Agricultural Biotechnology Market
PUBLISHED: 2022 ID: SMRC21722
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Agricultural Biotechnology Market

Agricultural Biotechnology Market Forecasts to 2028 – Global Analysis By Product (Crop Protection Products, Transgenic Seeds), Type (Molecular Diagnostics, Molecular Markers) and By Geography

4.2 (20 reviews)
4.2 (20 reviews)
Published: 2022 ID: SMRC21722

This report covers the impact of COVID-19 on this global market
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Years Covered

2020-2028

Estimated Year Value (2022)

US $31.89 BN

Projected Year Value (2028)

US $58.05 BN

CAGR (2022 - 2028)

10.5%

Regions Covered

North America, Europe, Asia Pacific, South America, and Middle East & Africa

Countries Covered

US, Canada, Mexico, Germany, UK, Italy, France, Spain, Japan, China, India, Australia, New Zealand, South Korea, Rest of Asia Pacific, South America, Argentina, Brazil, Chile, Middle East & Africa, Saudi Arabia, UAE, Qatar, and South Africa

Largest Market

North America

Highest Growing Market

Asia Pacific


According to Stratistics MRC, the Global Agricultural Biotechnology Market is accounted for $31.89 billion in 2022 and is expected to reach $58.05 billion by 2028 growing at a CAGR of 10.5% during the forecast period. Agricultural biotechnology is a collection of new techniques that develops plant, animal, and living organisms to enhance crop productivity and efficiency. It delivers farmers innovative technology that can make crop production cheaper and more reasonable. Agricultural biotechnology can be utilized to shield crops from destructive diseases. It is mainly used to modify the genetic sequence of crops known as transgenic or genetically modified crops, which increases the crop productivity.  

As per International Service for the Acquisition of Agri-biotech Application (ISAAA) around 2.14 billion hectares of biotechnology crops have been developed commercially from 1996 to 2016. This includes 0.13 billion hectares of biotechnology canola, 1.04 billion of biotechnology soybean, and 0.34 billion of biotechnology cotton. Further, this factor is estimated to stimulate the growth of the market in the forecast period.



Market Dynamics:

Driver:

Increase in need to improve nutritional value by biotech corps


Researchers are using biotechnology for the development of foods with improved nutrition. Biotechnology plays a vital role to upgrade some plant proteins that are presently considered incomplete or of low biological value, as they lack one or more of the ‘essential’ amino acids; for instance, maize with improved protein balance and sweet potatoes with increased total protein content. Biotechnology also reduces the toxicity of certain foods. Advancements in plant transformation and transgene expression also allow the use of plants as bioreactors to produce a variation of bio-products on a large scale and low cost. Several proof-of-concept plant-derived healthcare products have been generated and several commercialized.

Restraint:

High Cost


The higher costs for the expansion of its products are hampering the growth of the market. As per the ERS of the USDA, spending on agricultural research has declined in high-income countries. The drop between 2009 and 2013 was 6% for high-income countries such as the US, Australia, and France, and this decline continues to date. The increase in costs may be passed on to the farmers from the manufacturers, which may hamper the acceptance of agricultural biotechnology products in the forecast years.

Opportunity:

Expansion of Biofuels


The formation of biofuels is another appropriate example of the application of biotechnology in agriculture. Biofuels are made from natural sources such as algae, corn stover, and sugarcane bagasse rather than petroleum products. This helps reduce greenhouse gas emissions, as they do not generate any carbon when burned. Biofuels are also used in oil cleanup operations, as biofuels have been confirmed to effectively address this issue since the methyl esters contained in the fuel source are a powerful solvent that can serve as a washing agent for contaminated shorelines. This also increases the range of fuel sources available and may promote competition, thus lowering prices. Developing biofuels using sophisticated biotech technologies offers the potential to cut greenhouse gas emissions, while also providing a more reliable fuel source.

Threat:

Adverse impact on the environment


Agricultural biotechnology is in its infancy and its effects upon the environment are not well known. However, research has shown that it may lead to the proliferation of herbicide resistant weed. Genetic engineering includes the transfer of specific genes between organisms. In that regard, the technology could transfer unwanted genes into weeds and pests, thus making them more difficult to eradicate. Additionally, it may create new microorganisms such as bacteria and viruses through the transfer of genes that make them more virulent. Genetically engineered plants produce new products such as proteins that might be toxic to wildlife. This is one of the factors threatening the market growth.

The supply chain disruptions as a result of COVID-19 pandemic are a major factor that will pose a major challenge to the growth of the market. Besides, fluctuating costs of the raw materials, lack of awareness among the small-scale livestock growers and lack required infrastructure facilities in the underdeveloped economies will further slowdown the market growth rate. The pandemic has put a heavy burden on the food processing industry and producers, who are unable to work due to the lockdowns. Following the economic slowdown, biofuel prices collapsed in 2020 and so did the prices of their major feedstocks, such as maize and oilseeds. Despite the fact that the income losses during the lockdown and local supply chain disturbances have inevitably led to a vast food shortage in many industrialized economies, the demand for agricultural products didn’t reduce, owing to the sustained food consumption.

The genetic engineering, segment is expected to be the largest during the forecast period

The genetic engineering, segment is expected to be the largest during the forecast period. The genetic engineering segment is getting tailwinds for its ability to assist in the production of a high amount of crops with a better nutritional standard.

The Transgenic Crop segment is expected to have the highest CAGR during the forecast period

Transgenic means that genes have been transferred using recombinant DNA technology. In general, a transgenic crop has one or more genes that have been purposefully transferred from a different species or an unrelated plant. Plants are also modified to increase their tolerance to cold, frost, or drought; all making a crop easier to grow in a constantly changing environment. This makes the plants safer for the consumer and enables the farmer to save money on chemicals. Most genetically modified soybean is used for food for animals, predominantly poultry and livestock, and to make soybean oil. Thus, transgenic crops are a cost-effective safer method of producing crop products, which makes them appealing and potentially profitable.

Region with highest share:

North America is projected to hold the largest market share during the forecast period, owing to its wide range of agro-climatic zones and crops, along with a large global Genetically Modified (GM) planted area. In this province, the U.S. and Canada together represent around 50% of the global GM area and around 10% global planted area. Major crops cultivated in around 70% of the cultivated area of North America include corn, soybean, and wheat, followed by alfalfa, cotton, canola, & barley. Moreover, North America is a net exporter of agricultural products with around 30% production of corn, soybean, and wheat globally.

Region with highest CAGR:

Asia Pacific is projected to have the highest CAGR over the forecast period, this area is categorized by the existence of several with different political & economic systems, cultural backgrounds, and languages. Within these, the agricultural industry varies from the adoption of high technical standards in Japan to basic systems in India. Asia Pacific serves as a lucrative market as the region occupies nearly 40% of the global cropped area (nearly 600 million hectares). The province is also characterized by the importance of rice crop (except Australasia), and the predominance of smallholders. Rice is available at highly subsidized rates across Asia and food security is a major concern for local governments in most of its developing economies. The region holds nearly 90% of the total crop area for rice, with 20% and 28% in China and India respectively.



Key players in the market

Some of the key players profiled in the Agricultural Biotechnology Market include Vilmorin, Valent BioSciences Corporation (USA), Syngenta, Rubicon, Performance Plants Inc, Mycogen Seeds, Monsanto, Marrone Bio Innovations, Inc. (USA), KWS SAAT AG, Global Bio-chem Technology, Evogene Ltd, Eurofins Genescan AG (U.S., Du Pont Pioneer Hi-Bred, Dow AgroSciences LLC, Certis USA, Biocentury Transgene Co. Ltd. (China), Bayer CropScience AG  , ADAMA Agricultural Solutions Ltd.

Key Developments:

In February 2021: ADAMA Agricultural Solutions Ltd. launched a novel prothioconazole fungicide that offers improved cereal and oilseed rape disease (OSR) disease control.

In April 29, 2022: KWS collaborated with DKE data’s. The establishment of cross-supplier networks and the exchange and joint use of data are important levers for tapping the potential of agricultural digitalization. With the data exchange platform agrirouter, DKE Data drives this forward by bringing together international companies and their digital services in the agricultural value chain. Seed producer KWS is joining this network with its digital consulting platform myKWS.

In August 2020: Syngenta AG acquired Sensako (Pty) Ltd., The acquisition lay the foundation for growth and help accelerate Syngenta Seeds’ entry into the South African seeds market in wheat, corn and sunflower.
 
Types Covered:
• Molecular Diagnostics
• Molecular Markers
• Tissue Culture
• Vaccines
• Genetic Engineering
 
Products Covered:
• Crop Protection Products
• Transgenic Seeds
• Synthetic biology-enabled products

Technologies Covered:
• Biochips
• Ribonucleic Acid Interference (RNAi)
• Genome Editing Tools
• Synthetic Biology
• Deoxy Ribonucleic Acid (DNA) Sequencing

Regions Covered:
• North America
o US
o Canada
o Mexico
• Europe
o Germany
o UK
o Italy
o France
o Spain
o Rest of Europe
• Asia Pacific
o Japan       
o China       
o India       
o Australia 
o New Zealand
o South Korea
o Rest of Asia Pacific   
• South America
o Argentina
o Brazil
o Chile
o Rest of South America
• Middle East & Africa
o Saudi Arabia
o UAE
o Qatar
o South Africa
o Rest of Middle East & Africa

What our report offers:
- Market share assessments for the regional and country-level segments
- Strategic recommendations for the new entrants
- Covers Market data for the years 2020, 2021, 2022, 2025 and 2028
- Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements

Free Customization Offerings:
All the customers of this report will be entitled to receive one of the following free customization options:
• Company Profiling
o Comprehensive profiling of additional market players (up to 3)
o SWOT Analysis of key players (up to 3)
• Regional Segmentation
o Market estimations, Forecasts and CAGR of any prominent country as per the client's interest (Note: Depends on feasibility check)
• Competitive Benchmarking
o Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances

Table of Contents

1 Executive Summary  
   
2 Preface  

 2.1 Abstract 
 2.2 Stake Holders 
 2.3 Research Scope 
 2.4 Research Methodology 
  2.4.1 Data Mining
  2.4.2 Data Analysis
  2.4.3 Data Validation
  2.4.4 Research Approach
 2.5 Research Sources 
  2.5.1 Primary Research Sources
  2.5.2 Secondary Research Sources
  2.5.3 Assumptions
   
3 Market Trend Analysis  
 3.1 Introduction 
 3.2 Drivers 
 3.3 Restraints 
 3.4 Opportunities 
 3.5 Threats 
 3.6 Product Analysis 
 3.7 Technology Analysis 
 3.8 Emerging Markets 
 3.9 Impact of Covid-19 
   
4 Porters Five Force Analysis  
 4.1 Bargaining power of suppliers 
 4.2 Bargaining power of buyers 
 4.3 Threat of substitutes 
 4.4 Threat of new entrants 
 4.5 Competitive rivalry 
   
5 Global Agricultural Biotechnology Market, By Type  
 5.1 Introduction 
 5.2 Vaccines     
 5.3 Tissue Culture    
 5.4 Molecular Markers    
 5.5 Molecular Diagnostics   
 5.6 Genetic Engineering   
   
6 Global Agricultural Biotechnology Market, By Product  
 6.1 Introduction 
 6.2 Crop Protection Products   
  6.2.1 Biopesticides  
  6.2.2 Biostimulants  
 6.3 Transgenic Seeds    
  6.3.1 Fruits and vegetables 
  6.3.2 Maize   
  6.3.3 Soybean   
  6.3.4 Cotton   
  6.3.5 Corn   
  6.3.6 Canola   
  6.3.7 Sugarcane  
 6.4 Synthetic Biology-Enabled Products  
   
7 Global Agricultural Biotechnology Market, By Technology  
 7.1 Introduction 
 7.2 Synthetic Biology    
 7.3 Ribonucleic Acid Interference (RNAi)  
 7.4 Genome Editing Tools   
 7.5 Deoxy Ribonucleic Acid (DNA) Sequencing 
 7.6 Biochips     
   
8 Global Agricultural Biotechnology Market, By Geography  
 8.1 Introduction 
 8.2 North America 
  8.2.1 US
  8.2.2 Canada
  8.2.3 Mexico
 8.3 Europe 
  8.3.1 Germany
  8.3.2 UK
  8.3.3 Italy
  8.3.4 France
  8.3.5 Spain
  8.3.6 Rest of Europe
 8.4 Asia Pacific 
  8.4.1 Japan
  8.4.2 China
  8.4.3 India
  8.4.4 Australia
  8.4.5 New Zealand
  8.4.6 South Korea
  8.4.7 Rest of Asia Pacific
 8.5 South America 
  8.5.1 Argentina
  8.5.2 Brazil
  8.5.3 Chile
  8.5.4 Rest of South America
 8.6 Middle East & Africa 
  8.6.1 Saudi Arabia
  8.6.2 UAE
  8.6.3 Qatar
  8.6.4 South Africa
  8.6.5 Rest of Middle East & Africa
   
9 Key Developments  
 9.1 Agreements, Partnerships, Collaborations and Joint Ventures 
 9.2 Acquisitions & Mergers 
 9.3 New Product Launch 
 9.4 Expansions 
 9.5 Other Key Strategies 
   
10 Company Profiling  
 10.1 Vilmorin     
 10.2 Valent BioSciences Corporation (USA)   
 10.3 Syngenta     
 10.4 Rubicon     
 10.5 Performance Plants Inc.   
 10.6 Mycogen Seeds    
 10.7 Monsanto    
 10.8 Marrone Bio Innovations, Inc. (USA)   
 10.9 KWS SAAT AG    
 10.10 Global Bio-chem Technology   
 10.11 Evogene Ltd    
 10.12 Eurofins Genescan AG (U.S.)  
 10.13 Du Pont Pioneer Hi-Bred   
 10.14 Dow AgroSciences LLC   
 10.15 Certis USA    
 10.16 Biocentury Transgene Co. Ltd. (China)  
 10.17 Bayer CropScience AG   
 10.18 ADAMA Agricultural Solutions Ltd.  


List of Tables   
1 Global Agricultural Biotechnology Market Outlook, By Region (2020-2028) (US $MN)   
2 Global Agricultural Biotechnology Market Outlook, By Type (2020-2028) (US $MN)   
3 Global Agricultural Biotechnology Market Outlook, By Vaccines (2020-2028) (US $MN)   
4 Global Agricultural Biotechnology Market Outlook, By Tissue Culture (2020-2028) (US $MN)   
5 Global Agricultural Biotechnology Market Outlook, By Molecular Markers (2020-2028) (US $MN)   
6 Global Agricultural Biotechnology Market Outlook, By Molecular Diagnostics (2020-2028) (US $MN)   
7 Global Agricultural Biotechnology Market Outlook, By Genetic Engineering   (2020-2028) (US $MN)   
8 Global Agricultural Biotechnology Market Outlook, By Product (2020-2028) (US $MN)   
9 Global Agricultural Biotechnology Market Outlook, By Crop Protection Products (2020-2028) (US $MN)   
10 Global Agricultural Biotechnology Market Outlook, By Biopesticides (2020-2028) (US $MN)   
11 Global Agricultural Biotechnology Market Outlook, By Biostimulants (2020-2028) (US $MN)   
12 Global Agricultural Biotechnology Market Outlook, By Transgenic Seeds (2020-2028) (US $MN)   
13 Global Agricultural Biotechnology Market Outlook, By Fruits and vegetables  (2020-2028) (US $MN)   
14 Global Agricultural Biotechnology Market Outlook, By Maize (2020-2028) (US $MN)   
15 Global Agricultural Biotechnology Market Outlook, By Soybean (2020-2028) (US $MN)   
16 Global Agricultural Biotechnology Market Outlook, By Cotton (2020-2028) (US $MN)   
17 Global Agricultural Biotechnology Market Outlook, By Corn (2020-2028) (US $MN)   
18 Global Agricultural Biotechnology Market Outlook, By  Canola (2020-2028) (US $MN)   
19 Global Agricultural Biotechnology Market Outlook, By Sugarcane (2020-2028) (US $MN)   
20 Global Agricultural Biotechnology Market Outlook, By Synthetic Biology-Enabled Products  (2020-2028) (US $MN)   
21 Global Agricultural Biotechnology Market Outlook, By Technology (2020-2028) (US $MN)   
22 Global Agricultural Biotechnology Market Outlook, By Synthetic Biology (2020-2028) (US $MN)   
23 Global Agricultural Biotechnology Market Outlook, By Ribonucleic Acid Interference (RNAi)  (2020-2028) (US $MN)   
24 Global Agricultural Biotechnology Market Outlook, By Genome Editing Tools (2020-2028) (US $MN)   
25 Global Agricultural Biotechnology Market Outlook, By Deoxy Ribonucleic Acid (DNA) Sequencing (2020-2028) (US $MN)   
26 Global Agricultural Biotechnology Market Outlook, By Biochips (2020-2028) (US $MN)   
27 North America Agricultural Biotechnology Market Outlook, By Country (2020-2028) (US $MN)   
28 North America Agricultural Biotechnology Market Outlook, By Type (2020-2028) (US $MN)   
29 North America Agricultural Biotechnology Market Outlook, By Vaccines (2020-2028) (US $MN)   
30 North America Agricultural Biotechnology Market Outlook, By Tissue Culture (2020-2028) (US $MN)   
31 North America Agricultural Biotechnology Market Outlook, By Molecular Markers (2020-2028) (US $MN)   
32 North America Agricultural Biotechnology Market Outlook, By Molecular Diagnostics (2020-2028) (US $MN)   
33 North America Agricultural Biotechnology Market Outlook, By Genetic Engineering   (2020-2028) (US $MN)   
34 North America Agricultural Biotechnology Market Outlook, By Product (2020-2028) (US $MN)   
35 North America Agricultural Biotechnology Market Outlook, By Crop Protection Products (2020-2028) (US $MN)   
36 North America Agricultural Biotechnology Market Outlook, By Biopesticides (2020-2028) (US $MN)   
37 North America Agricultural Biotechnology Market Outlook, By Biostimulants (2020-2028) (US $MN)   
38 North America Agricultural Biotechnology Market Outlook, By Transgenic Seeds (2020-2028) (US $MN)   
39 North America Agricultural Biotechnology Market Outlook, By Fruits and vegetables  (2020-2028) (US $MN)   
40 North America Agricultural Biotechnology Market Outlook, By Maize (2020-2028) (US $MN)   
41 North America Agricultural Biotechnology Market Outlook, By Soybean (2020-2028) (US $MN)   
42 North America Agricultural Biotechnology Market Outlook, By Cotton (2020-2028) (US $MN)   
43 North America Agricultural Biotechnology Market Outlook, By Corn (2020-2028) (US $MN)   
44 North America Agricultural Biotechnology Market Outlook, By  Canola (2020-2028) (US $MN)   
45 North America Agricultural Biotechnology Market Outlook, By Sugarcane (2020-2028) (US $MN)   
46 North America Agricultural Biotechnology Market Outlook, By Synthetic Biology-Enabled Products  (2020-2028) (US $MN)   
47 North America Agricultural Biotechnology Market Outlook, By Technology (2020-2028) (US $MN)   
48 North America Agricultural Biotechnology Market Outlook, By Synthetic Biology (2020-2028) (US $MN)   
49 North America Agricultural Biotechnology Market Outlook, By Ribonucleic Acid Interference (RNAi)  (2020-2028) (US $MN)   
50 North America Agricultural Biotechnology Market Outlook, By Genome Editing Tools (2020-2028) (US $MN)   
51 North America Agricultural Biotechnology Market Outlook, By Deoxy Ribonucleic Acid (DNA) Sequencing (2020-2028) (US $MN)   
52 North America Agricultural Biotechnology Market Outlook, By Biochips (2020-2028) (US $MN)   
53 Europe Agricultural Biotechnology Market Outlook, By Country (2020-2028) (US $MN)   
54 Europe Agricultural Biotechnology Market Outlook, By Type (2020-2028) (US $MN)   
55 Europe Agricultural Biotechnology Market Outlook, By Vaccines (2020-2028) (US $MN)   
56 Europe Agricultural Biotechnology Market Outlook, By Tissue Culture (2020-2028) (US $MN)   
57 Europe Agricultural Biotechnology Market Outlook, By Molecular Markers (2020-2028) (US $MN)   
58 Europe Agricultural Biotechnology Market Outlook, By Molecular Diagnostics (2020-2028) (US $MN)   
59 Europe Agricultural Biotechnology Market Outlook, By Genetic Engineering   (2020-2028) (US $MN)   
60 Europe Agricultural Biotechnology Market Outlook, By Product (2020-2028) (US $MN)   
61 Europe Agricultural Biotechnology Market Outlook, By Crop Protection Products (2020-2028) (US $MN)   
62 Europe Agricultural Biotechnology Market Outlook, By Biopesticides (2020-2028) (US $MN)    
63 Europe Agricultural Biotechnology Market Outlook, By Biostimulants (2020-2028) (US $MN)   
64 Europe Agricultural Biotechnology Market Outlook, By Transgenic Seeds (2020-2028) (US $MN)   
65 Europe Agricultural Biotechnology Market Outlook, By Fruits and vegetables  (2020-2028) (US $MN)   
66 Europe Agricultural Biotechnology Market Outlook, By Maize (2020-2028) (US $MN)   
67 Europe Agricultural Biotechnology Market Outlook, By Soybean (2020-2028) (US $MN)   
68 Europe Agricultural Biotechnology Market Outlook, By Cotton (2020-2028) (US $MN)   
69 Europe Agricultural Biotechnology Market Outlook, By Corn (2020-2028) (US $MN)   
70 Europe Agricultural Biotechnology Market Outlook, By  Canola (2020-2028) (US $MN)   
71 Europe Agricultural Biotechnology Market Outlook, By Sugarcane (2020-2028) (US $MN)   
72 Europe Agricultural Biotechnology Market Outlook, By Synthetic Biology-Enabled Products  (2020-2028) (US $MN)   
73 Europe Agricultural Biotechnology Market Outlook, By Technology (2020-2028) (US $MN)   
74 Europe Agricultural Biotechnology Market Outlook, By Synthetic Biology (2020-2028) (US $MN)   
75 Europe Agricultural Biotechnology Market Outlook, By Ribonucleic Acid Interference (RNAi)  (2020-2028) (US $MN)   
76 Europe Agricultural Biotechnology Market Outlook, By Genome Editing Tools (2020-2028) (US $MN)   
77 Europe Agricultural Biotechnology Market Outlook, By Deoxy Ribonucleic Acid (DNA) Sequencing (2020-2028) (US $MN)   
78 Europe Agricultural Biotechnology Market Outlook, By Biochips (2020-2028) (US $MN)   
79 Asia Pacific Agricultural Biotechnology Market Outlook, By Country (2020-2028) (US $MN)   
80 Asia Pacific Agricultural Biotechnology Market Outlook, By Type (2020-2028) (US $MN)   
81 Asia Pacific Agricultural Biotechnology Market Outlook, By Vaccines (2020-2028) (US $MN)   
82 Asia Pacific Agricultural Biotechnology Market Outlook, By Tissue Culture (2020-2028) (US $MN)   
83 Asia Pacific Agricultural Biotechnology Market Outlook, By Molecular Markers (2020-2028) (US $MN)   
84 Asia Pacific Agricultural Biotechnology Market Outlook, By Molecular Diagnostics (2020-2028) (US $MN)   
85 Asia Pacific Agricultural Biotechnology Market Outlook, By Genetic Engineering   (2020-2028) (US $MN)   
86 Asia Pacific Agricultural Biotechnology Market Outlook, By Product (2020-2028) (US $MN)   
87 Asia Pacific Agricultural Biotechnology Market Outlook, By Crop Protection Products (2020-2028) (US $MN)   
88 Asia Pacific Agricultural Biotechnology Market Outlook, By Biopesticides (2020-2028) (US $MN)   
89 Asia Pacific Agricultural Biotechnology Market Outlook, By Biostimulants (2020-2028) (US $MN)   
90 Asia Pacific Agricultural Biotechnology Market Outlook, By Transgenic Seeds (2020-2028) (US $MN)   
91 Asia Pacific Agricultural Biotechnology Market Outlook, By Fruits and vegetables  (2020-2028) (US $MN)   
92 Asia Pacific Agricultural Biotechnology Market Outlook, By Maize (2020-2028) (US $MN)   
93 Asia Pacific Agricultural Biotechnology Market Outlook, By Soybean (2020-2028) (US $MN)   
94 Asia Pacific Agricultural Biotechnology Market Outlook, By Cotton (2020-2028) (US $MN)   
95 Asia Pacific Agricultural Biotechnology Market Outlook, By Corn (2020-2028) (US $MN)   
96 Asia Pacific Agricultural Biotechnology Market Outlook, By  Canola (2020-2028) (US $MN)   
97 Asia Pacific Agricultural Biotechnology Market Outlook, By Sugarcane (2020-2028) (US $MN)   
98 Asia Pacific Agricultural Biotechnology Market Outlook, By Synthetic Biology-Enabled Products  (2020-2028) (US $MN)   
99 Asia Pacific Agricultural Biotechnology Market Outlook, By Technology (2020-2028) (US $MN)   
100 Asia Pacific Agricultural Biotechnology Market Outlook, By Synthetic Biology (2020-2028) (US $MN)   
101 Asia Pacific Agricultural Biotechnology Market Outlook, By Ribonucleic Acid Interference (RNAi)  (2020-2028) (US $MN)   
102 Asia Pacific Agricultural Biotechnology Market Outlook, By Genome Editing Tools (2020-2028) (US $MN)   
103 Asia Pacific Agricultural Biotechnology Market Outlook, By Deoxy Ribonucleic Acid (DNA) Sequencing (2020-2028) (US $MN)   
104 Asia Pacific Agricultural Biotechnology Market Outlook, By Biochips (2020-2028) (US $MN)   
105 South America Agricultural Biotechnology Market Outlook, By Country (2020-2028) (US $MN)   
106 South America Agricultural Biotechnology Market Outlook, By Type (2020-2028) (US $MN)   
107 South America Agricultural Biotechnology Market Outlook, By Vaccines (2020-2028) (US $MN)   
108 South America Agricultural Biotechnology Market Outlook, By Tissue Culture (2020-2028) (US $MN)   
109 South America Agricultural Biotechnology Market Outlook, By Molecular Markers (2020-2028) (US $MN)   
110 South America Agricultural Biotechnology Market Outlook, By Molecular Diagnostics (2020-2028) (US $MN)   
111 South America Agricultural Biotechnology Market Outlook, By Genetic Engineering   (2020-2028) (US $MN)   
112 South America Agricultural Biotechnology Market Outlook, By Product (2020-2028) (US $MN)   
113 South America Agricultural Biotechnology Market Outlook, By Crop Protection Products (2020-2028) (US $MN)   
114 South America Agricultural Biotechnology Market Outlook, By Biopesticides (2020-2028) (US $MN)   
115 South America Agricultural Biotechnology Market Outlook, By Biostimulants (2020-2028) (US $MN)   
116 South America Agricultural Biotechnology Market Outlook, By Transgenic Seeds (2020-2028) (US $MN)   
117 South America Agricultural Biotechnology Market Outlook, By Fruits and vegetables  (2020-2028) (US $MN)   
118 South America Agricultural Biotechnology Market Outlook, By Maize (2020-2028) (US $MN)   
119 South America Agricultural Biotechnology Market Outlook, By Soybean (2020-2028) (US $MN)   
120 South America Agricultural Biotechnology Market Outlook, By Cotton (2020-2028) (US $MN)   
121 South America Agricultural Biotechnology Market Outlook, By Corn (2020-2028) (US $MN)   
122 South America Agricultural Biotechnology Market Outlook, By  Canola (2020-2028) (US $MN)   
123 South America Agricultural Biotechnology Market Outlook, By Sugarcane (2020-2028) (US $MN)   
124 South America Agricultural Biotechnology Market Outlook, By Synthetic Biology-Enabled Products  (2020-2028) (US $MN)   
125 South America Agricultural Biotechnology Market Outlook, By Technology (2020-2028) (US $MN)   
126 South America Agricultural Biotechnology Market Outlook, By Synthetic Biology (2020-2028) (US $MN)   
127 South America Agricultural Biotechnology Market Outlook, By Ribonucleic Acid Interference (RNAi)  (2020-2028) (US $MN)   
128 South America Agricultural Biotechnology Market Outlook, By Genome Editing Tools (2020-2028) (US $MN)   
129 South America Agricultural Biotechnology Market Outlook, By Deoxy Ribonucleic Acid (DNA) Sequencing (2020-2028) (US $MN)   
130 South America Agricultural Biotechnology Market Outlook, By Biochips (2020-2028) (US $MN)   
131 Middle East & Africa Agricultural Biotechnology Market Outlook, By Country (2020-2028) (US $MN)   
132 Middle East & Africa Agricultural Biotechnology Market Outlook, By Type (2020-2028) (US $MN)   
133 Middle East & Africa Agricultural Biotechnology Market Outlook, By Vaccines (2020-2028) (US $MN)   
134 Middle East & Africa Agricultural Biotechnology Market Outlook, By Tissue Culture (2020-2028) (US $MN)   
135 Middle East & Africa Agricultural Biotechnology Market Outlook, By Molecular Markers (2020-2028) (US $MN)   
136 Middle East & Africa Agricultural Biotechnology Market Outlook, By Molecular Diagnostics (2020-2028) (US $MN)   
137 Middle East & Africa Agricultural Biotechnology Market Outlook, By Genetic Engineering   (2020-2028) (US $MN)   
138 Middle East & Africa Agricultural Biotechnology Market Outlook, By Product (2020-2028) (US $MN)   
139 Middle East & Africa Agricultural Biotechnology Market Outlook, By Crop Protection Products (2020-2028) (US $MN)   
140 Middle East & Africa Agricultural Biotechnology Market Outlook, By Biopesticides (2020-2028) (US $MN)   
141 Middle East & Africa Agricultural Biotechnology Market Outlook, By Biostimulants (2020-2028) (US $MN)   
142 Middle East & Africa Agricultural Biotechnology Market Outlook, By Transgenic Seeds (2020-2028) (US $MN)   
143 Middle East & Africa Agricultural Biotechnology Market Outlook, By Fruits and vegetables  (2020-2028) (US $MN)   
144 Middle East & Africa Agricultural Biotechnology Market Outlook, By Maize (2020-2028) (US $MN)   
145 Middle East & Africa Agricultural Biotechnology Market Outlook, By Soybean (2020-2028) (US $MN)   
146 Middle East & Africa Agricultural Biotechnology Market Outlook, By Cotton (2020-2028) (US $MN)   
147 Middle East & Africa Agricultural Biotechnology Market Outlook, By Corn (2020-2028) (US $MN)   
148 Middle East & Africa Agricultural Biotechnology Market Outlook, By  Canola (2020-2028) (US $MN)   
149 Middle East & Africa Agricultural Biotechnology Market Outlook, By Sugarcane (2020-2028) (US $MN)   
150 Middle East & Africa Agricultural Biotechnology Market Outlook, By Synthetic Biology-Enabled Products  (2020-2028) (US $MN)   
151 Middle East & Africa Agricultural Biotechnology Market Outlook, By Technology (2020-2028) (US $MN)   
152 Middle East & Africa Agricultural Biotechnology Market Outlook, By Synthetic Biology (2020-2028) (US $MN)   
153 Middle East & Africa Agricultural Biotechnology Market Outlook, By Ribonucleic Acid Interference (RNAi)  (2020-2028) (US $MN)   
154 Middle East & Africa Agricultural Biotechnology Market Outlook, By Genome Editing Tools (2020-2028) (US $MN)   
155 Middle East & Africa Agricultural Biotechnology Market Outlook, By Deoxy Ribonucleic Acid (DNA) Sequencing (2020-2028) (US $MN)   
156 Middle East & Africa Agricultural Biotechnology Market Outlook, By Biochips (2020-2028) (US $MN)   

List of Figures

RESEARCH METHODOLOGY


Research Methodology

We at Stratistics opt for an extensive research approach which involves data mining, data validation, and data analysis. The various research sources include in-house repository, secondary research, competitor’s sources, social media research, client internal data, and primary research.

Our team of analysts prefers the most reliable and authenticated data sources in order to perform the comprehensive literature search. With access to most of the authenticated data bases our team highly considers the best mix of information through various sources to obtain extensive and accurate analysis.

Each report takes an average time of a month and a team of 4 industry analysts. The time may vary depending on the scope and data availability of the desired market report. The various parameters used in the market assessment are standardized in order to enhance the data accuracy.

Data Mining

The data is collected from several authenticated, reliable, paid and unpaid sources and is filtered depending on the scope & objective of the research. Our reports repository acts as an added advantage in this procedure. Data gathering from the raw material suppliers, distributors and the manufacturers is performed on a regular basis, this helps in the comprehensive understanding of the products value chain. Apart from the above mentioned sources the data is also collected from the industry consultants to ensure the objective of the study is in the right direction.

Market trends such as technological advancements, regulatory affairs, market dynamics (Drivers, Restraints, Opportunities and Challenges) are obtained from scientific journals, market related national & international associations and organizations.

Data Analysis

From the data that is collected depending on the scope & objective of the research the data is subjected for the analysis. The critical steps that we follow for the data analysis include:

  • Product Lifecycle Analysis
  • Competitor analysis
  • Risk analysis
  • Porters Analysis
  • PESTEL Analysis
  • SWOT Analysis

The data engineering is performed by the core industry experts considering both the Marketing Mix Modeling and the Demand Forecasting. The marketing mix modeling makes use of multiple-regression techniques to predict the optimal mix of marketing variables. Regression factor is based on a number of variables and how they relate to an outcome such as sales or profits.


Data Validation

The data validation is performed by the exhaustive primary research from the expert interviews. This includes telephonic interviews, focus groups, face to face interviews, and questionnaires to validate our research from all aspects. The industry experts we approach come from the leading firms, involved in the supply chain ranging from the suppliers, distributors to the manufacturers and consumers so as to ensure an unbiased analysis.

We are in touch with more than 15,000 industry experts with the right mix of consultants, CEO's, presidents, vice presidents, managers, experts from both supply side and demand side, executives and so on.

The data validation involves the primary research from the industry experts belonging to:

  • Leading Companies
  • Suppliers & Distributors
  • Manufacturers
  • Consumers
  • Industry/Strategic Consultants

Apart from the data validation the primary research also helps in performing the fill gap research, i.e. providing solutions for the unmet needs of the research which helps in enhancing the reports quality.


For more details about research methodology, kindly write to us at info@strategymrc.com

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