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Oligoarchive - Intelligent DNA Storage for Archival

Descrizione del progetto

DNA sintetico come soluzione di archiviazione digitale di prossima generazione

Il maggiore uso di media elettronici in tutto il mondo evidenzia la mancanza di soluzioni efficaci di archiviazione dei dati. Entro il 2025, l’archiviazione dei dati elettronici raggiungerà i 250 zettabyte. Il progetto OLIGOARCHIVE, finanziato dall’UE, ricercherà nuove tecnologie per sistemi intelligenti di archiviazione nel DNA. La creazione di un sistema prototipo consentirà la ricerca dell’intero ciclo, dalla codifica al sequenziamento inverso dei dati, al DNA e ritorno. L’obiettivo futuro è quello di impiegare DNA sintetico come mezzo di archiviazione digitale, viste le sue insolite caratteristiche: capacità densa, recupero agevole, stabilità e rapidità.

Obiettivo

The ``digital universe'' of all known data worldwide is expected to grow to 250 Zettabytes by 2025. Unfortunately, all current storage media face fundamental limitations that threaten our ability to store, much less process, all this data. Hard Disk Drives (HDD) suffer from well-known scaling issues that have resulted in a meager 16% annual density improvement over the past decade compared to the 60% rate of data growth. Tape drives suffer from media obsolescence, as data stored in tape has to be continuously migrated to deal with technology upgrades. If we are to preserve even just a fraction of the world's data, we are in desperate need of a radically new storage media with substantially better density and durability characteristics. In this proposal, we focus on one such media that has received limited attention recently -synthetic Deoxyribonucleic acid (DNA). Using DNA as a digital storage media has multiple advantages. First, DNA is an extremely dense storage medium. Second, DNA can last several centuries; HDD and tape have life times of five and thirty years. Third, technology used for storing data on DNA (synthesis) and retrieving data back from DNA (sequencing) have eternal relevance; as long as there is life on earth, there will always be the need to synthesize and sequence DNA. Fourth, there is the potential to process the data stored in DNA using biomolecular mechanisms. Doing so is substantially faster and requires much less energy than traditional computing. Despite such benefits, DNA storage and DNA data processing are new areas of research. In this proposal, we outline a research agenda which will develop the fundamental technologies needed to build an intelligent DNA storage system. The resulting prototype system will support the full cycle of encoding data, synthesize it as DNA and read it back through sequencing. It will optimally store a variety of different types of data and enable near-data processing in the storage.

Invito a presentare proposte

H2020-FETOPEN-2018-2020

Vedi altri progetti per questo bando

Bando secondario

H2020-FETOPEN-2018-2019-2020-01

Meccanismo di finanziamento

RIA - Research and Innovation action

Coordinatore

IMPERIAL COLLEGE OF SCIENCE TECHNOLOGY AND MEDICINE
Contribution nette de l'UE
€ 990 714,53
Indirizzo
SOUTH KENSINGTON CAMPUS EXHIBITION ROAD
SW7 2AZ LONDON
Regno Unito

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Regione
London Inner London — West Westminster
Tipo di attività
Higher or Secondary Education Establishments
Collegamenti
Costo totale
€ 990 714,53

Partecipanti (4)