利用动态规划对DNA序列进行比对

E. Rouchka
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引用次数: 5

摘要

DNA可以被认为是一个四个字母的字母表,符号a、C、G和T代表四种可能的核苷酸:腺嘌呤、胞嘧啶、鸟嘌呤和胸腺嘧啶。生物体的基因组是由a、C、G和T组成的线性序列,可以从个体的染色体中解码出来。对于人类基因组来说,这大约有32亿个碱基。在基因组中,被称为基因的一组特殊指令为提供结构和功能特性的蛋白质编码。在基因编码区域内,每三个碱基编码一个氨基酸。由于每个位置(A、C、G或T)有四种可能,因此有4 * 4 * 4 = 64种可能的三碱基模式,或密码子。
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Aligning DNA sequences using dynamic programming
DNA can be thought of as a four-letter alphabet with the symbols A, C, G, and T representing the four possible nucleotides: adenine, cytosine, guanine, and thymine. The genome of an organism is composed of a linear sequence of A, C, G, and T that can be decoded from an individual's chromosomes. For the human genome, this is on the order of 3.2 billion bases. Within a genome, special sets of instructions known as genes code for proteins that provide structural and functional properties. Inside of a gene-coding region, every three bases codes for an amino acid. Since there are four possibilities for each position (A, C, G, or T), there are 4 * 4 * 4 = 64 potential three-base patterns, or codons.
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