氨基酸水平上DNA序列的隐写

M. Sabry, T. Nazmy, M. E. Khalifa
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引用次数: 5

摘要

近年来,随着生物信息学的不断发展,密码学和隐写术领域的研究越来越多。我们提出了一种隐写算法,旨在根据DNA密码子在标准遗传密码表中氨基酸上的分布来保留DNA序列(载体)的特性。该算法将秘密信息隐藏在DNA序列中,同时保留其生物特性,而另一种算法使用秘密密钥提取秘密信息。本文提出了一种缩小DNA计算与数字计算之间差距的方法,并通过应用证明了这种关系。我们将我们的算法与其他相关的基于dna的隐写算法进行了比较,证明了我们的算法具有鲁棒性,具有先进的利用率存储,并且不易受到多种可能的攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Steganography in DNA Sequence on the Level of Amino acids
The increasing advancements in bioinformatics have recently attracted many pieces of research in the field of cryptography and steganography. We are proposing a steganographic algorithm that aims at preserving the properties of a DNA sequence (carrier) based on the distribution of DNA codons upon amino acids in the standard genetic code table. The algorithm hides a secret message inside a DNA sequence while preserving its biological properties and another algorithm extracts back the secret message using the secret key. The paper is considered a way to minimize the gap between DNA computing and Digital computing and proves this relation through applications. We have compared our algorithm to other related DNA-based steganographic algorithms and proved that our algorithm is robust, has advanced utilization storage and invulnerable to several types of possible attacks.
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