Gene Drive in the News
A curated collection of articles from the popular press
Genetically Modified Mosquitoes: What to Know
17138N. Pathak, WebMD, 2021-05-25 13:11:47.
It sounds like something out of a movie: a biotech company releases genetically modified mosquitoes into the wild. But this is the real deal, a test that’s been done in a handful of countries around the world and that is underway in the U.S. Scientists hope these bugs can help them stop the spread of some dangerous viruses over time. What Is a Genetically Modified Mosquito? There are more than 200 types of wild mosquitoes buzzing around America and the U.S. territories. One type that’s common in many parts of the country, Aedes aegypti, can spread diseases like dengue, Zika, yellow fever, and chikungunya through its bite.Aedes aegypti mosquitoes that have had their genes changed in a lab are intended to control the disease-carrying wild ones. It’s a possible alternative to insecticides, which are used so much in the U.S. that some mosquitoes have become resistant to them, meaning they shrug off the deadly effects. And certain insecticides can be toxic to beneficial bugs like bees.
Sterilizing skeeters using CRISPR/Cas9
17117H. Tasoff, Phy Org, 2021-05-24 18:45:33.
Mosquitoes are one of humanity's greatest nemeses, estimated to spread infections to nearly 700 million people per year and cause more than one million deaths. UC Santa Barbara Distinguished Professor Craig Montell has made a breakthrough in one technique for controlling populations of Aedes aegypti, a mosquito that transmits dengue, yellow fever, Zika and other viruses. The study, published in the Proceedings of the National Academy of Sciences, documents the first use of CRISPR/Cas9 gene editing to target a specific gene tied to fertility in male mosquitoes. The researchers were then able to discern how this mutation can suppress the fertility of female mosquitoes. Montell and his coauthors were working to improve a vector-control practice called the sterile insect technique (SIT). To manage populations, scientists raise a lot of sterile male insects. They then release these males in numbers that overwhelm their wild counterparts. The idea is that females that mate with sterile males before finding a fertile one are themselves rendered infertile, thereby decreasing the size of the next generation. Repeating this technique several times has the potential to crash the population. What's more, because each generation is smaller than the last, releasing a similar number of sterile males has a stronger effect over time.
Q&A: WHO updates guidance on testing genetically modified mosquitoes
17135E. N. Dreisbach, Healio, 2021-05-24 13:04:56.
Researchers have been exploring the use of genetically modified mosquitos as a potential control method for vector-borne diseases. Just last month, Oxitec began releasing its genetically modified (GM), self-limiting male Aedes aegypti mosquitoes in the Florida Keys in the hope of reducing the mosquito population.This month, WHO released the second edition of its guidance for testing GM mosquitos (GMMs), updating guidelines that were originally released in 2014. We spoke with Jan Kolaczinski, PhD, MSc, head of the vector control and insecticide resistance unit in WHO’s Global Malaria Program, about the new guidance and what it means for researchers.
Why the EU should back research into gene drive – even if Europe never uses it
17132R. Müller, The Brussels Times, 2021-05-23 12:00:13.
As the EU’s Biodiversity Strategy reaches the European Parliament, it has reopened a worrying debate about research into gene drive technology, a tool which could pave the way for biasing the inheritance of desired genetic traits through targeted species. Advances in this kind of genetic technology could allow scientists to create a blueprint for stopping diseases spread by mosquitoes and protecting endangered species, both significant reasons for supporting this emerging field. Yet even if EU decision makers see no need for gene drive technology in Europe at present, there are compelling reasons for supporting ongoing research, and rejecting irresponsible and short-sighted calls for a moratorium. Firstly, the threat of malaria and other mosquito-borne diseases may be minimal today but it existed on the continent within living memory, with Europe first becoming malaria-free in 1975, and then again only as recently as 2015.
Scientists want to alter rodent genes to prevent mice plagues
17092P. Hannon, The Sydney Morning Herald, 2021-05-23 10:52:32.
Mice plagues, such as the one ravaging parts of inland NSW, could become a thing of the past if scientists succeed in modifying the genes of the rodents so that populations crash before they can take off. Paul Thomas, a researcher at the University of Adelaide, is part of an international consortium including the CSIRO and the US Department of Agriculture, studying how to safely alter genes to make female mice infertile. The techniques learned could potentially be applied to other damaging invasive mammals such as cats and foxes.
Genetically modified mosquitoes; WHO issues new guidance for research
17084DTE Staff, Down To Earth, 2021-05-20 15:10:16.
Genetically-modified mosquitoes or GMMs have been used across the world to control mosquitoes. GMMs have been able to bring down the population of the Aedes aegypti by 90 per cent in countries like Brazil, the Cayman Islands, Panama and Malaysia. But there have never been any global protocols or standards on the breeding of GMMs. The World Health Organization has addressed this by setting essential standards for the research and development of GMMs. These standards are mainly about ethics, safety, affordability and effectiveness of GMMS. GMMs are male mosquitoes modified to carry a lethal gene. When they mate, the genes get passed on to their offspring. The gene prevents female offspring from building an essential protein and causes them to die before reaching maturity. GMMs could become a cost-effective and powerful tool to control mosquitoes. Over 40,000 people die from malaria and 100-400 million people get infected with dengue each year. They can reach mosquito populations and mosquito larval breeding sites that are currently expensive and difficult to reach. It can target specific mosquito species and thus avoid the ecological and environmental hazards of usual insecticides.
Burkina Faso Testing Genetically Modified Mosquitoes to Curb Malaria
17082H. Wilkins, Voice of America, 2021-05-20 15:06:44.
The mosquito-borne disease malaria kills more than 400,000 people each year, the vast majority in Africa. Target Malaria, an international group of scientists, is working in Burkina Faso on a genetic solution. Abdoulaye Diabate, with the West African country’s Research Institute for Science and Health, said the objective of Target Malaria is to develop a genetic control tool specifically applied to mosquitoes to be able to drastically reduce or eliminate the density of mosquitoes. The scientists are genetically modifying mosquitoes so their offspring will be only male, and any females they mate with after release will also produce just males. Since only female mosquitoes spread malaria, the disease should drop off quickly along with their population. In village of Bana, where the genetically modified mosquitoes were first tested in 2019, locals were initially worried about the experiment. Kiesiara Sanou, a Bana village elder, said that at the beginning, people thought the survey would release mosquitoes in the village that could cause more diseases. But since working with Target Malaria, they’ve come to understand exactly what the purpose is and now even help them with tasks like collecting the mosquitoes. Genetically modified mosquitoes are just one malaria solution that has been tested in Burkina Faso. The country also pioneered pesticide-infused mosquito nets.
Florida Environmental Group Says GMO Mosquitoes Fall Short on Scientific Rigor
17079C. Drukier, NTD, 2021-05-20 15:01:00.
America’s first genetically modified mosquitoes are now buzzing around six locations in the Florida Keys as part of a pilot project. Developed by UK biotech company Oxitec, the bugs are designed to kill off the wild population of Aedes aegypti mosquitoes that carry diseases like Dengue fever, yellow fever, and the Zika virus. Some people who live in the Keys aren’t happy about being part of a science experiment. Barry Wray, executive director of the Florida Keys Environmental Coalition explains why his organization has been fighting the GMO bugs for the last decade.
WHO issues new guidance for research on genetically modified mosquitoes to fight malaria and other vector-borne diseases
17076WHO, reliefweb, 2021-05-19 14:55:10.
New guidance from the World Health Organization (WHO) sets essential standards to inform future research and development on genetically modified mosquitoes, particularly in addressing issues relating to ethics, safety, affordability and effectiveness. Malaria and other vector-borne diseases, including dengue and Zika, affect millions globally. More than 400 000 people a year die from malaria alone. If proven safe, effective and affordable, genetically modified vector mosquitoes could be a valuable new tool to fight these diseases and eliminate their enormous health, social and economic burden. The guidance framework for testing genetically modified mosquitoes, developed in partnership with TDR, the Special Programme for Research and Training in Tropical Diseases, and the GeneConvene Global Collaborative, an initiative of the Foundation for the National Institutes of Health, describes best practices to ensure that the study and evaluation of genetically modified mosquitoes as public health tools is safe, ethical and rigorous. Current strategies for limiting transmission of mosquito-borne diseases are only partially effective. New, complementary approaches are needed to close the gaps in current vector control interventions, such as effective control of outdoor biting, and to provide alternatives to manage the increasing threat of insecticide resistance. Research suggests genetically modified mosquitoes could be a powerful and cost-effective tool to supplement existing interventions.
Genetically Modified Mosquitoes Take Flight to Fight Invasive Species in Florid
17073T. Machemer, Smithosonian Magazine, 2021-05-17 14:46:06.
In late April, the biotechnology company Oxitec placed blue-and-white hexagonal boxes on the properties of six private volunteers around the Florida Keys. After pouring in water, the genetically modified mosquito eggs inside activated and hatched. Now the first larvae have developed into full-grown male mosquitoes and taken flight, Susan Millis reports for Science News. About 12,000 of Oxitec’s male mosquitoes will fly out of the boxes each week for the next 12 weeks. Over several mosquito generations, Oxitec’s genetically modified Aedes aegypti could reduce the population of female mosquitoes—which bite and spread disease—and then lower the entire population in the Florida Keys in turn. The current trial marks the first time that genetically modified mosquitoes have been released to fly freely in the United States.
Genetically modified mosquitoes may help scientists swat dreaded midge
17057W. Jean, The Times, 2021-05-16 13:41:37.
Scotland’s bloodthirsty midges may finally meet their match thanks to revolutionary genetic manipulation techniques that could stop the pesky insects biting chunks out of the tourist industry. News that a British biotechnology company has created genetically modified non-biting mosquitoes in Florida to help curb dengue and yellow fever, and ultimately malaria, may give hope in the fight against the annual Scottish scourge. Oxford-based Oxitec and its American partners recently released genetically modified male mosquito larvae into the Florida Keys to control the wild, disease-carrying mosquito population rather than use pesticides. While midges share some characteristics with mosquitoes, Dr Simon Carpenter, a Pirbright Institute entomologist who was part of the team that built the first complete genome of the Highland biting midge, said the gene-editing process
British Firm Develops ‘Friendly’ Fall Armyworm To Save Crops
17176J. Choubey, Zenger, 2021-05-14 19:57:00.
The genetically modified fall armyworm, a pest that has invaded farms across Asia, Africa, and the Americas, has been developed by U.K-based biotechnology firm Oxitec to reduce the species’ population. The fall armyworm, or Spodoptera frugiperda, is a lepidopteran pest belonging to the family of butterflies and moths. It feeds on leaves, stems, and the reproductive parts of plants. The pest is causing significant damage to economically important cultivated grasses like maize, rice, sorghum, sugarcane, and wheat, along with 75 other crop species. Oxitec is collaborating with Bayer, a German multinational pharmaceutical and life sciences company, for the technology.
Bliotech firm behind CRISPR mosquitoes is working on other gene-hacked creatures
17217D. Robitzski, Futurism, 2021-05-14 16:08:11.
Brazil’s regulatory agency CTNBio gave Oxitec and Bayer the approval they needed to launch a field test of the gene-hacked armyworm — technically a caterpillar — on commercial crops, so there may be genetically altered bugs crawling across corn farms in the area soon. For years, Brazilian farmers have been trying to control fall armyworms with chemical pesticides. But as the pests grew to resist the sprays — which were already difficult to time in a way that actually impacted the nocturnal insect — they had to spray more and more harmful chemicals in the environment, according to Zenger‘s reporting. If Oxitec’s technology works — there’s reason to doubt that its similar mosquito tech does what the company claims — then that excessive pesticide spraying may be able to stop. “Our technology potentially reduces the need for additional pesticides in the long term,” Oxitec head of agricultural programs Neil Morrison said, according to Zenger. “Besides reducing populations of the pest, it also has the potential to slow the resistance development to insecticides and biotechnology enhanced crops.”
First Genetically Modified Mosquitoes Released in U.S. Are Hatching Now
17046D. Coffey, Scientific American, 2021-05-14 11:50:11.
This week, mosquito eggs placed in the Florida Keys are expected to hatch tens of thousands of genetically modified mosquitoes, a result of the first U.S. release of such insects in the wild. A biotechnology firm called Oxitec delivered the eggs in late April as part of a federally approved experiment to study the use of genetic engineering—rather than insecticides—to control disease-carrying mosquito populations. The move targets an invasive species, called Aedes aegypti, that carries Zika, dengue, chikungunya, yellow fever and other potentially deadly diseases, some of which are on the rise in Florida. The experiment relies on a genetic alteration that will be lethal to a large number of future offspring. In this case, male mosquitoes have been modified to carry a gene that makes their female progeny dependent on the antibiotic tetracycline—and thus fated to die in the wild. As the mating cycle repeats over generations, female numbers are depleted, and the population is suppressed. The modified insects eventually die off, making this approach self-limiting. Oxitec overcame significant regulatory hurdles before getting the go-ahead from the U.S. Food and Drug Administration in 2016 and then the Environmental Protection Agency in 2020. If the current pilot effort is successful, the firm is set to release as many as 20 million more males in the prime of Florida’s mosquito season later this year. The results of the experiment could ultimately help address concerns about releasing genetically modified organisms into the wild.
In a World-First, Genetically Modified Mosquitoes Are Hatching in the US
17044B. Bergan, INTERSTING ENGINEERING, 2021-05-14 11:44:58.
Mosquito eggs placed in the Florida Keys are about to hatch tens of thousands of genetically altered mosquitos, the first such release of "synthetic" insects in the world, according to an initial report from Scientific American. Pilot program for genetically modified mosquitoes could see millions more released this year. The biotechnology firm called Oxitec delivered the modified mosquito eggs late in April as part of a federally-endorsed experiment to study the use of genetic engineering, as opposed to insecticides, to control the populations of illness-spreading mosquitoes. This project targets one specific species of mosquito called Aedes aegypti, known to carry Zika, chikungunya, yellow fever, dengue, and other possibly deadly diseases. And some of these diseases have been on the rise in Florida. The new genetic contribution given to the mosquitoes will be deadly to many future offspring, with males altered to carry a gene causing female offspring to become dependent on the antibiotic called tetracycline — which is a death sentence for the female mosquitoes. After several generations, there won't be enough female mosquitoes of the species to maintain population numbers, putting a ceiling on them. But this is a temporary measure, since the genetically modified male mosquitoes will eventually all die.
The U.S.’s first open-air genetically modified mosquitoes have taken flight
17041S. Milius, Science News, 2021-05-14 11:35:37.
The first genetically modified mosquitoes that will be allowed to fly free outdoors in the United States have started reaching the age for mating in the Florida Keys. In a test of the biotech company Oxitec’s GM male mosquitoes for pest control, these Aedes aegypti started growing from tiny eggs set out in toaster-sized, hexagonal boxes on suburban private properties in late April. On May 12, experiment monitors confirmed that males had matured enough to start flying off on their own to court American female mosquitoes. This short-term Florida experiment marks the first outdoor test in the United States of a strain of GM male mosquitoes as a highly targeted pest control strategy. This strain is engineered to shrink local populations of Ae. aegypti, a mosquito species that spreads dengue and Zika (SN: 7/29/16). That could start happening now that the GM mosquitoes have reached mating age because their genetics makes them such terrible choices as dads.
Use of genetically modifed mosquitoes to minimize the burden of diseases casused by mosquitoes in South Texas.
17016MDN Staff, MegaDoctor News, 2021-05-11 13:00:04.
Of the many species of mosquitoes, female Aedes aegypti is the primary vector that is responsible for transmission of several diseases and has been most extensively studied. The efforts of the World Health Organization and the Center for Disease Control and Prevention to prevent and/or control mosquito-borne illness have yielded success, but it remains a serious global challenge. More recently, several approaches to create transgenic mosquitoes with the ultimate objective of preventing and/or controlling mosquito-borne illness have undergone field studies. Infecting mosquitoes with different strains of Wolbachia resulted in the reduction of egg laying rates, transmission ability and shorter lifespan. Similarly, using genetic technology, a self-limiting strain of male mosquitoes (OX513A) when released in the field have shown an 81%-95% suppression of population of this strain as compared to adjacent no-release control field. These encouraging results prompted the issuance of authorization by the U.S. Environmental Protection Agency for the use of second generation genetically modified mosquitoes (OX5034) in Florida and Texas” said Sohail Rao, MD, MA, DPhil, President and Chief Executive Officer, DHR Health Institute for Research & Development. As the first-ever use of genetically modified mosquitoes in the United States, over 750 million OX5034 will be ultimately released in the Florida Keys an area devastated by mosquito-borne illnesses
New genetic copycatchers detect efficient and precise CRISPR editing in a living organism
17013UNIVERSITY OF CALIFORNIA - SAN DIEGO, UNIVERSITY OF CALIFORNIA - SAN DIEGO, 2021-05-11 12:55:38.
Researchers at the University of California San Diego have laid the groundwork for a potential new type of gene therapy using novel CRISPR-based techniques. Working in fruit flies and human cells, research led by UC San Diego Postdoctoral Scholar Zhiqian Li in Division of Biological Sciences Professor Ethan Bier's laboratory demonstrates that new DNA repair mechanisms could be designed to address the effects of debilitating diseases and damaged cell conditions. The scientists developed a novel genetic sensor called a "CopyCatcher," which capitalizes on CRISPR-based gene drive technology, to detect instances in which a genetic element is copied precisely from one chromosome to another throughout cells in the body of a fruit fly.
Monster Mosquito–Why the Technology of Genetically Modified Mosquitoes is Dangerous and Should Be Stopped Worldwide
17001B. Dogra, counter currents, 2021-05-10 15:32:17.
After sparking controversy in other countries including India, the technology of genetically engineered mosquitoes is now leading to widespread protests in Florida USA. Here the biotechnology giant company Oxitec in collaboration with local officialdom is moving ahead with a pilot project to release millions of genetically engineered mosquitoes in Monroe County over a period of two years or so. The stated aim is to control the population of Aedes aegypti, a species that can carry both the dengue and the yellow fever virus. The idea is for genetically altered male, non-biting mosquitoes to mate with local , biting females , producing offspring that die at larval stage. Pointing out the inherent dangers of such technologies a spokesperson of Florida Key Environmental Coalition said that everyone should be writing to the White House to stop the release, at least until regulations to protect people are in place. Friends of the Earth has commented—scientists have raised concerns that genetically engineered mosquitoes could create hybrid wild mosquitoes which could worsen the spread of mosquito borne diseases and could be more resistant to insecticides than the original wild mosquitoes.
Florida releases genetically modified mosquitoes in hopes to reduce spread of disease
17011A. Fahim, Reuters, 2021-05-10 12:50:27.
Genetically modified mosquitoes have been released for the first time in the United States, taking flight in the Florida Keys in a pilot program intended to reduce the spread of deadly diseases such as dengue, yellow fever and the Zika virus.After an odyssey spanning more than a decade to secure regulatory approval, British-based biotechnology firm Oxitec, along with the Florida Keys Mosquito Control District (FKMCD)launched the project in hope of reducing the Aedes aegypti species that spread the diseases.While Oxitec and local authorities have high hopes for the program, local residents and environmental groups worry that not enough is known about the long-term effects of the new technology.Nevertheless, the Environmental Protection Agency granted an experimental use permit (EUP) to Oxitecon May 1.A half-dozen boxes containing the OX5034 mosquito created by Oxitec have been deployed in the Florida Keys, an archipelago stretching 120 miles (195 km) off the southern tip of the state.Only female Aedes aegypti bite and spread disease, so Oxitec has created males that pass on a gene that kills female offspring before they mature. Their male offspring then continue mating and passing on the altered gene.

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