用于信息安全的DNA:基于分子生物学中心法则的DNA计算和伪DNA方法综述

Sreeja. C.S, M. Misbahuddin, Mohammed Hashim N.P
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引用次数: 25

摘要

生物学是一门对人类生活质量具有重要意义的生命科学,而信息安全则是对社会的熏化,是人类永远不会妥协的。两者都是高度相关的主题,对人类来说是不可避免的。因此,这些学科的融合肯定会成为实用技术,无论是安全性还是数据存储,都被称为生物计算。信息的安全传输是古代文明关注的主要问题。已经提出了各种技术来维护数据的安全性,以便只有预期的接收者能够接收消息而不是发送者。随着互联网的引入,这些做法变得更加重要。从大数据到特定的单词,信息各不相同,但每一条信息都需要适当的存储和保护,这是一个主要问题。密码学是一门保护信息不受未经授权访问的保密艺术或科学。多年来,各种信息保护技术不断发展,包括密码、密码学、隐写术、生物识别技术和最近的DNA安全技术。DNA密码学是安全领域的重大突破,它运用了生物分子的概念,给我们带来了破解算法的新希望。本文讨论了目前提出的各种基于DNA的加密方法。提出了一种基于伪DNA密码学和分子生物学中心法则的DNA对称算法。建议的算法使用拼接和填充技术以及补充规则,使算法更加安全,因为它是比传统加密技术额外的安全层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA for information security: A Survey on DNA computing and a pseudo DNA method based on central dogma of molecular biology
Biology is a life science which has high significance on the quality of life and information security is that aspect for social edification, which human beings will never compromise. Both are subjects of high relevance and inevitable for mankind. So, an amalgamation of these subjects definitely turns up as utility technology, either for security or data storage and is known as Bio computing. The secure transfer of information was a major concern from ancient civilizations. Various techniques have been proposed to maintain security of data so that only intended recipient should be able to receive the message other than the sender. These practices became more significant with the introduction of the Internet. Information varies from big data to a particular word, but every piece of information requires proper storage and protection which is a major concern. Cryptography is an art or science of secrecy which protects information from unauthorized access. Various techniques evolved through years for information protection, including Ciphers, Cryptography, Steganography, Biometrics and recent DNA for security.DNA cryptography was a major breakthrough in the field of security which uses Bio-molecular concepts and gives us a new hope of unbreakable algorithms. This paper discusses various DNA based Cryptographic methods proposed till now. It also proposes a DNA symmetric algorithm based on the Pseudo DNA Cryptography and Central dogma of molecular biology. The suggested algorithm uses splicing and padding techniques along with complementary rules which make the algorithm more secure as it is an additional layer of security than conventional cryptographic techniques.
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