A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment

The analysis of double-stranded DNA (dsDNA) recombinant behaviour led to the mathematical modelling of the deoxyribonucleic acid (DNA) splicing system. This multidisciplinary study is based on the fundamentals of formal language theory and informational macromolecules. The splicing system's num...

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Main Authors: Siti Hajar, Mohd Khairuddin, Muhammad Azrin, Ahmad, Aizi Nor Mazila, Ramli, Nor Haniza, Sarmin, Fong, Wan Heng
Format: Article
Language:English
Published: Universiti Putra Malaysia 2025
Subjects:
Online Access:https://umpir.ump.edu.my/id/eprint/45230/
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author Siti Hajar, Mohd Khairuddin
Muhammad Azrin, Ahmad
Aizi Nor Mazila, Ramli
Nor Haniza, Sarmin
Fong, Wan Heng
author_facet Siti Hajar, Mohd Khairuddin
Muhammad Azrin, Ahmad
Aizi Nor Mazila, Ramli
Nor Haniza, Sarmin
Fong, Wan Heng
author_sort Siti Hajar, Mohd Khairuddin
building UMP Institutional Repository
collection Online Access
description The analysis of double-stranded DNA (dsDNA) recombinant behaviour led to the mathematical modelling of the deoxyribonucleic acid (DNA) splicing system. This multidisciplinary study is based on the fundamentals of formal language theory and informational macromolecules. The splicing system's number of rules previously specified the n-th order limit language. A previous experiment in the lab established the existence of a second-order limit language. Nevertheless, based on the quantity of rules employed in the splicing system, no laboratory experiments have been carried out to verify the existence of the n-th order limit language. This paper presents experimental evidence supporting the theoretical results of n-th order limit languages, which were previously proven using double induction. Laboratory experiments involving DNA digestion and ligation were conducted to validate these theoretical findings. This investigation has led to the validation of the model, indicating that research on third and fourth order limit language supports the notion of n-th order limit language biologically. Furthermore, it shows that the mathematical model of the n-th order limit language was empirically confirmed if the dsDNA molecules generated in the experiment match those anticipated by the model.This research advances the understanding of DNA splicing systems by empirically validating the n-th order limit language, bridging formal language theory and molecular biology, and paving the way for future studies and technological applications in DNA computing, synthetic biology, and bioinformatics.
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spelling ump-452302025-08-04T04:24:17Z https://umpir.ump.edu.my/id/eprint/45230/ A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment Siti Hajar, Mohd Khairuddin Muhammad Azrin, Ahmad Aizi Nor Mazila, Ramli Nor Haniza, Sarmin Fong, Wan Heng QA Mathematics The analysis of double-stranded DNA (dsDNA) recombinant behaviour led to the mathematical modelling of the deoxyribonucleic acid (DNA) splicing system. This multidisciplinary study is based on the fundamentals of formal language theory and informational macromolecules. The splicing system's number of rules previously specified the n-th order limit language. A previous experiment in the lab established the existence of a second-order limit language. Nevertheless, based on the quantity of rules employed in the splicing system, no laboratory experiments have been carried out to verify the existence of the n-th order limit language. This paper presents experimental evidence supporting the theoretical results of n-th order limit languages, which were previously proven using double induction. Laboratory experiments involving DNA digestion and ligation were conducted to validate these theoretical findings. This investigation has led to the validation of the model, indicating that research on third and fourth order limit language supports the notion of n-th order limit language biologically. Furthermore, it shows that the mathematical model of the n-th order limit language was empirically confirmed if the dsDNA molecules generated in the experiment match those anticipated by the model.This research advances the understanding of DNA splicing systems by empirically validating the n-th order limit language, bridging formal language theory and molecular biology, and paving the way for future studies and technological applications in DNA computing, synthetic biology, and bioinformatics. Universiti Putra Malaysia 2025 Article PeerReviewed pdf en https://umpir.ump.edu.my/id/eprint/45230/1/A%20study%20on%20mathematical%20model%20of%20n-th%20order%20limit%20language.pdf Siti Hajar, Mohd Khairuddin and Muhammad Azrin, Ahmad and Aizi Nor Mazila, Ramli and Nor Haniza, Sarmin and Fong, Wan Heng (2025) A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment. Malaysian Journal of Mathematical Sciences, 19 (1). pp. 325-342. ISSN 1823-8343 (Print); 2289-750X (Online). (Published) https://doi.org/10.47836/mjms.19.1.17 https://doi.org/10.47836/mjms.19.1.17 https://doi.org/10.47836/mjms.19.1.17
spellingShingle QA Mathematics
Siti Hajar, Mohd Khairuddin
Muhammad Azrin, Ahmad
Aizi Nor Mazila, Ramli
Nor Haniza, Sarmin
Fong, Wan Heng
A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
title A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
title_full A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
title_fullStr A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
title_full_unstemmed A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
title_short A study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
title_sort study on mathematical model of n-th order limit language from a biological perspective via wet-lab experiment
topic QA Mathematics
url https://umpir.ump.edu.my/id/eprint/45230/
https://umpir.ump.edu.my/id/eprint/45230/
https://umpir.ump.edu.my/id/eprint/45230/