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tag biological resource center microbiology culture

bacteria and DNA molecules on a purple background.
Engineering the Microbiome: CRISPR Leads the Way
Mariella Bodemeier Loayza Careaga, PhD | Mar 15, 2024 | 10+ min read
Scientists have genetically modified isolated microbes for decades. Now, using CRISPR, they intend to target entire microbiomes.
bacteria inside a biofilm
How Bacterial Communities Divvy up Duties
Holly Barker, PhD | Jun 1, 2023 | 10+ min read
Biofilms are home to millions of microbes, but disrupting their interactions could produce more effective antibiotics.
A silver tree showing roots and branches in a circle on a blue background.
Onward and Upward!
Kristie Nybo, PhD | Sep 8, 2023 | 9 min read
At The Scientist, we are strengthening our roots while reaching for the sky.
Vet giving vaccines to pigs
Antimicrobial Resistance: The Silent Pandemic
Danielle Gerhard, PhD | Jun 30, 2023 | 9 min read
Scientists continue to ring alarm bells about the risks associated with the continued misuse of antimicrobials and advocate for innovative treatments, improved surveillance, and greater public health education.
Fish in a big blue aquarium
Microbes Responsible for Stealing Aquarium Medicine
Amanda Heidt | Feb 1, 2022 | 6 min read
Researchers discover that bacteria break down medicinal compounds for their nitrogen, solving a mystery that has vexed aquatic veterinarians for years.
Bioremediation: Cleaning Up With Biology And Technology
Angela Martello | Jan 6, 1991 | 7 min read
As the necessity of cleaning up the environment moves to the forefront of the public's consciousness, researchers in increasing numbers have been enlisting some of the earth's tiniest creatures to help clean up highly polluted sites and reclaim soils and groundwater systems. Stimulated by advances in microbiology and biotechnology, the booming multidisciplinary field of environmental biotechnology focuses on the use of microorganisms to treat or degrade hazardous waste, encompassing the techniq
Biological Terrorism
Jennifer Fisher Wilson | Nov 11, 2001 | 8 min read
One warning came in black-and-white in 1993: A U.S. Congressional Office of Technology Assessment report projected that releasing 100 kilograms of aerosolized anthrax spores upwind of the U.S. capital could kill between 130,000 and 3 million people-a lethality at least matching that of a hydrogen bomb. Last year, a U.S. Justice Department exercise revealed that discharging pneumonic plague in Denver could create 3,700 or more cases, with an estimated 950 or more deaths within a week.1 Then, acco
The Researchers Who Pivoted to COVID-19: One Year On
Shawna Williams | Jul 1, 2021 | 7 min read
The Scientist checks in on scientists who switched gears to combat the pandemic.
A scanning electron micrograph of a coculture of E. coli and Acinetobacter baylyi. Nanotubes can be seen extending from the E. coli.
What’s the Deal with Bacterial Nanotubes?
Sruthi S. Balakrishnan | Jun 1, 2021 | 10+ min read
Several labs have reported the formation of bacterial nanotubes under different, often contrasting conditions. What are these structures and why are they so hard to reproduce?
a photo of ampules stored in wire racks
Scripps Acquires Pfizer’s Massive Microbial Library
Jef Akst | Jan 9, 2020 | 5 min read
The East Coast campus of the research institute received shipments of freeze-dried or frozen samples of more than 210,000 microbial strains, which scientists plan to mine for potentially useful natural products.

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