Synthetic Biology – Thematic Intelligence
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Exploring the trends and insights from the ‘Synthetic Biology’ thematic intelligence report will help you:
- Get an overview of the synthetic biology theme.
- Assess the core segments of the synthetic biology value chain, including software components, organism engineering, hardware, and end-users.
- Analyze the impact of synthetic biology on industries such as agriculture, consumer goods, food, energy, healthcare, industrial materials, mining, packaging, and technology.
- Identify the key players associated with the synthetic biology theme and learn the details of relevant use cases.
How is the ‘Synthetic Biology’ report unique from other reports in the market?
- Understand the meaning and importance of the synthetic biology theme.
- Gain an insight into the synthetic biology value chain and its four layers.
- Analyze the key sectors within the synthetic biology theme and determine the impact of each sector on the market.
- Assess the regulatory outlook of the synthetic biology theme.
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- Business Development and Market Intelligence
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To Get a Snapshot of the Synthetic Biology Thematic Report
Synthetic Biology Thematic Report Overview
Synthetic biology is commonly abbreviated to synbio. It involves the manipulation of genetic material to enhance specific characteristics or, conversely, stifle them. The ability to perform this manipulation quickly, precisely, and at a low cost has the potential to impact numerous sectors. From developing environmentally friendly luxury materials to novel cancer therapeutics and even the use of DNA as a new form of data storage, the forthcoming field of synbio unlocks several new realms of lucrative innovation.
The Synthetic Biology thematic intelligence report provides an overview of the synthetic biology theme. The report provides a detailed value chain that discusses the core segments, including software components, organism engineering, hardware, and end-users. The report also provides an analysis of the impact of synthetic biology on industries like agriculture, consumer goods, food, energy, healthcare, industrial materials, mining, packaging, and technology. This analysis includes the identification of key players and details of relevant use cases.
Report Pages | 73 |
Regions Covered | Global |
Value Chain | · Software Components
· Organism Engineering · Hardware · End Users |
Key Sectors | · Agriculture
· Consumer Goods · Food · Energy · Healthcare · Industrial Materials · Mining · Packaging · Technology |
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Synthetic Biology - Value Chain Analysis
The core segments of the synthetic biology value chain are the software components, organism engineering, hardware, and end users.
Software: The key components of software are machine learning, cloud services, and bio-design automation. These components have been instrumental in accelerating discoveries within the field.
Synthetic Biology Value Chain Analysis
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Synthetic Biology – Sectors
There are many industries where the impact of synthetic biology can be observed. This includes industries like agriculture, consumer goods, food, energy, healthcare, industrial materials, mining, packaging, and technology.
Consumer goods: Synthetic biology is the dark horse of the consumer sector. The consumer sector currently suffers from a high environmental impact and a dependency on scarce resources for high-end products. It is, therefore, a key potential market for synthetic biology. For instance, engineered mycelium for sustainable fashion. Start-ups such as Modern Meadow, MycoWorks, and Ecovative Design are engineering mycelium to make clothing resembling traditional animal leather. Brands such as Hermès, Reformation, and Wolverine Worldwide have collaborated with these start-ups.
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Synthetic Biology – National Strategies and Regulation Outlook
The key countries in the synthetic biology theme are China and Australia. The latest Five-Year Plan of China focuses on the use of synthetic biology in the healthcare, food, and agriculture sectors. Artificial proteins, in particular, are a key focus with the goals of improving nutrition and reducing pressure on environmental resources. Synthetic biology is perceived as a welcome tool to help improve China’s self-sufficiency and protect its supply chains against future disruption.
The OECD estimates that over 50 nations have national bio-economy strategies. Back in 2016, the UK government’s Biodesign for the Bioeconomy plan stressed that regulations need to be framed to accommodate the continually evolving frontiers of knowledge and understanding. Since then, there have been unanticipated advances in the development and application of synthetic biology, and national frameworks and regulations have fallen off the pace, globally.
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Key Highlights
- Synthetic alternatives to meat, precious metals, natural fibers, fuel, and medicines, among others, continue to be developed. The environmental benefits of such innovations are often the focus, but these developments will also facilitate the next stage of supply chain management.
- The biosynthetic revolution is underway and will enable lean supply chain management, decrease reliance on imports, and further support reshoring efforts. Accelerated by the COVID-19 pandemic and sustained by the US-China trade wars, supply chain shifts are already visible as countries and corporations try to protect themselves against further disruption.
- Countries that are heavily dependent on imported food may turn to synthetic biology as a means of developing a domestic agriculture sector. For example, Singapore’s ‘30 by 30’ plan aims to produce 30% of the nation’s nutritional needs domestically by 2030. Synthetic biology could increase crops’ yield and nutritional content to meet this objective. Australia, another country with poor food security, has highlighted the use of synthetic biology in the agriculture sector as a critical part of improving self-sufficiency and strengthening its national bio-economy.
Reasons to Buy
- The field of synthetic biology is still at an early stage. Nonetheless, there already exist everyday commercial examples. For example, plant-based burgers developed by Impossible Foods contain a yeast engineered to produce soy leghemoglobin, which gives the burger a more meat-like flavor. Another example is Kymriah, a gene therapy developed by Novartis that uses engineered living cells for cancer treatment.
- The possibilities of synthetic biology are boundless. Propelled by the growing demand for sustainable materials, environmental remediation, and innovative therapies, synthetic biology could transform numerous industries. Interest in the field is increasing every year, with annual publications related to synthetic biology exceeding 10,000 in 2022.
- This report will help you understand what synbio is and why it’s important. It will also allow you to identify leading players across the value chain.
Agilent Technologies
AHB Lab
Allozymes
Alphabet
Amazon
AMSilk
Ansa Biotechnologies
Antheia
Arzeda
Asimov
AskBio
Atomwise
Auqtec Biosystems
Autodesk
Azitra
Baidu
BASF
Beam Therapeutics
Beckman Coulter
Benchling
BGI
Biomemory
Biosyntia
Biotree
Bloomage Biotech
BRAIN Biotech
Calysta
Catalog
Cataya Bio
CellX
Cemvita Factory
Charles River (Distributed Bio)
Checkerspot
ChemChina (Syngenta)
Cibus
Codexis
Conagen
Culture Biosciences
Cysbio
Cytena
Danaher
Dassault Systèmes
DNA Script
Donaldson (Solaris Biotech)
EcoBiome
Ecovative Design
Editas Medecine
Electrolab
ElevateBio
Encoded Therapeutics
EnginZyme
Ensovi
Eppendorf
Eurofins
Evolva
Evonetix
Fermex
GE Healthcare
Genecis
GeneMind
Genomatica
Genvida
Gilead (Kite)
Ginkgo Bioworks
GSK
Hide Biotech
IBM
Illumina
Imagene
Impossible Foods
Ingenza
Iridia
Jananom
Johnson & Johnson (Janssen)
Kinnva
L7 Informatics
LabGenius
LanzaTech
Lygos
Mammoth Biosciences
Manus Bio
Marvell Technology
Merck
MGI Tech
Micron
Microsoft
Modern Meadow
Moderna
Molecular Assemblies
Motif Foodworks
MycoWorks
Mytos
Nourish Ingredients
Novartis
Novozymes
Octarine Bio
OmniTier
Onego Bio
Oracle
PacBio
Perfect Day
Perfect Day (Nth Bio)
PerkinElmer
Pivot Bio
Precigen
Protedyne
Provectus Algae
Qiagen
Qitan
Samsara Eco
Sartorius
Saudi Aramco
Scala Biodesign
Scispot
Seagate
Senti Biosciences
Snapgene
Solida Biotech
Solugen
Spiber
Strateos
Synlogic
Synlogic Therapeutics
Synthace
Tecan
Tecnic
Telesis Bio
Thermo Fisher Scientific
Tidetron
Tsingke Biotech
Twist Bioscience
Ultima Genomics
Ultivue
Viridos
Western Digital
Yield10 Bioscience
Table of Contents
Frequently asked questions
-
What are the value chains in the synthetic biology theme?
The core segments of the synthetic biology value chain are the software components, organism engineering, hardware, and end users.
-
What are the key components of the software value chain in the synthetic biology theme?
The key components of the software value chain in this theme are machine learning, cloud services, and bio-design automation. These components have been instrumental in accelerating discoveries within the field.
-
Which are the key industries in the synthetic biology theme?
There are many industries where the impact of synthetic biology can be observed. This includes industries like agriculture, consumer goods, food, energy, healthcare, industrial materials, mining, packaging, and technology.
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