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Hiding Secret Information in DNA Sequences Using Silent Mutations

机译:使用沉默突变将秘密信息隐藏在DNA序列中

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People are always looking for secure methods to protect valuable information against unauthorized access or use. That's why; disciplines like cryptography and steganography are gaining a great interest among researchers. Although the origin of steganography goes back to the ancient Greeks, recent steganographic techniques hide data into digital media such as sound, images, and videos. However, steganography took a step further to utilize the DNA as a carrier of secret information. DNA-based steganography techniques could be for either authentication or data storage. In this paper, we propose an original idea of hiding data in DNA or RNA called LSBase (Least Significant Base Substitution). It uses a remarkable property of codon redundancy to introduce silent mutations into DNA sequences. In this way, the DNA sequence can be altered without affecting the type or the structure of protein it produces. When compared with other techniques, the proposed algorithm showed to be the only blind technique that is capable of conserving the functionality of the carrier DNA while maintaining a reasonable data payload.
机译:人们一直在寻找安全的方法来保护有价值的信息,防止未经授权的访问或使用。这就是为什么;密码学和隐写术等学科在研究人员中引起了极大兴趣。尽管隐写术的起源可以追溯到古希腊人,但是最近的隐写术技术将数据隐藏在数字媒体中,例如声音,图像和视频。但是,隐写术又迈出了一步,利用DNA作为秘密信息的载体。基于DNA的隐写技术可以用于身份验证或数据存储。在本文中,我们提出了一种将数据隐藏在DNA或RNA中的原始想法,即LSBase(最低有效碱基替代)。它利用密码子冗余的显着特性将沉默突变引入DNA序列。这样,可以改变DNA序列而不影响其产生的蛋白质的类型或结构。当与其他技术相比时,所提出的算法是唯一能够在保持合理的数据有效载荷的同时保持载体DNA功能的盲目技术。

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