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Fossil plant and insect communities key to understanding global change

Researchers have analyzed fossil records of plants and insects to understand how the Earth's climate has changed over time. The study reveals that the K-T boundary, which marked the extinction of dinosaurs, was caused by an extraterrestrial impact, while the P-E interval saw a more gradual change due to global warming.

SourcePenn State·DateFeb 16, 2003
SAMSUNG T9 Portable SSD 2TB

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An origin of new world agriculture in coastal Ecuador

Researchers at the Smithsonian Tropical Research Institute have discovered evidence of early domestication of wild squash varieties in coastal Ecuador dating back to around 12,000 years ago. The phytoliths found in these ancient fruits suggest a significant shift towards more productive agricultural practices among hunter-gatherers.

SourceSmithsonian Tropical Research Institute·JournalScience·DateFeb 13, 2003

Dinosaurs experienced climate changes before K-T collision

Researchers have resolved terrestrial paleoclimate records near the K-T boundary, correlating with marine data. Climate changes occurred globally, with warming events occurring 66 million years ago, and cooling trends preceding the K-T collision.

SourcePenn State·JournalProceedings of the National Academy of Sciences·DateJan 14, 2003

Study of fossils found in arctic shows plants more developed at earlier time

Scientists have discovered well-preserved fossil remains of early land plants on Bathurst Island in the Northwest Territories, which are 800 miles from the North Pole. These findings indicate that vascular plants were more complex and developed earlier than previously thought.

SourceUniversity of North Carolina at Chapel Hill·JournalAmerican Journal of Botany·DateJun 7, 2002
Apple iPhone 17 Pro

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

UF expert: ancient fossil suggests flowers may be underwater gift

A 125-million-year-old fossilized plant has provided clues about the evolution of modern flowering plants, which are the dominant vegetation on Earth. The discovery, made in northeast China, shows that flowering plants may have originated underwater before transitioning to land.

SourceUniversity of Florida·JournalScience·DateMay 2, 2002

Scientist probes fossil oddity: Giant redwoods near North Pole

A team led by Hope Jahren found evidence that Axel Heilberg's forests received equatorial water and warmth from a prehistoric weather pattern. The discovery helps demystify the forest's existence near the North Pole, where sunlight and darkness last for four months each year.

SourceJohns Hopkins University·JournalGSA Today·DateMar 21, 2002

Undergrad finds clues to 400-million-year-old mystery

A Johns Hopkins University senior has conducted original research that sheds new light on the identity of a 400-million-year-old organism. By comparing the fossil to modern relatives, the student found that the ancient specimen's chemistry more closely resembles that of lichens than previously thought.

SourceJohns Hopkins University·DateMar 6, 2002

Largest fossil cockroach found: Site preserves incredible detail

Geologists at Ohio State University have found a massive 3.5-inch-long cockroach fossil with incredible detail, preserved for millions of years without shell or bones. The ancient site offers insights into the diversity of life and climate changes during the Carboniferous period.

SourceOhio State University·DateNov 7, 2001
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Turning biomass waste into auto fuel

Cornell researchers are developing an enzyme-based process to convert biomass waste into auto fuel, offering a cheaper alternative to oil. The process breaks down plant fibers into fermentable sugars using thermophilic bacteria enzymes.

SourceCornell University·DateMar 28, 2000

Fossil plants' ties to ancient carbon redefined

Researchers analyzed 176 species of modern-day plants to determine the sources of carbon in the atmosphere hundreds of millions of years ago. However, their results suggest that fossil plants may not provide a direct link between ancient carbon levels and climate change.

SourceJohns Hopkins University·JournalPaleobiology·DateFeb 17, 2000

Explaining how ozone "chokes up" plants

Researchers identified how ozone 'chokes up' plants by directly affecting guard cells, inhibiting stomatal opening and reducing photosynthesis. This knowledge may lead to breeding or genetically engineering less ozone-sensitive plant varieties to improve productivity in regions with high ozone exposure.

SourcePenn State·JournalProceedings of the National Academy of Sciences·DateDec 5, 1999

DNA tests reveal plant roots' underground secrets

A team of botanists used DNA analysis to study the underground travels of plant roots, discovering that some species can extend their roots up to 75 feet into the ground. This research contributes to a better understanding of how plants interact with their environment and climate change.

SourceDuke University·JournalProceedings of the National Academy of Sciences·DateNov 3, 1999
GoPro HERO13 Black

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Researchers at UNC-CH succeed in synthesizing ginkgo molecule

Researchers at UNC-CH have synthesized ginkgolide B, a compound isolated from the ginkgo tree, which has been used as herbal medicine for thousands of years. The successful synthesis may lead to new treatments for dementia, multiple sclerosis, and other illnesses.

SourceUniversity of North Carolina at Chapel Hill·DateJun 10, 1999
CalDigit TS4 Thunderbolt 4 Dock

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Scientists Discover Key Cog In Receptor That Governs Ripening

Researchers have found a copper ion plays a crucial role in helping plants detect minuscule concentrations of ethylene, a hormone that triggers ripening and aging. The discovery confirms a long-standing hypothesis about protein receptors and their interaction with transition metals.

SourceUniversity of Wisconsin-Madison·JournalScience·DateFeb 12, 1999

Plants - Factories Of The Future

Researchers have identified genes that enable plants to produce epoxy and acetylenic fatty acids, key components in the production of polymers and specialty chemicals. This breakthrough could lead to the development of new, high-value products from plant-based raw materials.

SourceCSIRO Australia·JournalScience·DateMay 18, 1998
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