Nucleic acid detection is vital for agricultural applications including trait detection during breeding, pest surveillance, and pathogen identification. Here, we use a modified version of the CRISPR-based nucleic acid detection platform SHERLOCK to quantify levels of a glyphosate resistance gene in a mixture of soybeans and to detect multiple plant genes in a single reaction. SHERLOCK is rapid (∼15 min), quantitative, and portable, and can process crude soybean extracts as input material for minimal nucleic acid sample preparation. This field-ready SHERLOCK platform with color-based lateral flow readout can be applied for detection and quantitation of genes in a range of agricultural applications
Biospecific interaction analysis (BIA) was performed using surface plasmon resonance (SPR) and biose...
Diagnostic technologies for the detection of plant pathogens with point-of-care capability and high ...
AbstractIn many crops species, the development of a rapid and precise cultivar discrimination system...
Nucleic acid detection is vital for agricultural applications including trait detection during breed...
Glyphosate-tolerant, Roundup Ready (RR) soybeans account for about 57% of all genetically modified (...
Plant pathogens are a serious threat to agriculture for long-term viability and cost loss of billion...
Viral infections in plants threaten food security. Thus, simple and effective methods for virus dete...
Here we report the adaptation and optimization of an efficient, accurate and inexpensive assay that ...
[EN] Viral infections in plants threaten food security. Thus, simple and effective methods for virus...
CRISPR/Cas9-based ribonucleoprotein (RNP)-mediated system has the property of minimizing the effects...
The lack of a rapid and reliable means for routine pathogen identification has been one of the main ...
Rapid, sensitive and visual detection of plant viruses is conducive to effective prevention and cont...
Global climate change has drastically affected agricultural production. Moreover, pandemics, wars, a...
Early detection of plant diseases is a crucial factor to prevent or limit the spread of a rising inf...
<p>Owing to the labelling requirements of food and feed products containing materials derived ...
Biospecific interaction analysis (BIA) was performed using surface plasmon resonance (SPR) and biose...
Diagnostic technologies for the detection of plant pathogens with point-of-care capability and high ...
AbstractIn many crops species, the development of a rapid and precise cultivar discrimination system...
Nucleic acid detection is vital for agricultural applications including trait detection during breed...
Glyphosate-tolerant, Roundup Ready (RR) soybeans account for about 57% of all genetically modified (...
Plant pathogens are a serious threat to agriculture for long-term viability and cost loss of billion...
Viral infections in plants threaten food security. Thus, simple and effective methods for virus dete...
Here we report the adaptation and optimization of an efficient, accurate and inexpensive assay that ...
[EN] Viral infections in plants threaten food security. Thus, simple and effective methods for virus...
CRISPR/Cas9-based ribonucleoprotein (RNP)-mediated system has the property of minimizing the effects...
The lack of a rapid and reliable means for routine pathogen identification has been one of the main ...
Rapid, sensitive and visual detection of plant viruses is conducive to effective prevention and cont...
Global climate change has drastically affected agricultural production. Moreover, pandemics, wars, a...
Early detection of plant diseases is a crucial factor to prevent or limit the spread of a rising inf...
<p>Owing to the labelling requirements of food and feed products containing materials derived ...
Biospecific interaction analysis (BIA) was performed using surface plasmon resonance (SPR) and biose...
Diagnostic technologies for the detection of plant pathogens with point-of-care capability and high ...
AbstractIn many crops species, the development of a rapid and precise cultivar discrimination system...