A recent article written by Catharine Paddock PhD was published by Medical News Today describing the connection between an extended lifespan and exposure to certain temperatures. The research for the study must be credited to the Marine Biological Laboratory in Woods Hole, MA. The MBL is affiliated with The University of Chicago. The full report can be found in the journal Experimental Gerontology. Fruit flies are commonly used in genetic testing, however in this particular study, rotifers were examined. Rotifers have many characteristics that make them more practical than fruit flies. One of those beneficial features are their transparent bodies which allow scientists to observe their inner parts with ease. The health benefits of cold temperatures have been known for some time in the biohacking world. These benefits include fat loss, reduced inflammation, improved quality of sleep, increased lifespan and much more. This study concentrated on the claim that cold exposure increased a person's lifespan. It is thought that cold increases ones lifespan by way of slowing the metabolic rate which in turn produces less byproducts such as reactive oxidative species (ROS). This claim was put to the test in 11 different strains of rotifers. The results of this test was surprisingly wide ranged. It was concluded that exposure to cold temperatures may improve the quality of ones life for a longer period of time. However the effect on the longevity of ones lifespan may be varied depending on the genetic makeup of each individual.
Personally, I strongly dislike the cold. I prefer hot sunny days so much so that I fully intend to move to Arizona when I complete school. However, I do enjoy learning and implementing new health "hacks" into my life. I have always considered attempting the cold shower tactic but could never muster up the courage. When I came across this article, I was hoping it would prove that some people are just not "built" for the cold. To my dismay, the study proved that whether or not it expands the length of your life it will definitely improve the quality. I supposed it's time to take a deep breath and go in for the plunge.
Showing posts with label rotifer. Show all posts
Showing posts with label rotifer. Show all posts
Thursday, January 31, 2019
Friday, April 15, 2016
Gene Scavenger
The only way to achieve genetic variation in a genome was previously thought to be solely through sexual reproduction. However, there is one species that proves this thought untrue. This species is a microscopic animal known as the rotifer. Rotifers are known to reproduce in an asexual manner, meaning that the female passes all of her genes onto her offspring because her gametes never undergo meiosis, and no fertilization event occurs. Recently the sequencing of the genome of this microscopic animal revealed that an unexpected 8% of the species genome was foreign. These foreign genes varied but were primarily characteristic of fungi and bacteria. These foreign genes from different species gave the rotifer’s traits uncommon to them such as the ability to break down toxins and utilizing new foodstuffs. But how did this species come to obtain this foreign DNA?
Rotifer are known to inhabit shallow ponds or puddles, however, when the pond dries up the rotifer dehydrates and shrinks and pieces of DNA are broken, but the individual does not die. They in fact can stay in this sort of dormant form for very long periods of time and can be blown to different pools of water where they will rehydrate and repair their broken parts of DNA. It would appear that during these dehydration events holes are made in the cell membrane and DNA can be sucked up into the cell through these holes utilizing horizontal transfer. Their ability to quickly and efficiently repair broken DNA after dehydration makes incorporating these foreign pieces of DNA very easy. The new DNA lines up with the appropriate DNA sequence in the already existing DNA, so potentially old genes can be replaced with new ones. This appears to have been done by this species for centuries, and may be exactly why an organism that reproduces asexually has existed for so long. They receive the necessary genetic variation without exerting all the energy of sexual reproduction.
These small organisms developed a way to increase their genetic variation in the absence of sexual reproduction. Due to this they have created doubt that sexual reproduction is essential in evolutionary adaptation. This adaptation in this microscopic animal is quite intriguing.
Labels:
Adaptation,
DNA,
Evolution,
Genetic Variation,
rotifer
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