INTRODUCTION
Ever gone on a walk and seen a collection of fireflies and gotten instantly amazed at how brightly and colorfully they glow ? Well, I bet we all have. The phenomenon of this glowing is termed “Bioluminescence” and it is almost entirely a biochemical process. From fireflies to glow worms to click beetles and practically, most marine animals, bioluminescence has been a common characteristic.
Humans actually view bioluminescence as a way animals get to show off their lights but animals only light up as a result of responses to attacks or on a quest to attract a mate. It’s also a common misconception that bioluminescence is actually common on land among fireflies but in factuality, it is extremely common in the deep sea since it is so vast and thus the need for bioluminescence as a common form of communication.
Bioluminescence is the emission of light from an organism (living) to aid in its survival or multiplication. It is a biochemical process that occurs through a chemical reaction which produces light within the body of an organism. The main factor responsible for Bioluminescence in organisms is “Luciferin”. Luciferin is present as different types in different organisms. Interestingly, bioluminescent organisms possess in addition to Luciferin, an enzyme known as Luciferase which speeds up the whole chemical reaction process.
Organisms can fully control when they light up by regulating certain chemistry and brain processes depending on their present needs, food or a mate. Some organisms even contain the Luciferin in bond with oxygen (this is called a photoprotein) so they can instantly light up when a required cofactor ion such as magnesium is present. They independently choose the colour and intensity of the lights they emit.
How widely is Bioluminescence distributed ?
Bioluminescence is found basically at every point on the biosphere but only among mammals and plants. It occurs in random distribution among genera, in some cases, in some species within a specific genus and not other species in the same genus for reasons quite not so evident. About 17 phyla and 700 genera comprise species with luminous properties. Bioluminescence has been found among many fish, cephalopods, annelids, jelly fish, ostracod, just to make a few marine animals. The glow worms, fireflies, click beetles, some luminescent fungi are mainly predominant on land. Many luminous organisms however remain to be discovered.
In terms of anatomical distribution, Bioluminescence is mostly found in a key organ known as the photophore (the light producing organ) which is seen in luminous fish and very clearly in cephalopods. Reaction components important for Bioluminescence can also be found in the stomach, liver and organs of secretion of certain organisms.
Geographic distribution shows that bioluminescence is found in organisms world wide. From oceans, particularly this coral reefs and bays to the Bioluminescent bay found in Puerto Rico to the temperate regions in America, Asia and China. Bioluminescence is ubiquitous.
Biochemistry of Bioluminescence
Credit:source
Bioluminescence is as a result of the oxidation by oxygen of Luciferin by an enzyme known as Luciferase. This reaction is heavily dependent on cofactors such as magnesium, calcium or ATP depending on the organism involved. Fireflies are known to use magnesium and ATP while the photoprotein aequorin requires calcium ions which is used by the Aequorea victoria.
Addition of a cofactor such as calcium causes a quick catalysis which produces a brief flash in the Aequorea victoria but a prolonged glow is produced in fireflies by the Luciferase enzyme component. In a second step which is much slower, Luciferin is regenerated from oxyluciferin which recombined with aequorin to produce a flash.
A particular Luciferin is coelenterazine found in most vertebrates and responsible for their bioluminescence. Not all organisms can synthesize this Luciferin and some need to obtain it through diet.
Are there any specific colors of bioluminescence ?
It’s no secret that the colours of light are determined primarily by their wavelengths. Light hits our eyes and is translated into different colors depending on wavelength. The electromagnetic spectrum is made up of the visible and non-visible light spectrum. Humans can only see light in the visible region. In fact we can only see all the lights in the visible spectrum when they travel through the air above the land. But light takes a different traveling approach under water majorly because longer wavelengths can’t travel far in this environment. It is therefore of little wonder that most of the bioluminescence we see under water is in the form of blue-green light. Blue and green lights have shorter wavelengths and thus can travel easily in deep water and can also be seen. Lights of longer wavelengths such as the red light doesn’t reach the depths of the sea that’s why many deep sea animals are red and practically invisible although some organisms have evolved and developed means to emit and also detect red light.
Reasons for bioluminescence (why animals light up)
Credit:Wikipedia
Bioluminescence and it’s usefulness in Biotechnology
What are the questions that remain regarding bioluminescence ?
REFERENCES
IMAGE SOURCE
All images used here, are free images from Photopin via wikicommon and flickr
The names of the original owners of the photos are also recognized as seen underneath each image.
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