Essential Information & explanations, latest texts & monographs on Allele_frequency.


Allele frequency

Allele frequency is a term of population genetics that is used in characterizing the genetic diversity of a species population, or equivalently the richness of its gene pool. Allele frequency is defined as follows: Given a) a particular chromosome locus, b) a gene occupying that locus, c) a population of individuals carrying n loci in each of their somatic cells (e.g. two loci in the cells of diploid species, which contain two sets of chromosomes) and finally d) a variant or allele of the gene, then the allele frequency of that allele is the fraction or percentage of loci that the allele occupies within the population. To take an example, if the frequency of an allele is 20% in a given population, then among population members, one in five chromosomes will carry that allele. Four out of five will be occupied by other variants the gene, of which there may be one or many. Note that for diploid genes, however, the proportion of individuals that carry this allele may be up to two in five. If the allele distributes randomly, then the binomial theorem will apply: 32% of the population will be heterozygous for the allele (i.e. carry one copy of that allele and one copy of another in each somatic cell) and 4% will be homozygous (carrying two copies of the allele). So all together 36% of diploid individuals would be expected to carry an allele that has a frequency of 20%. However, alleles distribute randomly only in the absence of selection and under other assumptions. When these conditions apply, a population is said to be in Hardy-Weinberg equilibrium. The frequencies of all the alleles of a given gene often are graphed together as an allele frequency distribution histogram. Population genetics studies the different "forces" that might lead to changes in the distribution and frequencies of alleles -- in other words, to evolution. Besides selection, these forces include genetic drift, mutation and migration. Example If there are four individuals in a population and at a given locus there are two possible alleles, A and a, then if the genotypes of the individuals are: Individual 1: AA Individual 2: aa Individual 3: Aa Individual 4: Aa then the allele frequencies of allele A and allele a, respectively would be: pA = (2 + 0 + 1 + 1)/8 = 0.5 pa = (0 + 2 + 1 + 1)/8 = 0.5

The above article is adapted from from Wikipedia All Wikipedia article text is available under the terms of the GNU Free Documentation License







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Recent Allele_frequency related patents

From USPTO:




from PUBMED
1:  Gorelick R, Laubichler MD. 
 Decomposing multilocus linkage disequilibrium.
Genetics. 2004 Mar;166(3):1581-3. 
PMID: 15082571 

2:  Qi Q, Zhang H, Ma S, Xu L. 
 [Genetic polymorphism of short tandem repeat loci D1S549, D3S1754 and D12S375
in Qingdao Han population]
Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2004 Apr;21(2):184-6. Chinese. 
PMID: 15079809 

3:  Fatini C, Sofi F, Gensini F, Sticchi E, Lari B, Pratesi G, Pulli R, Dorigo
W, Pratesi C, Gensini Gf G, Abbate R. 
 Influence of eNOS gene polymorphisms on carotid atherosclerosis.
Eur J Vasc Endovasc Surg. 2004 May;27(5):540-4. 
PMID: 15079780 

4:  Fukutani T, Hiromatsu Y, Kaku H, Miyake I, Mukai T, Imamura Y, Kohno S,
Takane N, Shoji S, Otabe S, Yamada K. 
 A polymorphism of interferon-gamma gene associated with changes of
anti-thyrotropin receptor antibodies induced by antithyroid drug treatment for
Graves' disease in Japanese patients.
Thyroid. 2004 Feb;14(2):93-7. 
PMID: 15068623 

5:  Williams CL, Homan HJ, Johnston JJ, Linz GM. 
 Microsatellite variation in red-winged blackbirds (Agelaius phoeniceus).
Biochem Genet. 2004 Feb;42(1-2):35-41. 
PMID: 15068337 

6:  Takiuchi S, Mannami T, Miyata T, Kamide K, Tanaka C, Kokubo Y, Koyama Y,
Inamoto N, Katsuya T, Iwai N, Kawano Y, Ogihara T, Tomoike H. 
 Identification of 21 single nucleotide polymorphisms in human hepatocyte growth
factor gene and association with blood pressure and carotid atherosclerosis in
the Japanese population.
Atherosclerosis. 2004 Apr;173(2):301-5. 
PMID: 15064106 

7:  Yong RY, Aw LT, Yap EP. 
 Allele frequencies of 15 STR loci of three main ethnic populations in Singapore
using an in-house marker panel.
Forensic Sci Int. 2004 May 10;141(2-3):175-83. 
PMID: 15062959 

8:  Xiu LL, Weng JP, Sui Y, Wang J, Yan JH, Huang ZM. 
 [Common variants in beta(3)-adrenergic-receptor and uncoupling protein-2 genes
are associated with type 2 diabetes and obesity]
Zhonghua Yi Xue Za Zhi. 2004 Mar;84(5):375-9. Chinese. 
PMID: 15061987 

9:  Uda A, Tanabayashi K, Mukai R, Terao K, Yamada A. 
 Detection of CD3epsilon polymorphism in cynomolgus monkeys by a method based on
RFLP.
J Med Primatol. 2004 Feb;33(1):34-7. 
PMID: 15061731 

10:  Simmonds MJ, Heward JM, Howson JM, Foxall H, Nithiyananthan R, Franklyn JA,
Gough SC. 
 A systematic approach to the assessment of known TNF-alpha polymorphisms in
Graves' disease.
Genes Immun. 2004 Apr 1 [Epub ahead of print] 
PMID: 15057268 

11:  Panza F, D'Introno A, Colacicco AM, Capurso C, Basile AM, Capurso S,
Capurso A, Solfrizzi V. 
 Regional European differences in allele and genotype frequencies of low density
lipoprotein receptor-related protein 1 polymorphism in Alzheimer's disease.
Am J Med Genet. 2004 Apr 1;126B(1):69-73. 
PMID: 15048651 

12:  Dubertret C, Hanoun N, Ades J, Hamon M, Gorwood P. 
 Family-based association study of the serotonin-6 receptor gene (C267T
polymorphism) in schizophrenia.
Am J Med Genet. 2004 Apr 1;126B(1):10-5. 
PMID: 15048641 

13:  Vella A, Howson JM, Barratt BJ, Twells RC, Rance HE, Nutland S,
Tuomilehto-Wolf E, Tuomilehto J, Undlien DE, Ronningen KS, Guja C,
Ionescu-Tirgoviste C, Savage DA, Todd JA. 
 Lack of Association of the Ala(45)Thr Polymorphism and Other Common Variants of
the NeuroD Gene With Type 1 Diabetes.
Diabetes. 2004 Apr;53(4):1158-1161. 
PMID: 15047635 

14:  Pullmann R Jr, Skerenova M, Hybenova J, Lukac J, Rovensky J, Pullmann R. 
 Apolipoprotein E polymorphism in patients with neuropsychiatric SLE.
Clin Rheumatol. 2004 Apr;23(2):97-101. Epub 2004 Jan 29. 
PMID: 15045621 

15:  Liu KP, Lin CY, Chen HJ, Wei CF, Lee-Chen GJ. 
 Renin-angiotensin system polymorphisms in Taiwanese primary vesicoureteral
reflux.
Pediatr Nephrol. 2004 Mar 26 [Epub ahead of print] 
PMID: 15045574 

16:  Shimada MK, Inoue-Murayama M, Ueda Y, Maejima M, Murayama Y, Takenaka O,
Hayasaka I, Ito S. 
 Polymorphism in the second intron of dopamine receptor D4 gene in humans and
apes.
Biochem Biophys Res Commun. 2004 Apr 16;316(4):1186-90. 
PMID: 15044110 

17:  Vasilescu A, Heath SC, Diop G, Do H, Hirtzig T, Hendel H, Bertin-Maghit S,
Rappaport J, Therwath A, Lathrop GM, Matsuda F, Zagury JF. 
 Genomic analysis of Fas and FasL genes and absence of correlation with disease
progression in AIDS.
Immunogenetics. 2004 Mar 23 [Epub ahead of print] 
PMID: 15042330 

18:  Milman N, a Steig T, Koefoed P, Pedersen P, Fenger K, Nielsen FC. 
 Frequency of the hemochromatosis HFE mutations C282Y, H63D, and S65C in blood
donors in the Faroe Islands.
Ann Hematol. 2004 Mar 23 [Epub ahead of print] 
PMID: 15042317 

19:  Malina AN, Laivuori HM, Agatisa PK, Collura LA, Crombleholme WR, Sims CJ,
Roberts JM. 
 The Trp64Arg polymorphism of the beta3-adrenergic receptor is not increased in
women with preeclampsia.
Am J Obstet Gynecol. 2004 Mar;190(3):779-83. 
PMID: 15042014 

20:  Vilas R, Sanmartin ML, Paniagua E. 
 Temporal allozyme divergence in infrapopulations of the hemiurid fluke
Lecithochirium fusiforme.
J Parasitol. 2004 Feb;90(1):198-201. 
PMID: 15040697 

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Note again ... some material here is adapted from from Wikipedia All Wikipedia article text is available under the terms of the GNU Free Documentation License

©2004, All applicable rights reserved as appropriate.