For studying life within the rocks of Earth and Mars, we demonstrate, in an ISO 5 clean room, a procedure based on MinION nanopore technology that correctly identifies organisms with only 2 pg of DNA without amplification, which represents unprecedented sensitivity. The folder contains fast5 and fastq passed and failed sequencing files of all the experiments conducted to investigate ONT's MinION ability to detect and characterize extremely low biomass
Abstract Biological informational polymers such as nucleic acids have the potential to provide unamb...
Determination of the genetic code embedded in DNA molecules is fundamental to molecular biology and ...
Human missions to Mars will fundamentally transform how the planet is explored, enabling new scienti...
For studying life within the rocks of Earth and Mars, we demonstrate, in an ISO 5 clean room, a proc...
No instrument capable of direct life detection has been included on a mission payload to Mars since ...
Recent studies regarding the origins of life and Mars-Earth meteorite transfer simulations suggest t...
The detection of extant life is a major focus of many planned future planetary missions, a current c...
© 2020, The Author(s). Nanopore sequencing, as represented by Oxford Nanopore Technologies’ MinION, ...
Biological informational polymers such as nucleic acids have the potential to provide unambiguous ev...
In many parts of the world, human-mediated environmental change is depleting biodiversity faster tha...
As DNA sequencing technology advances, in-field genome sequencing capabilities are being explored, u...
Abstract Life beyond Earth may be based on RNA or DNA if such life is related to life on Earth throu...
Biodiversity research is becoming increasingly dependent on genomics, which allows the unprecedented...
Biodiversity research is becoming increasingly dependent on genomics, which allows the unprecedented...
Rapid DNA sequencing and analysis has been a long-sought goal in remote research and point-of-care m...
Abstract Biological informational polymers such as nucleic acids have the potential to provide unamb...
Determination of the genetic code embedded in DNA molecules is fundamental to molecular biology and ...
Human missions to Mars will fundamentally transform how the planet is explored, enabling new scienti...
For studying life within the rocks of Earth and Mars, we demonstrate, in an ISO 5 clean room, a proc...
No instrument capable of direct life detection has been included on a mission payload to Mars since ...
Recent studies regarding the origins of life and Mars-Earth meteorite transfer simulations suggest t...
The detection of extant life is a major focus of many planned future planetary missions, a current c...
© 2020, The Author(s). Nanopore sequencing, as represented by Oxford Nanopore Technologies’ MinION, ...
Biological informational polymers such as nucleic acids have the potential to provide unambiguous ev...
In many parts of the world, human-mediated environmental change is depleting biodiversity faster tha...
As DNA sequencing technology advances, in-field genome sequencing capabilities are being explored, u...
Abstract Life beyond Earth may be based on RNA or DNA if such life is related to life on Earth throu...
Biodiversity research is becoming increasingly dependent on genomics, which allows the unprecedented...
Biodiversity research is becoming increasingly dependent on genomics, which allows the unprecedented...
Rapid DNA sequencing and analysis has been a long-sought goal in remote research and point-of-care m...
Abstract Biological informational polymers such as nucleic acids have the potential to provide unamb...
Determination of the genetic code embedded in DNA molecules is fundamental to molecular biology and ...
Human missions to Mars will fundamentally transform how the planet is explored, enabling new scienti...