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Chromosomes, genes, alleles and mutations
Chromosomes, genes, alleles and mutations

... Note: Originally, it was assumed that one gene would invariably code for one polypeptide, but many exceptions have been discovered. ...
General Biology Program for Secondary
General Biology Program for Secondary

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17.1 – Isolating the Genetic Material

... Pyrimidines – nitrogenous compounds that have a single-ring structure. The nucleotide bases thymine, uracil, and cytosine are derived from pyrimidines and always bind with purines in DNA If a DNA molecule was unwound, it would resemble a ladder. The sugar and phosphate groups would form the outside ...
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HotStart DNA Polymerase

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DNA - The Double Helix

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short_answer_Barcoding_exam_Key

... size, and then a laser reads the results to indicate the sequence 38. What is unique about the ddNTPS that make them useful in DNA sequencing? (3) The oxygen molecule is not present, so a covalent bond with another nucleotide at that the phosphate can’t occur, which causes elongation to stop at vari ...
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DNA Sample Collection from Animal Companions General Shipping
DNA Sample Collection from Animal Companions General Shipping

... Cheek Swabs* - Cheek swabs are a great, noninvasive way to collect DNA from a cat or dog. A soft brush is gently scraped on the inner cheek to remove cells. Label the swab packet, open it and remove the swab. Gently pull the pet’s cheek away from the teeth and insert the brush into the cheek pouch w ...
5.2.3 Genomes and Gene Technologies
5.2.3 Genomes and Gene Technologies

... complimentary to this and make it radioactive by replacing the phosphate in the nucleotides with a radioactive one e.g. 32P You then expose the DNA strand to photographic film and find your DNA section You could also use a fluorescent marker that emits colour when exposed to UV light Copies of the p ...
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DNA



Deoxyribonucleic acid (/diˌɒksiˌraɪbɵ.njuːˌkleɪ.ɨk ˈæsɪd/; DNA) is a molecule that carries most of the genetic instructions used in the development, functioning and reproduction of all known living organisms and many viruses. DNA is a nucleic acid; alongside proteins and carbohydrates, nucleic acids compose the three major macromolecules essential for all known forms of life. Most DNA molecules consist of two biopolymer strands coiled around each other to form a double helix. The two DNA strands are known as polynucleotides since they are composed of simpler units called nucleotides. Each nucleotide is composed of a nitrogen-containing nucleobase—either cytosine (C), guanine (G), adenine (A), or thymine (T)—as well as a monosaccharide sugar called deoxyribose and a phosphate group. The nucleotides are joined to one another in a chain by covalent bonds between the sugar of one nucleotide and the phosphate of the next, resulting in an alternating sugar-phosphate backbone. According to base pairing rules (A with T, and C with G), hydrogen bonds bind the nitrogenous bases of the two separate polynucleotide strands to make double-stranded DNA. The total amount of related DNA base pairs on Earth is estimated at 5.0 x 1037, and weighs 50 billion tonnes. In comparison, the total mass of the biosphere has been estimated to be as much as 4 TtC (trillion tons of carbon).DNA stores biological information. The DNA backbone is resistant to cleavage, and both strands of the double-stranded structure store the same biological information. Biological information is replicated as the two strands are separated. A significant portion of DNA (more than 98% for humans) is non-coding, meaning that these sections do not serve as patterns for protein sequences.The two strands of DNA run in opposite directions to each other and are therefore anti-parallel. Attached to each sugar is one of four types of nucleobases (informally, bases). It is the sequence of these four nucleobases along the backbone that encodes biological information. Under the genetic code, RNA strands are translated to specify the sequence of amino acids within proteins. These RNA strands are initially created using DNA strands as a template in a process called transcription.Within cells, DNA is organized into long structures called chromosomes. During cell division these chromosomes are duplicated in the process of DNA replication, providing each cell its own complete set of chromosomes. Eukaryotic organisms (animals, plants, fungi, and protists) store most of their DNA inside the cell nucleus and some of their DNA in organelles, such as mitochondria or chloroplasts. In contrast, prokaryotes (bacteria and archaea) store their DNA only in the cytoplasm. Within the chromosomes, chromatin proteins such as histones compact and organize DNA. These compact structures guide the interactions between DNA and other proteins, helping control which parts of the DNA are transcribed.First isolated by Friedrich Miescher in 1869 and with its molecular structure first identified by James Watson and Francis Crick in 1953, DNA is used by researchers as a molecular tool to explore physical laws and theories, such as the ergodic theorem and the theory of elasticity. The unique material properties of DNA have made it an attractive molecule for material scientists and engineers interested in micro- and nano-fabrication. Among notable advances in this field are DNA origami and DNA-based hybrid materials.The obsolete synonym ""desoxyribonucleic acid"" may occasionally be encountered, for example, in pre-1953 genetics.
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