A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID

Volume: 4 Number: 2 December 1, 2014
  • Dulal Chandra Sanyal
  • Ananda Biswas
EN

A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID

Abstract

Human and, in fact, every animal or plant contains many gene oriented traits. This means that the traits depend on chromosomes and are mainly directed by DNA sequence. On the other hand, a particular trait of any species may have much discriminations. Generally, it is known that for dihybrid problem in generation F2, the phenotype ratio is 9:3:3:1 and the genotype ratio is 1:2:2:4:1:2:1:2:1. Here we consider a mathematical model on dihybrid as well as on multihybrid and analyise the probabilities of phenotype or genotype dissimilarities amongst them. Also the cause of it is shown graphically for dyhybrid.

Keywords

References

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  5. Dietter, J., Spiegel, A., Mey, D., Pflug, H. J., Al-Kateb, H., Hoffmann, K., Wienker, T. F. and Strauch, K., (2004), Efficient two-trait-locus linkage analysis through program optimization and parallelization: application to hypercholesterolemia , European Journal of Human Genetics, 12, 542-550.
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  7. Sanyal, D.C. and Biswas, A., (2011), A Mathematical Model on Genetic Allele of Codominants or Semidominants, International Journal of Computational Intelligence and Healthcare Informatics, 4, 35-39.
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Details

Primary Language

English

Subjects

-

Journal Section

-

Authors

Dulal Chandra Sanyal This is me

Ananda Biswas This is me

Publication Date

December 1, 2014

Submission Date

-

Acceptance Date

-

Published in Issue

Year 2014 Volume: 4 Number: 2

APA
Sanyal, D. C., & Biswas, A. (2014). A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID. TWMS Journal of Applied and Engineering Mathematics, 4(2), 259-264. https://izlik.org/JA69ET98RF
AMA
1.Sanyal DC, Biswas A. A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID. JAEM. 2014;4(2):259-264. https://izlik.org/JA69ET98RF
Chicago
Sanyal, Dulal Chandra, and Ananda Biswas. 2014. “A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID”. TWMS Journal of Applied and Engineering Mathematics 4 (2): 259-64. https://izlik.org/JA69ET98RF.
EndNote
Sanyal DC, Biswas A (December 1, 2014) A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID. TWMS Journal of Applied and Engineering Mathematics 4 2 259–264.
IEEE
[1]D. C. Sanyal and A. Biswas, “A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID”, JAEM, vol. 4, no. 2, pp. 259–264, Dec. 2014, [Online]. Available: https://izlik.org/JA69ET98RF
ISNAD
Sanyal, Dulal Chandra - Biswas, Ananda. “A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID”. TWMS Journal of Applied and Engineering Mathematics 4/2 (December 1, 2014): 259-264. https://izlik.org/JA69ET98RF.
JAMA
1.Sanyal DC, Biswas A. A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID. JAEM. 2014;4:259–264.
MLA
Sanyal, Dulal Chandra, and Ananda Biswas. “A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID”. TWMS Journal of Applied and Engineering Mathematics, vol. 4, no. 2, Dec. 2014, pp. 259-64, https://izlik.org/JA69ET98RF.
Vancouver
1.Dulal Chandra Sanyal, Ananda Biswas. A MATHEMATICAL MODEL ON GENETIC DIHYBRID AND MULTIHYBRID. JAEM [Internet]. 2014 Dec. 1;4(2):259-64. Available from: https://izlik.org/JA69ET98RF