Biotechnology is the use of biological systems found in organisms or the use of the living organisms themselves to make technological advances and adapt those technologies to various different fields. These include applications in various fields from agricultural practice to the medical sector. It does not only include applications in fields that involve the living, but any other field where the information obtained from the biological aspect of an organism can be applied.
Biotechnology is particularly vital when it comes to the development of miniscule and chemical tools as many on the tools biotechnology uses exist at the cellular level. In a bid to understand more regarding biotechnology, here are its types, examples and its applications.
According to Biotechnology Innovation Organization,
Biotechnology is technology based on biology biotechnology harnesses cellular and biomolecular processes to develop technologies and products that help improve our lives and the health of our planet. We have used the biological processes of microorganisms for more than 6,000 years to make useful food products, such as bread and cheese, and to preserve dairy products.
Medical biotechnology is the use of living cells and other cell materials for the purpose of bettering the health of humans. Essentially, it is used for finding cures as well as getting rid of and preventing diseases. The science involved includes the use of these tools for the purpose of research to find different or more efficient ways of maintaining human health, understanding pathogen, and understanding the human cell biology.
Here, the technique is used to produce pharmaceutical drugs as well as other chemicals to combat diseases. It involves the study of bacteria, plant and animal cells to first understand the way they function at a fundamental level.
It heavily involves the study of DNA (Deoxyribonucleic acid) to get to know how to manipulate the genetic makeup of cells to increase the production of beneficial characteristics that humans might find useful such as the production of insulin. The field usually leads to the development of new drugs and treatments, novel to the field.
Vaccines are chemicals that stimulate the bodys immune system to better fight pathogens when they attack the body. They achieve this by inserting attenuated (weakened) versions of the disease into the bodys bloodstream. This causes the body to react as if it was under attack from the non-attenuated version of the disease. The body combats the weakened pathogens and through the process takes note of the cell structure of the pathogens and has some cell remember the disease and store away the information within the body.
When the individual becomes exposed to the actual disease, the body of the individual immediately recognizes it and quickly forms a defense against it since it already has some information on it. This translates to quicker healing and less time being symptomatic.
The attenuated disease pathogens are extracted using biotechnological techniques such as growing the antigenic proteins in genetically engineered crops. An example is the development of an anti-lymphoma vaccine using genetically engineered tobacco plants made to exhibit RNA (A similar chemical to DNA) from malignant (actively cancerous) B-cells.
Strides have been made in the development of antibiotics that combat pathogens for humans. Many plants are grown and genetically engineered to produce the antibodies. The method is more cost effective than using cells or extracting these antibodies from animals as the plants can produce these antibodies in larger quantities.
Agricultural biotechnology focuses on developing genetically modified plants for the purpose of increasing crop yields or introducing characteristics to those plants that provide them with an advantage growing in regions that place some kind of stress factor on the plant namely weather and pests.
In some of the cases, the practice involves scientists identifying a characteristic, finding the gene that causes it, and then putting that gene within another plant so that it gains that desirable characteristic, making it more durable or having it produce larger yields than it previously did.
Biotechnology has provided techniques for the creation of crops that express anti pest characteristics naturally, making them very resistant to pests, as opposed to having to keep dusting them and spraying them with pesticides. An example of this would be the fungus Bacillus thuringiensis genes being transferred to crops.
The reason for this is that the fungus produces a protein (Bt) which is very effective against pests such as the European corn borer. The Bt protein is the desired characteristic scientist would like the plants to have and for this reason, they identified the gene causing Bt protein to express in the fungus and transferred it to corn. The corn then produces the protein toxin naturally, lowering the cost of production by eliminating the cost of dusting the crop with pesticide.
Selective breeding has been a practice humans have engaged in since farming began. The practice involves choosing the animals with the most desirable characteristics to breed with each other so that the resulting offspring would also express these traits. Desirable characteristics included larger animals, animals more resistant to disease and more domicile animals, all geared to making the process of farming as profitable as possible.
This practice has been transferred to the molecular level with the same purpose. Different traits are selected among the animals and once the genetic markers have been pointed out, animals and plants with those traits are selected and bred for those traits to be transferred. A genomic understanding of those traits is what informs the decisions on whether the desired traits will express or get lost as recessive traits which do not express.
This information provides the basis for making informed decisions enhancing the capability of the scientists to predict the expression of those genes. An example is its use in flower production where traits such as color and smell potency are enhanced.
One of the biggest uses of biotechnology is the infusion of nutrients into food in situations such as aid. Therefore, it provides food with heavy nutrients that are necessary in such situations. An example of this application is the production Golden Rice where the rice is infused with beta-carotene. The rice has Vitamin A, which the body can easily synthesise.
There is actually very little land on earth that is arable with some estimates place it at around 20 percent. With an increase in the worlds population, there is a need for the food sources available to be as effective as possible to produce as much food in as little space as possible. There is also need to have the crops grown to be able to make use of the less arable regions of the world.
This means that there is a need to develop crops that can handle these abiotic stresses such as salinity, drought and frost from cold. In Africa and the Middle East, for instance, where the climate can be unforgiving, the practice has played a significant role in the development of crops that can withstand the prevailing harsh climates.
The industrial applications of biotechnology range from the production of cellular structures to the production of biological elements for numerous uses. Examples include the creation of new materials in the construction industry, and the manufacture of beer and wine, washing detergents, and personal care products.
One of the materials with the strongest tensile strength is spider webs. Amongst other materials with the same cross sectional width, spider webs can take more tensional force before breaking than even steel. This silk has created a lot of interest with the possible production of materials made from silk including body armour such as bullet proof jackets. Silk is used because it is stronger than Kevlar (the material most commonly used to make body armour).
Biotechnological techniques have been used to pick the genes found in spiders and their infusion in goats to produce the silk proteins in their milk. With this initiative, it make production easier as goats are much easier to handle compared to spiders and the production of silk via milk also help make the processing and handling much easier compared to handling the actual silk strands.
One of the biggest applications of biotechnology is in the energy production sector. With fears over the dwindling oil resources in the world and their related environmental impacts, there is a need to protect the globes future by finding alternative environmentally friendly fuel sources. Biotechnology is allowing this to happen with advances such as using corn to produce combustible fuel for running car engines. These fuels are good for the environment as they do not produce the greenhouse gases.
Biotechnology is applied in the healthcare sector is the development of pharmaceuticals that have proven problematic to produce though other conventional means because of purity concerns.
A true environmentalist by heart . Founded Conserve Energy Future with the sole motto of providing helpful information related to our rapidly depleting environment. Unless you strongly believe in Elon Musks idea of making Mars as another habitable planet, do remember that there really is no 'Planet B' in this whole universe.
See the original post here:
What is Biotechnology: Types, Examples and Applications ...
- Production of ethanol from winter barley by the EDGE (enhanced dry grind enzymatic) process [Last Updated On: August 17th, 2024] [Originally Added On: April 29th, 2010]
- A high-throughput transient gene expression system for switchgrass (Panicum virgatum L.) seedlings [Last Updated On: August 17th, 2024] [Originally Added On: May 8th, 2010]
- Cellulose crystallinity index: measurement techniques and their impact on interpreting cellulase performance [Last Updated On: August 17th, 2024] [Originally Added On: May 25th, 2010]
- Comparing the fermentation performance of Escherichia coli KO11, Saccharomyces cerevisiae 424A(LNH-ST) and Zymomonas mobilis AX101 for cellulosic ethanol production [Last Updated On: August 17th, 2024] [Originally Added On: May 28th, 2010]
- Enzymatic digestibility and ethanol fermentability of AFEX-treated starch-rich lignocellulosics such as corn silage and whole corn plant [Last Updated On: August 17th, 2024] [Originally Added On: June 10th, 2010]
- Improved xylose and arabinose utilization by an industrial recombinant Saccharomyces cerevisiae strain using evolutionary engineering [Last Updated On: August 17th, 2024] [Originally Added On: June 16th, 2010]
- Effects of enzyme feeding strategy on ethanol yield in fed-batch simultaneous saccharification and fermentation of spruce at high dry matter [Last Updated On: August 17th, 2024] [Originally Added On: June 26th, 2010]
- Impact of dual temperature profile in dilute acid hydrolysis of spruce for ethanol production [Last Updated On: August 17th, 2024] [Originally Added On: July 2nd, 2010]
- Ethanol production from mixtures of wheat straw and wheat meal [Last Updated On: August 17th, 2024] [Originally Added On: July 6th, 2010]
- Earning Cash – Selling Old Mobile Phones [Last Updated On: August 17th, 2024] [Originally Added On: July 7th, 2010]
- Earning Cash – Selling Old Mobile Phones [Last Updated On: August 17th, 2024] [Originally Added On: July 7th, 2010]
- Improving simultaneous saccharification and co-fermentation of pretreated wheat straw using both enzyme and substrate feeding [Last Updated On: August 17th, 2024] [Originally Added On: August 3rd, 2010]
- Practical screening of purified cellobiohydrolases and endoglucanases with alpha-cellulose and specification of hydrodynamics [Last Updated On: August 17th, 2024] [Originally Added On: October 11th, 2010]
- Techno-economic evaluation of stillage treatment with anaerobic digestion in a softwood-to-ethanol process [Last Updated On: August 17th, 2024] [Originally Added On: October 11th, 2010]
- Cross-reactions between engineered xylose and galactose pathways in recombinant Saccharomyces cerevisiae [Last Updated On: August 17th, 2024] [Originally Added On: October 11th, 2010]
- Rapid optimization of enzyme mixtures for deconstruction of diverse pretreatment/biomass feedstock combinations [Last Updated On: August 17th, 2024] [Originally Added On: October 13th, 2010]
- Automated saccharification assay for determination of digestibility in plant materials [Last Updated On: August 17th, 2024] [Originally Added On: November 7th, 2010]
- 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]
- Lignin monomer composition affects Arabidopsis cell-wall degradability after liquid hot water pretreatment [Last Updated On: August 17th, 2024] [Originally Added On: December 11th, 2010]
- Thermostable endoglucanases in the liquefaction of hydrothermally pretreated wheat straw [Last Updated On: August 17th, 2024] [Originally Added On: February 6th, 2011]
- Cellulose accessibility limits the effectiveness of minimum cellulase loading on the efficient hydrolysis of pretreated lignocellulosic substrates [Last Updated On: August 17th, 2024] [Originally Added On: February 14th, 2011]
- Arsenal of plant cell wall degrading enzymes reflects host preference among plant pathogenic fungi [Last Updated On: August 17th, 2024] [Originally Added On: February 16th, 2011]
- Hemicellulases and auxiliary enzymes for improved conversion of lignocellulosic biomass to monosaccharides [Last Updated On: August 17th, 2024] [Originally Added On: February 22nd, 2011]
- Two-step synthesis of fatty acid ethyl ester from soybean oil catalyzed by Yarrowia lipolytica lipase [Last Updated On: August 17th, 2024] [Originally Added On: March 6th, 2011]
- 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]
- Evaluation of preservation methods for improving biogas production and enzymatic conversion yields of annual crops [Last Updated On: August 17th, 2024] [Originally Added On: July 24th, 2011]
- 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]
- Bioprospecting metagenomics of decaying wood: mining for new glycoside hydrolases [Last Updated On: August 17th, 2024] [Originally Added On: August 7th, 2011]
- Functional characterization of cellulases identified from the cow rumen fungus neocallimastix patriciarum W5 by transcriptomic and secretomic analyses [Last Updated On: August 17th, 2024] [Originally Added On: August 21st, 2011]
- Simultaneous utilization of glucose and xylose for lipid production by Trichosporon cutaneum [Last Updated On: August 17th, 2024] [Originally Added On: August 28th, 2011]
- Conversion of deoxynivalenol to 3-acetyldeoxynivalenol in barley derived fuel ethanol co-products with yeast expressing trichothecene 3-O-acetyltransferases [Last Updated On: August 17th, 2024] [Originally Added On: September 4th, 2011]
- Comparative performance of precommercial cellulases hydrolyzing pretreated corn stover [Last Updated On: August 17th, 2024] [Originally Added On: September 11th, 2011]
- Impact of pretreatment and downstream processing technologies on economics and energy use in cellulosic ethanol production [Last Updated On: August 17th, 2024] [Originally Added On: September 11th, 2011]
- A kinetic model for quantitative evaluation of the effect of H2 and osmolarity on hydrogen production by Caldicellulosiruptor saccharolyticus [Last Updated On: August 17th, 2024] [Originally Added On: September 18th, 2011]
- High level secretion of cellobiohydrolases by Saccharomyces cerevisiae [Last Updated On: August 17th, 2024] [Originally Added On: September 18th, 2011]
- How recombinant swollenin from Kluyveromyces lactis affects cellulosic substrates and accelerates their hydrolysis [Last Updated On: August 17th, 2024] [Originally Added On: September 25th, 2011]
- Bio-conversion of paper sludge to biofuel by simultaneous saccharification and fermentation using a cellulase of paper sludge origin and thermotolerant Saccharomyces cerevisiae TJ14 [Last Updated On: August 17th, 2024] [Originally Added On: October 2nd, 2011]
- Biogenic hydrogen and methane production from Chlorella vulgaris and Dunaliella tertiolecta biomass [Last Updated On: August 17th, 2024] [Originally Added On: October 2nd, 2011]
- The enhancement of enzymatic hydrolysis of lignocellulosic substrates by the addition of accessory enzymes such as xylanase: is it an additive or synergistic effect? [Last Updated On: August 17th, 2024] [Originally Added On: October 9th, 2011]
- Biotechnology [Last Updated On: August 17th, 2024] [Originally Added On: October 10th, 2011]
- Biology: Biotechnology: Gene Cloning [Last Updated On: August 17th, 2024] [Originally Added On: October 10th, 2011]
- What Does a Biotechnology Course Look Like? [Last Updated On: August 17th, 2024] [Originally Added On: October 10th, 2011]
- Demo day by SCT Biotechnology Branch 2011 passouts [Last Updated On: August 17th, 2024] [Originally Added On: October 12th, 2011]
- Biotechnology Program Video [Last Updated On: August 17th, 2024] [Originally Added On: October 12th, 2011]
- Introduction To Industrial Biotechnology [Last Updated On: August 17th, 2024] [Originally Added On: October 13th, 2011]
- MSc Molecular Biotechnology -- Come to the School of Biosciences, University of Birmingham, UK - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 13th, 2011]
- Oxbridge Biotechnology Roundtable - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 15th, 2011]
- fermentation technology (biotechnology practical class) UNIVERSITY OF MALAYA - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 15th, 2011]
- Biotechnology: Learn about New Biological Medicines in Development - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 15th, 2011]
- Improving L-arabinose utilization of pentose fermenting Saccharomyces cerevisiae cells by heterologous expression of L-arabinose transporting sugar transporters [Last Updated On: August 17th, 2024] [Originally Added On: October 16th, 2011]
- The promoting effect of by-products from Irpex lacteus on subsequent enzymatic hydrolysis of bio-pretreated cornstalks [Last Updated On: August 17th, 2024] [Originally Added On: October 16th, 2011]
- Biotechnology - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 16th, 2011]
- BiotechNaukri #Biotechnology Jobs - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 16th, 2011]
- bio-technology - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 16th, 2011]
- BioBytes - Biotechnology and food flavoring - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 19th, 2011]
- Stine Biotechnology - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 22nd, 2011]
- Effects of alkaline or liquid-ammonia treatment on crystalline cellulose: Changes in crystalline structure and effects on enzymatic digestibility [Last Updated On: August 17th, 2024] [Originally Added On: October 23rd, 2011]
- Transcriptome analysis of Aspergillus niger grown on sugarcane bagasse [Last Updated On: August 17th, 2024] [Originally Added On: October 23rd, 2011]
- A cellular automaton model of crystalline cellulose hydrolysis by cellulases [Last Updated On: August 17th, 2024] [Originally Added On: October 23rd, 2011]
- Application of a Burkholderia cepacia lipase-immobilized silica monolith to the batch and continuous biodiesel production with a stoichiometric mixture of methanol and crude Jatropha oil [Last Updated On: August 17th, 2024] [Originally Added On: October 23rd, 2011]
- Algal Biotechnology - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 24th, 2011]
- Techniques of Biotechnology, Part 1 of 4 - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 25th, 2011]
- Biotechnology days in Macedonia II - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 26th, 2011]
- BioBytes: Forensics and Biotechnology - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 26th, 2011]
- Faces of Biotechnology: What is Biotechnology - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 26th, 2011]
- Mucosal and systemic responses/Dr Thomas Muster-AVIR Green Hills Biotechnology-World Vaccine - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 26th, 2011]
- Unlimited Income Potential in Bio-Technology, Part 1 - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 27th, 2011]
- Islam Ahmadiyya Questions: Biotechnology, Portraits, Ring, Prayers, Dreams, Adopted Children - Video [Last Updated On: August 17th, 2024] [Originally Added On: October 28th, 2011]