Gene Drive in the News

A curated collection of articles from the popular press

Scientists engineer mosquitoes that can’t spread malaria

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S. Varshney,  Gamacher Central,  2022-09-22 13:58:18.
Scientists have engineered mosquitoes that slow the growth of malaria-causing parasites in their gut, preventing transmission of the disease to humans. The genetic modification causes mosquitoes to produce compounds in their guts that stunt the growth of parasites, meaning they are unlikely to reach the mosquitoes’ salivary glands and be passed on in a bite before the insects die. So far, the technique has been shown to dramatically reduce the possibility of malaria spread in a lab setting, but if proven safe and effective in real-world settings it could offer a powerful new tool to help eliminate malaria.

Mosquitoes with honeybee DNA could tame malaria

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R. Blakely,  The Times,  2022-09-22 13:53:23.
A new form of genetically engineered mosquito could reduce the spread of malaria in Africa, a study suggests. The addition of DNA from a honeybee and genetic material from the African clawed frog prompt the new mosquitoes to produce compounds to stunt the growth of the parasite that causes malaria. This means that the parasite, and therefore the disease, is less likely to be passed on to human victims via mosquito bite. To be useful in the real world this would have to be coupled with an existing technology known as a gene drive, a controversial genetic tool that would force the new characteristic through populations of mosquitoes as they reproduce. For malaria to spread, a female mosquito must bite someone infected with the malaria

Genetically Engineered Mosquitoes Prevented the Growth of Malaria-causing Parasites in Their Gut

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P. Mozter,  Nature World News 2022,  2022-09-22 13:45:51.
Abstract: Scientists have created mosquitoes that inhibit the development of malaria-causing parasites in their stomachs, therefore decreasing disease transmission to people. The genetic change allows mosquitoes to create substances in their intestines that inhibit parasite development, making parasites less likely to reach the mosquitoes' salivary glands and be transmitted in a bite before the insects die, as per ScienceDaily. The Transmission: Zero team at Imperial College London developed the breakthrough so that it may be used with current "gene drive" technologies to distribute the alteration and substantially reduce malaria transmission. The team is planning field experiments, but first, they will rigorously verify the new modification's safety before merging it with a gene drive for real-world testing.

Mosquitoes are being genetically modified so they can’t spread malaria

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M. Le Page,  New Scientist,  2022-09-21 14:17:06.
Gene editing mosquitoes so they die before malaria parasites can develop inside them could stop the spread of the deadly parasite entirely,

Genetically-modified mosquitoes could ‘help wipe out malaria’

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S. Knapton,  The Telegraph,  2022-09-21 14:11:56.
Mosquitoes that cannot spread malaria have been genetically engineered by British scientists, in a breakthrough that could help eliminate the disease. ...

Scientists engineer mosquitoes that can’t spread malaria

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Imperial College London,  Phys Org,  2022-09-21 13:32:19.
Scientists have engineered mosquitoes that slow the growth of malaria-causing parasites in their gut, preventing transmission of the disease to humans. The genetic modification causes mosquitoes to produce compounds in their guts that stunt the growth of parasites, meaning they are unlikely to reach the mosquitoes' salivary glands and be passed on in a bite before the insects die. So far, the technique has been shown to dramatically reduce the possibility of malaria spread in a lab setting, but if proven safe and effective in real-world settings it could offer a powerful new tool to help eliminate malaria. The innovation, by researchers from the Transmission:Zero team at Imperial College London, is designed so it can be coupled with existing "gene drive" technology to spread the modification and drastically cut malaria transmission. The team is looking towards field trials, but will thoroughly test the safety of the new modification before combining it with a gene drive for real-world tests. Collaborators from the Institute for Disease Modeling at the Bill and Melinda Gates Foundation also developed a model that, for the first time, can assess the impact of such modifications if used in a variety of African settings. They found that the modification developed by the Transmission:Zero team could be a powerful tool for bringing down cases of malaria even where transmission is high.

Extreme GM “extinction technology” of gene drives presented as “natural”

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GM Watch,  GM Watch,  2022-09-19 14:45:48.
Now similar Orwellian moves are happening in the area of gene drives. A gene drive is a genetic engineering technology that forces a particular genetic modification through a population by changing the natural rules of inheritance, usually to ensure that it is increasingly – or always – inherited. Gene drive organisms are built to intentionally spread their engineered traits through an entire population, turning on its head the usual imperative to try to contain and prevent engineered genes from contaminating and disrupting ecosystems. They can be designed to re-model or delete entire species. Gene drive technology is deeply unpopular and rightly feared by the public and regulators. It is against this background that in recent years, some researchers have begun to describe so-called "selfish genetic elements" found in nature* as "natural gene drives" and to present gene drive as a "ubiquitous natural phenomenon".

Humans Have a Long History of Making ‘Very Bad Decisions’ to Save Animals

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T. McDonnell,  The New York Times,  2022-09-17 07:17:21.
Environmental reporter Tim McDonnell on the potential negative consequences of animal conservation efforts. McDonnell highlights Target Malaria’s research on gene drive to “eliminate malaria-carrying mosquitos” and quotes New Zealand researcher Philipp Messer saying that the world is “ill-prepared” for a "real-life gene drive.” The article also quotes MIT biologist Kevin Esvelt saying that misuse of the technology would cause the public and policymakers to halt gene drive research and would set the field back by a decade. The article notes that there is no international regulation to “prevent the premature deployment of gene drive in the wild” and states that “individual governments, powerful funding organizations like the Bill and Melinda Gates Foundation, and scientists themselves” are responsible for balancing the prevention of risky interventions with the need to support basic research. Esvlet is also quoted saying that the WHO needs to “establish a registry for all gene drive experiments that requires scientists to detail safeguards and find a local community who agrees to guide the research before experiments begin.”

Can a bold new plan to stop mosquitoes catch on?

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L. J. Young,  Popular Science,  2022-09-13 07:48:42.
In the northwestern outskirts of Visalia in Tulare County, California, Bryan Ruiz drives down a familiar dirt road that cuts through farmland. He comes up to an irrigation pipe that’s created a “pretty nasty” situation—a small patch of vegetation and algae-covered water baking under the early June sun. As his shadow looms over the pool, a wormlike critter less than half an inch long quickly tries to submerge out of sight, but before it can, Ruiz scoops it up with a long metal dipper. He squints at his catch: a larva of Culex, a genus that includes common house mosquitoes.

Fact Check: Bill Gates’ genetically modified mosquitoes are responsible for mosquito-borne viruses in Florida and are part of the next planned pandemic.

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A. Williams,  The Paradise,  2022-09-09 06:00:08.
The genetically modified mosquitoes in Florida are part of a project by Oxitec that Bill Gates did not fund. The virus reported in Florida is the West Nile virus, which has had reported cases in most U.S. states since 1999, with lower cases in 2022 than in previous years. The virus has no correlation to the release of the mosquitoes by Oxitec, and no reports have mentioned they have caused harm. The belief that pandemics are planned by governmental or global business is a known conspiracy and unsubstantiated. Therefore, this claim has been marked as false.

Can mosquitoes be used for biological warfare?

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Health Desk,  Health Desk,  2022-09-07 06:05:21.
Every year, mosquitoes kill more people than any other creature in the world. Because of 1) mosquitoes’ ability to spread deadly, communicable diseases and cover large distances quickly, and 2) the fact that different types of bugs have been weaponized for hundreds of years, it is not surprising that mosquitoes have been used as weapons or suspected of being used as weapons. One of the most well known examples of mosquitoes being used as biological weapons occurred in the 20th century during World War II. Nazi researchers studied insects, including mosquitoes, to determine their ability to spread disease. The Nazi forces then went to Italian marshes to purposely collect mosquitoes with malaria and them into the population. While this is the most well-known case of using mosquitoes as biological warfare, the use or considered use of mosquitoes as weapons is not unique to Germany. For instance, Fort Detrick in Maryland was created during World War II to focus on defending the United States against biological weapons and researching biological weapons. One plan for the site in the late 1950s involved releasing mosquitoes infected with yellow fever virus against an enemy though this never actually happened.

Bill Gates’ Colombian Mosquito Factory Breeding 30 Million Bacteria-Infected Mosquitos Per Week

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anonymous,  GREATGAMEINDIA,  2022-09-07 05:27:22.
Bill Gates’ Colombian ‘mosquito factory’ is breeding 30 million bacteria-infected mosquitos per week. The project’s objective appears to be to introduce Wolbachia into native mosquito populations by employing lab-bred mosquitoes, resulting in the infection of such populations. In a plant in Colombia, Bill Gates is currently producing 30 million bacterially-infected mosquitoes every week and he has threatened to “scale and deliver” the mosquitoes to “communities around the world.” As part of his World Mosquito Program (WMP), the Microsoft founder and self-declared World Health Czar has already invested $185 million in the establishment of the mosquito factory. What is the project’s stated purpose? In order to eradicate native mosquito populations thought to be responsible for dengue, zika, and other viral illnesses in humans, it is necessary to utilize mosquitoes that are infected with a bacteria that induces sterility.

Modified mosquito releases to fight dengue fever, chikungunya or yellow fever

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Sewell, Tammy,  OICANADIAN,  2022-09-05 14:35:46.
To date, only one technique based on genetically modified mosquitoes has been developed at an operational level, it is the RIDL technique (release of insects carrying a dominant lethal gene, or release of insects carrying a dominant lethality gene). Male mosquitoes which, unlike females, do not bite, are genetically modified. Their offspring die before reaching adulthood. This technique has received authorization from the US Environmental Protection Agency. Last spring, the private company Oxitec began a trial in Florida consisting in disseminating mosquito eggs Aedes aegypti (known to carry many viruses such as dengue fever, yellow fever, chikungunya and Zika) genetically modified in nature for three months.

Oregon State University professor releases destructive moths, wasps into orchards

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E. Francovich,  statesman journal,  2022-09-04 05:20:27.
Each week for the past three months Christopher Adams, a professor at Oregon State University, has released upward of 4,000 codling moths into the Columbia Gorge’s fertile orchards. The drab, half-inch nonnative insects don’t look like much, but when they lay their larvae inside apples, pears, walnuts or other crops, they wreak havoc. According to one 2018 analysis, they cost Washington apple growers more than half-a-billion dollars in damages. And that’s exactly why Adams has released the moths. No, he’s not an agroterrorist. Each moth he’s let into the wild has been sterilized. “These sterilized male and females fly around and mate with any wild (moths),” Adams says. “Because they are sterilized you don’t get any offspring.” Adams is an assistant professor of tree fruit bugology at Oregon State University’s Hood River extension

How to Exterminate the Invaders: Playing Dangerously with the Pandora’s Box of Genetic Engineering

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Spivey,  Czechia Posts English,  2022-09-01 19:35:59.
Man has dragged alien species to new continents, sometimes inadvertently and often intentionally. That’s how she got from America to Europe Musk Muskrat (Ondatra zibethicus) whose nutria (Myocastor coypus). He traveled in the opposite direction across the Atlantic, for example common starling (Sturnus vulgaris) or field lark (Alauda arvensis). Sometimes the transoceanic import passed without consequences, other times it started a natural disaster. Undoubtedly, the most famous destructive invasion was caused by the deliberate importation of the wild rabbit (Oryctolagus cuniculus) to Australia.

Researchers propose new framework for regulating engineered crops

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North Carolina State University,  Phys Org,  2022-09-01 19:29:56.
A Policy Forum article published today in Science calls for a new approach to regulating genetically engineered (GE) crops, arguing that current approaches for triggering safety testing vary dramatically among countries and generally lack scientific merit—particularly as advances in crop breeding have blurred the lines between conventional breeding and genetic engineering. Rather than focusing on the methods and processes behind the creation of a GE crop to determine if testing is needed, a more effective framework would examine the specific new characteristics of the crop itself by using so-called "-omics" approaches, the article asserts. In the same way that biomedical sciences can use genomic approaches to scan human genomes for problematic mutations, genomics can be used to scan new crop varieties for unexpected DNA changes.

Biologists engineered insect-bacterial mutualism in ‘bucket list’ achievement

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Annonymous,  @THEU,  2022-08-23 07:28:20.
A new paper in Current Biology authored by Crystal Su and other collaborators in the School of Biological Sciences describes the development of a novel, synthetic insect-bacterial symbiosis that is sustained through many insect generations by transovarial bacterial transmission. The symbiotic bacteria express a red fluorescent protein that is visible through the insect cuticle, facilitating characterization of the mechanics of infection and transmission in insect tissues and cells. In addition, Su et. al.engineered the bacteria to modify their ability to synthesize aromatic amino acids, which are used by the insect host to fuel cuticle strengthening. Correspondingly, insects maintaining bacteria that overproduce these nutrients exhibited stronger cuticles, signifying mutualistic function. The establishment of this synthetic symbiosis will facilitate detailed molecular genetic analysis of symbiotic interactions and presents a foundation for the use of genetically modified symbionts in the engineering of insects that transmit diseases of medical and agricultural importance. The paper is titled “Rational engineering of a synthetic insect-bacterial mutualism.”

CRISPR, an eco-friendly technology, may detect crop pests

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W. Adam,  list23,  2022-08-22 09:16:51.
Drosophila suzukii, an invading insect pest, is a threat to agricultural yields, especially to the production of fruits such as strawberries, cherries, plums, and grapes in western countries. Until now, control measures to stop the spread of D. suzukii have been inadequate. A research published in GEN Biotechnology (Precision Guided Sterile Males Suppress Populations of an Invasive Crop Pest) describes the development of a programmable CRISPR-based technique that might, if implemented at large in the wild, eliminate fertile male D. suzukii, effectively, specifically, and safely controlling this pest population. The team at the University of California, San Diego (UCSD) implemented a temperature-inducible, precision-guided, sterile insect technique (pgSIT), described by the team in an earlier investigation, to breed infertile but fit D. suzukii males with modest shorter lifespans. Through empirical experimentation and mathematical modeling, the researchers demonstrated that repeated release of sterilized males can rapidly and successfully eliminate D. suzukii populations.

World Mosquito Day: Can genetic modification techniques quash the menace?

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CNBCTV18,  CNBC TV18,  2022-08-20 09:54:03.
Genetically modified (GM) mosquitoes are prepared in labs and are supposed to fight the Aedes aegypti mosquitoes which spread viruses including dengue, Zika, and chikungunya. Billions have apparently been successfully released in the US, Brazil, the Cayman Islands, Panama, and India.

CRISPR-based technology targets global crop pest

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University of California - San Diego,  Phys Org,  2022-08-18 10:05:07.
Applying new CRISPR-based technology to a broad agricultural need, researchers at the University of California San Diego have set their aims on a worldwide pest known to decimate valuable food crops. Nikolay Kandul, Omar Akbari and their colleagues first demonstrated the precision-guided sterile insect technique, or pgSIT, in Drosophila melanogaster, the common fruit fly, in 2019. The technology, later adapted to mosquitoes, uses programmable CRISPR techniques to edit key genes that control sex determination and fertility. Under the new system, pgSIT-developed insect eggs are deployed into a targeted population and only sterile males hatch, resulting in a fertility dead end for that species. Kandul, Akbari and their colleagues have now adapted the technology for use in Drosophila suzukii, an invasive fruit fly (also known as the spotted-wing drosophila) responsible for millions of dollars in crop damage. The advancement is described in the journal GEN Biotechnology.

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