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coding DNA

Definitions

  • WordNet 3.6
    • n coding DNA sequence of a gene's DNA that transcribes into protein structures "exons are interspersed with introns"
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Usage


In news:

(CBS/AP) Using DNA taken from centuries-old skeletons, scientists have cracked the genetic code of the bacterium that caused the Black Death, one of history's worst plagues.
(CBS/AP) Using DNA taken from centuries-old skeletons, scientists have cracked the genetic code of the bacterium that caused the Black Death, one of history's worst plagues.
Rediscovered letters and postcards highlight the fierce competition among scientists who discovered DNA's famous double-helix structure and unraveled the genetic code.
The genetic code in the DNA of virtually every somatic cell can produce the entire complement of encoded proteins.
Francis Crick is associated with two discoveries, probably two of the most important in the 20th century: the double helix of DNA and the genetic code .
A pixelated pattern in the lobby evokes DNA coding.
Sports Carmen Forman Rowing is practically coded into the DNA of attorney Murray Abowitz.
Telomeres protect the protein-coding sequences of DNA on the chromosome, and telomeric shortening during sequential cell divisions is believed to dictate a cell's life span.
Despite decades upon decades of peace and harmony, deep in the recesses of our national DNA still lies a certain series of genetic code which doesn't exactly make us predisposed to understanding or.
All they want under Christmas tree is conifer DNA code.
Christmas tree's DNA code being revealed.
Scientists close to cracking Christmas tree 's huge DNA code.
Christmas tree 's DNA code being revealed.
Team helps crack wheat's DNA code .
Team helps crack wheat's DNA code.
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In science:

In molecular biology, junk DNA is a collective label for the portions of the DNA sequence of a genome for which no function has yet been identified (non protein- or RNA-coding DNA); it includes most sequences within introns and most intergenic DNA.
Epigenetic Tracking, a Method to Generate Arbitrary Shapes By Using Evolutionary-Developmental Techniques
Understanding the melting of short DNA sequences probes DNA at the scale of the genetic code and raises questions which are very different from those posed by very long sequences, which have been extensively studied.
Experimental and theoretical studies of sequence effects on the fluctuation and melting of short DNA molecules
The structure of the melting curve of DNA molecules of a few tens of base pairs contains information at a scale which is relevant for the genetic code, and this why its analysis is very interesting.
Experimental and theoretical studies of sequence effects on the fluctuation and melting of short DNA molecules
Suppose one is interested in some specific gene (that is to say, a piece of DNA which codes for a certain protein, to simplify).
Recent progress in coalescent theory
As discussed at length by Zeh et al. (2009), eukaryotic genomes contrary to prokaryotic ones have a very low relative amount of sequences coding for RNA or proteins: non-coding ones cover the vast majority of DNA.
Randomness and Multi-level Interactions in Biology
This result was interpret as an evidence of power-law correlations only in non-coding sequences of DNA, that is corresponded to results of Peng et al. [7,8 ].
Dynamic Properties of Random Heteropolymer with Correlations in Sequence
On the other hand, stretches of DNA strands made up of fewer bases are known to exist in the non-coding sections of DNA, and it should be possible to extract strands having one, two or three building blocks from them.
Testing Quantum Dynamics in Genetic Information Processing
The value we needed was the relaxation time for a coding proton in DNA, a measure of the speed of energy dissipation.
Comment on Book Review of `Quantum Evolution' (Johnjoe McFadden) by Mathew J. Donald
In the case of molecular biology at the level of the DNA there is exactly this possibility of varying the rules in the sense of varying the sequences in the genetic code.
Biologic
Grosse (1997) “Correlations in DNA Sequences: The Role of Protein Coding Segments” Phys.
Testing the assumptions of linear prediction analysis in normal vowels
Comparative studies of the DNA makeup play an indispensable role in medical genetics, the goals of which are to efficiently determine “outliers” in genetic codes that may lead to devastating disorders or mental illness .
Semi-Quantitative Group Testing: a General Paradigm with Applications in Genotyping
Hwang, “An unexpected meeting of four seemingly unrelated problems: graph testing, DNA complex screening, superimposed codes and secure key distribution,” J.
Semi-Quantitative Group Testing: a General Paradigm with Applications in Genotyping
Milenkovic, “Superimposed coding for iterative detection of DNA microarray spot failures,” in Proc.
Semi-Quantitative Group Testing: a General Paradigm with Applications in Genotyping
In recent years, much of the statistical analysis of DNA sequences is focused on the estimation of properties of coding and non-coding regions as well as on the discrimination of these regions.
Markov Chain Order estimation with Conditional Mutual Information
Many reported works converge to that intergenic regions (consisting solely of non-coding DNA) have long range correlations, and genes (containing coding and non-coding DNA) have a mixture of short and long range correlations.
Markov Chain Order estimation with Conditional Mutual Information
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