Global climate change has drastically affected agricultural production. Moreover, pandemics, wars, and rapid decreases in natural resources point to the emerging need for famine prevention by increasing smart agriculture and food production and decreasing food loss and waste. To achieve this, plant and food diseases should be detected early and rapidly treated. From this perspective, we focus on recent, simple, and instrument-free, nucleic acid extraction techniques, which are capable of isolating high-quality nucleic acids from plant tissues, to be either easily used in the field or simply integrated into various nucleic acid detection platforms or sensors
Plant viruses pose a continuous and serious threat to crop production worldwide, while globalization...
Foodborne pathogenic bacteria present a crucial food safety issue. Conventional diagnostic methods a...
Many routine analyses of plants require the preparation or extraction of nucleic acid for PCR analys...
Plant pathogens are a serious threat to agriculture for long-term viability and cost loss of billion...
Early detection of plant diseases is a crucial factor to prevent or limit the spread of a rising inf...
Plant diseases are responsible for major economic losses in the agricultural industry worldwide. Mon...
Plant pathogenic bacteria, phytoplasmas, viruses and viroids are difficult to control, and preventiv...
Diagnostic technologies for the detection of plant pathogens with point-of-care capability and high ...
Early detection of plant diseases is a crucial factor to prevent or limit the spread of a rising inf...
The ability to perform nucleic acid-based detection of plant pathogens away from conventional labora...
Nucleic acid detection is vital for agricultural applications including trait detection during breed...
Background: Plant viral diseases present major constraints to crop production. Effective sampling of...
Gene amplification techniques such as polymerase chain reaction (PCR) are widely used for the diagno...
Food losses due to crop infections from pathogens such as bacteria, viruses and fungi are persistent...
Several procedures to isolate DNA from difficult sources have previously been described, but they ar...
Plant viruses pose a continuous and serious threat to crop production worldwide, while globalization...
Foodborne pathogenic bacteria present a crucial food safety issue. Conventional diagnostic methods a...
Many routine analyses of plants require the preparation or extraction of nucleic acid for PCR analys...
Plant pathogens are a serious threat to agriculture for long-term viability and cost loss of billion...
Early detection of plant diseases is a crucial factor to prevent or limit the spread of a rising inf...
Plant diseases are responsible for major economic losses in the agricultural industry worldwide. Mon...
Plant pathogenic bacteria, phytoplasmas, viruses and viroids are difficult to control, and preventiv...
Diagnostic technologies for the detection of plant pathogens with point-of-care capability and high ...
Early detection of plant diseases is a crucial factor to prevent or limit the spread of a rising inf...
The ability to perform nucleic acid-based detection of plant pathogens away from conventional labora...
Nucleic acid detection is vital for agricultural applications including trait detection during breed...
Background: Plant viral diseases present major constraints to crop production. Effective sampling of...
Gene amplification techniques such as polymerase chain reaction (PCR) are widely used for the diagno...
Food losses due to crop infections from pathogens such as bacteria, viruses and fungi are persistent...
Several procedures to isolate DNA from difficult sources have previously been described, but they ar...
Plant viruses pose a continuous and serious threat to crop production worldwide, while globalization...
Foodborne pathogenic bacteria present a crucial food safety issue. Conventional diagnostic methods a...
Many routine analyses of plants require the preparation or extraction of nucleic acid for PCR analys...