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Science News Archive September 2019 - Page 20


Page 20 of 43

Did microbes assist life in colonizing land?

A comparative microbiome study has identified significant differences in the composition of microbial communities between aquatic and terrestrial organisms. The researchers suggest that microorganisms may have played a key role in the evolutionary transition from purely aquatic life to life on land.

SourceKiel University·JournalMicrobiome·DateSep 17, 2019

UM study abroad students fuel understanding of gaps in conservation data

A collaborative study between University of Montana and Universidad de Concepcion in Chile found substantial gaps in scientific information relevant to conservation planning for threatened and endangered terrestrial mammals. The research highlights the importance of developing strategic research agendas for at-risk species worldwide.

SourceThe University of Montana·JournalConservation Science and Practice·DateSep 17, 2019

A Matter of concentration

A team of scientists at the University of Freiburg has found that the concentration of Argonaute proteins plays a central role in regulating the balance between stem cells and differentiated cells in plants. This balance is crucial for plant development, growth, and adaptation to environmental changes.

SourceUniversity of Freiburg·JournalPlant Communications·DateSep 17, 2019

New hunt for dark matter

Researchers propose using gravitational-wave observatories to detect axions, which could be a type of dark matter. Axions are predicted to modulate light polarization and can be detected with existing laser-based experiments, offering a cost-effective solution to the hunt for dark matter.

SourceUniversity of Tokyo·JournalPhysical Review Letters·DateSep 17, 2019

March of the multiple penguin genomes

The Penguin Genome Consortium has sequenced high-coverage penguin genome sequences, providing an unparalleled amount of information on the genomic landscape of all living penguin species. This study reveals key insights into the evolution of life on the ice and will help predict population trends under future climate change scenarios.

SourceGigaScience·JournalGigaScience·DateSep 17, 2019

Programmable swarmbots make flexible biological tools

Biomedical engineers create biomanufacturing platform using bursting bacteria and shrinking capsules to produce targeted proteins, enabling flexible and efficient production of diverse biologics. The new technology simplifies the creation of protein complexes and offers an easy way to produce multiple proteins simultaneously.

SourceDuke University·JournalNature Chemical Biology·DateSep 17, 2019

Tortillas tell the story of folate deficiency in Mexico: study

A new study published in the American Journal of Clinical Nutrition found that a significant proportion of Mexican women of childbearing age have inadequate folate intake. The study suggests that fortification of staple foods with folic acid has improved overall folate intake, but still leaves vulnerable populations at risk.

SourceColumbia University's Mailman School of Public Health·JournalAmerican Journal of Clinical Nutrition·DateSep 17, 2019

Electronic nose can sniff out which lung cancer patients will respond to immunotherapy

A new electronic nose can identify lung cancer patients who will respond to immunotherapy with 85% accuracy, outperforming the current gold standard of immunohistochemistry. The non-invasive test detects chemicals in patient breath and provides instant feedback, potentially avoiding ineffective treatment and side effects.

SourceEuropean Society for Medical Oncology·JournalAnnals of Oncology·DateSep 17, 2019

Raising the profile of lupus

A new two-year grant aims to improve outreach and care for people with lupus, focusing on historically black colleges and universities. The initiative includes educational outreach efforts, a patient navigator program to reduce hospital readmissions, and partnerships to increase understanding of health disparities among healthcare prov...

Research reveals the crucial role of recycling in the evolution of life in our universe

New research by astrophysicists at the University of Kent reveals how matter discarded as stars die is recycled to form new stars and planets. The study found that elements such as carbon and oxygen are transferred through a process of fragmentation, providing vital clues about the emergence of life in our universe.

SourceUniversity of Kent·JournalMonthly Notices of the Royal Astronomical Society·DateSep 17, 2019