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An answer to green energy in hydrogen-generating marine microbes

Researchers found two new types of gene clusters capable of producing large volumes of hydrogen in marine bacteria. The study suggests that the diversity in these clusters is related to speciation and ecological niches, with some species producing higher levels of hydrogen than others.

SourceHokkaido University·JournalCurrent Microbiology·TypeExperimental study·DateApr 2, 2025

Rice study identifies protein responsible for gas vesicle clustering in bacteria

Researchers at Rice University have identified a protein responsible for the clustering of gas vesicles in bacteria, a discovery that could enable new biomedical applications. The team used genetic, biochemical, and imaging approaches to understand the patterning of these structures, which are found in certain microorganisms.

SourceRice University·JournalNature Microbiology·DateMar 29, 2024

Mathematicians use AI to identify emerging COVID-19 variants

Researchers developed an AI framework that combines dimension reduction techniques with a new clustering algorithm to quickly identify groups of viral genomes at risk. This enables proactive response measures like tailored vaccine development, potentially eliminating emerging variants before they spread.

SourceUniversity of Manchester·JournalProceedings of the National Academy of Sciences·DateMar 11, 2024
SAMSUNG T9 Portable SSD 2TB

SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.

Largest diversity study of ‘magic mushrooms’ investigates the evolution of psychoactive psilocybin production

Researchers have sequenced 52 Psilocybe specimens, including 39 species previously unsequenced, to understand the evolution of psychoactive psilocybin production. The study reveals two distinct gene orders within the psilocybin-producing gene cluster, suggesting an ancient split in the genus.

SourceUniversity of Utah·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJan 9, 2024

AI model can help predict survival outcomes for patients with cancer

Researchers developed an AI model using epigenetic factors to predict patient outcomes across multiple cancer types. The model successfully divided patients into two groups with different survival chances, and its genes were found to have a significant overlap with cluster-defining signature genes.

SourceUniversity of California - Los Angeles Health Sciences·JournalCommunications Biology·DateNov 16, 2023

Head lice evolution mirrors human migration and colonization in the Americas

A new study analyzing lice genetic diversity found that head lice arrived in the Americas twice – once with early human migrants and again during European colonization. This discovery supports existing theories on human migration and provides insights into how lice have evolved alongside humans.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateNov 8, 2023
Celestron NexStar 8SE Computerized Telescope

Celestron NexStar 8SE Computerized Telescope combines portable Schmidt-Cassegrain optics with GoTo pointing for outreach nights and field campaigns.

Accurate data on dynamic molecular aggregates in cells for the first time

Researchers from University of Freiburg and University of Cambridge have observed dynamic molecular aggregates in cells for the first time. These condensates play a crucial role in controlling biochemical processes and are regulated by active biological mechanisms, not just physical forces.

SourceUniversity of Freiburg·JournalNature Communications·DateAug 15, 2023

Fueled by new chemistry, algorithm mines fungi for useful molecules

A new algorithm has been created to search fungal genomes for clusters of genes likely to result in interesting biological compounds. The algorithm, trained on a newly described type of chemistry in fungi, has discovered over 1,300 fungal species with biosynthetic gene clusters centered on isocyanide chemistry.

SourceUniversity of Wisconsin-Madison·JournalNucleic Acids Research·DateJul 20, 2023
Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.

New understanding of why kidney cancers become metastatic discovered by MD Anderson researchers

Researchers at MD Anderson Cancer Center have engineered a new model of aggressive renal cell carcinoma, highlighting molecular targets and genomic events that trigger chromosomal instability. The loss of interferon receptor genes plays a pivotal role in allowing cancer cells to become tolerant of chromosomal instability.

SourceUniversity of Texas M. D. Anderson Cancer Center·JournalNature Cancer·DateJun 26, 2023

Researchers discover new class of ribosomal peptide with hemolytic activity

Researchers at the University of Illinois have identified a novel class of ribosomal peptides called daptides, which exhibit hemolytic activity. This discovery opens up new avenues for therapeutic development and highlights the vast potential of undiscovered RiPP classes.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalNature Communications·TypeExperimental study·DateApr 4, 2023
Kestrel 3000 Pocket Weather Meter

Kestrel 3000 Pocket Weather Meter measures wind, temperature, and humidity in real time for site assessments, aviation checks, and safety briefings.

Losing key type of pancreatic cell may contribute to diabetes

A new study by Weill Cornell Medicine investigators found four distinct types of beta cells in the pancreas, with cluster 1 beta cells producing more insulin than others and appearing better able to metabolize sugar. The loss of these high-functioning beta cells may contribute to type 2 diabetes development.

SourceWeill Cornell Medicine·JournalNature Cell Biology·DateMar 16, 2023

Gene cluster reshuffling drives natural sunscreen evolution in lichens

Lichen-forming fungi have evolved unique gene clusters to produce orange 'sunscreen' pigments, allowing them to thrive in sunny environments. The discovery of a critical ABC transporter gene within the pigment gene cluster provides a potential hypothesis for toxicity avoidance in these organisms.

SourceSMBE Journals (Molecular Biology and Evolution and Genome Biology and Evolution)·JournalGenome Biology and Evolution·TypeExperimental study·DateFeb 9, 2023

Rice University scientists get fungi to spill their secrets

Researchers at Rice University have developed a multiplex base-editing platform that significantly improves the pace of new drug discovery by inducing fungi to produce more bioactive compounds. The technique has been deployed as a tool for mining fungal genomes for medically useful compounds, reducing research timeline by over 80%.

SourceRice University·JournalJournal of the American Chemical Society·TypeExperimental study·DateJan 6, 2023

Gene mutation may explain brain cell plaque buildup in Alzheimer’s disease

Researchers found that a gene mutation in mice resulted in increased plaque deposits and larger clumps, suggesting the gene plays a critical role in immune defenses. The study may lead to new therapies targeting this gene mutation to slow progression of Alzheimer's disease.

SourceNYU Langone Health / NYU Grossman School of Medicine·JournalAlzheimer s & Dementia·TypeExperimental study·DateNov 30, 2022
Fluke 87V Industrial Digital Multimeter

Fluke 87V Industrial Digital Multimeter is a trusted meter for precise measurements during instrument integration, repairs, and field diagnostics.

Revealing biochemical “rings of power”

Researchers at Max-Planck Institute for Terrestrial Microbiology have deciphered the biosynthesis of benzobactins, a class of natural compounds with special biological activity. The study reveals that these compounds are widespread in diverse bacteria and could be excellent candidates for future drug therapy.

SourceMax-Planck-Gesellschaft·JournalAngewandte Chemie·TypeMeta-analysis·DateNov 18, 2022

HUSHing repetitive-like elements contributes to normal brain development and function

The HUSH complex is involved in normal brain development, neuronal individuality, and connectivity. The complex also regulates repetitive-like gene clusters, including protocadherin gene clusters, which are essential for neuron-to-neuron interactions.

SourceIMBA- Institute of Molecular Biotechnology of the Austrian Academy of Sciences·JournalScience Advances·TypeExperimental study·DateNov 4, 2022

Collaborative team at IGB discovers new natural products at unprecedented speed

A collaborative team at IGB discovered 30 new compounds, including three with antibacterial properties, using the Illinois Biological Foundry for Advanced Biomanufacturing. The platform allowed for rapid screening of hundreds of genes and pathways, enabling the researchers to identify potential anti-microbial compounds.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalNature Communications·TypeExperimental study·DateOct 18, 2022

Hidden genes may be tapped for new antibiotics

Rice University bioscientists have developed a novel approach to control the expression of 'silent' genes in bacteria using CRISPR technology. This strategy could lead to the discovery of new antibiotics and has potential applications in antifungal and anticancer agents, as well as agriculture.

SourceRice University·JournalNucleic Acids Research·TypeExperimental study·DateJul 11, 2022
Aranet4 Home CO2 Monitor

Aranet4 Home CO2 Monitor tracks ventilation quality in labs, classrooms, and conference rooms with long battery life and clear e-ink readouts.

How to find marker genes in cell clusters

A new statistical method called Association Plot facilitates the determination and analysis of marker genes in single-cell data. This allows researchers to trace back RNA molecules to their cell of origin, providing insights into cell-type specific genes.

SourceMax-Planck-Gesellschaft·JournalJournal of Molecular Biology·TypeData/statistical analysis·DateJul 6, 2022

Scientists engineer synthetic DNA to study “architect” genes

Researchers at New York University have created artificial Hox genes using synthetic DNA technology and genomic engineering in stem cells. The findings confirm that clusters of Hox genes help cells learn and remember where they are in the body, with no other genes needed to be present.

SourceNew York University·JournalScience·DateJun 30, 2022

Oncotarget | A novel group of genes that cause endocrine resistance in breast cancer identified by dynamic gene expression analysis

A recent study identified 34 novel genes that contribute to endocrine resistance in breast cancer using dynamic gene expression analysis. The researchers found that these genes are differentially expressed in both estrogen receptor-positive and triple-negative breast cancers, suggesting shared genetic mechanisms underlying resistance d...

SourceImpact Journals LLC·JournalOncotarget·TypeComputational simulation/modeling·DateJun 8, 2022
Apple Watch Series 11 (GPS, 46mm)

Apple Watch Series 11 (GPS, 46mm) tracks health metrics and safety alerts during long observing sessions, fieldwork, and remote expeditions.

Insights from algae genes unlock mysteries of plant growth and health

Researchers discovered hundreds of new gene functions in algae, which have counterparts in plants, enabling better understanding of photosynthesis, DNA repair, and stress responses. The findings can improve biofuel production and develop heat-tolerant crops.

SourceUniversity of California - Riverside·JournalNature Genetics·TypeExperimental study·DateMay 11, 2022

Finding new weapons in nature's battlesites

A research team from the Max Planck Institute for Terrestrial Microbiology has identified 1,000 biosynthetic gene clusters, over half of which are previously unknown. These natural products have been found to be eukaryotic proteasome inhibitors that suppress the immune system of insects, as well as other virulence factors.

SourceMax-Planck-Gesellschaft·JournalNature Chemistry·DateApr 28, 2022

From rare soil microbe, a new antibiotic candidate

Scientists have identified a potential new antibiotic candidate from the rare soil microbe Lentzea flaviverrucosa. The discovery was made using genomics-based approaches and shows that this actinomycete produces two different bioactive molecules that are active against various types of cancer cells.

SourceWashington University in St. Louis·JournalProceedings of the National Academy of Sciences·DateApr 11, 2022

Study of rare disease reveals insights on immune system response process

Researchers at Johns Hopkins Medicine discovered a critical step in the molecular circuitry of immune cells that mobilizes the immune system to fight off foreign invaders. The findings, published in iScience, shed light on subtle genetic variations among human populations that may explain individual responses to infections.

SourceJohns Hopkins Medicine·JournaliScience·DateMar 8, 2022
DJI Air 3 (RC-N2)

DJI Air 3 (RC-N2) captures 4K mapping passes and environmental surveys with dual cameras, long flight time, and omnidirectional obstacle sensing.

The hidden talent of fungi

Researchers at TU Wien propose a new method to interpret and mine fungal genomes to predict essential genes for the production of valuable substances. The FunOrder method identifies co-evolved genes that are functionally necessary, distinguishing them from gap genes.

SourceVienna University of Technology·JournalPLOS Computational Biology·TypeData/statistical analysis·DateOct 4, 2021

When stubborn bugs refuse to make drugs

Researchers at Washington University in St. Louis used comparative metabologenomics to study the genomes of Streptomyces bacteria and identify key factors that influence drug production. The study found that fine-tuning of specific nucleotides can control antibiotic production, offering new insights for next-generation drug discovery.

SourceWashington University in St. Louis·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJul 29, 2021

Winning gene combination takes all

Scientists have successfully identified the complete avenacin biosynthetic pathway in oats, which provides resistance to soil-borne diseases like take-all. This discovery has implications for creating disease-resistant lines of wheat using modern technologies.

SourceJohn Innes Centre·JournalNature Communications·DateMay 7, 2021

Endophytic fungi as promising producers of bioactive small molecules

Researchers discovered a total of 23 new compounds in the endophytic fungus P. dangeardii, including azaphilone monomers, dimers, and trimers with unique structures. The compounds showed significant cytotoxicities, anti-inflammatory, or antioxidant activities.

SourceCompuscript Ltd·JournalActa Pharmaceutica Sinica B·DateApr 8, 2021
Davis Instruments Vantage Pro2 Weather Station

Davis Instruments Vantage Pro2 Weather Station offers research-grade local weather data for networked stations, campuses, and community observatories.

Rapid new automated genomics screening stamps out crop disease

Researchers at Earlham Institute created a new automated workflow using liquid handling robots to identify the genetic basis of preventing plant pathogens. The new technology screened 2,880 mutants in just 11 hours, identifying a gene cluster linked to growth inhibition of the common potato pathogen.

SourceEarlham Institute·JournalSynthetic Biology·DateMar 4, 2021

Dock and harbor: A novel mechanism for controlling genes

PML bodies are found to physically restrict access to DNA methylation enzymes, suppressing gene activation. The study sheds light on a new role of PML bodies in regulating gene expression by manipulating 3D nuclear organization.

SourceKanazawa University·JournalMolecular Cell·DateMay 12, 2020

Evolution can reconfigure gene networks to deal with environmental change

Researchers have identified a cluster of over 800 genes that evolved to become 'plastic', allowing modern Daphnia to adjust its gene expression in response to phosphorus levels. This adaptability helps mitigate the effects of eutrophication, a major global threat to freshwater environments.

SourceUniversity of Birmingham·JournalMolecular Biology and Evolution·DateNov 13, 2019

Bacterial arms race may shape gut microbiome

A new study found that certain gut bacteria, such as Bacteroides species, have acquired large immunity gene clusters to neutralize toxins from other bacteria. These clusters are actively acquiring new genes to protect against emerging threats.

SourceUniversity of Washington School of Medicine/UW Medicine·JournalNature·DateOct 30, 2019

Computational 'match game' identifies potential antibiotics

A software tool called MetaMiner has been developed to identify bioactive molecules and their producing microbial genes for therapeutic use. The tool speeds up the discovery process, identifying 31 known RiPPs and seven new ones in about two weeks.

SourceCarnegie Mellon University·JournalCell Systems·DateOct 16, 2019
CalDigit TS4 Thunderbolt 4 Dock

CalDigit TS4 Thunderbolt 4 Dock simplifies serious desks with 18 ports for high-speed storage, monitors, and instruments across Mac and PC setups.

Genome mining reveals novel production pathway for promising malaria treatment

Researchers at the University of Illinois have discovered a new biochemical trick used by microbes to produce an antimicrobial compound effective against malaria. The discovery reveals a completely unknown production pathway, which may lead to the development of more efficient and cost-effective methods for producing similar compounds.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalNature Chemical Biology·DateSep 4, 2019

Unmuting large silent genes lets bacteria produce new molecules, potential drug candidates

Scientists at the University of Illinois have developed a technique to activate large silent gene clusters in Streptomyces bacteria, yielding new natural products and potential anti-microbial drugs. By using transcription factor decoys, researchers successfully expressed genes that had previously remained dormant.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalNature Chemical Biology·DateDec 31, 2018

Researchers wake-up DNA from soil bacteria to discover novel acid antibiotic

Researchers at the University of Warwick have discovered a novel acid antibiotic, Scleric Acid, by engineering DNA from soil bacteria. The compound shows moderate antibacterial activity against Mycobacterium tuberculosis and has potential applications as a biocatalyst for manufacturing high-value chemicals.

SourceUniversity of Warwick·JournalChemical Science·DateOct 22, 2018

Novel bioactive steroid biosynthetic pathway in symbiotic fungi

Scientists deciphered the biosynthetic gene cluster for furanosteroid demethoxyviridin, a nanomolar-potency inhibitor of phosphatidylinositol 3-kinase (PI3K). The research group identified key enzymes involved in the biosynthesis pathway.

SourceJapan Science and Technology Agency·JournalNature Communications·DateMay 21, 2018

Technology unlocks mold genomes for new drugs

Scientists have developed a systematic approach to screen for molecules produced by molds, finding 17 new natural products in three species. The technology, called FAC-MS, uses genomics and data analytics to identify gene clusters that produce valuable chemicals.

SourceNorthwestern University·JournalNature Chemical Biology·DateJun 12, 2017
GQ GMC-500Plus Geiger Counter

GQ GMC-500Plus Geiger Counter logs beta, gamma, and X-ray levels for environmental monitoring, training labs, and safety demonstrations.

Scientists discover master switch to turn on silent biosynthetic gene clusters

Researchers at Princeton University have discovered a master switch that 'switches on' silent biosynthetic gene clusters in bacteria, leading to the production of new compounds with anti-parasitic properties. The global regulator, scmR, acts as a gatekeeper for expression and can be eliminated genetically to release molecules of interest.

SourcePrinceton University·JournalProceedings of the National Academy of Sciences·DateApr 13, 2017

CRISPR mines bacterial genome for hidden pharmaceutical treasure

Researchers use CRISPR-Cas9 gene-editing technology to activate silent genes in Streptomyces bacteria, revealing potential new compounds with distinct structures that could lead to novel classes of drugs. The study aims to combat antibiotic resistance and cancer by identifying new chemical scaffolds.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalNature Chemical Biology·DateApr 10, 2017

Principles of 3-D genome folding and gene expression studied across species

Scientists have examined the globin gene cluster in zebrafish to understand 3D genome folding and its relationship to gene expression. They found that adult and embryonic globin genes are spatially separated in the genome, with distinct chromatin domains and organization.

SourceSMBE Journals (Molecular Biology and Evolution and Genome Biology and Evolution)·JournalMolecular Biology and Evolution·DateMar 7, 2017

New tool, RODEO, promises to capture the breadth of microbial biosynthetic potential

Researchers developed software RODEO to identify clusters of genes indicating an organism's ability to synthesize therapeutically promising molecules. The tool uses machine learning approach to recognize predictive genomic features and has been successfully applied to a class of molecules called lasso peptides.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalNature Chemical Biology·DateMar 1, 2017

Effects of genes often influenced by network

Researchers at Uppsala University found that genes frequently collaborate in large clusters or networks to regulate traits. This study highlights the importance of considering gene interactions when predicting genetic effects on individuals.

SourceUppsala University·JournalNature Genetics·DateFeb 27, 2017
Creality K1 Max 3D Printer

Creality K1 Max 3D Printer rapidly prototypes brackets, adapters, and fixtures for instruments and classroom demonstrations at large build volume.

Scientists illuminate a hidden regulator in gene transcription

Scientists at MIT and HHMI use a new imaging technique to observe short-lived enzyme clusters that play a central role in triggering mRNA production and controlling gene transcription. These clusters, which remain stable for up to 24 seconds, can significantly impact gene expression.

SourceMassachusetts Institute of Technology·DateMay 26, 2016

Newly discovered photosynthetic bacteria is surprisingly abundant

A newly discovered photosynthetic bacterium has been found to be abundantly present in diverse environments, including freshwater lakes and water treatment plants. Researchers believe this bacterium holds promise for producing biofuels by transferring its genes to other organisms.

SourceUniversity of Southern Denmark·JournalEnvironmental Microbiology Reports·DateJan 20, 2016

A novel roadmap through bacterial genomes leads the way to new drug discovery

Researchers at the University of Illinois have developed a database that analyzes microbial genomic data to speed up the discovery of new therapeutic drugs. The database allows scientists to identify promising gene clusters and predict the production of natural products, enabling them to target specific bacterial strains for study.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalNature Chemical Biology·DateOct 6, 2014
Garmin GPSMAP 67i with inReach

Garmin GPSMAP 67i with inReach provides rugged GNSS navigation, satellite messaging, and SOS for backcountry geology and climate field teams.

Deep, integrated genomic analysis re-classifies lower-grade brain tumors

Researchers analyzed genomic data from The Cancer Genome Atlas and identified three molecular clusters in lower-grade brain tumors. Tumors with IDH1/IDH2 mutations and co-deletion of chromosome arms 1p and 19q have a median survival of around eight years, while those without these mutations have a median survival of only 18 months.

SourceUniversity of Texas M. D. Anderson Cancer Center·DateApr 8, 2014

New method of DNA editing allows synthetic biologists to unlock secrets of a bacterial genome

Researchers have developed a novel DNA engineering technique to discover potentially valuable functions hidden within bacterial genomes. By reprogramming gene expression, they were able to increase the production of previously unknown compounds with useful biomedical applications.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·JournalNature Communications·DateDec 5, 2013
Sky & Telescope Pocket Sky Atlas, 2nd Edition

Sky & Telescope Pocket Sky Atlas, 2nd Edition is a durable star atlas for planning sessions, identifying targets, and teaching celestial navigation.

The swing of architect genes

Scientists demonstrate the existence of two distinct regulatory domains controlling arm and hand formation, revealing a complex genetic switch that enables wrist emergence. The study sheds light on the molecular processes governing limb development, highlighting the intricate dialogue between genes and regulatory elements.

SourceUniversité de Genève·JournalScience·DateJun 6, 2013

Mining the botulinum genome

Researchers analyzed the genome of C. botulinum bacteria to understand how they acquired their deadly neurotoxin gene cluster. The study found that the bacteria picked up the cluster in a single event and discovered fragments of other toxin genes, suggesting a 'hotspot' for gene transfer.

SourceNorwich BioScience Institutes·JournalGenome Biology and Evolution·DateMay 14, 2013

Genetic discovery unlocks biosynthesis of medicinal compound in poppy

Researchers at University of York and GlaxoSmithKline have identified a complex gene cluster responsible for producing the medicinal compound noscapine. This discovery will accelerate breeding of high-noscapine poppy varieties, which could provide a reliable source of this valuable medicine.

SourceUniversity of York·JournalScience·DateMay 31, 2012