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Implementation of tile sequencing for DNA logical computation toward next-generation information security

机译:实现面向下一代信息安全的DNA逻辑计算的图块排序的实现

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We present a new readout method for DNA-based logical computation. It is expected that DNA computing can offer effective solutions to difficult-to-solve problems for the conventional computing. On the other hand troublesome procedures to read out the calculation results prevent the realization of practical applications of DNA computing. Here we propose a new tile sequencing method to read out the DNA tile computing results using a visualization tile. We verify its effectiveness by applying to DNA-based one-time pad (OTP) cryptosystem and clarify the problems to be resolved to provide the practical applications. It is known that OTP serves a theoretically-unbreakable cryptosystem if the random key is truly random, never reused, and kept secret. DNA hybridization process can be a physical random source required for true-random-key generation. Because a mathematical algorithm can generate pseudo-random numbers only, DNA computing will realize a next-generation cryptosystem that integrates a self-supported true random number generator. Our results indicate that the tile sequencing will be able to provide a new label and amplification free convenient high-throughput readout system for DNA tile computing, when it is combined with the multi-layer algorithm. Our new readout method will promote the progress of DNA logical computation and expand the possibility of its practical applications.
机译:我们提出了一种新的基于DNA的逻辑计算的读出方法。期望DNA计算可以为常规计算提供有效的解决方案,以解决难以解决的问题。另一方面,读取计算结果的麻烦程序阻碍了DNA计算的实际应用的实现。在这里,我们提出了一种新的图块排序方法,以使用可视化图块读出DNA图块的计算结果。我们通过将其应用于基于DNA的一次性密码(OTP)密码系统来验证其有效性,并阐明需要解决的问题以提供实际应用。众所周知,如果随机密钥是真正随机的,从未重用并且保密的,那么OTP可以在理论上牢不可破的密码系统中工作。 DNA杂交过程可能是生成真正随机密钥所需的物理随机来源。由于数学算法只能生成伪随机数,因此DNA计算将实现集成了自支持的真实随机数生成器的下一代密码系统。我们的结果表明,当与多层算法结合使用时,瓦片测序将能够为DNA瓦片计算提供新的标签和无扩增便捷的高通量读数系统。我们的新读出方法将促进DNA逻辑计算的进展,并扩大其实际应用的可能性。

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