
Agrigenomics Market Share, Size, Trends, Industry Analysis Report, By Sequencer Type (Sanger Sequencing, Illumina Hi Seq Family, Pacbio Sequencers, Solid Sequencers, Others); By Application; By Objective; By Region; Segment Forecast, 2022 - 2030
Description
The global agrigenomics market size is expected to reach USD 11.73 billion by 2034, according to a new study by Polaris Market Research. The report “Agrigenomics Market Share, Size, Trends, Industry Analysis Report, By Sequencer Type (Sanger Sequencing, Illumina Hi Seq Family, Pacbio Sequencers, Solid Sequencers, Others); By Application; By Objective; By Region; Segment Forecast, 2025 - 2034” gives a detailed insight into current market dynamics and provides analysis on future market growth.
The rising inclination towards the consumption of organic food products among the population, increasing utilization of genomics solutions for crops, and technological developments are the chief driving factors that are fostering the agrigenomics industry demand globally. Additionally, surging demand for the bioengineered crop because of characteristics like long shelf life, better nutritional values, and high capacity to sustain against climate change are further attributed to the agrigenomics industry growth.
Moreover, growing production of hybrid crops, development of the agriculture sector, and rising government support for the cultivation of nutritious and quality crops may also create lucrative opportunities for the agrigenomics industry demand over the forecast period.
Based on the sequence type, the Illumina Hi seq family segment dominates the global industry and is anticipated to lead the industry over the forecasting period. The segment is a powerful sequencing system that works with the flexibility to perform various applications. The growth of the agriculture sector and the rising emphasis of industry players on introducing new products is attributed to the segment growth.
In contrast, the sanger sequencing segment shows a progressive growth rate in the global industry. This sequencing type is majorly adopted for the research purposes like directing smaller genomic areas in a more significant number of samples, sequencing of mutable sections, and confirmative results from next-generation sequencing (NGS) studies. Thereby, rising investments in research & development activities and increasing demand for livestock production foster the segment demand during the projected period.
The availability of advanced tools & techniques of genome analysis is the chief driving factor that may augment the industry growth across the globe. The rapid developments in the functional genomics segment coupled with the high utilization of massively parallel sequencing technologies are gaining massive traction among the end-use segment. In addition, the advances in protocols also lead to the competent study of cellular performance at the molecular level.
Moreover, molecular marker-assisted crop breeding is the best alternative for applied genomics in agriculture as this technique is more efficient than traditional breeding programs. Accordingly, advanced genome classification methods have raised crops' quality and need less time, fertilizers, pesticides, and water for yielding. Furthermore, for livestock, the emergence of novel technologies further improves the production of milk yield, meat quality, and reproductive life. Hence, these factors offer various growth prospects for market expansion in the projected period.
Market participants include Agilent Technologies, Affymetrix, Biogenetic Services, Edico Genome, Eurofins Scientific, Thermo Fisher Scientific, Genotypic Technology Pvt Ltd, GalSeq Srl, Illumina., LGC Limited, SciGenom Labs, Tecan, and Zoetics are some of the key players operating in the global market. For instance, in February 2021, Thermo Fisher Scientific acquired sorting technology from the Propel Labs. This acquisition aims to bring flow cytometry expertise and R&D capabilities.
Polaris market research has segmented the agrigenomics market report on the basis of sequencer type, application, objective, and region:
Agrigenomics, Sequencer Type Outlook (Revenue - USD Billion, 2020 - 2034)
Sanger Sequencing
Illumina Hi Seq Family
Pacbio Sequencers
Solid Sequencers
Others
Agrigenomics, Application Outlook (Revenue - USD Billion, 2020 - 2034)
Crops
Livestock
Agrigenomics, Objective Outlook (Revenue - USD Billion, 2020 - 2034)
DNA Extraction & Purification
DNA/RNA Sequencing
Genotyping
Gene Expression Profiling
Marker-Assisted Selection
GMO/Trait Purity Testing
Other Objectives
Agrigenomics, Regional Outlook (Revenue - USD Billion, 2020 - 2034)
North America
U.S.
Canada
Europe
France
Germany
UK
Italy
Netherlands
Spain
Russia
Asia Pacific
China
India
Japan
Malaysia
South Korea
Indonesia
Latin America
Mexico
Brazil
Argentina
Middle East & Africa
UAE
Saudi Arabia
Israel
South Africa
The rising inclination towards the consumption of organic food products among the population, increasing utilization of genomics solutions for crops, and technological developments are the chief driving factors that are fostering the agrigenomics industry demand globally. Additionally, surging demand for the bioengineered crop because of characteristics like long shelf life, better nutritional values, and high capacity to sustain against climate change are further attributed to the agrigenomics industry growth.
Moreover, growing production of hybrid crops, development of the agriculture sector, and rising government support for the cultivation of nutritious and quality crops may also create lucrative opportunities for the agrigenomics industry demand over the forecast period.
Based on the sequence type, the Illumina Hi seq family segment dominates the global industry and is anticipated to lead the industry over the forecasting period. The segment is a powerful sequencing system that works with the flexibility to perform various applications. The growth of the agriculture sector and the rising emphasis of industry players on introducing new products is attributed to the segment growth.
In contrast, the sanger sequencing segment shows a progressive growth rate in the global industry. This sequencing type is majorly adopted for the research purposes like directing smaller genomic areas in a more significant number of samples, sequencing of mutable sections, and confirmative results from next-generation sequencing (NGS) studies. Thereby, rising investments in research & development activities and increasing demand for livestock production foster the segment demand during the projected period.
The availability of advanced tools & techniques of genome analysis is the chief driving factor that may augment the industry growth across the globe. The rapid developments in the functional genomics segment coupled with the high utilization of massively parallel sequencing technologies are gaining massive traction among the end-use segment. In addition, the advances in protocols also lead to the competent study of cellular performance at the molecular level.
Moreover, molecular marker-assisted crop breeding is the best alternative for applied genomics in agriculture as this technique is more efficient than traditional breeding programs. Accordingly, advanced genome classification methods have raised crops' quality and need less time, fertilizers, pesticides, and water for yielding. Furthermore, for livestock, the emergence of novel technologies further improves the production of milk yield, meat quality, and reproductive life. Hence, these factors offer various growth prospects for market expansion in the projected period.
Market participants include Agilent Technologies, Affymetrix, Biogenetic Services, Edico Genome, Eurofins Scientific, Thermo Fisher Scientific, Genotypic Technology Pvt Ltd, GalSeq Srl, Illumina., LGC Limited, SciGenom Labs, Tecan, and Zoetics are some of the key players operating in the global market. For instance, in February 2021, Thermo Fisher Scientific acquired sorting technology from the Propel Labs. This acquisition aims to bring flow cytometry expertise and R&D capabilities.
Polaris market research has segmented the agrigenomics market report on the basis of sequencer type, application, objective, and region:
Agrigenomics, Sequencer Type Outlook (Revenue - USD Billion, 2020 - 2034)
Sanger Sequencing
Illumina Hi Seq Family
Pacbio Sequencers
Solid Sequencers
Others
Agrigenomics, Application Outlook (Revenue - USD Billion, 2020 - 2034)
Crops
Livestock
Agrigenomics, Objective Outlook (Revenue - USD Billion, 2020 - 2034)
DNA Extraction & Purification
DNA/RNA Sequencing
Genotyping
Gene Expression Profiling
Marker-Assisted Selection
GMO/Trait Purity Testing
Other Objectives
Agrigenomics, Regional Outlook (Revenue - USD Billion, 2020 - 2034)
North America
U.S.
Canada
Europe
France
Germany
UK
Italy
Netherlands
Spain
Russia
Asia Pacific
China
India
Japan
Malaysia
South Korea
Indonesia
Latin America
Mexico
Brazil
Argentina
Middle East & Africa
UAE
Saudi Arabia
Israel
South Africa
Table of Contents
118 Pages
- 1. Introduction
- 1.1. Report Description
- 1.1.1. Objectives of the Study
- 1.1.2. Market Scope
- 1.1.3. Assumptions
- 1.2. Stakeholders
- 2. Executive Summary
- 2.1. Market Highlights
- 3. Research Methodology
- 3.1. Overview
- 3.1.1. Data Mining
- 3.2. Data Sources
- 3.2.1. Primary Sources
- 3.2.2. Secondary Sources
- 4. South Korea Industrial Microwave Heating Equipment Market Insights
- 4.1. Industrial Microwave Heating Equipment Market – Market Snapshot
- 4.2. Industrial Microwave Heating Equipment Market Dynamics
- 4.2.1. Drivers and Opportunities
- 4.2.1.1. Strong Growth in South Korea’s Electronics Manufacturing Industry
- 4.2.1.2. Rising Adoption in the South Korean Food Processing Sector
- 4.2.2. Restraints and Challenges
- 4.2.2.1. High Initial Cost of Manufacturing
- 4.3. Porter’s Five Forces Analysis
- 4.3.1. Bargaining Power of Suppliers (Moderate)
- 4.3.2. Threats of New Entrants: (Low)
- 4.3.3. Bargaining Power of Buyers (Moderate)
- 4.3.4. Threat of Substitute (Moderate)
- 4.3.5. Rivalry among existing firms (High)
- 4.4. PESTEL Analysis
- 4.5. Industrial Microwave Heating Equipment Market Trends
- 4.6. Value Chain Analysis
- 5. South Korea Industrial Microwave Heating Equipment Market, by Equipment
- 5.1. Key Findings
- 5.2. Introduction
- 5.2.1. South Korea Industrial Microwave Heating Equipment Market, by Equipment, 2020-2034 (USD million)
- 5.3. RF Solid State Amplifiers
- 5.3.1. South Korea Industrial Microwave Heating Equipment Market, by RF Solid State Amplifiers, 2020-2034 (USD million)
- 5.4. Magnetron
- 5.4.1. South Korea Industrial Microwave Heating Equipment Market, by Magnetron, 2020-2034 (USD million)
- 6. South Korea Industrial Microwave Heating Equipment Market, by Power
- 6.1. Key Findings
- 6.2. Introduction
- 6.2.1. South Korea Industrial Microwave Heating Equipment Market, by Power, 2020-2034 (USD million)
- 6.3. 0 kW - 25 kW
- 6.3.1. South Korea Industrial Microwave Heating Equipment Market, by 0 kW - 25 kW, 2020-2034 (USD million)
- 6.4. 26 kW - 50 kW
- 6.4.1. South Korea Industrial Microwave Heating Equipment Market, by 26 kW - 50 kW, 2020-2034 (USD million)
- 6.5. 51 kW - 100 kW
- 6.5.1. South Korea Industrial Microwave Heating Equipment Market, by 51 kW - 100 kW 2020-2034 (USD million)
- 6.6. More than 100 kW
- 6.6.1. South Korea Industrial Microwave Heating Equipment Market, by More than 100 kW, 2020-2034 (USD million)
- 7. South Korea Industrial Microwave Heating Equipment Market, by Application
- 7.1. Key Findings
- 7.2. Introduction
- 7.2.1. South Korea Industrial Microwave Heating Equipment Market, by Application, 2020-2034 (USD million)
- 7.3. Pharmaceutical
- 7.3.1. South Korea Industrial Microwave Heating Equipment Market, by Pharmaceutical, 2020-2034 (USD million)
- 7.4. Plastics & Rubber
- 7.4.1. South Korea Industrial Microwave Heating Equipment Market, by Plastics & Rubber, 2020-2034 (USD million)
- 7.5. Chemicals
- 7.5.1. South Korea Industrial Microwave Heating Equipment Market, by Chemicals, 2020-2034 (USD million)
- 7.6. Paper
- 7.6.1. South Korea Industrial Microwave Heating Equipment Market, by Paper, 2020-2034 (USD million)
- 7.7. Food & Beverage
- 7.7.1. South Korea Industrial Microwave Heating Equipment Market, by Food & Beverage, 2020-2034 (USD million)
- 7.8. Others
- 7.8.1. South Korea Industrial Microwave Heating Equipment Market, by Others, 2020-2034 (USD million)
- 8. Competitive Landscape
- 8.1. Expansion and Acquisition Analysis
- 8.1.1. Expansion
- 8.1.2. Acquisitions
- 8.2. Partnerships/Collaborations/Agreements/Exhibitions
- 9. Company Profiles
- 9.1. Ferrite Microwave Technologies
- 9.1.1. Company Overview
- 9.1.2. Financial Performance
- 9.1.3. Product Benchmarking
- 9.1.4. Recent Development
- 9.2. Hitachi Power Solutions Co., Ltd
- 9.2.1. Company Overview
- 9.2.2. Financial Performance
- 9.2.3. Product Benchmarking
- 9.2.4. Recent Development
- 9.3. Kerone
- 9.3.1. Company Overview
- 9.3.2. Financial Performance
- 9.3.3. Product Benchmarking
- 9.3.4. Recent Development
- 9.4. L3Harris Technologies, Inc.
- 9.4.1. Company Overview
- 9.4.2. Financial Performance
- 9.4.3. Product Benchmarking
- 9.4.4. Recent Development
- 9.5. Muegge Group
- 9.5.1. Company Overview
- 9.5.2. Financial Performance
- 9.5.3. Product Benchmarking
- 9.5.4. Recent Development
- 9.6. Panasonic Corporation
- 9.6.1. Company Overview
- 9.6.2. Financial Performance
- 9.6.3. Product Benchmarking
- 9.6.4. Recent Development
- 9.7. PÜSCHNER
- 9.7.1. Company Overview
- 9.7.2. Financial Performance
- 9.7.3. Product Benchmarking
- 9.7.4. Recent Development
- 9.8. Richardson Electronics, Ltd.
- 9.8.1. Company Overview
- 9.8.2. Financial Performance
- 9.8.3. Product Benchmarking
- 9.8.4. Recent Development
- 9.9. Thermex Thermatron
- 9.9.1. Company Overview
- 9.9.2. Financial Performance
- 9.9.3. Product Benchmarking
- 9.9.4. Recent Development
- 9.10. Toshiba Corporation
- 9.10.1. Company Overview
- 9.10.2. Financial Performance
- 9.10.3. Product Benchmarking
- 9.10.4. Recent Development
- 9.11. Yamamoto Vinita Co.
- 9.11.1. Company Overview
- 9.11.2. Financial Performance
- 9.11.3. Product Benchmarking
- 9.11.4. Recent Development
Pricing
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