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Content Tagged "metagenomics"

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March 13, 2011

Phil Hugenholtz on metagenomics and ecogenomics in Australian Life Scientist

In research published in Nature in 2007, Hugenholtz, along with collaborators from the California Institute of Technology and Diversa (now Verenium) Corporation, used metagenomics to detail the process by which a dry wood feeding termite, a Nasutitermes species, breaks down cellulose.  They generated 62 million base pairs – a “drop in the ocean by today’s… [Read More]

March 4, 2011

DOE JGI’s microbial work and IMG on ESNet’s Network Matters

Microbes are single-cell organisms that live in colonies and can be found in nearly every corner of our planet, in places ranging from insects’ intestines to some of the most toxic chemical environments. The site for the most detailed information on the genetic makeup of these organisms only lives in one place – at the… [Read More]

January 31, 2011

Cow rumen metagenome study in EarthSky

Enter: the cow. If cows are good at anything, it’s digesting plant material until it turns into sugar; Dr. Rubin noted that cows have been eating grass for a few million years. That’s why Rubin’s team decided to do major genetic analysis of microbes inside the stomachs of cows. He explained that he was interested… [Read More]

January 28, 2011

Cow rumen metagenome study on BBC World Service: Science in Action

Growing crops to make bio-fuel is controversial – they can take up valuable land and resources that could be used for food production and in the case of oil palms, large tracts of rainforest have been cleared to make way for this cash crop. But the second generation of bio-fuels hope to make use of… [Read More]

January 28, 2011

Cow rumen metagenome study on COSMOS Magazine

The result was 270 billion base pairs of genetic code, almost a hundred times more than the human genome, and an estimated two million potential genes to be investigated. To find which bacteria could digest cellulose, the researchers compared codes with known regions of Carbohydrate Active Enzymes called CAZymes. “Regions include domains that bind cellulose… [Read More]

January 28, 2011

Cow rumen metagenome study in R&D Magazine

In the new study, the researchers focused on switchgrass, a promising biofuels crop. After incubating the switchgrass in the rumen for 72 hours, researchers conducted a genomic analysis of all of the microbes that adhered to switchgrass. This “metagenomic” approach, led by Edward Rubin, of the DOE Joint Genome Institute and the Lawrence Berkeley National… [Read More]

January 28, 2011

Cow rumen metagenome study on Mother Nature Network

Ethanol makers will produce about 13 billion gallons of the renewable fuel this year, chiefly from corn. A 2007 law requires annual use of 36 billion gallons from 2022 and reserves 21 billion gallons of it for “advanced” biofuels.   The U.S. government offered $1.5 billion in October to help bring next-generation biofuels to market…. [Read More]

January 28, 2011

Cow rumen metagenome study on Scicasts

“The problem with second-generation biofuels is the problem of unlocking the soluble fermentable sugars that are in the plant cell wall,” said University of Illinois animal sciences professor Roderick Mackie, an author on the study whose research into the microbial life of the bovine rumen set the stage for the new approach. “The cow’s been… [Read More]

January 28, 2011

Cow rumen metagenome study on GenomeWeb’s The Daily Scan

In Science this week, a team led by investigators at the US Department of Energy Joint Genome Institute reports its discovery of 27,755 putative carbohydrate-active genes among cow rumen microbes through metagenomic sequencing. The team also found that these genes “expressed 90 candidate proteins, of which 57 percent were enzymatically active against cellulosic substrates,” which… [Read More]

January 28, 2011

Cow rumen metagenome study on ABC Science

In this case, the goal was to find microbes that make enzymes that can efficiently break down the toughest fibres in switchgrass, a tough crop that can be used to produce ethanol and which can grow in places where food crops do not grow well. But switchgrass is very tough to break down. Read more… [Read More]
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