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Whole Exome Sequencing Market Size 2020 Global Industry Brief Analysis by Top Countries Data with Growth Opportunities, Emerging Technologies and Demand by Forecast to 2026

Global “Whole Exome Sequencing Market” 2020 Research Report offers up-to-date information and historical data on Whole Exome Sequencing market. The study provides historic data of 2015-2019 along with a forecast from 2020 to 2026 based on both sales and revenue.

It provides key analysis on the market status of the Whole Exome Sequencing manufacturers with best facts and figures, meaning, definition, SWOT analysis, expert opinions and the latest developments across the globe. The Report also calculate the market size, Whole Exome Sequencing Sales, Price, Revenue, Gross Margin and Market Share, cost structure and growth rate. The report considers the revenue generated from the sales of This Report and technologies by various application segments.

Final Report will add the analysis of the impact of COVID-19 on this industry.

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The objective of the study is to define market sizes of different segments and countries in previous years and to forecast the values to the next Five years. The report is designed to incorporate both qualify qualitative and quantitative aspects of the industry with respect to each of the regions and countries involved in the study. Furthermore, the report also caters the detailed information about the crucial aspects such as drivers and restraining factors which will define the future growth of the Whole Exome Sequencing market.

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The research covers the current Whole Exome Sequencing market size of the market and its growth rates based on 6-year records with company outline of Key players/manufacturers:

  • Illumina
  • Thermo Fisher
  • Roche
  • Angilent
  • Eurofins
  • Sengenics
  • Ambry
  • Macrogen
  • BGI
  • Novo Gene

    Short Description about Whole Exome Sequencing Market:

    Exome sequencing is a capture based method developed to identify variants in the coding region of genes which affect protein function. While exome capture methods using PCR, hybrid capture and molecular inversion probes exist, the most common and efficient strategies are in-solution capture methods. In-solution capture utilizes pools of oligonucleotides or probes bound to magnetic beads, whose sequence has been designed to hybridize to exon regions. After binding to genomic DNA, these probes are pulled down and washed, allowing exon regions to be selectively sequenced.

    While there are approximately 180,000 exons in the human genome, constituting less than 2% of total sequence, the exome contains ~80-90% of known disease causing variants making it a cost-effective alternative to whole genome sequencing. When performing exome-seq, users should not only consider average on-target coverage but also the local coverage of particular sites of interest. When choosing between exome and whole genome sequencing (WGS), consider that exome sequencing has the advantage that oligonucleotides are designed to particular genomic regions where typical coverage with WGS is not enough for SNP calling. It is also more affordable enabling the analysis of more individuals and populations. With WGS, you can detect variants in regions not covered by exome capture allowing or the identification of structural and non-coding variants associated with disease.

    The consumption of whole exome sequencing has exceeded 120 K samples per year. Whole exome sequencing is mainly produced by American companies. Mainly largest producers in the world are located in US.

    Scope of the Whole Exome Sequencing Market Report :

    In 2019, The Worldwide Whole Exome Sequencing market size was USD 219.5 million and it is expected to reach USD 471.1 million by the end of 2026, with a CAGR of 11.4% during 2021-2026.

    This report focuses on the Whole Exome Sequencing in global market, especially in North America, Europe and Asia-Pacific, South America, Middle East and Africa. This report categorizes the market based on manufacturers, regions, type and application.

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    Report further studies the market development status and future Whole Exome Sequencing Market trend across the world. Also, it splits Whole Exome Sequencing market Segmentation by Type and by Applications to fully and deeply research and reveal market profile and prospects.

    Major Classifications are as follows:

  • Agilent HaloPlex
  • Agilent SureSelect
  • Agilent SureSelect QXT
  • Illumina TruSeq Exome
  • Roche Nimblegen SeqCap
  • MYcroarray MYbaits

    Major Applications are as follows:

  • Correlation Research of Normal Human
  • Mendelian Disease and Rare Syndrome Gene Discovery
  • The Research of Complex Diseases
  • Mouse Exome Sequencing….

    Geographically, this report is segmented into several key regions, with sales, revenue, market share and growth Rate of Whole Exome Sequencing in these regions, from 2015 to 2026, covering

    • North America (United States, Canada and Mexico)
    • Europe (Germany, UK, France, Italy, Russia and Turkey etc.)
    • Asia-Pacific (China, Japan, Korea, India, Australia, Indonesia, Thailand, Philippines, Malaysia and Vietnam)
    • South America (Brazil, Argentina, Columbia etc.)
    • Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)

    This Whole Exome Sequencing Market Research/Analysis Report Contains Answers to your following Questions

    • Which Manufacturing Technology is used for Whole Exome Sequencing? What Developments Are Going On in That Technology? Which Trends Are Causing These Developments?
    • Who Are the Global Key Players in This Whole Exome Sequencing Market? What are Their Company Profile, Their Product Information, and Contact Information?
    • What Was Global Market Status of Whole Exome Sequencing Market? What Was Capacity, Production Value, Cost and PROFIT of Whole Exome Sequencing Market?
    • What Is Current Market Status of Whole Exome Sequencing Industry? What’s Market Competition in This Industry, Both Company, and Country Wise? What’s Market Analysis of Whole Exome Sequencing Market by Taking Applications and Types in Consideration?
    • What Are Projections of Global Whole Exome Sequencing Industry Considering Capacity, Production and Production Value? What Will Be the Estimation of Cost and Profit? What Will Be Market Share, Supply and Consumption? What about Import and Export?
    • What Is Whole Exome Sequencing Market Chain Analysis by Upstream Raw Materials and Downstream Industry?
    • What Is Economic Impact On Whole Exome Sequencing Industry? What are Global Macroeconomic Environment Analysis Results? What Are Global Macroeconomic Environment Development Trends?
    • What Are Market Dynamics of Whole Exome Sequencing Market? What Are Challenges and Opportunities?
    • What Should Be Entry Strategies, Countermeasures to Economic Impact, and Marketing Channels for Whole Exome Sequencing Industry?

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    Major Points from Table of Contents:

    Global Whole Exome Sequencing Market Research Report 2020-2026, by Manufacturers, Regions, Types and Applications

    1 Study Coverage
    1.1 Whole Exome Sequencing Product
    1.2 Key Market Segments in This Study
    1.3 Key Manufacturers Covered
    1.4 Market by Type
    1.4.1 Global Whole Exome Sequencing Market Size Growth Rate by Type
    1.5 Market by Application
    1.5.1 Global Whole Exome Sequencing Market Size Growth Rate by Application
    1.6 Study Objectives
    1.7 Years Considered

    2 Executive Summary
    2.1 Global Whole Exome Sequencing Production
    2.1.1 Global Whole Exome Sequencing Revenue 2015-2026
    2.1.2 Global Whole Exome Sequencing Production 2015-2026
    2.1.3 Global Whole Exome Sequencing Capacity 2015-2026
    2.1.4 Global Whole Exome Sequencing Marketing Pricing and Trends
    2.2 Whole Exome Sequencing Growth Rate (CAGR) 2020-2026
    2.3 Analysis of Competitive Landscape
    2.3.1 Manufacturers Market Concentration Ratio (CR5 and HHI)
    2.3.2 Key Whole Exome Sequencing Manufacturers
    2.4 Market Drivers, Trends and Issues
    2.5 Macroscopic Indicator
    2.5.1 GDP for Major Regions
    2.5.2 Price of Raw Materials in Dollars: Evolution

    3 Market Size by Manufacturers
    3.1 Whole Exome Sequencing Production by Manufacturers
    3.1.1 Whole Exome Sequencing Production by Manufacturers
    3.1.2 Whole Exome Sequencing Production Market Share by Manufacturers
    3.2 Whole Exome Sequencing Revenue by Manufacturers
    3.2.1 Whole Exome Sequencing Revenue by Manufacturers (2015-2020)
    3.2.2 Whole Exome Sequencing Revenue Share by Manufacturers (2015-2020)
    3.3 Whole Exome Sequencing Price by Manufacturers
    3.4 Mergers and Acquisitions, Expansion Plans

    4 Whole Exome Sequencing Production by Regions
    4.1 Global Whole Exome Sequencing Production by Regions
    4.1.1 Global Whole Exome Sequencing Production Market Share by Regions
    4.1.2 Global Whole Exome Sequencing Revenue Market Share by Regions
    4.2 United States
    4.2.1 United States Whole Exome Sequencing Production
    4.2.2 United States Whole Exome Sequencing Revenue
    4.2.3 Key Players in United States
    4.2.4 United States Whole Exome Sequencing Import and Export
    4.3 Europe
    4.3.1 Europe Whole Exome Sequencing Production
    4.3.2 Europe Whole Exome Sequencing Revenue
    4.3.3 Key Players in Europe
    4.3.4 Europe Whole Exome Sequencing Import and Export
    4.4 China
    4.4.1 China Whole Exome Sequencing Production
    4.4.2 China Whole Exome Sequencing Revenue
    4.4.3 Key Players in China
    4.4.4 China Whole Exome Sequencing Import and Export
    4.5 Japan
    4.5.1 Japan Whole Exome Sequencing Production
    4.5.2 Japan Whole Exome Sequencing Revenue
    4.5.3 Key Players in Japan
    4.5.4 Japan Whole Exome Sequencing Import and Export
    4.6 Other Regions
    4.6.1 South Korea
    4.6.2 India
    4.6.3 Southeast Asia

    5 Whole Exome Sequencing Consumption by Regions
    5.1 Global Whole Exome Sequencing Consumption by Regions
    5.1.1 Global Whole Exome Sequencing Consumption by Regions
    5.1.2 Global Whole Exome Sequencing Consumption Market Share by Regions
    5.2 North America
    5.2.1 North America Whole Exome Sequencing Consumption by Application
    5.2.2 North America Whole Exome Sequencing Consumption by Countries
    5.2.3 United States
    5.2.4 Canada
    5.2.5 Mexico
    5.3 Europe
    5.3.1 Europe Whole Exome Sequencing Consumption by Application
    5.3.2 Europe Whole Exome Sequencing Consumption by Countries
    5.3.3 Germany
    5.3.4 France
    5.3.5 UK
    5.3.6 Italy
    5.3.7 Russia
    5.4 Asia Pacific
    5.4.1 Asia Pacific Whole Exome Sequencing Consumption by Application
    5.4.2 Asia Pacific Whole Exome Sequencing Consumption by Countries
    5.4.3 China
    5.4.4 Japan
    5.4.5 South Korea
    5.4.6 India
    5.4.7 Australia
    5.4.8 Indonesia
    5.4.9 Thailand
    5.4.10 Malaysia
    5.4.11 Philippines
    5.4.12 Vietnam
    5.5 Central and South America
    5.5.1 Central and South America Whole Exome Sequencing Consumption by Application
    5.5.2 Central and South America Whole Exome Sequencing Consumption by Countries
    5.5.3 Brazil
    5.6 Middle East and Africa
    5.6.1 Middle East and Africa Whole Exome Sequencing Consumption by Application
    5.6.2 Middle East and Africa Whole Exome Sequencing Consumption by Countries
    5.6.3 Turkey
    5.6.4 GCC Countries
    5.6.5 Egypt
    5.6.6 South Africa

    6 Market Size by Type
    6.1 Global Whole Exome Sequencing Breakdown Dada by Type
    6.2 Global Whole Exome Sequencing Revenue by Type
    6.3 Whole Exome Sequencing Price by Type

    7 Market Size by Application
    7.1 Overview
    7.2 Global Whole Exome Sequencing Breakdown Dada by Application
    7.2.1 Global Whole Exome Sequencing Consumption by Application
    7.2.2 Global Whole Exome Sequencing Consumption Market Share by Application (2015-2020)

    Continued….

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