There are plenty of explanations of what biotechnology is, but the simplest one is that it is a field of study where biology is the foundation on which different kinds of technology are developed. Biotechnology is the basis of many different kinds of research in the fields of environment, food science, robotics, agriculture and medicine.
The human involvement in manipulating their environment is now at remarkable levels. From the most basic direct organism manipulations such as fermenting beer and culturing bacteria to advanced nucleotide-based organ regeneration and animal cloning, our knowledge and technology has advanced far beyond what anyone wouldve expected just a decade ago.
But even before there was a name to call it by, biotechnology was in existence. Even something that people have been doing for centuries, like preservatives to keep food edible during winter, is a form of biotechnology. When around 6000 BC, fruit juice was first fermented to form alcohol, it was another instance of biotechnology. Of course, it has emerged as a science only recently.
About twenty years ago, the role of genetics in artificially creating proteins in a living being was discovered. DNA was discovered and molecular biology became a part of mainstream science. This was what gave rise to the study of biotechnology under that name.
The mid 80s brought a revelation in biotechnology genetic structures could be modified by careful combinations between animals and plants. This introduction to transgenic organisms also developed an area for further research into disease resistance and productivity rate increases. Modern biotechnology is used in a variety of ways and the medical and biological research fields have managed to get the most benefit out of it. The methods used have gone beyond ordinary genetic transfers, to include actual plant-generated pharmaceuticals and substance production for antibiotics and insulin.
Modern biotechnology is practiced in three different categories red, white and green. Red Biotechnology is when the genetically altered microorganisms are used to produce medical and pharmaceutical substances, such as proteins, vitamins, antibiotics and vaccines etc. Its also used in genome manipulation.
White Biotechnology is also known as bio-manufacturing and Grey Biotechnology. This is not yet a completely established field and involves manipulating live organisms to create important industrial chemicals. Some of the organisms used in these techniques include bacteria, enzymes, moulds and yeast.
Agricultural Biotechnology, also known as Green Biotechnology, is whats applied into creating better, fresher, more nutritious and longer-lasting agricultural produce. A traditional agricultural biotechnology example is how wheat varieties are cross-bred to produce a disease-resistant crop.
If you are looking for the latest biotech news then take a look at this great new website. Full of details about innovations for the biotech industry , you cant afford to miss it. New inventions, ideas and theories make great reading.
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Evolving Biotechnology - Good Herald
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- Biodetoxification of toxins generated from lignocellulose pretreatment using a newly isolated fungus, Amorphotheca resinae ZN1, and the consequent ethanol fermentation [Last Updated On: August 17th, 2024] [Originally Added On: November 28th, 2010]
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- Topochemical distribution of lignin and hydroxycinnamic acids in sugar-cane cell walls and its correlation with the enzymatic hydrolysis of polysaccharides [Last Updated On: August 17th, 2024] [Originally Added On: March 17th, 2011]
- Direct ethanol production from cellulosic materials using a diploid strain of Saccharomyces cerevisiae with optimized cellulase expression [Last Updated On: August 17th, 2024] [Originally Added On: April 17th, 2011]
- Isolation of xylose isomerases by sequence- and function-based screening from a soil metagenome library [Last Updated On: August 17th, 2024] [Originally Added On: May 8th, 2011]
- Low temperature lignocellulose pretreatment: effects and interactions of pretreatment pH are critical for maximizing enzymatic monosaccharide yields from wheat straw [Last Updated On: August 17th, 2024] [Originally Added On: May 15th, 2011]
- Effect of mixing on enzymatic hydrolysis of steam-pretreated spruce: a quantitative analysis of conversion and power consumption [Last Updated On: August 17th, 2024] [Originally Added On: May 15th, 2011]
- Thermostable recombinant xylanases from Nonomuraea flexuosa and Thermoascus aurantiacus show distinct properties in the hydrolysis of xylans and pretreated wheat straw [Last Updated On: August 17th, 2024] [Originally Added On: May 22nd, 2011]
- Investigation of tension wood formation and 2,6-dichlorbenzonitrile application in short rotation coppice willow composition and enzymatic saccharification [Last Updated On: August 17th, 2024] [Originally Added On: May 29th, 2011]
- Aiming the complete utilization of sugar beet pulp through mild acid and hydrothermal pretreatment followed by enzymatic digestion [Last Updated On: August 17th, 2024] [Originally Added On: June 5th, 2011]
- Alkaline peroxide pretreatment of corn stover: effects of biomass, peroxide, and enzyme loading and composition on yields of glucose and xylose [Last Updated On: August 17th, 2024] [Originally Added On: June 12th, 2011]
- In-situ lignocellulosic unlocking mechanism in termite for carbohydrate hydrolysis: critical lignin modification [Last Updated On: August 17th, 2024] [Originally Added On: June 19th, 2011]
- Supplementation with xylanase and beta-xylosidase to reduce xylo-oligomer and xylan inhibition of enzymatic hydrolysis of cellulose and pretreated corn stover [Last Updated On: August 17th, 2024] [Originally Added On: June 26th, 2011]
- Co-hydrolysis of hydrothermal and dilute acid pretreated Populus slurries to support development of a high-throughput pretreatment system [Last Updated On: August 17th, 2024] [Originally Added On: July 17th, 2011]
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- Simultaneous saccharification and co-fermentation of lignocellulosic residues from commercial furfural production and corn kernels using different nutrient media [Last Updated On: August 17th, 2024] [Originally Added On: July 31st, 2011]
- Increased isobutanol production in Saccharomyces cerevisiae by overexpression of genes in valine metabolism [Last Updated On: August 17th, 2024] [Originally Added On: July 31st, 2011]
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