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The global agricultural microbials market is expected to grow at a CAGR of 14.2% during the period 2023-2028.
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The global market for agricultural microbials is expected to be driven by growing demand for microbial-based solutions that enable better crop growth, protection, and yield. North America, Europe, Latin America, and Asia are expected to be key markets.
Plants harbour a wide range of microbial communities. Growth promotion, nutrient absorption, stress tolerance, and pathogen and disease resistance are benefits conferred by associated microbes to the host plant. In recent years, new strategies have been implemented by growers to lessen the negative effects of intensive agriculture and use of chemical fertilizers. These approaches include crop rotation, decreased mechanical tillage, intercropping, planting of cover crops, and increased use of biofertilizers and agricultural solutions based on soil microbes. Such solutions supply nutrients to plants, enhance crop performance, and help regulate soil microbial communities.
Microbes include fungi, bacteria and viruses. Soil microbes such as bacteria and fungi decompose organic matter and recycle old plant material. Some soil bacteria and fungi forge symbiotic associations with plant roots and supply essential nutrients like nitrogen and phosphorus. Fungi can inhabit the upper parts of plants and offer several benefits such as drought and heat tolerance, and resistance to insects and diseases. Viruses have been reported to offer benefits such as increased heat tolerance.
Rhizobium, Azospirillum and Bacillus are among the key genera used on crops. Rhizobia are diazotrophic bacteria that relate with legumes and perform biological nitrogen fixation under symbiotic conditions. Rhizobia promotes plant growth through nitrogen fixation, phosphate solubilization, and pathogen inhibition. Azospirillum fosters plant growth and water and nutrient absorption by releasing secondary compounds such as amino acids, indole acetic acid, cytokines, gibberellins, and polyamines promoting root growth. Bacillus produces lipopeptides, lytic enzymes and endotoxins that apply biological control on pathogens affecting corn, wheat and fruit crops.
Leading companies aim to provide growers a wider range of innovative, new and microbial-based crop protection and nutrition enhancing products through continual research and development, and seek to expand capacities to consolidate their market positions. For example, in 2021, Corteva and Symborg agreed to expand growers’ access to microbe-based nitrogen fixation product - Utrisha™ N - in United States, Canada, Brazil and Argentina. According to the agreement, Symborg gave Corteva an exclusive distribution license for the endophytic bacterium Methylobacterium symbioticum, which functions with the plant to obtain required nitrogen from the atmosphere.
In 2019, Corteva and MicroMGx came together to accelerate the development of microbial-based crop protection products; the move sought to enhance Corteva Agriscience’s leading natural products portfolio.
In 2020, Syngenta and Novozymes launched a unique biofungicide - TAEGRO® - in Europe and Latin America. TAEGRO®, a microbial foliar fungicide with broad spectrum potential, offered protection for fruit and vegetable crops against illnesses such as powdery mildew and botrytis.
In 2021 UPL and Novozymes partnered to offer a range of biological products to the Argentinian market. Biological products produced by Novozymes and marketed under the Nitragin brand would become part of UPL’s portfolio, offering an entire range of biosolutions and crop protection products.
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By type, the market is classified into:
By function, the market is divided into:
By crop type, the market is segmented into:
By application, the market is classified into:
By formulation, the market is divided into:
By region, the market is segmented into:
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The report presents a detailed analysis of the following key players in the market, looking into their capacity, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
The EMR report gives an in-depth insight into the industry by providing a SWOT analysis as well as an analysis of Porter’s Five Forces model.
REPORT FEATURES | DETAILS |
---|---|
Base Year | 2022 |
Historical Period | 2018-2022 |
Forecast Period | 2023-2028 |
Scope of the Report | Historical and Forecast Trends, Industry Drivers and Constraints, Historical and Forecast Market Analysis by Segment- Type, Function, Crop Type, Application, Formulation, Region |
Breakup by Type | Bacteria, Fungi, Viruses, Protozoa |
Breakup by Function | Soil Amendment, Crop Protection |
Breakup by Crop Type | Cereals and Grains, Oilseeds and Pulses, Fruits and Vegetables, Others |
Breakup by Application | Foliar Spray, Soil Treatment, Seed Treatment, Post-Harvest |
Breakup by Formulation | Dry, Liquid |
Breakup by Region | North America, Europe, Asia Pacific, Latin America, Middle East and Africa |
Market Dynamics | SWOT, Porter's Five Forces, Key Indicators for Price and Demand |
Competitive Landscape | Market Structure, Company Profiles- Company Overview, Product Portfolio, Demographic Reach and Achievements, Certifications |
Companies Covered | Corteva, Inc., Syngenta Crop Protection AG, UPL India Ltd., Novozymes A/S, Chr. Hansen Holding A/S, Gowan Company, L.L.C. (Isagro S.p.A.), Koppert Biological Systems, Others |
Report Price and Purchase Option | Explore our purchase options that are best suited to your resources and industry needs. |
Delivery Format | Delivered as an attached PDF and Excel through email, with an option of receiving an editable PPT, according to the purchase option. |
*At Expert Market Research, we strive to always give you current and accurate information. The numbers depicted in the description are indicative and may differ from the actual numbers in the final EMR report.
1 Preface
2 Report Coverage – Key Segmentation and Scope
3 Report Description
3.1 Market Definition and Outlook
3.2 Properties and Applications
3.3 Market Analysis
3.4 Key Players
4 Key Assumptions
5 Executive Summary
5.1 Overview
5.2 Key Drivers
5.3 Key Developments
5.4 Competitive Structure
5.5 Key Industrial Trends
6 Market Snapshot
6.1 Global
6.2 Regional
7 Opportunities and Challenges in the Market
8 Global Agricultural Microbials Market Analysis
8.1 Key Industry Highlights
8.2 Global Agricultural Microbials Historical Market (2018-2022)
8.3 Global Agricultural Microbials Market Forecast (2023-2028)
8.4 Global Agricultural Microbials Market by Type
8.4.1 Bacteria
8.4.1.1 Market Share
8.4.1.2 Historical Trend (2018-2022)
8.4.1.3 Forecast Trend (2023-2028)
8.4.1.4 Breakup by Type
8.4.1.4.1 Bacillus Spp.
8.4.1.4.2 Rhizobium Spp.
8.4.1.4.3 Others
8.4.2 Fungi
8.4.2.1 Market Share
8.4.2.2 Historical Trend (2018-2022)
8.4.2.3 Forecast Trend (2023-2028)
8.4.2.4 Breakup by Type
8.4.2.4.1 Trichoderma Spp.
8.4.2.4.2 Mycorrhizal Fungi
8.4.2.4.3 Others
8.4.3 Viruses
8.4.3.1 Market Share
8.4.3.2 Historical Trend (2018-2022)
8.4.3.3 Forecast Trend (2023-2028)
8.4.4 Protozoa
8.4.4.1 Market Share
8.4.4.2 Historical Trend (2018-2022)
8.4.4.3 Forecast Trend (2023-2028)
8.5 Global Agricultural Microbials Market by Function
8.5.1 Soil Amendment
8.5.1.1 Market Share
8.5.1.2 Historical Trend (2018-2022)
8.5.1.3 Forecast Trend (2023-2028)
8.5.1.4 Breakup by Type
8.5.1.4.1 Biofertilizers
8.5.1.4.2 Biostimulants
8.5.2 Crop Protection
8.5.2.1 Market Share
8.5.2.2 Historical Trend (2018-2022)
8.5.2.3 Forecast Trend (2023-2028)
8.5.2.4 Breakup by Type
8.5.2.4.1 Bioinsecticides
8.5.2.4.2 Biofungicides
8.5.2.4.3 Bioherbicides
8.5.2.4.4 Bionematicides
8.5.2.4.5 Others
8.6 Global Agricultural Microbials Market by Crop Type
8.6.1 Cereals and Grains
8.6.1.1 Market Share
8.6.1.2 Historical Trend (2018-2022)
8.6.1.3 Forecast Trend (2023-2028)
8.6.2 Oilseeds and Pulses
8.6.2.1 Market Share
8.6.2.2 Historical Trend (2018-2022)
8.6.2.3 Forecast Trend (2023-2028)
8.6.3 Fruits and Vegetables
8.6.3.1 Market Share
8.6.3.2 Historical Trend (2018-2022)
8.6.3.3 Forecast Trend (2023-2028)
8.6.4 Others
8.7 Global Agricultural Microbials Market by Application
8.7.1 Foliar Spray
8.7.1.1 Market Share
8.7.1.2 Historical Trend (2018-2022)
8.7.1.3 Forecast Trend (2023-2028)
8.7.2 Soil Treatment
8.7.2.1 Market Share
8.7.2.2 Historical Trend (2018-2022)
8.7.2.3 Forecast Trend (2023-2028)
8.7.3 Seed Treatment
8.7.3.1 Market Share
8.7.3.2 Historical Trend (2018-2022)
8.7.3.3 Forecast Trend (2023-2028)
8.7.4 Post-Harvest
8.7.4.1 Market Share
8.7.4.2 Historical Trend (2018-2022)
8.7.4.3 Forecast Trend (2023-2028)
8.8 Global Agricultural Microbials Market by Formulation
8.8.1 Dry
8.8.1.1 Market Share
8.8.1.2 Historical Trend (2018-2022)
8.8.1.3 Forecast Trend (2023-2028)
8.8.1.4 Breakup by Type
8.8.1.4.1 Dry granules
8.8.1.4.2 Water Dispersible Granules
8.8.2 Liquid
8.8.2.1 Market Share
8.8.2.2 Historical Trend (2018-2022)
8.8.2.3 Forecast Trend (2023-2028)
8.8.2.4 Breakup by Type
8.8.2.4.1 Emulsifiable Concentrates
8.8.2.4.2 Suspension Concentrates
8.8.2.4.3 Soluble Liquid Concentrates
8.9 Global Agricultural Microbials Market by Region
8.9.1 North America
8.9.1.1 Market Share
8.9.1.2 Historical Trend (2018-2022)
8.9.1.3 Forecast Trend (2023-2028)
8.9.2 Europe
8.9.2.1 Market Share
8.9.2.2 Historical Trend (2018-2022)
8.9.2.3 Forecast Trend (2023-2028)
8.9.3 Asia Pacific
8.9.3.1 Market Share
8.9.3.2 Historical Trend (2018-2022)
8.9.3.3 Forecast Trend (2023-2028)
8.9.4 Latin America
8.9.4.1 Market Share
8.9.4.2 Historical Trend (2018-2022)
8.9.4.3 Forecast Trend (2023-2028)
8.9.5 Middle East and Africa
8.9.5.1 Market Share
8.9.5.2 Historical Trend (2018-2022)
8.9.5.3 Forecast Trend (2023-2028)
9 North America Agricultural Microbials Market Analysis
9.1 United States of America
9.1.1 Market Share
9.1.2 Historical Trend (2018-2022)
9.1.3 Forecast Trend (2023-2028)
9.2 Canada
9.2.1 Market Share
9.2.2 Historical Trend (2018-2022)
9.2.3 Forecast Trend (2023-2028)
10 Europe Agricultural Microbials Market Analysis
10.1 United Kingdom
10.1.1 Market Share
10.1.2 Historical Trend (2018-2022)
10.1.3 Forecast Trend (2023-2028)
10.2 Germany
10.2.1 Market Share
10.2.2 Historical Trend (2018-2022)
10.2.3 Forecast Trend (2023-2028)
10.3 France
10.3.1 Market Share
10.3.2 Historical Trend (2018-2022)
10.3.3 Forecast Trend (2023-2028)
10.4 Italy
10.4.1 Market Share
10.4.2 Historical Trend (2018-2022)
10.4.3 Forecast Trend (2023-2028)
10.5 Others
11 Asia Pacific Agricultural Microbials Market Analysis
11.1 China
11.1.1 Market Share
11.1.2 Historical Trend (2018-2022)
11.1.3 Forecast Trend (2023-2028)
11.2 Japan
11.2.1 Market Share
11.2.2 Historical Trend (2018-2022)
11.2.3 Forecast Trend (2023-2028)
11.3 India
11.3.1 Market Share
11.3.2 Historical Trend (2018-2022)
11.3.3 Forecast Trend (2023-2028)
11.4 ASEAN
11.4.1 Market Share
11.4.2 Historical Trend (2018-2022)
11.4.3 Forecast Trend (2023-2028)
11.5 Australia
11.5.1 Market Share
11.5.2 Historical Trend (2018-2022)
11.5.3 Forecast Trend (2023-2028)
11.6 Others
12 Latin America Agricultural Microbials Market Analysis
12.1 Brazil
12.1.1 Market Share
12.1.2 Historical Trend (2018-2022)
12.1.3 Forecast Trend (2023-2028)
12.2 Argentina
12.2.1 Market Share
12.2.2 Historical Trend (2018-2022)
12.2.3 Forecast Trend (2023-2028)
12.3 Mexico
12.3.1 Market Share
12.3.2 Historical Trend (2018-2022)
12.3.3 Forecast Trend (2023-2028)
12.4 Others
13 Middle East and Africa Agricultural Microbials Market Analysis
13.1 Saudi Arabia
13.1.1 Market Share
13.1.2 Historical Trend (2018-2022)
13.1.3 Forecast Trend (2023-2028)
13.2 United Arab Emirates
13.2.1 Market Share
13.2.2 Historical Trend (2018-2022)
13.2.3 Forecast Trend (2023-2028)
13.3 Nigeria
13.3.1 Market Share
13.3.2 Historical Trend (2018-2022)
13.3.3 Forecast Trend (2023-2028)
13.4 South Africa
13.4.1 Market Share
13.4.2 Historical Trend (2018-2022)
13.4.3 Forecast Trend (2023-2028)
13.5 Others
14 Market Dynamics
14.1 SWOT Analysis
14.1.1 Strengths
14.1.2 Weaknesses
14.1.3 Opportunities
14.1.4 Threats
14.2 Porter’s Five Forces Analysis
14.2.1 Supplier’s Power
14.2.2 Buyer’s Power
14.2.3 Threat of New Entrants
14.2.4 Degree of Rivalry
14.2.5 Threat of Substitutes
14.3 Key Indicators for Demand
14.4 Key Indicators for Price
15 Competitive Landscape
15.1 Market Structure
15.2 Company Profiles
15.2.1 Corteva, Inc.
15.2.1.1 Company Overview
15.2.1.2 Product Portfolio
15.2.1.3 Demographic Reach and Achievements
15.2.1.4 Certifications
15.2.2 Syngenta Crop Protection AG
15.2.2.1 Company Overview
15.2.2.2 Product Portfolio
15.2.2.3 Demographic Reach and Achievements
15.2.2.4 Certifications
15.2.3 UPL India Ltd.
15.2.3.1 Company Overview
15.2.3.2 Product Portfolio
15.2.3.3 Demographic Reach and Achievements
15.2.3.4 Certifications
15.2.4 Novozymes A/S
15.2.4.1 Company Overview
15.2.4.2 Product Portfolio
15.2.4.3 Demographic Reach and Achievements
15.2.4.4 Certifications
15.2.5 Chr. Hansen Holding A/S
15.2.5.1 Company Overview
15.2.5.2 Product Portfolio
15.2.5.3 Demographic Reach and Achievements
15.2.5.4 Certifications
15.2.6 Gowan Company, L.L.C. (Isagro S.p.A.)
15.2.6.1 Company Overview
15.2.6.2 Product Portfolio
15.2.6.3 Demographic Reach and Achievements
15.2.6.4 Certifications
15.2.7 Koppert Biological Systems
15.2.7.1 Company Overview
15.2.7.2 Product Portfolio
15.2.7.3 Demographic Reach and Achievements
15.2.7.4 Certifications
15.2.8 Others
16 Key Trends and Developments in the Market
List of Key Figures and Tables
1. Global Agricultural Microbials Market: Key Industry Highlights, 2018 and 2028
2. Global Agricultural Microbials Historical Market: Breakup by Type (USD Million), 2018-2022
3. Global Agricultural Microbials Market Forecast: Breakup by Type (USD Million), 2023-2028
4. Global Agricultural Microbials Historical Market: Breakup by Function (USD Million), 2018-2022
5. Global Agricultural Microbials Market Forecast: Breakup by Function (USD Million), 2023-2028
6. Global Agricultural Microbials Historical Market: Breakup by Crop Type (USD Million), 2018-2022
7. Global Agricultural Microbials Market Forecast: Breakup by Crop Type (USD Million), 2023-2028
8. Global Agricultural Microbials Historical Market: Breakup by Application (USD Million), 2018-2022
9. Global Agricultural Microbials Market Forecast: Breakup by Application (USD Million), 2023-2028
10. Global Agricultural Microbials Historical Market: Breakup by Formulation (USD Million), 2018-2022
11. Global Agricultural Microbials Market Forecast: Breakup by Formulation (USD Million), 2023-2028
12. Global Agricultural Microbials Historical Market: Breakup by Region (USD Million), 2018-2022
13. Global Agricultural Microbials Market Forecast: Breakup by Region (USD Million), 2023-2028
14. North America Agricultural Microbials Historical Market: Breakup by Country (USD Million), 2018-2022
15. North America Agricultural Microbials Market Forecast: Breakup by Country (USD Million), 2023-2028
16. Europe Agricultural Microbials Historical Market: Breakup by Country (USD Million), 2018-2022
17. Europe Agricultural Microbials Market Forecast: Breakup by Country (USD Million), 2023-2028
18. Asia Pacific Agricultural Microbials Historical Market: Breakup by Country (USD Million), 2018-2022
19. Asia Pacific Agricultural Microbials Market Forecast: Breakup by Country (USD Million), 2023-2028
20. Latin America Agricultural Microbials Historical Market: Breakup by Country (USD Million), 2018-2022
21. Latin America Agricultural Microbials Market Forecast: Breakup by Country (USD Million), 2023-2028
22. Middle East and Africa Agricultural Microbials Historical Market: Breakup by Country (USD Million), 2018-2022
23. Middle East and Africa Agricultural Microbials Market Forecast: Breakup by Country (USD Million), 2023-2028
24. Global Agricultural Microbials Market Structure
The global agricultural microbials market is projected to grow at a CAGR of 14.2% between 2023 and 2028.
The major drivers of the market include the growth and expansion of the agricultural industry, rising consumer consciousness towards livestock farming, surging cultivation of cereals, and grains and fruits and vegetables around the world, and increasing personal disposable income by the major companies.
The growing demand for microbial-based solutions and innovative and novel solutions are the key industry trends propelling the market's growth.
The major regions in the industry are North America, Latin America, the Middle East and Africa, Europe, and the Asia Pacific.
By type, the market is segmented into bacteria, fungi, viruses, and protozoa. Bacteria are further divided into bacillus spp. and rhizobium spp., among others while fungi are sub-divided into trichoderma spp. and mycorrhizal fungi, among others.
The functions include soil amendment and crop protection. soil amendment is sub-divided into biofertilisers and biostimulants, while crop protection is sub-divided into bioinsecticides, biofungicides, bioherbicides, and bionematicides, among others.
By crop type, the market is segmented into cereals and grains, oilseeds and pulses, fruits and vegetables, among others.
The major applications include foliar spray, soil treatment, seed treatment, and post-harvest.
Based on formulation, the market is divided into dry and liquid. Dry is further divided into dry granules and water dispersible granules while liquid is sub-divided into emulsifiable concentrates, suspension concentrates, and soluble liquid concentrates.
The major players in the industry are Corteva, Inc., Syngenta Crop Protection AG, UPL India Ltd., Novozymes A/S, Chr. Hansen Holding A/S, Gowan Company, L.L.C. (Isagro S.p.A.), and Koppert Biological Systems, among others.
The global agricultural microbials market was driven by the growing demand for microbial-based solutions in the historical period. Aided by the growth and expansion of the agricultural industry and rising consumer consciousness towards livestock farming, the market is expected to witness further growth in the forecast period of 2023-2028, growing at a CAGR of 14.2%.
EMR's meticulous research methodology delves deep into the market, covering the macro and micro aspects of the industry. By type, the market is segmented into bacteria, fungi, viruses, and protozoa. Bacteria are further divided into bacillus spp. and rhizobium spp., among others, while fungi are sub-divided into trichoderma spp. and mycorrhizal fungi, among others. The functions include soil amendment and crop protection. Soil amendment is sub-divided into bio-fertilisers and bio-stimulants while crop protection is sub-divided into bioinsecticides, biofungicides, bioherbicides, and bionematicides, among others. By crop type, the market is segmented into, cereals and grains, oilseeds and pulses, fruits and vegetables, among others. The major applications include foliar spray, soil treatment, seed treatment, and post-harvest. Based on formulation, the market is divided into dry and liquid. Dry is further divided into dry granules and water dispersible granules, while liquid is sub-divided into emulsifiable concentrates, suspension concentrates, and soluble liquid concentrates. The major regional markets for agricultural microbials market are North America, Europe, the Asia Pacific, Latin America, and the Middle East and Africa. The major players in the industry are Corteva, Inc., Syngenta Crop Protection AG, UPL India Ltd., Novozymes A/S, Chr. Hansen Holding A/S, Gowan Company, L.L.C. (Isagro S.p.A.), and Koppert Biological Systems, among others.
EMR's research methodology uses a combination of cutting-edge analytical tools and the expertise of their highly accomplished team, thus, providing their customers with market insights that are accurate, actionable and help them remain ahead of their competition.
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