ScienceIQ.com

Now You See It, Now You Don't

What we call light is simply a narrow band of electromagnetic radiation that our eyes are sensitive to. This radiation enters our eyes and is conveyed to the brain by the process we call sight. While the mechanics of seeing is quite complex, the process of seeing is, in a different sense, quite extraordinary. Here are two examples. ...

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EMRadiation
Physics

Does Earth Have Its Own Neon Sign?

You might wonder what the Northern Lights and neon signs have in common. Actually, a lot! What makes luminous colors shimmer across the Northern sky? The answer is in the Sun. Charged particles ... Continue reading

NorthernLights
Engineering

Dress Sizes The Scientific Way

In pre-industrial America, most clothing was crafted at home or by professional tailors or dressmakers from individual measurements taken of each customer. In the early Twentieth Century, the growing ... Continue reading

DressSizesTheScientificWay
Geology

Zeolites: The Secret Ingredient

The next time you notice that your cat's litter box doesn't smell bad, you can thank NASA astronauts. You can also thank them when you see lush green golf courses, or when you use air fresheners and ... Continue reading

ZeolitesTheSecretIngredient
Medicine

There's No Such Thing as a Safe Suntan

Every time you step outdoors, you are bombarded by ultraviolet (UV) radiation from the sun. UV rays cause the number of free radicals in cells to increase. Free radicals are atoms or molecules that ... Continue reading

SafeSuntan

Tobacco Mosaic Virus

TobaccoMosaicVirusWe all know that AIDS, SARS and flu are all caused by viruses. Most people, however, don't realize that some of the earliest work on viruses was done on a common plant virus, Tobacco mosaic virus (TMV). Over 100 years ago, Martinus Beijerinck described a 'mosaic disease of tobacco' in which sick plants developed a yellow-green 'mosaic' symptom on their leaves. Beijerinck passed sap of infected leaves through porcelain filters and showed that the filtered sap was infectious. He concluded that something smaller than bacteria caused the disease and used the term virus to describe this unusual agent of disease.

Wendell Stanley used TMV to demonstrate the 'non-living' nature of viruses. He showed that TMV could be crystallized and that virus crystals were still infectious when placed back in tobacco. For this revolutionary work, he received a Nobel Prize in Chemistry in 1946. Viruses are composed mostly of a nucleic acid (DNA or RNA) and coat protein that covers the nucleic acid. Ten years later, Heinz Frankel-Conrat used TMV to show that the genetic material was nucleic acid (RNA), and not protein, when he proved that TMV nucleic acid was infectious. He took the virus apart, and using only its nucleic acid, was able to infect plants that went on to produce complete viruses.

Today, TMV remains both an important source of disease for a wide variety of plants and an essential tool for the advanced study of viruses. It was the first virus for which the entire nucleic acid was sequenced and the first virus for which plants were genetically engineered to create TMV-resistant plants.