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Isogeny-based Security for Marine Genomic Insights

  • Jasleen Kaur,
  • Nilesh Tiwari,
  • Nikhil Nair,
  • A. Arun Kumar

摘要

In the vast ocean of genomic data, safeguarding the integrity and confidentiality of marine genomic insights is imperative for advancing scientific understanding and ecological conservation. This research paper delves into the unexplored realm of marine genomics, introducing a novel paradigm for securing genetic information using isogeny-based cryptographic techniques. Isogenies, mathematical structures derived from elliptic curves, present an avant-garde approach to fortify the security of marine genomic data against evolving cyber threats. Our study employs cutting-edge isogeny-based cryptographic protocols to establish a robust security framework, ensuring the confidentiality of genetic information without compromising computational efficiency. By seamlessly integrating isogeny-based security measures, we not only fortify the foundations of marine genomics but also contribute to the broader landscape of genomic research security. The proposed methodology addresses the unique challenges posed by marine genomic data, offering a pioneering solution that surpasses traditional cryptographic approaches. Furthermore, this research explores the implications of isogeny-based security on data sharing and collaborative research efforts within the marine genomics community. Through a comprehensive analysis of potential threats and vulnerabilities, our paper provides insights into the practical implementation and adaptability of isogeny-based cryptographic techniques in marine genomic research ecosystems.