Humans have been able to genetically alter the world around them for thousands of years. With the domestication of dogs at least 14,000 years ago, genetically modified organisms (GMOs) have been a constant feature of human society; only recently have we gained the ability to perform these modifications at the molecular level.
Even more recently, gene drive technology has fundamentally added the ability of humans to modify wild organisms, not only domesticated organisms. With the ability to make rapid, permanent changes to wild species on the near horizon, we must act now to implement policies that will carefully regulate their use while allowing for vital scientific research to continue.
While GMOs have become fundamental to the farming industry, they always have the same limitation: they must be protected and maintained on farms, in pens, or other human-maintained environments. If released into the wild, GMOs find themselves out-competed by their naturally occurring cousins, since genetic modifications made to suit human tastes (think seedless watermelons) typically have a hard time surviving in the wild. An exception to this rule is the survival of invasive species when introduced into a different environment and have no natural competition in their new habitat.
Gene drive technology now makes it possible for humans to engineer species that are currently and will remain, wild such as the mosquito. Gene drive engineering can create an artificial selective pressure to transmit the gene drive from parent to offspring at a higher rate than would naturally occur.
Eventually, offspring with the gene drive replace the unaltered form of the organism, an overwhelming natural section that would normally favor the unaltered form. This profoundly new capability makes gene drives different from GMOs which are not designed to replace wild organisms and do not have the capability to overtake wild populations if accidentally released.
Because gene drives, as tools for the management and engineering of species in the wild, are intrinsically different from GMOs, it is not adequate to regulate them like other GMOs or rely only upon the framework of existing GMO regulations. We need a series of policy goals to prevent missteps in the deployment of this powerful tool.
It is unlikely that gene drives will see direct use in agricultural crops and animals, despite the agricultural application being the main concern of gene drive opposers. Such cultivated species are already under de facto genetic control by farmers who decide which animals to breed and which seeds are sown. As such, a gene drive in farmed species would be a very expensive and complex way to achieve something already possible through conventional agricultural methods.
It is, however, quite likely that gene drives will soon be used to control malaria, either to suppress malaria-carrying mosquito populations or genetically alter them such that they are unable to transmit malaria to humans. Should this public health application prove to be safe and beneficial, further applications of gene drives may soon follow. Another near-term application could be to control agricultural pest species such as leafhoppers or aphids in order to improve crop yield.
The management of human-influenced species with gene drives presents a potential flashpoint where conflicting economic and environmental interests intersect. We define human-influenced species as those that live and breed wild but are harvested heavily by humans. In other words, humans do not actively alter the environment of these species for agricultural purposes, but human harvesting activities have direct and indirect impacts on their population dynamics. Oceanic fish are an example of human-influenced species. These fish may live and travel across international and national territorial waters, and thus the release of a gene drive in these species would result in significant and competing economic interests. The ability of genes to drive fish to move from jurisdiction to jurisdiction presents a unique problem to international biodiversity protocols.
With the first release of gene drives for malaria control is likely to occur within the next 5-10 years, there is a need for immediate national regulation of gene drives and a need for broad international harmonization of gene drive regulation. While great care has been taken by researchers to safely and ethically advance malaria control gene drive research, explicit regulation is required to mitigate risks from future efforts and to hold all deployable gene drives to appropriate standards.
As we have experienced during COVID-19 with poorly functioning antibody tests, a loose regulatory environment can lead to products entering the market that have not been properly validated. In the case of gene drives, a loose regulatory environment could lead to irreversible damage to wild ecosystems.
The U.S. government should create nationally-mandated tiered registries of gene drive research. Coordinated, nationally-mandated registries would allow for the fast adoption of clear gene drive documentation. In time, the multiple national registries can hopefully be harmonized into a single international registry. These registries should be tiered in such a way that gene drives that are closer to possible deployment must report more detailed information than research projects that are in the exploratory phase.
As projects approach deployment, public transparency and independent review become more important considering the potential for gene drives to radically alter a wild environment. To realize the potential benefits of this technology, we now must act practically, proactively, and carefully to regulate their progress from small-scale research all the way through large-scale deployment.
Michael Montague, Ph.D. is a senior scholar and Amanda Kobokovich, MPH is a senior analyst at the Johns Hopkins Center for Health Security at the Bloomberg School of Public Health. The authors recently published a report Gene Drives: Pursuing Opportunities, Minimizing Risk.
Follow this link:
Soon we'll be able to engineer the wild, can the policies keep up with the science? | TheHill - The Hill
- Genetic Engineering (excerpt) - Video [Last Updated On: January 9th, 2012] [Originally Added On: January 9th, 2012]
- Promising early results with therapeutic cancer vaccines [Last Updated On: February 16th, 2012] [Originally Added On: February 16th, 2012]
- Genetic Risk and Stressful Early Infancy Join to Increase Risk for Schizophrenia [Last Updated On: March 27th, 2012] [Originally Added On: March 27th, 2012]
- Innovative cell printing technologies hold promise for tissue engineering R&D [Last Updated On: March 28th, 2012] [Originally Added On: March 28th, 2012]
- SAGE® Labs Creates The First Tissue-Specific Gene Deletion In Rats [Last Updated On: April 21st, 2012] [Originally Added On: April 21st, 2012]
- Devangshu Datta: Towards an HIV cure [Last Updated On: May 5th, 2012] [Originally Added On: May 5th, 2012]
- Now *This* Is a Cell Phone: Using Radio Waves to Control Specific Genes in Mice | 80beats [Last Updated On: May 11th, 2012] [Originally Added On: May 11th, 2012]
- Genetic packing: Successful stem cell differentiation requires DNA compaction, study finds [Last Updated On: May 11th, 2012] [Originally Added On: May 11th, 2012]
- Premier issue of BioResearch Open Access launched by Mary Ann Liebert Inc. publishers [Last Updated On: May 17th, 2012] [Originally Added On: May 17th, 2012]
- GEN reports on growth of tissue engineering revenues [Last Updated On: July 11th, 2012] [Originally Added On: July 11th, 2012]
- New therapeutic target for prostate cancer identified [Last Updated On: July 18th, 2012] [Originally Added On: July 18th, 2012]
- Novel pig model may be useful for human cancer studies [Last Updated On: July 24th, 2012] [Originally Added On: July 24th, 2012]
- New gene therapy strategy boosts levels of deficient protein in Friedreich's ataxia [Last Updated On: July 25th, 2012] [Originally Added On: July 25th, 2012]
- Should high-dose interleukin-2 continue to be the treatment of choice for metastatic melanoma? [Last Updated On: July 26th, 2012] [Originally Added On: July 26th, 2012]
- New marker for identifying precursors to insulin-producing cells in pancreas [Last Updated On: August 22nd, 2012] [Originally Added On: August 22nd, 2012]
- 3D Biomatrix’s Perfecta3D® Hanging Drop Plates Featured in Prominent Life Science Journals [Last Updated On: October 1st, 2012] [Originally Added On: October 1st, 2012]
- Progress in Cell-SELEX compound screening technology reviewed in BioResearch Open Access [Last Updated On: October 18th, 2012] [Originally Added On: October 18th, 2012]
- Can the addition of radiolabeled treatments improve outcomes in advanced metastatic disease? [Last Updated On: November 14th, 2012] [Originally Added On: November 14th, 2012]
- Is the detection of early markers of Epstein Barr virus of diagnostic value? [Last Updated On: November 18th, 2012] [Originally Added On: November 18th, 2012]
- Genetic Engineering Of Mesenchymal Stem Cells - Video [Last Updated On: November 18th, 2012] [Originally Added On: November 18th, 2012]
- Ramble: Simelweis Taboo - Video [Last Updated On: December 12th, 2012] [Originally Added On: December 12th, 2012]
- The Super Protein That Can Cut DNA and Revolutionize Genetic Engineering [Last Updated On: March 22nd, 2013] [Originally Added On: March 22nd, 2013]
- Cellular Dynamics International Expands MyCell Products Line with Disease Models, Genetic Engineering Patents [Last Updated On: June 5th, 2013] [Originally Added On: June 5th, 2013]
- World Stem Cell Summit to be presented by Genetics Policy Institute, Mary Ann Liebert, Inc., and Genetic Engineering ... [Last Updated On: June 11th, 2013] [Originally Added On: June 11th, 2013]
- Genetic engineering - Wikipedia, the free encyclopedia [Last Updated On: November 1st, 2013] [Originally Added On: November 1st, 2013]
- Genetic Engineering: What is Genetic Engineering? [Last Updated On: November 1st, 2013] [Originally Added On: November 1st, 2013]
- Critical factor (BRG1) identified for maintaining stem cell pluripotency [Last Updated On: February 7th, 2014] [Originally Added On: February 7th, 2014]
- Genome Surgery [Last Updated On: February 11th, 2014] [Originally Added On: February 11th, 2014]
- Engineering The Human Genome One Letter At A Time [Last Updated On: February 11th, 2014] [Originally Added On: February 11th, 2014]
- CRISPR is the technology that could allow researchers to perform microsurgery on genes [Last Updated On: February 15th, 2014] [Originally Added On: February 15th, 2014]
- Joseph Glorioso, Ph.D., receives Pioneer Award [Last Updated On: February 19th, 2014] [Originally Added On: February 19th, 2014]
- Commentary: field of tissue engineering is progressing at remarkable pace [Last Updated On: March 5th, 2014] [Originally Added On: March 5th, 2014]
- Pioneer Award recipients Marina Cavazzana and Adrian Thrasher recognized for advancing gene therapy to the clinic for ... [Last Updated On: March 24th, 2014] [Originally Added On: March 24th, 2014]
- New method yields potent, renewable human stem cells with promising therapeutic properties [Last Updated On: March 25th, 2014] [Originally Added On: March 25th, 2014]
- First evidence that very small embryonic-like stem cells [Last Updated On: April 2nd, 2014] [Originally Added On: April 2nd, 2014]
- Scarless wound healing -- applying lessons learned from fetal stem cells [Last Updated On: April 11th, 2014] [Originally Added On: April 11th, 2014]
- Novel marker discovered for stem cells derived from human umbilical cord blood [Last Updated On: April 18th, 2014] [Originally Added On: April 18th, 2014]
- GENs Top 10 Session Picks for the 2014 BIO International Convention [Last Updated On: May 2nd, 2014] [Originally Added On: May 2nd, 2014]
- A Vaccine for Heart Disease Could Mean No Pills, Lettuce or a Gym [Last Updated On: June 14th, 2014] [Originally Added On: June 14th, 2014]
- Gene editing tool can write HIV out of the picture [Last Updated On: June 22nd, 2014] [Originally Added On: June 22nd, 2014]
- Inner ear stem cells hold promise for restoring hearing [Last Updated On: June 24th, 2014] [Originally Added On: June 24th, 2014]
- New method to grow zebrafish embryonic stem cells can regenerate whole fish [Last Updated On: June 30th, 2014] [Originally Added On: June 30th, 2014]
- Novel methods may help stem cells survive transplantation into damaged tissues [Last Updated On: July 22nd, 2014] [Originally Added On: July 22nd, 2014]
- New method for reducing tumorigenicity in induced pluripotent stem-cell based therapies [Last Updated On: July 24th, 2014] [Originally Added On: July 24th, 2014]
- Malcolm K. Brenner receives Pioneer Award for advances in gene-modified T cells targeting cancer [Last Updated On: July 26th, 2014] [Originally Added On: July 26th, 2014]
- Conclusive evidence on role of circulating mesenchymal stem cells in organ injury [Last Updated On: August 22nd, 2014] [Originally Added On: August 22nd, 2014]
- New genomic editing methods produce better disease models from patient-derived iPSCs [Last Updated On: September 8th, 2014] [Originally Added On: September 8th, 2014]
- Tory Williams combats controversy surrounding stem cell therapy with new book [Last Updated On: September 11th, 2014] [Originally Added On: September 11th, 2014]
- NYIT Expert Predicts Growth in Demand for 3D Kidneys, Livers and Hearts [Last Updated On: December 9th, 2014] [Originally Added On: December 9th, 2014]
- The 'Berlin patient,' first and only person cured of HIV, speaks out [Last Updated On: January 6th, 2015] [Originally Added On: January 6th, 2015]
- Integrins are essential in stem cell binding to defective cartilage for joint regeneration [Last Updated On: January 27th, 2015] [Originally Added On: January 27th, 2015]
- Scientists urge caution in using new CRISPR technology to treat human genetic disease [Last Updated On: March 20th, 2015] [Originally Added On: March 20th, 2015]
- Scientists call for caution in using DNA-editing technology [Last Updated On: March 23rd, 2015] [Originally Added On: March 23rd, 2015]
- 'Ban DNA Editing Of Sperm And Eggs' [Last Updated On: March 23rd, 2015] [Originally Added On: March 23rd, 2015]
- Mount Sinai Researchers Discover Genetic Origins of Myelodysplastic Syndrome Using Stem Cells [Last Updated On: March 26th, 2015] [Originally Added On: March 26th, 2015]
- Researchers discover genetic origins of myelodysplastic syndrome using stem cells [Last Updated On: March 26th, 2015] [Originally Added On: March 26th, 2015]
- Pulling the strings of our genetic puppetmasters [Last Updated On: April 6th, 2015] [Originally Added On: April 6th, 2015]
- Going deep on life extension investments and human genetic engineering (Morning Read) [Last Updated On: April 6th, 2015] [Originally Added On: April 6th, 2015]
- Genetic engineering: a guide for kids by Tiki the Penguin [Last Updated On: July 8th, 2015] [Originally Added On: July 8th, 2015]
- genetic engineering | Britannica.com [Last Updated On: July 20th, 2015] [Originally Added On: July 20th, 2015]
- Interactives . DNA . Genetic Engineering [Last Updated On: August 3rd, 2015] [Originally Added On: August 3rd, 2015]
- Genetic engineering - Memory Alpha, the Star Trek Wiki [Last Updated On: September 10th, 2015] [Originally Added On: September 10th, 2015]
- Genetic Engineering Careers in India : How to become a ... [Last Updated On: September 10th, 2015] [Originally Added On: September 10th, 2015]
- Genetic Engineering (song) - Wikipedia, the free encyclopedia [Last Updated On: August 8th, 2016] [Originally Added On: August 8th, 2016]
- Genetic Engineering - BiologyMad [Last Updated On: September 28th, 2016] [Originally Added On: September 28th, 2016]
- UNL's AgBiosafety for Educators [Last Updated On: September 28th, 2016] [Originally Added On: September 28th, 2016]
- Recent Articles | Genetic Engineering | The Scientist ... [Last Updated On: October 20th, 2016] [Originally Added On: October 20th, 2016]
- Human Genetic Engineering - Popular Issues [Last Updated On: October 29th, 2016] [Originally Added On: October 29th, 2016]
- Explore More: Genetic Engineering - iptv.org [Last Updated On: October 29th, 2016] [Originally Added On: October 29th, 2016]
- Genetic Engineering and GM Crops - Pocket K | ISAAA.org [Last Updated On: November 10th, 2016] [Originally Added On: November 10th, 2016]
- Pros and Cons of Genetic Engineering | HRFnd [Last Updated On: November 10th, 2016] [Originally Added On: November 10th, 2016]
- Genetic Engineering - The New York Times [Last Updated On: November 10th, 2016] [Originally Added On: November 10th, 2016]
- Genetic Engineering | MSPCA-Angell [Last Updated On: November 10th, 2016] [Originally Added On: November 10th, 2016]
- What is genetic engineering? - Definition from WhatIs.com [Last Updated On: November 10th, 2016] [Originally Added On: November 10th, 2016]
- Genetic Engineering in Agriculture | Union of Concerned ... [Last Updated On: November 16th, 2016] [Originally Added On: November 16th, 2016]
- Free genetic engineering Essays and Papers - 123helpme [Last Updated On: November 20th, 2016] [Originally Added On: November 20th, 2016]
- Gene therapy - Wikipedia [Last Updated On: November 20th, 2016] [Originally Added On: November 20th, 2016]
- Writing the human genome - The Biological SCENE [Last Updated On: July 10th, 2017] [Originally Added On: July 10th, 2017]
- America's First Free-Roaming Genetically Engineered Insects Are ... - Gizmodo [Last Updated On: July 10th, 2017] [Originally Added On: July 10th, 2017]
- Stanford's Final Exams Pose Question About the Ethics of Genetic Engineering - Futurism [Last Updated On: July 10th, 2017] [Originally Added On: July 10th, 2017]