The global Plant Disease Diagnostics Market is expected to grow on an enormous note In Upcoming Years. The industry, in all, is slated to witness an insight-driven revolution, which would, in turn, open the doors for efficient and effective solutions. These insights would be backed by digital tech catalysis, right from making use of consumers’ data for understanding their preferences to getting those customized solutions at the right time. This trend is expected to take the domains to a new level altogether.
According to a survey in Europe, around 16.5 million hectares of land was certified as organic in 2019. This included 430,000 organic producers and 82,000 organic processors. This estimate across Europe has doubled since 2006, and accounted for around 3.3% of the total agricultural area.
Agricultural biotechnology techniques are used to improve the quality of plants, animals, and microorganisms for specific agricultural uses. Based on the understanding of DNA, scientists have developed solutions to increase agricultural productivity. Starting from the ability to identify genes that may confer advantages on certain crops, and the ability to work with such characteristics very precisely, biotechnology enhances breeders’ ability to make improvements in crops and livestock. Biotechnology enables improvements that are not possible with traditional crossing of related species alone.
Rising importance of forest plantations increases demand for plant disease diagnostics. Several studies have been conducted to assess effective methods for early detection and identification of plant diseases in planting materials. New molecular genetic methods have been studied that can be used to screen forest trees for different pathogens to evaluate disease resistance.
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With changing technology and advancements in agriculture research, cultivators are becoming more aware about advanced technologies to increase yield. Some service providers have developed their own detection and diagnosis methods, and most of them use readily available diagnostic kits to identify plant disease symptoms at an early stage so as to avoid destruction of entire crops and the spread of plant diseases.
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Key Takeaways from Market Study
“Increasing crop losses due to plant diseases and changing climate are expected to drive market growth over the coming years,” says an analyst of Persistence Market Research.
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Market Competition
New product launches and approvals, agreements, collaborations, and partnerships have emerged as the key growth strategy adopted by industry players. By focusing on these strategies, key stakeholders are expanding their geographic footprints and strengthening their existing product portfolios.
What Does the Report Cover?
Persistence Market Research offers a unique perspective and actionable insights on the plant disease diagnostics market in its latest study, presenting historical demand assessment of 2016 – 2020 and projections for 2021 – 2031.
The research study is based on the product (Kits [Elisa kits, DNA based diagnostics kits, protein based diagnostics kits], lateral flow devices, DNA/RNA probes, accessories and other consumables, software and cloud databases, test (molecular tests[PCR- based assays, PCR & RT-PCR, multiplex PCR], isothermal amplification assays[microarray assay, NASBA, the LAMP assay], serological tests [ELSIA,TBIA, QCMI], tests using electronic technology), sample (seeds, grains, plants, trees, fruits, others), end user(agricultural laboratories, academic and research institutes, food processing laboratories, contract research organization, others), across seven key regions of the world.
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