ALBANY, New York, June 11, 2014 /PRNewswire/ --
Researchmoz presents this most up-to-date research on Agricultural Biotechnology Market for Transgenic Crops - Industry Analysis, Size, Share, Growth, Trends and Forecast, 2013 - 2019
Researchmoz presents this most up-to-date research on Agricultural Biotechnology Market for Transgenic Crops 2013 - 2019 (http://www.researchmoz.us/agricultural-biotechnology-market-global-industry-size-market-share-trends-analysis-and-forecast-2012-2018-report.html ). This report analyzes and forecasts the global agricultural biotechnology market in terms of revenue (USD Million) from 2012 to 2019. The forecast period of the market is from 2013 to 2019. The market is segmented on the basis of application as transgenic crops and synthetic biology-enabled products and tools. Transgenic crops are further analyzed into major crop types as corn, soybean, cotton and others. Each of the mentioned applications is estimated and forecasted into major geographic regions as North America, Europe, Asia Pacific and Rest of the World. Demand for food production has increased significantly due to rise in global population. This is one of the major drivers for growth in the agricultural biotechnology market. Furthermore, regulatory support in the Americas and Asia Pacific is expected to boost market growth in the next few years. Rising demand for biofuels is boosting the market. The study includes a detailed analysis of each stage of the value chain. Additionally, it analyzes major driving and restraining factors of the global agricultural biotechnology market and their impact in the next few years. It also highlights opportunities during the forecast period. The report comprises Porter's five forces model in order to study the degree of competition in the market and the impact of suppliers, buyers, new entrants, substitutes and competition on the overall market during the forecast period. The report also includes company profiles of major players in the market. Company profiles include company overview, financial overview, business strategies, SWOT analysis and recent developments. These also include market share analysis of major players in 2012.
Major participants analyzed in this report include Monsanto, Syngenta, Bayer CropScience, DuPont Pioneer Hi-Bred, Vilmorin, Dow AgroSciences, Evogene, KWS SAAT Ag, Certis and Mycogen Seeds.
This report segments the global agricultural biotechnology market as follows:
Agricultural Biotechnology Market: Application Analysis
Synthetic biology-enabled products
Agricultural Biotechnology Market: Regional Analysis
Rest of the World
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Carbohydrase Market - Global Industry Analysis, Size, Share, Trends and Forecast, 2013 - 2019
(http://www.researchmoz.us/carbohydrase-market-global-industry-analysis-size-share-trends-and-forecast-2013-2019-report.html ) Carbohydrase is a special type of enzyme that acts as a catalyst for breaking down the carbohydrates into simple sugar. Carbohydrase enzyme is mainly used to convert starch syrup into sugar syrup which is further used as an ingredient in the manufacturing of food and beverages and other applications. Carbohydrase enzymes are indigenously created in the body parts of human beings such as mouth, pancreas and small intestine. These enzymes are used for the digestion of carbohydrates by breaking down starch into sugars. Moreover, the carbohydrase enzymes are commercially produced for use in a diverse range of industries such as pharmaceuticals, food and beverages, animal feed, textile, paper, bio-fuel and others. The carbohydrase enzymes are of several types such as cellulases, amylases, mannanases, pectinases and lactase. These enzymes can be extracted from sources such as micro-organisms, plants and animals. Growing demand from food & beverages and pharmaceuticals is expected to drive the global carbohydrase market in the next few years.
Molecular Spectroscopy Market (http://www.researchmoz.us/molecular-spectroscopy-market-global-industry-analysis-size-share-growth-trends-and-forecast-2013-2019-report.html ) Spectroscopy is one of the most advanced and famous analytical technologies used extensively in large number of fields, from healthcare to manufacturing. Spectroscopy is the measurement of interaction between radiated energies emitted by certain matter. The spectroscopy is considered as a function of wavelength. In spectroscopic studies, electromagnetic radiations are allowed to pass through the sample to be analyzed; the sample molecules absorb only those wavelengths which can convert their energy level, from ground state to excited state. The detector installed on other side of device, records and analyzes the wavelengths which were absorbed and their respective proportion. In case of molecular spectroscopy, the given sample molecule absorbs only those wavelengths which have energies that correspond to energy difference of occurring transition. Hence, if the transition needs energy difference of delta E, the sample molecule will absorb only radiation that corresponds to delta E. Further, the nature and proposition of wavelength absorption gives the idea about the transition energies, which is correlated and the structure of molecule is estimated.
Cancer/Tumor Profiling Market (http://www.researchmoz.us/cancertumor-profiling-market-global-industry-analysis-size-share-growth-trends-and-forecast-2013-2019-report.html ) Cancer is a fatal disease characterized by uncontrolled cell division. It is primarily caused by environmental factors that mutate the gene encoding for cell regulation. The resultant cell aberration leads to abnormal cell growth that destroys the surrounding normal tissue and thus spreads the disease to vital organs. Cancer diagnosis is performed in a number of ways that include screening tests and medical imaging. According to WHO, cancer is one of the leading cause of death and is estimated to account for 11.5 million deaths in 2030 worldwide. Cancer diagnosis is performed in a number of ways that include screening tests and medical imaging. Nowadays, profiling of tumor is done to gain knowledge about patient's cancer profile and genomic alterations that help physicians to guide a patient with most appropriate therapy. Additionally, profiling also helps physicians to remove therapies which are unlikely to be successful and thus reduces the errors and trial process. The global cancer profiling market is expected to witness massive growth in near future due to huge funds and investments and technological advancements. Additionally, paradigm shift towards point of care diagnostics, growing demand for personalized medicines and cost effective treatment modalities are some of the major reasons expected to increase the market share of cancer profiling in near future. Moreover, personalized medicines have been a promising approach in early diagnosis, disease prognosis and research applications. Increasing demand for targeted therapy and rising cases of cancer are also expected to fuel the market growth.
Bioinformatics Software for Predictive Modeling and Expression Analysis Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2013 - 2019 (http://www.researchmoz.us/bioinformatics-software-for-predictive-modeling-and-expression-analysis-market-global-industry-analysis-size-share-growth-trends-and-forecast-2013-2019-report.html ) Bioinformatics is a distinctive interdisciplinary field of academics, science and research that utilizes computers to better understand and collect information in bioengineering, biotechnology and biology. The most important activity of bioinformatics is to help in the development of different software tools that assist in the generation of useful biological information. Presently, bioinformatics software is being extensively used for predictive modeling and expression analysis of different genes and phenotypes produced. The natural phenotype of a cell, such as characteristic behavior or visual appearance, is the resultant of collections of gene expressions. Also, the capability to determine and quantify the resultant expression of these genes provides immense opportunities for the development of highly sophisticated sets of advanced phenotypes. Bioinformatics software tools will reduce the technical burden, hence will provide user friendly platform to perform predictive modeling for different phenotypes and accurate genetic expression analyses. These approaches in bioinformatics will further help in various research and development activities across different scientific and research fields as well as in pharmaceutical industry in drug discovery and conducting efficient and effective clinical trials.
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