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Monthly Archives: February 2014
How to get the DNA splicers in pokemon X and Y – Video
Posted: February 19, 2014 at 6:43 am
How to get the DNA splicers in pokemon X and Y
in this video i will be showing you how to get the DNA splicers in Pokemon X and Y. You need this item to get black and white kyurem. This is my first video ...
By: GengarStrikes
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How to get the DNA splicers in pokemon X and Y - Video
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Maine convicted killer loses bid for DNA tests
Posted: at 6:43 am
By DAVID SHARP/Associated Press/February 18, 2014
PORTLAND, Maine (AP) A divided state supreme court on Tuesday rejected a request to order additional DNA tests on behalf of a convicted killer who claims they could show someone else shot to death his ex-girlfriend and a toddler she was baby-sitting.
Jeffrey Cookson wanted the tests done on clothes worn by another man, David Vantol, who claimed responsibility for the killings but later recanted.
In a 5-1 decision, the Maine Supreme Judicial Court upheld a judges ruling that Cookson failed to show that others hadnt had control of the items or tampered with them.
Writing for the majority, Justice Ellen Gorman said items in question didnt match exactly with what Vantol described and that the items could not be accounted for during a two-year period before they were obtained from a location owned by Cooks brother.
The point of establishing a chain of custody is to demonstrate that the evidence presented for testing is evidence that is germane to the case, and that it has not been tampered with, she wrote.
But Justice Joseph Jabar came to a contrary conclusion. In dissenting opinion, he said that the law requires some evidence of chain of custody but didnt require Cookson to eliminate every possibility of tampering.
He wrote that DNA evidence has been used both to convict and exonerate defendants.
It is incumbent on the state, in its judicial, investigative, and prosecutorial capacities, to use this unparalleled evidence where it is available, he wrote.
Cookson, who is serving two life sentences, was convicted in 2001 for the killings of Mindy Gould, 20, and 21-month-old Treven Cunningham, both of whom were shot in the back of the head while they were lying face down in a bedroom in Dexter.
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L 33 – Switchback [Genome Records] – Video
Posted: at 6:43 am
L 33 - Switchback [Genome Records]
Genre: Drum and Bass [Neuro] INgrooves http://www.beatport.com/label/genome-records/20759 http://www.beatport.com/track/switchback-original-mix/3081659.
By: Gbor Herczeg
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L 33 - Switchback [Genome Records] - Video
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Bravely Default Part 98 [~True Final Chapter~ Dimension’s Harp Genome Abilities] – Video
Posted: at 6:43 am
Bravely Default Part 98 [~True Final Chapter~ Dimension #39;s Harp Genome Abilities]
{READ DESCRIPTION!} Watch in HD!! FAQ: http://pastebin.com/0yf1uAte Facebook Page: http://www.facebook.com/EmiruHD Blog: http://emiruhd.wordpress.com/ Twitte...
By: EmiruHD
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Bravely Default Part 98 [~True Final Chapter~ Dimension's Harp Genome Abilities] - Video
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Hatsune Miku Orange Genome sub ita – Video
Posted: at 6:43 am
Hatsune Miku Orange Genome sub ita
Salve! Eccoci qua con la mia prima traduzione su questo canale! *3* Tengo in maniera particolare a questa canzone; piuttosto triste e racconta una situazio...
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Hatsune Miku Orange Genome sub ita - Video
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Hatsune Miku Orange Genome CZ – Video
Posted: at 6:43 am
Hatsune Miku Orange Genome CZ
Hatsune Miku Orange Genome CZ.
By: lusimalu lucymalu
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Hatsune Miku Orange Genome CZ - Video
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Better than Sanger: SMRT Sequencing for a High-GC Diploid Genome – Video
Posted: at 6:43 am
Better than Sanger: SMRT Sequencing for a High-GC Diploid Genome
Shane Brubaker from renewable oil manufacturer Solazyme reports using the PacBio system to sequence the genome of a GC-rich strain of algae that couldn #39;t be...
By: PacificBiosciences
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Better than Sanger: SMRT Sequencing for a High-GC Diploid Genome - Video
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Researchers Establish Benchmark Set of Genotypes for Human Genome Sequencing
Posted: at 6:43 am
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Newswise Led by biomedical engineer Justin Zook of the National Institute of Standards and Technology, a team of bioinformaticians from Harvard University and the Virginia Bioinformatics Institute of Virginia Tech has presented new methods to integrate data from different sequencing platforms, thus producing a highly reliable set of genotypes that will serve as a benchmark for human genome sequencing.
Understanding the human genome is an immensely complex task and we need great methods to guide this research, Zook says. By establishing reference materials and gold standard data sets, scientists are one step closer to bringing genome sequencing into clinical practice.
The methods put forth by the researchers make it increasingly possible to use an individuals genetic profile to guide medical decisions to prevent, diagnose, and treat diseases a priority of the National Institutes of Health. Their work was published this week in Nature Biotechnology.
We minimize biases toward any sequencing platform or data set by comparing and integrating 11 whole human genome and three exome data sets from five sequencing platforms, says Zook.
The National Institute of Standards and Technology organized the Genome in a Bottle Consortium to make well-characterized, whole-genome reference materials available to research, commercial, and clinical laboratories.
The team addressed the challenge with the expertise of David Mittelman, an associate professor of biological sciences at the Virginia Bioinformatics Institute, who creates tools that analyze vast amounts of genomic information.
The researchers created a metric to determine the accuracy of gene variations and understand biases and sources of error in sequencing and bioinformatics methods.
Their findings are available to the public on the Genome Comparison and Analytic Testing website, known as GCAT, to enable real-time benchmarking of any DNA-sequencing method. The collaborative, free online resource compares multiple analysis tools across a variety of crowd-sourced metrics and data sets.
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Researchers Establish Benchmark Set of Genotypes for Human Genome Sequencing
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Pond-dwelling powerhouse's genome points to its biofuel potential
Posted: at 6:43 am
PUBLIC RELEASE DATE:
19-Feb-2014
Contact: David Gilbert degilbert@lbl.gov 925-296-5643 DOE/Joint Genome Institute
Duckweed is a tiny floating plant that's been known to drive people daffy. It's one of the smallest and fastest-growing flowering plants that often becomes a hard-to-control weed in ponds and small lakes. But it's also been exploited to clean contaminated water and as a source to produce pharmaceuticals. Now, the genome of Greater Duckweed (Spirodela polyrhiza) has given this miniscule plant's potential as a biofuel source a big boost. In a paper published February 19, 2014 in the journal Nature Communications, researchers from Rutgers University, the Department of Energy Joint Genome Institute and several other facilities detailed the complete genome of S. polyrhiza and analyzed it in comparison to several other plants, including rice and tomatoes.
Simple and primitive, a duckweed plant consists of a single small kidney-shaped leaf about the size of a pencil-top eraser that floats on the surface of the water with a few thin roots underwater. It grows in almost all geographic areas, at nearly any altitude. Although it's a flowering plant, it only rarely forms small indistinct flowers on the underside of its floating leaves. Most of the time, it reproduces by budding off small leaves that are clones of the parent leaf. It often forms thick mats on the edges of ponds, quiet inlets of lakes and in marshes. It's among the fastest growing plants, able to double its population in a couple of days under ideal conditions.
These and other properties make it an ideal candidate as a biofuel feedstock a raw source for biofuel production. For example, unlike plants on land, duckweeds don't need to hold themselves upright or transport water from distant roots to their leaves, so they're a relatively soft and pliable plant, containing tiny amounts of woody material such as lignin and cellulose. Removing these woody materials from feedstock has been a major challenge in biofuel production. Also, although they are small enough to grow in many environments, unlike biofuel-producing microbes, duckweed plants are large enough to harvest easily.
S. polyrhiza turns out to have one of the smallest known plant genomes, at about 158 million base pairs and fewer than 20,000 protein-encoding genes. That's 27 percent fewer than Arabidopsis thaliana which, until recently, was believed to be the smallest plant genome and nearly half as many as rice plants.
"The most surprising find was insight into the molecular basis for genes involved in maturation a forever-young lifestyle," said senior author Joachim Messing, director of the Waksman Institute of Microbiology at Rutgers University.
S. polyrhiza leaves resemble cotyledons, embryonic leaves inside plant seeds that become the first leaves after germination. But where other plants develop other kinds of leaves as they mature, S. polyrhiza's never progresses and continuously produces cotyledon leaves. This prolonging of juvenile traits is called "neoteny." S. polyrhiza had fewer genes to promote and more genes to repress the switch from juvenile to mature growth.
"Because of the reduction in neoteny, there is an arrest in development and differentiation of organs. So this arrest allowed us to uncover regulatory networks that are required for differentiation and development," Messing said.
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Pond-dwelling powerhouse's genome points to its biofuel potential
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Scientists chip away at the mystery of what lives in our mouths
Posted: at 6:43 am
PUBLIC RELEASE DATE:
14-Feb-2014
Contact: Clifford Beall Beall.3@osu.edu 614-292-9306 Ohio State University
COLUMBUS, Ohio Scientists have pieced together sections of DNA from 12 individual cells to sequence the genome of a bacterium known to live in healthy human mouths.
With this new data about a part of the body considered "biological dark matter," the researchers were able to reinforce a theory that genes in a closely related bacterium could be culprits in its ability to cause severe gum disease.
Why the dark matter reference? More than 60 percent of bacteria in the human mouth refuse to grow in a laboratory dish, meaning they have never been classified, named or studied. The newly sequenced bacterium, Tannerella BU063, is among those that to date have not successfully been grown in culture and its genome is identified as "most wanted" by the Human Microbiome Project.
The federal Human Microbiome Project aims to improve research about the microbes that play a role in health and disease. Those 12 cells of BU063 are a good example of the complexity of life in the mouth: They came from a single healthy person but represented eight different strains of the bacterium.
BU063 is closely related to the pathogen Tannerella forsythia, a bacterium linked to the gum disease periodontitis. Despite being "cousins," this research revealed that they have clear differences in their genetic makeup.
Those genes lacking in BU063 but present in forsythia meaning they are a likely secret behind forsythia's virulence are now identified as good targets for further study, researchers say.
"One of the tantalizing things about this study was the ability to do random searches of other bacteria whose levels are higher in periodontitis," said Clifford Beall, research assistant professor of oral biology at The Ohio State University and lead author of the study. "We looked for genes that were present in these bacteria and forsythia and not in BU063. There is one particular gene complex in a whole list of these periodontitis-related bacteria that could be involved with virulence."
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Scientists chip away at the mystery of what lives in our mouths
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