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That's My DNA: Detecting Malicious Tampering of Synthesized DNA

机译:那是我的DNA:检测合成DNA的恶意篡改

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The area of synthetic genomics has seen rapid progress in recent years. DNA molecules are increasingly being synthesized in the laboratory. New biological organisms that do not exist in the natural world are being created using synthesized DNA. A major concern in this domain is that a malicious actor can potentially tweak with a benevolent synthesized DNA molecule and create a harmful organism [1] or create a DNA molecule with malicious properties. To detect if a synthesized DNA molecule has been modified from the original version created in the laboratory, the authors in [13] had proposed a digital signature protocol for creating a signed DNA molecule. It uses an identity-based signatures and error correction codes to sign a DNA molecule and then physically embed the digital signature in the molecule itself. However there are several challenges that arise in more complex molecules because of various forms of DNA mutations as well as size restrictions of the molecule itself that determine its properties, the earlier work is limited in scope. In this work, we extend the work in several directions to address these problems.
机译:近年来,合成基因组学的领域已经迅速进展。 DNA分子越来越多地在实验室中合成。使用合成的DNA创建自然界中不存在的新生物体。该领域的主要问题是恶意演员可以用仁慈合成的DNA分子潜在地调整,并产生有害的生物[1]或产生具有恶意性质的DNA分子。为了检测合成的DNA分子已经从实验室中创建的原始版本修改,[13]中的作者提出了一种用于产生符号DNA分子的数字签名方案。它使用基于身份的签名和纠错码来签署DNA分子,然后物理地嵌入分子本身中的数字签名。然而,由于各种形式的DNA突变以及确定其性质的分子本身的尺寸限制,存在多种复杂的分子存在若干挑战,并且较早的工作范围是有限的。在这项工作中,我们在几个方向上延长了工作来解决这些问题。

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