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Genome Editing Engineering Market - Global Industry Analysis, Size, Share, Growth, Trends And Forecast 2015 – 2023

The genetic information of an organism, known in whole as the genome, is a fundamental and vital part of its existence and survivability. The favorable evolution of an organism is its innate ability to mutate its present set of fixed genetic composi
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Genome Editing/Engineering Market Global Industry Analysis, Size,
Share, Growth, Trends And Forecast
2015 – 2023
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The genetic information of an organism, known in whole as the genome, is a fundamental and vital part of
its existence and survivability. The favorable evolution of an organism is its innate ability to mutate its
present set of fixed genetic composition with possible variations present in its genome. Such genetic
mutation when performed by man, in vitro, with the intention to induce a specific desired characteristic, is
called genetic editing. The field of performing successful genomic editing is commonly referred to as
genetic engineering. To construct an organism capable of exhibiting desired characteristics one requires
genome editing practices that involve small microorganisms, preferably viruses. Today viruses are most
commonly used vectors for gene insertion and modification.
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Based on their application, genetic engineering can be segmented into animal genome engineering, plant
genome engineering and in-vitro cell-line engineering. Animal genome engineering services monitors
hybrids/crossbreeds/thoroughbreds in order to select and amplify the desired trait that serves a particular
purpose. In horse breeding, animal genetics help stud (male race horse) farm owners to select racing
breed and experiment among thoroughbreds, thereby gaining a fine genotype for horse racing. Similarly,
plant genome engineering process is required to identify certain characteristics in plant species and
perform selective genome expression and breeding. In vitro cell-line engineering services provide life
science businesses with optimized genotype; refined biological by products and cell extracts. Cell line
engineering reduces the requirement for traditional breeding and increases the exhibition of required
characteristics such as protein secretion, enzyme production, cell composite production, metabolism of
compounds, and others.
Based on technology, genome engineering services include engineered nucleases such as zinc finger
nuclease, transcription activator-like effector nucleases (TALEN), clustered regularly interspaced short
palindromic repeats (CRISPR’s), and random gene insertion methods.
Based on end users, genome engineering services are offered to industries such as biotechnology
companies, agriculture industry, food processing companies, pharmaceutical companies, CRO’s, and
research laboratories.
Geographically the genome engineering/editing market is primarily concentrated in the North American
region. The North American meat industry is among the largest in the world followed by European and Asia
Pacific region. The crop and cattle industry forms the largest consumer of genome engineering services in
the region, followed by equine, and canine breeding industry. On the other hand European companies
continue to remain a strong point in the global genetic services market mainly due to high quality of
services offered and their increased reliability. The European Commission has funded the Sustainable
Animal Breeding (SABRE) program with 14 million Euros and expects it to complete by 2025. The program
is expected to sequence the genome of pigs and other farm animals. However, numerous restrictions for
genome engineering in the European and North American region continue to hamper the growth of the
genome engineering services. The demand for genetics based services in the Asia Pacific region is
expected to grow during the forecast period from 2014 to 2022. Australia, Japan, and China form the
largest market in the Asia Pacific region. South Asia and South East Asia on the other hand show great
potential in terms of genetics application, although at present a majority of genome engineering process is
done by breeding. The genome engineering market in the Rest of the World (ROW) is expected to grow at a
steady rate, albeit slower than the major economies of the world.
Some of the well known genome engineering laboratories in the world include: Animal Genetics Inc., EW –
Erich Wesjohann Gruppe, Genus PLC, Grimaud Groupe, Monsanto Company, E. I. du Pont de Nemours and
Company, Harlan Laboratories Inc., Hendrix Genetics B.V, KWS AG Koepon Holding, Bayer Crop Science
Lohmann Animal Health, Syngenta AG, PHW Gruppe, The Grimaud Group, Takii & Co Ltd etc to name a
This research report analyzes this market on the basis of its market segments, major geographies, and
current market trends. Geographies analyzed under this research report include
North America
Asia Pacific
Middle East and Africa
Latin America
This report provides comprehensive analysis of
Market growth drivers
Factors limiting market growth
Current market trends
Market structure
Market projections for upcoming years
This report is a complete study of current trends in the market, industry growth drivers, and restraints. It
provides market projections for the coming years. It includes analysis of recent developments in
technology, Porter’s five force model analysis and detailed profiles of top industry players. The report also
includes a review of micro and macro factors essential for the existing market players and new entrants
along with detailed value chain analysis.
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