Global Molecular Breeding Market - Segment Analysis, Opportunity Assessment, Competitive Intelligence, Industry Outlook 2016-2026

Molecular breeding is defined as a process of altering or improving traits of plants and animals on the basis of genotypic assays. The technique uses DNA markers as a substitute for phenotypic selection, in order to escalate the release of improved cultivators.

The growth of the molecular breeding market is primarily driven by the increasing investment in Agri genomics research, is leading to the adoption of advanced crop yielding tools across the globe. The technological advancement in molecular biology has further decreased the prices of molecular biology products, which in turn, is increasing the adoption rate of the molecular breeding process in the agricultural sector. However, the high initial capital investment along with lack of advanced tools and skilled labor are some factors hampering the global market growth.

Molecular Breeding Market Segmentation

By Process 1. QTL mapping
2. Marker-assisted selection (MAS)
3. Marker-assisted backcrossing (MABC)
4. Genomic Selection
5. Others
 
By Marker Type 1. Single Sequence Repeats (SSR)
2. Single Nucleotide Polymorphism (SNP)
3. Others
 
By Application 1. Crop Breeding
2. Livestock
 
By Region 1. North America (US and Canada)
2. Europe (UK, Germany, France and Rest of Europe)
3. Asia Pacific (China, Japan, India and Rest of Asia Pacific)
4. Latin America (Brazil, Mexico and Rest of Latin America)
5. Middle East & Africa (GCC and Rest of Middle East & Africa)
 

 

Based on the process, the marker-assisted selection (MAS) segment is expected to dominate the market with nearly 28% share in 2018

Based on process, the market is segmented into QTL mapping, marker-assisted selection (MAS), marker-assisted backcrossing (MABC), genomic selection, and others. The marker-assisted selection (MAS) segment is expected to dominate the market with nearly 28% share in the global molecular breeding market in 2018. The growth is accredited to the growing awareness and adoption of genomic selection in the developed and emerging economies of the North American and European region, such as the US, Germany, and the UK. There are several factors involved in driving the segmental growth such as its high efficiency and low cost in increasing yield, which in turn, is marking a transition in the molecular breeding process.

Single Nucleotide Polymorphism (SNP) to dominate in the market during the forecast period

Based on the marker type, the global molecular breeding market is segmented into single sequence repeats (SSR), single nucleotide polymorphism (SNP), and others. The single nucleotide polymorphism (SNP) segment accounts for the largest share in the market and is expected to grow at a CAGR of 18% during the forecast period. SNP is regarded as the most promising markers for molecular plant breeding, as it finds its significant application in the estimation of genetic diversity or determination of allele frequencies and distribution within a large number of genotypes.

Based on the application, the crop breeding segmented attributed for the largest market share in terms of value in the global market

Based on the application, the market is segmented into crop breeding and livestock. The crop breeding segmented attributed for the largest market share in terms of value in the global market, while livestock is expected to hold the highest CAGR in the global molecular breeding market in the coming years.

Global Molecular Breeding Market Size, 2016-2026

molecular breeding market

North America to dominate with 42% market share in the molecular breeding market in 2018

North America accounts to hold a dominant position in 2018 with 42% market share in the global molecular breeding market and further expected to continue its dominance during the forecast period. The increasing demand for nutritional and healthy products and diversification in the region’s food sector are some of the prime factors driving the market growth in the region. Moreover, the favorable government support for the molecular biotechnology has increased the adoption rate of advanced tools in the agricultural sector is further propelling the market growth.

Company Profiles and Competitive Intelligence:

The major players operating in the global molecular breeding market are Eurofins Scientific (Luxembourg), Illumina, Inc. (US), LGC Biosearch Technologies (UK), Thermo Fisher Scientific (US), SGS SA (Switzerland), Intertek Group plc (UK), LemnaTec GmbH (Germany), Keygene N.V. (The Netherlands), NRGene (US), and Genetwister Technologies B.V. (The Netherlands), among others.

 

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TABLE OF CONTENT

Chapter 1 Executive Summary

1.1. Market Summary

1.1.1. Global Molecular Breeding Market, 2019-2026, (USD Million)

1.2. Market Snapshot: Global Molecular Breeding Market

1.3. Market Dynamics

1.4. Global Molecular Breeding Market, by Segment, 2018

1.4.1. Global Molecular Breeding Market, by Process, 2018, (USD Million)

1.4.2. Global Molecular Breeding Market, by Marker Type, 2018, (USD Million)

1.4.3. Global Molecular Breeding Market, by Application, 2018, (USD Million)

1.4.4. Global Molecular Breeding Market, by Region, 2018 (USD Million)

1.5. Premium Insights

1.5.1. Molecular Breeding Market In Developed Vs. Developing Economies, 2018 vs 2026

1.5.2. Global Molecular Breeding Market: Regional Life Cycle Analysis

Chapter 2 Market Dynamics

2.1. Market Overview

2.2. Market Drivers

2.2.1. The rising consumer focus on nutritional value

2.2.2. Continuous deployment of molecular biology research products

2.2.3. Increased private and government investment in agri genomics research

2.3. Market Restraints

2.3.1. Lack of a skilled workforce

2.3.2. High initial capital investment

2.4. Market Opportunities

2.4.1. Alarming growth in the population in agriculture sector

2.5. Porter’s Five Forces Analysis

Chapter 3 Global Molecular Breeding Market, by Process

3.1. Market Overview, by Process

3.1.1. Global Molecular Breeding Market, by Process, 2019-2026 (USD Million)

3.1.2. Incremental Opportunity, by Process, 2018

3.2. QTL Mapping

3.2.1. Global Molecular Breeding Market, by QTL Mapping, 2019-2026, (USD Million)

3.3. Marker-Assisted Selection (MAS)

3.3.1. Global Molecular Breeding Market, by Marker-Assisted Selection (MAS), 2019-2026, (USD Million)

3.4. Marker-Assisted Backcrossing (MABC)

3.4.1. Global Molecular Breeding Market, by Marker-Assisted Backcrossing (MABC), 2019-2026, (USD Million)

3.5. Genomic Selection

3.5.1. Global Molecular Breeding Market, by Genomic Selection, 2019-2026, (USD Million)

3.6. Others

3.6.1. Global Molecular Breeding Market, by Others, 2019-2026, (USD Million)

Chapter 4 Global Molecular Breeding Market, by Marker Type

4.1. Market Overview, by Marker Type

4.1.1. Global Molecular Breeding Market, by Marker Type, 2019-2026 (USD Million)

4.1.2. Incremental Opportunity, by Marker Type, 2018

4.2. Single Sequence Repeats (SSR)

4.2.1. Global Molecular Breeding Market, by Single Sequence Repeats (SSR), 2019-2026, (USD Million)

4.3. Single Nucleotide Polymorphism (SNP)

4.3.1. Global Molecular Breeding Market, by Single Nucleotide Polymorphism (SNP), 2019-2026, (USD Million)

4.4. Others

4.4.1. Global Molecular Breeding Market, by Others, 2019-2026, (USD Million)

Chapter 5 Global Molecular Breeding Market, by Application

5.1. Market Overview, by Application

5.1.1. Global Molecular Breeding Market, by Application, 2019-2026 (USD Million)

5.1.2. Incremental Opportunity, by Application, 2018

5.2. Crop Breeding

5.2.1. Global Molecular Breeding Market, by Crop Breeding, 2019-2026, (USD Million)

5.3. Livestock Breeding

5.3.1. Global Molecular Breeding Market, by Livestock Breeding, 2019-2026, (USD Million)

Chapter 6 Global Molecular Breeding Market, by Region

6.1. Market Overview, by Region

6.1.1. Global Molecular Breeding Market, by Region, 2019-2026, (USD Million)

6.2. Attractive Investment Opportunity, by Region, 2018

6.3. North America Molecular Breeding Market

6.3.1. North America Molecular Breeding Market, by Process, 2019-2026 (USD Million)

6.3.2. North America Molecular Breeding Market, by Marker Type, 2019-2026 (USD Million)

6.3.3. North America Molecular Breeding Market, by Application, 2019-2026 (USD Million)

6.3.4. United States Molecular Breeding Market, 2019-2026 (USD Million)

6.3.5. Canada Molecular Breeding Market, 2019-2026 (USD Million)

6.4. Europe Molecular Breeding Market

6.4.1. Europe Molecular Breeding Market, by Process, 2019-2026 (USD Million)

6.4.2. Europe Molecular Breeding Market, by Marker Type, 2019-2026 (USD Million)

6.4.3. Europe Molecular Breeding Market, by Application, 2019-2026 (USD Million)

6.4.4. United Kingdom Molecular Breeding Market, 2019-2026 (USD Million)

6.4.5. Germany Molecular Breeding Market, 2019-2026 (USD Million)

6.4.6. France Molecular Breeding Market, 2019-2026 (USD Million)

6.4.7. Rest of Europe Molecular Breeding Market, 2019-2026 (USD Million)

6.5. Asia Pacific Molecular Breeding Market

6.5.1. Asia Pacific Molecular Breeding Market, by Process, 2019-2026 (USD Million)

6.5.2. Asia Pacific Molecular Breeding Market, by Marker Type, 2019-2026 (USD Million)

6.5.3. Asia Pacific Molecular Breeding Market, by Application, 2019-2026 (USD Million)

6.5.4. China Molecular Breeding Market, 2019-2026 (USD Million)

6.5.5. Japan Molecular Breeding Market, 2019-2026 (USD Million)

6.5.6. India Molecular Breeding Market, 2019-2026 (USD Million)

6.5.7. Rest of Asia Pacific Molecular Breeding Market, 2019-2026 (USD Million)

6.6. Latin America Molecular Breeding Market

6.6.1. Latin America Molecular Breeding Market, by Process, 2019-2026 (USD Million)

6.6.2. Latin America Molecular Breeding Market, by Marker Type, 2019-2026 (USD Million)

6.6.3. Latin America Molecular Breeding Market, by Application, 2019-2026 (USD Million)

6.6.4. Brazil Molecular Breeding Market, 2019-2026 (USD Million)

6.6.5. Mexico Molecular Breeding Market, 2019-2026 (USD Million)

6.6.6. Rest of Latin America Molecular Breeding Market, 2019-2026 (USD Million)

6.7. Middle East & Africa Molecular Breeding Market

6.7.1. Middle East & Africa Molecular Breeding Market, by Process, 2019-2026 (USD Million)

6.7.2. Middle East & Africa Molecular Breeding Market, by Marker Type, 2019-2026 (USD Million)

6.7.3. Middle East & Africa Molecular Breeding Market, by Application, 2019-2026 (USD Million)

6.7.4. GCC Molecular Breeding Market, 2019-2026 (USD Million)

6.7.5. Rest of Middle East & Africa Molecular Breeding Market, 2019-2026 (USD Million)

Chapter 7 Competitive Intelligence

7.1. Top 5 Players Comparison

7.2. Market Positioning of Key Players, 2018

7.3. Market Players Mapping

7.3.1. By Process

7.3.2. By Marker Type

7.3.3. By Application

7.3.4. By Region

7.4. Strategies Adopted by Key Market Players

7.5. Recent Developments in the Market

7.5.1. Mergers & Acquisitions, Partnership, New Process Developments

Chapter 8 Company Profiles

8.1. Illumina, Inc.

8.1.1. Illumina, Inc. Overview

8.1.2. Illumina, Inc. Product Portfolio

8.1.3. Illumina, Inc. Financial Overview

8.1.4. Illumina, Inc. News/Recent Developments

8.2. Eurofins Scientific

8.2.1. Eurofins Scientific Overview

8.2.2. Eurofins Scientific Product Portfolio

8.2.3. Eurofins Scientific Financial Overview

8.2.4. Eurofins Scientific News/Recent Developments

8.3. Thermo Fisher Scientific

8.3.1. Thermo Fisher Scientific Overview

8.3.2. Thermo Fisher Scientific Product Portfolio

8.3.3. Thermo Fisher Scientific Financial Overview

8.3.4. Thermo Fisher Scientific News/Recent Developments

8.4. SGS SA

8.4.1. SGS SA. Overview

8.4.2. SGS SA. Product Portfolio

8.4.3. SGS SA. Financial Overview

8.4.4. SGS SA. News/Recent Developments

8.5. LGC Biosearch Technologies

8.5.1. LGC Biosearch Overview

8.5.2. LGC Biosearch Product Portfolio

8.5.3. LGC Biosearch Financial Overview

8.5.4. LGC Biosearch News/Recent Developments

8.6. Intertek Group plc

8.6.1. Intertek Group plc Overview

8.6.2. Intertek Group plc Product Portfolio

8.6.3. Intertek Group plc Financial Overview

8.6.4. Intertek Group plc News/Recent Developments

8.7. LemnaTec GmbH

8.7.1. LemnaTec GmbH Overview

8.7.2. LemnaTec GmbH Product Portfolio

8.7.3. LemnaTec GmbH Financial Overview

8.7.4. LemnaTec GmbH News/Recent Developments

8.8. Keygene N.V.

8.8.1. Keygene N.V. Overview

8.8.2. Keygene N.V. Product Portfolio

8.8.3. Keygene N.V. Financial Overview

8.8.4. Keygene N.V. News/Recent Developments

8.9. NRGene

8.9.1. NRGene Overview

8.9.2. NRGene Product Portfolio

8.9.3. NRGene Financial Overview

8.9.4. NRGene News/Recent Developments

8.10. Genetwister Technologies B.V.

8.10.1. Genetwister Technologies B.V. Overview

8.10.2. Genetwister Technologies B.V. Product Portfolio

8.10.3. Genetwister Technologies B.V. Financial Overview

8.10.4. Genetwister Technologies B.V. News/Recent Developments

Chapter 9 Preface

9.1. Data Triangulation

9.2. Research Methodology

9.2.1. Phase I – Secondary Research

9.2.2. Phase II – Primary Research

9.2.3. Phase III – Expert Panel Review

9.2.4. Approach Adopted

9.2.4.1. Top-Down Approach

9.2.4.2. Bottom-Up Approach

9.2.5. Supply- Demand side

9.2.6. Breakup of the Primary Profiles

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