The Molecular Breeding Global Market Report 2024 by The Business Research Company provides market overview across 60+ geographies in the seven regions – Asia-Pacific, Western Europe, Eastern Europe, North America, South America, the Middle East, and Africa, encompassing 27 major global industries. The report presents a comprehensive analysis over a ten-year historic period (2010-2021) and extends its insights into a ten-year forecast period (2023-2033).
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According to The Business Research Company’s Molecular Breeding Global Market Report 2024, The molecular breeding market size has grown rapidly in recent years. It will grow from $3.45 billion in 2023 to $4.11 billion in 2024 at a compound annual growth rate (CAGR) of 18.9%. The growth in the historic period can be attributed to emergence of marker-assisted selection (mas), adoption of biotechnological tools, improvements in phenotyping methods, shift to high-throughput screening, seed industry revolution.
The molecular breeding market size is expected to see rapid growth in the next few years. It will grow to $7.8 billion in 2028 at a compound annual growth rate (CAGR) of 17.4%. The growth in the forecast period can be attributed to rise in demand for disease-resistant varieties, focus on climate adaptation, growing population and food security concerns, consumer preferences for quality traits, regulatory support for biotechnology. Major trends in the forecast period include consumer demand for improved varieties, application of machine learning and ai, emergence of bioinformatics solutions, collaboration between public and private sectors, focus on climate-resilient varieties.
Increased cultivation of industrial and high-value crops is expected to propel the growth of the molecular breeding market going forward. The cultivation of industrial and high-value crops refers to agribusinesses focusing on crops with a higher value in the market due to their use in various industrial applications. Molecular breeding helps cultivate high-value crops by giving plants superior traits such as disease resistance, high-crop yields, and draught resistance. Hence, the increasing cultivation of industrial and high-value crops will support the growth of the molecular breeding market. For instance, in January 2022, according to the National Agricultural Statistics Service, a United States Department of Agriculture, production of corn rose from 81,313 per 1000 acres in 2020 to 85,388 per 1000 acres in 2021. Further, soybean production has increased from 82,603 per 1000 acres in 2020 to 86,322 per 1000 acres. Therefore, the increased cultivation of industrial and high-value crops is driving the growth of the molecular breeding market.
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The molecular breeding market covered in this report is segmented –
1) By Process: QTL Mapping, Marker-Assisted Selection, Marker-Assisted Backcrossing, Genomic Selection, Other Process
2) By Marker Type: Single Sequence Repeats (SSR), Single Nucleotide Polymorphism (SNP), Other Marker Type
3) By Application: Crop Breeding, Livestock Breeding
Technological advancements are a key trend gaining popularity in the molecular breeding market. Major companies operating in the molecular breeding market are adopting new technologies to sustain their position in the market. For instance, in August 2021, HudsonAlpha Institute for Biotechnology, a US-based biotechnology company, launched a computational tool called Khufu for plant breeding. This tool enables quick and accurate identification and analysis of complex genome variants. This computational tool helps in the identification of genetic factors and selection of beneficial traits for new breeding practices and introduces new and improved characteristics in existing crop lines.
The molecular breeding market report table of contents includes:
1. Executive Summary
2. Market Characteristics
3. Market Trends And Strategies
4. Impact Of COVID-19
5. Market Size And Growth
6. Segmentation
7. Regional And Country Analysis
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27. Competitive Landscape And Company Profiles
28. Key Mergers And Acquisitions
29. Future Outlook and Potential Analysis
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