prepare an object lesson about an animal that lives in the reef. Present this lesson at a club worship or similar function. Be sure to include a Bible text in this presentation. --> | ||
+ | There are many topics that lend to an excellent object lesson. Let your imagination run! | ||
− | == | + | <!--T:79--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 13 --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14}} | ||
+ | <noinclude><translate><!--T:80--> | ||
+ | </noinclude> | ||
+ | <!-- 14. Do at least two of the following: --> | ||
− | == | + | <!--T:81--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14a}} <!--T:23--> | ||
+ | <noinclude><translate><!--T:82--> | ||
+ | </noinclude> | ||
− | == | + | <!--T:83--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14a --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14b}} <!--T:24--> | ||
+ | <noinclude><translate><!--T:84--> | ||
+ | </noinclude> | ||
− | == | + | <!--T:85--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14b --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14c}} <!--T:25--> | ||
+ | <noinclude><translate><!--T:86--> | ||
+ | </noinclude> | ||
− | == | + | <!--T:87--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14c --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14d}} <!--T:26--> | ||
+ | <noinclude><translate><!--T:88--> | ||
+ | </noinclude> | ||
− | == | + | <!--T:89--> |
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14d --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14e}} <!--T:27--> | ||
+ | <noinclude><translate><!--T:90--> | ||
+ | </noinclude> | ||
+ | <!--T:91--> | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14e --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14f}} <!--T:28--> | ||
+ | <noinclude><translate><!--T:92--> | ||
+ | </noinclude> | ||
+ | |||
+ | <!--T:93--> | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14f --> | ||
+ | {{ansreq|page={{#titleparts:{{PAGENAME}}|2|1}}|num=14g}} <!--T:29--> | ||
+ | <noinclude><translate><!--T:94--> | ||
+ | </noinclude> | ||
+ | |||
+ | <!--T:95--> | ||
+ | <noinclude></translate></noinclude> | ||
+ | {{CloseReq}} <!-- 14g --> | ||
+ | {{CloseReq}} <!-- 14 --> | ||
+ | <noinclude><translate></noinclude> | ||
==References== <!--T:30--> | ==References== <!--T:30--> | ||
+ | <noinclude></translate></noinclude> | ||
− | + | [[Category:Adventist Youth Honors Answer Book/Do at home{{GetLangSuffix}}]] | |
− | [[Category:Adventist Youth Honors Answer Book | + | {{CloseHonorPage}} |
− |
Latest revision as of 16:54, 3 January 2023
1
Reefs form in sea water and are a build-up of the remains of the hard parts of animals – mostly calcium carbonate. Some reefs can be over 30 m thick. Some reefs are formed from layers of oysters (or other species of mollusk) growing on top of each other – called oyster reefs. Some reefs are composed of layers of coral skeletons growing on top of each other – called coral reefs.
2
2a
Corals are animals.
2b
Corals are in the phylum Cnidaria (the C is silent - nigh dare ia). Some forms of Cnidaria are mobile and swim around like jellyfish, other types are sessile which means they are anchored to the substrate and do not move around. These are the corals that build coral reefs.
2c
Only the top layer of a reef is alive. As we will learn later, corals require sunlight to live so only those on top can survive.
2d
Hard corals are soft-bodied animals which secrete a hard calcium carbonate layer around them and have multiples of 8 tentacles used in feeding. These are the reef builders. Soft corals are soft bodied animals which secrete very little calcium carbonate so they are not hard, but can sway back and forth in the ocean currents. Soft corals have multiples 6 tentacles used in feeding.
3
Coral reefs are found between 30 degrees north and south of the equator.
They require:
- Warm water
- Shallow water (so that there is enough sunlight),
- Saltwater
4
4a
Fringing Reefs: grow near the shoreline of continents and islands and are usually separated from the land by a shallow body of water called a lagoon.
4b
Barrier Reefs: similar to fringing reefs but are further away from shore often grow along the edge of the continental shelf. If they grow to the surface, ships cannot get through to the mainland and thus are called "barriers". The resulting lagoons are deeper and larger than in fringing reefs.
4c
Atolls: a fringe reef that grows around a small island but then the island erodes away or sinks which leaves a ring of reef surrounding a lagoon.
4d
Patch Reef: an isolated patch of reef that grows up from the floor of the lagoon of a barrier reef. They seldom reach the surface of the water.
5
Zooxanthellae are microscopic algae that live inside soft parts of corals. The different species of zooxanthellae give the corals their color (otherwise they would look white – the color of calcium carbonate). The calcium carbonate shell of the coral protects the delicate algae. The coral benefits by eating some of the sugar that the algae make using energy from the sun. This is a great example of symbiosis – both the coral and the algae benefit by living together.
6
6a
At night, the corals extend their soft tentacles out into the water to trap and collect food that is floating in the water. They use nematocytes which are microscopic harpoons loaded with venom to catch and stun their prey before eating it.
6b
Corals grow a garden of algae and eat sugars and other molecules produced by the garden of algae growing in their body (the zooxanthella). This is why corals can only grow in shallow water where there is enough sunlight for the zooxanthella to grow and do photosynthesis. It is also why only the top layer of a coral reef is alive. If another coral grows over top, the one below will die because its zooxanthella will not get any light and there won’t be food for the coral on the bottom.
6c
By filtering all the food particles out of the water (a above), the seawater around a reef is very clear.
7
8
25% of the animals in oceans are found in reefs, although reefs account for only about 1% of the ocean surface area.
9
stars, jellyfish, anemones, sand dollars, sea cucumbers, and many more.
10
When conditions change (temperature, pH, light levels salinity, etc.) the corals dump out their colorful zooxanthella and become white (the color of their calcium carbonate shells); then they take in new zooxanthella with different characteristics that might thrive better than the previous zooxanthella. It’s just a "gamble" to try to survive better with a different genetic combination. For some corals, the gamble is lost and they die. For other’s the new Zooxanthella do make a difference and the remaining coral takes over the reef building on top of the old coral. Climate change is resulting in increased temperature in the coral reef areas and is causing a lot of bleaching. Too much bleaching can cause the reef to die because it simply can’t keep up.
11
Lionfish have venomous spines and frilly fins. They are native to the Indian and Pacific Oceans. They were dumped into the Atlantic Ocean by pet owners that did not want to keep them anymore. They thrive in the coral reefs in the Atlantic where they eat many fish and invertebrates that are a crucial part of the reef ecosystem. They have no natural enemies so they continue to outgrow the reefs.
Nudibranches eat the corals. Hawaii is experiencing a huge invasion by Nudibranches, many of which were once pets in tropical aquariums.
12
Corals are one of the most biologically diverse biomes in the world and one of the most productive. Young fish from the ocean hide in the corals to avoid their enemies until they are large enough to survive on their own. The coral reefs help protect the inner shorelines from erosion by large waves from the ocean. Coral caused shipwrecks of explores and merchant ships offshore, but now provide tourism and recreation which help the local economies. It’s always a good thing when we learn about and care for God’s creation – that’s a job we were all given to do in the Garden of Eden and it still applies to us today.
- Don’t pollute – silt covers the coral and they can’t get enough sunlight
- Don’t collect live coral
- Don’t touch live coral – you damage the soft tentacles and they can’t feed at night.
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There are many topics that lend to an excellent object lesson. Let your imagination run!
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