African
Cichlid Fishes
Summary:
African
Cichlid Fish have a very unique evolution. They are a prime example of adaptive radiation, a term used to describe a group of species that quickly
adapt and speciate from a common ancestor. Located in African Great Lakes of
the Rift Valley, these fish have evolved, and now are separated into over 1,500
unique species in only around ten million years’ time. There are over 200
species in Lake Victorian alone, which is only around a million years old. This rapid and enormous speciation speculated
scientists, for it seemed like the lakes doesn’t seem to lead species a chance
for ecological isolation, a factor important in a lot of speciation
occurrences.
The
fish have been successful in the lakes of Africa for several reasons. First,
the lakes were relatively uninhabited, and therefore the niches were mostly
open. Like Darwin’s finches, the fish had many possible niches to fill, so the
ones most suited for a particular niche by variation would fill it. Over time
this group would adapt to the niche, and become different enough from the
original group that it became its own species. This was helped by the different
feeding options in the lake. Now, each species has a different food source,
from algae to fish eyes. This difference in food sources let the fish species
coexist, because they weren’t competing. It helped speciation because as the population
grew, the fish had to find new foods to be able to hold the population size.
The individuals who branched off to new sources adapted to them, and therefore
grew different from the original species. This happens through morphological
specialization. Like Darwin’s finches, the fish adapt certain traits to more
easily obtain the food source. They develop key innovations, which are
adaptations that allow a lineage to harvest a resource that they couldn’t
previously get. For the Cichlid fish, these include both pharyngeal and oral jaws to
obtain and break down food easier and the ability to change tooth and skull
morphology to fit whatever food is available.
Another
role in the Cichlid evolution is sexual selection. This is when certain
individuals in a population have a better chance of reproduction from having
traits that attract a mate. For example, since some species of female Cichlid
prefer to mate with a colorful male, the traits for the colorfulness are more
likely to be passed down. Sexual selection changes a species overtime because
certain traits become very popular, while others therefore become rare or even
breed out entirely. This happened with the Cichlids, and it effected their
evolution.
The
African Cichlid Fish have a very unique and complex evolution, and it still
hasn’t been completely figured out as to why they speciated and evolved so
fast.
Relevance:
This
article connects to our current unit. Like Darwin’s finches, these fish are an
example of adaptive radiation. They have speciated from a common ancestor,
and now have over 1,500 different species. The article talks about how they
evolved into different niches and the way that so many different, but similar,
species could evolve from one species. The African Cichlid Fishes article
tracks their evolution, which is a topic in discussion now.
Citation:
"African Cichlid Fishes." Animal
Sciences. Ed. Allan B. Cobb. New York: Macmillan Reference USA, 2009. Science
in Context. Web. 10 Jan. 2015.
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What do you mean by "pharyngeal and oral jaws"?
ReplyDeleteThis means they have two sets of jaws. The fish have both oral jaws, like we and a lot of other animals have, and pharyngeal jaws, which lie in the throat. Since they have developed this second pair of jaws, the oral one can be used more to obtain food, like scrapping algae off of a rock. The jaws in the throat then grind and help process the food for digestion.
DeleteWhat is meant by African Cichlid fish having the ability to "change tooth and skull morphology to fit whatever food is available"?
ReplyDeleteThe article states that a few species of the African Cichlid fish are able to alter their skull and tooth shape to better fit the food situation. For example, if the fish normally eat algae, but the algae disappears, they would have to change to a different food source to survive. They might alter they way their teeth are alined or something along those lines to help them gain access to other food sources, like small fish or other plants. This ability to change the structure of their skull and teeth in response to changes in the environment is an example of a trait known as asphenotypic plasticity.
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