Global Plant Breeding and CRISPR Plants Market - Segment Analysis, Opportunity Assessment, Competitive Intelligence, Industry Outlook 2016-2026

Date : Mar 2020

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Report ID : 179

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Category : Food & Beverages

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Report Format:  PDF EXCEL PPT WORD

Plant breeding is basically a technique through which the genetic pattern of a specific plant is altered in order to increase its value for human welfare. It is a well-designed alteration of plants that can provide better yield and are less prone to disease. CRISPR is termed as an integral part of a bacterial defense system. It is used to target and modify plant DNA.

By Process

  1. Selection
  2. Hybridization
  3. Mutation Breeding

By Type

  1. Conventional Breeding
  2. Biotechnological Method

By Trait

  1. Herbicide Tolerance
  2. Disease Resistance
  3. Yield Improvement

By Application

  1. Cereals & Grains
  2. Oilseeds & Pulses
  3. Fruits & Vegetables
  4. Others

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)

The growth of the plant breeding and CRISPR plants market is primarily driven by the continuous innovations in plant biotechnology which include the use of a high-throughput sequencing system in order to improve plant output. Moreover, changing lifestyles of consumers across the globe is resulting in rising demand for better-quality crops and high yield. This is expected to create opportunities for investors in the global market over the forecast period. However, the high cost of breeding technology is expected to hamper the growth of the global plant breeding and CRISPR plants market in the coming years.

Global Plant Breeding and CRISPR Plants Market, 2016-2026, (US$ Mn)

Plant Breeding and CRISPR Plants Market

The mutation breeding process segment expected to dominate the market throughout the forecast period

Based on the process, the global plant breeding and CRISPR plants market has been segmented into selection, hybridization, and mutation breeding. The mutation breeding process of plant breeding and CRISPR plants accounted for approximately 34% of the share in the global plant breeding and CRISPR plants market in 2018.

While hybridization accounted highest CAGR of around 16.1% in the global plant breeding and CRISPR plants market during the forecast period. Mutation breeding is widely adopted for exposing seeds to chemicals or radiation to generate mutants with desirable traits. These benefits are expected to enhance the demand and sales for mutation breeding across the developed and developing countries in the global market.

Based on type, the biotechnological method segment is expected to grow at a CAGR of around 17% throughout the forecast period

Based on type, the market has been segmented into conventional breeding and biotechnological method. The conventional breeding segment accounts of the largest share of around 55% in the global market.

While the biotechnological method is expected to hold the CAGR of nearly 17% during the forecast period. The increase in technology development and concerns regarding improved crop varieties are some of the major factors driving the growth of biotechnological method globally. However, lack of infrastructure and high costs associated are expected the hamper the growth of biotechnological method in the global market.

Based on trait, the disease resistance segment is expected to dominate during the forecast period

Based on the trait, the market has been segmented into herbicide tolerance, disease resistance, and yield improvement. The disease resistance segment accounts of the largest share in the market and held for more than 40% of the total market in 2018. The major factors that are driving the growth of this segment are the rising demand for high-quality field crops across developing countries such as India, China, and Indonesia.

 

Based on application, the cereals & grains segment is expected to dominant the market during the forecast period

Based on application, the market has been segmented into cereals & grains, oilseeds & pulses, fruits & vegetables, and others. The cereals & grains application segment accounts of the largest share in the global plant breeding and CRISPR plants market by application. The major factors that are driving the growth of this segment are the rising awareness about the application of plant breeding and CRISPR plants in corn and rice harvesting.

Several producers are investing substantially to develop plant breeding solutions for cereals & grains, which is expected the lead the market in the coming years.

Asia-Pacific to dominate the plant breeding and CRISPR plants market throughout the forecast period

Asia-Pacific accounted for nearly 34% share of the global plant breeding and CRISPR plants market in 2018 and is expected to dominate the market throughout the forecast period. The rapid growth in the demand for commercial seeds as well as investments from private sectors is the major driving factor for the region in the global market. Moreover, the increasing awareness for plant breeding technology is anticipated to increases its dominance in the global plant breeding and CRISPR plants market in future.

Company Profiles and Competitive Intelligence:

The major players operating in the global plant breeding and CRISPR plants market are Bayer (US), Benson Hill Biosystems, Inc. (Germany), Syngenta (Switzerland), KWS (Germany), DowDuPont (US), Groupe Limagrain (France), Advanta Seeds (UAE), Eurofins Scientific (Luxembourg), Pacific Biosciences (US), and Evogene Ltd. (Israel) among others.

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Chapter 1 Executive Summary

1.1. Market Summary

1.1.1. Global Plant Breeding and CRISPR Plants Market, 2016-2026, (USD Million)

1.2. Market Snapshot: Global Plant Breeding and CRISPR Plants Market

1.3. Market Dynamics

1.4. Global Plant Breeding and CRISPR Plants Market, by Segment, 2018

1.4.1. Global Plant Breeding and CRISPR Plants Market, by Process, 2018, (USD Million)

1.4.2. Global Plant Breeding and CRISPR Plants Market, by Type, 2018, (USD Million)

1.4.3. Global Plant Breeding and CRISPR Plants Market, by Trait, 2018, (USD Million)

1.4.4. Global Plant Breeding and CRISPR Plants Market, by Application, 2018, (USD Million)

1.4.5. Global Plant Breeding and CRISPR Plants Market, by Region, 2018 (USD Million)

1.5. Premium Insights

1.5.1. Plant Breeding and CRISPR Plants Market In Developed Vs. Developing Economies, 2018 vs 2026

1.5.2. Global Plant Breeding and CRISPR Plants Market: Regional Life Cycle Analysis

Chapter 2 Market Dynamics

2.1. Market Overview

2.2. Market Drivers

2.2.1. Demand for Enhanced Crop Varieties

2.2.2. Emphasis on Sustainable Crop Production

2.3. Market Restraints

2.3.1. High Cost

2.3.2. Lack of Standard Laboratory Systems

2.4. Market Opportunities

2.4.1. Government Initiatives to Support Innovations in Plant Breeding

2.4.2. Growing Adoption of CRISPR in Developing Economies

2.5. Industry Value Chain Analysis

2.6. Pricing Analysis

2.7. Porter’s Five Forces Analysis

Chapter 3 Global Plant Breeding and CRISPR Plants Market, by Process

3.1. Market Overview, by Process

3.1.1. Global Plant Breeding and CRISPR Plants Market, by Process, 2016-2026 (USD Million)

3.1.2. Incremental Opportunity, by Process, 2018

3.2. Selection

3.2.1. Global Plant Breeding and CRISPR Plants Market, by Selection, 2016-2026, (USD Million)

3.3. Hybridization

3.3.1. Global Plant Breeding and CRISPR Plants Market, by Hybridization, 2016-2026, (USD Million)

3.4. Mutation Breeding

3.4.1. Global Plant Breeding and CRISPR Plants Market, by Mutation Breeding, 2016-2026, (USD Million)

Chapter 4 Global Plant Breeding and CRISPR Plants Market, by Type

4.1. Market Overview, by Type

4.1.1. Global Plant Breeding and CRISPR Plants Market, by Type, 2016-2026 (USD Million)

4.1.2. Incremental Opportunity, by Type, 2018

4.2. Conventional Breeding

4.2.1. Global Plant Breeding and CRISPR Plants Market, by Conventional Breeding, 2016-2026, (USD Million)

4.3. Biotechnological Method

4.3.1. Global Plant Breeding and CRISPR Plants Market, by Biotechnological Method, 2016-2026, (USD Million)

Chapter 5 Global Plant Breeding and CRISPR Plants Market, by Trait

5.1. Market Overview, by Trait

5.1.1. Global Plant Breeding and CRISPR Plants Market, by Trait, 2016-2026 (USD Million)

5.1.2. Incremental Opportunity, by Trait, 2018

5.2. Herbicide Tolerance

5.2.1. Global Plant Breeding and CRISPR Plants Market, by Herbicide Tolerance, 2016-2026, (USD Million)

5.3. Disease Resistance

5.3.1. Global Plant Breeding and CRISPR Plants Market, by Disease Resistance, 2016-2026, (USD Million)

5.4. Yield Improvement

5.4.1. Global Plant Breeding and CRISPR Plants Market, by Yield Improvement, 2016-2026, (USD Million)

Chapter 6 Global Plant Breeding and CRISPR Plants Market, by Application

6.1. Market Overview, by Application

6.1.1. Global Plant Breeding and CRISPR Plants Market, by Application, 2016-2026 (USD Million)

6.1.2. Incremental Opportunity, by Application, 2018

6.2. Cereals & Grains

6.2.1. Global Plant Breeding and CRISPR Plants Market, by Cereals & Grains, 2016-2026, (USD Million)

6.3. Oilseeds & Pulses

6.3.1. Global Plant Breeding and CRISPR Plants Market, by Oilseeds & Pulses, 2016-2026, (USD Million)

6.4. Fruits & Vegetables

6.4.1. Global Plant Breeding and CRISPR Plants Market, by Fruits & Vegetables, 2016-2026, (USD Million)

6.5. Others

6.5.1. Global Plant Breeding and CRISPR Plants Market, by Others, 2016-2026, (USD Million)

Chapter 7 Global Plant Breeding and CRISPR Plants Market, by Region

7.1. Market Overview, by Region

7.1.1. Global Plant Breeding and CRISPR Plants Market, by Region, 2016-2026, (USD Million)

7.2. Attractive Investment Opportunity, by Region, 2018

7.3. North America Plant Breeding and CRISPR Plants Market

7.3.1. North America Plant Breeding and CRISPR Plants Market, by Process, 2016-2026 (USD Million)

7.3.2. North America Plant Breeding and CRISPR Plants Market, by Type, 2016-2026 (USD Million)

7.3.3. North America Plant Breeding and CRISPR Plants Market, by Trait, 2016-2026 (USD Million)

7.3.4. North America Plant Breeding and CRISPR Plants Market, by Application, 2016-2026 (USD Million)

7.3.5. United States Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.3.6. Canada Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.4. Europe Plant Breeding and CRISPR Plants Market

7.4.1. Europe Plant Breeding and CRISPR Plants Market, by Process, 2016-2026 (USD Million)

7.4.2. Europe Plant Breeding and CRISPR Plants Market, by Type, 2016-2026 (USD Million)

7.4.3. Europe Plant Breeding and CRISPR Plants Market, by Trait, 2016-2026 (USD Million)

7.4.4. Europe Plant Breeding and CRISPR Plants Market, by Application, 2016-2026 (USD Million)

7.4.5. United Kingdom Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.4.6. Germany Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.4.7. France Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.4.8. Rest of Europe Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.5. Asia Pacific Plant Breeding and CRISPR Plants Market

7.5.1. Asia Pacific Plant Breeding and CRISPR Plants Market, by Process, 2016-2026 (USD Million)

7.5.2. Asia Pacific Plant Breeding and CRISPR Plants Market, by Type, 2016-2026 (USD Million)

7.5.3. Asia Pacific Plant Breeding and CRISPR Plants Market, by Trait, 2016-2026 (USD Million)

7.5.4. Asia Pacific Plant Breeding and CRISPR Plants Market, by Application, 2016-2026 (USD Million)

7.5.5. China Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.5.6. Japan Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.5.7. India Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.5.8. Rest of Asia Pacific Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.6. Latin America Plant Breeding and CRISPR Plants Market

7.6.1. Latin America Plant Breeding and CRISPR Plants Market, by Process, 2016-2026 (USD Million)

7.6.2. Latin America Plant Breeding and CRISPR Plants Market, by Type, 2016-2026 (USD Million)

7.6.3. Latin America Plant Breeding and CRISPR Plants Market, by Trait, 2016-2026 (USD Million)

7.6.4. Latin America Plant Breeding and CRISPR Plants Market, by Application, 2016-2026 (USD Million)

7.6.5. Brazil Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.6.6. Mexico Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.6.7. Rest of Latin America Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.7. Middle East & Africa Plant Breeding and CRISPR Plants Market

7.7.1. Middle East & Africa Plant Breeding and CRISPR Plants Market, by Process, 2016-2026 (USD Million)

7.7.2. Middle East & Africa Plant Breeding and CRISPR Plants Market, by Type, 2016-2026 (USD Million)

7.7.3. Middle East & Africa Plant Breeding and CRISPR Plants Market, by Trait, 2016-2026 (USD Million)

7.7.4. Middle East & Africa Plant Breeding and CRISPR Plants Market, by Application, 2016-2026 (USD Million)

7.7.5. GCC Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

7.7.6. Rest of Middle East & Africa Plant Breeding and CRISPR Plants Market, 2016-2026 (USD Million)

Chapter 8 Competitive Intelligence

8.1. Top 5 Players Comparison

8.2. Market Positioning of Key Players, 2018

8.3. Market Players Mapping

8.3.1. By Process

8.3.2. By Type

8.3.3. By Trait

8.3.4. By Application

8.3.5. By Region

8.4. Strategies Adopted by Key Market Players

8.5. Recent Developments in the Market

8.5.1. Mergers & Acquisitions, Partnership, New Product Developments

Chapter 9 Company Profiles

9.1. Bayer

9.1.1. Bayer Overview

9.1.2. Bayer Products Portfolio

9.1.3. Bayer Financial Overview

9.1.4. Bayer News/Recent Developments

9.2. Benson Hill Biosystems, Inc.

9.2.1. Benson Hill Biosystems, Inc. Overview

9.2.2. Benson Hill Biosystems, Inc. Products Portfolio

9.2.3. Benson Hill Biosystems, Inc. Financial Overview

9.2.4. Benson Hill Biosystems, Inc. News/Recent Developments

9.3. Syngenta

9.3.1. Syngenta Overview

9.3.2. Syngenta Products Portfolio

9.3.3. Syngenta Financial Overview

9.3.4. Syngenta News/Recent Developments

9.4. KWS

9.4.1. KWS Overview

9.4.2. KWS Products Portfolio

9.4.3. KWS Financial Overview

9.4.4. KWS News/Recent Developments

9.5. DowDuPont

9.5.1. DowDuPont Overview

9.5.2. DowDuPont Products Portfolio

9.5.3. DowDuPont Financial Overview

9.5.4. DowDuPont News/Recent Developments

9.6. Groupe Limagrain

9.6.1. Groupe Limagrain Overview

9.6.2. Groupe Limagrain Products Portfolio

9.6.3. Groupe Limagrain Financial Overview

9.6.4. Groupe Limagrain News/Recent Developments

9.7. Advanta Seeds

9.7.1. Advanta Seeds Overview

9.7.2. Advanta Seeds Products Portfolio

9.7.3. Advanta Seeds Financial Overview

9.7.4. Advanta Seeds News/Recent Developments

9.8. Eurofins Scientific

9.8.1. Eurofins Scientific Overview

9.8.2. Eurofins Scientific Products Portfolio

9.8.3. Eurofins Scientific Financial Overview

9.8.4. Eurofins Scientific News/Recent Developments

9.9. Pacific Biosciences

9.9.1. Pacific Biosciences Overview

9.9.2. Pacific Biosciences Products Portfolio

9.9.3. Pacific Biosciences Financial Overview

9.9.4. Pacific Biosciences News/Recent Developments

9.10. Evogene Ltd

9.10.1. Evogene Ltd Overview

9.10.2. Evogene Ltd Products Portfolio

9.10.3. Evogene Ltd Financial Overview

9.10.4. Evogene Ltd News/Recent Developments

Chapter 10 Preface

10.1. Data Triangulation

10.2. Research Methodology

10.2.1. Phase I – Secondary Research

10.2.2. Phase II – Primary Research

10.2.3. Phase III – Expert Panel Review

10.2.4. Approach Adopted

10.2.4.1. Top-Down Approach

10.2.4.2. Bottom-Up Approach

10.2.5. Supply- Demand side

10.2.6. Breakup of the Primary Profiles


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