Wednesday, May 15, 2013

Microbes capture, store, and release nitrogen to feed reef-building coral

Tuesday, May 14, 2013

Microscopic algae that live within reef-forming corals scoop up available nitrogen, store the excess in crystal form, and slowly feed it to the coral as needed, according to a study published in mBio?, the online open-access journal of the American Society for Microbiology. Scientists have known for years that these symbiotic microorganisms serve up nitrogen to their coral hosts, but this new study sheds light on the dynamics of the process and reveals that the algae have the ability to store excess nitrogen, a capability that could help corals cope in their chronically low-nitrogen environment.

"It was a great surprise to find the nitrogen-rich crystals inside the algae," says corresponding author Anders Meibom of the ?cole Polytechnique F?d?rale de Lausanne, Switzerland. "It all makes perfect sense now. The algae suck up the ammonium and nitrate like a sponge when the concentration of these molecules increases, then store this nitrogen as uric acid crystals for later use."

Like all reef-forming corals, the species they studied, Pocillopora damicornis, is actually a symbiosis of two different organisms: the coral provides protection to a species of photosynthetic algae called dinoflagellates, which, in turn, provide sugars and nitrogen to the coral host. The symbiosis allows the coral to thrive in clear, tropical waters that are naturally nutrient-poor. In many places, however, coral reefs are suffering from an excess of nutrients - pollution from sewage and fertilizers that impacts the symbiotic relationship and the health of coral in unknown ways.

To better understand these exchanges of materials and to determine how an excess of nutrients might affect the balance, the researchers exposed pieces of coral to varying concentrations of isotopically-labeled nitrogen-rich compounds. Using the facilities at the Aquarium Tropicale Porte Dor?e in Paris, France, the scientists applied a relatively new analytic technique called nano-scale secondary ion mass-spectrometry (NanoSIMS) to follow the path of the nitrogen. NanoSIMS enabled them to visualize and quantify the uptake, movement, and accumulation of this labeled nitrogen within the coral.

When supplied with nitrogen in the form of ammonium, nitrate or aspartic acid the dinoflagellates responded by rapidly storing the nitrogen as crystals of uric acid within its cells. But the dinoflagellates don't hang onto the nitrogen for long. Starting at about six hours after exposure, the microbes begin translocating nitrogen-rich compounds to the coral host, where the nitrogen is used in specific cellular compartments all over the surface layers of the coral.

This storage and release process helps explain how these corals get through the ups and downs of nitrogen concentrations, says Meibom. "This gives the coral-algae symbiosis a very efficient way to deal with strong fluctuations in nitrogen availability," writes Meibom. "When the nitrogen availability suddenly becomes high, the algae can take-up large amounts of nitrogen on a timescale of a few hours, store it into crystals inside the algae cells and then release this stored nitrogen for metabolic processes and growth when the nitrogen levels become normal again."

To follow up on this work, Meibom says he and his colleagues are now studying how carbon-based nutrients are taken up and distributed in the same coral-algae symbiosis.

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American Society for Microbiology: http://www.asm.org

Thanks to American Society for Microbiology for this article.

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Source: http://www.labspaces.net/128246/Microbes_capture__store__and_release_nitrogen_to_feed_reef_building_coral

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Iran hard-liners urge election ban on 2 candidates

TEHRAN, Iran (AP) ? Hard-line Iranian lawmakers have petitioned authorities to bar two contenders ? a moderate former president and a protege of Mahmoud Ahmadinejad ? from running in next month's presidential election.

According to a report Wednesday by the semi-official Fars news agency, about 100 lawmakers appealed to the country's Guardian Council, which vets and short-lists all those seeking to run in the June 14 election.

One of the lawmakers, Javad Karimi Qodoosi, says they want ex-president Akbar Hashemi Rafsanjani barred for supporting the opposition in the disputed 2009 vote.

Qodoosi says the lawmakers also want the Council to disqualify Esfandiar Rahim Mashaei, a close confidant of Ahmadinejad, for his alleged un-Islamic attitudes.

Rafsanjani and Mashaei last week submitted their candidacies to the Council, which is to announce the finalists later this month.

Source: http://news.yahoo.com/iran-hard-liners-urge-election-ban-2-candidates-082111545.html

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New principle may help explain why nature is quantum

May 14, 2013 ? Like small children, scientists are always asking the question ?why??. One question they?ve yet to answer is why nature picked quantum physics, in all its weird glory, as a sensible way to behave.

Researchers Corsin Pfister and Stephanie Wehner at the Centre for Quantum Technologies at the National University of Singapore tackle this perennial question in a paper published 14 May in Nature Communications.

We know that things that follow quantum rules, such as atoms, electrons or the photons that make up light, are full of surprises. They can exist in more than one place at once, for instance, or exist in a shared state where the properties of two particles show what Einstein called ?spooky action at a distance?, no matter what their physical separation. Because such things have been confirmed in experiments, researchers are confident the theory is right. But it would still be easier to swallow if it could be shown that quantum physics itself sprang from intuitive underlying principles.

One way to approach this problem is to imagine all the theories one could possibly come up with to describe nature, and then work out what principles help to single out quantum physics. A good start is to assume that information follows Einstein?s special relativity and cannot travel faster than light.

However, this alone isn?t enough to define quantum physics as the only way nature might behave. Pfister and Wehner think they have come across a new useful principle. ?We have found a principle that is very good at ruling out other theories,? says Pfister. In short, the principle to be assumed is that if a measurement yields no information, then the system being measured has not been disturbed. Quantum physicists accept that gaining information from quantum systems causes disturbance. Pfister and Wehner suggest that in a sensible world the reverse should be true, too. If you learn nothing from measuring a system, then you can?t have disturbed it.

Consider the famous Schrodinger?s cat paradox, a thought experiment in which a cat in a box simultaneously exists in two states (this is known as a ?quantum superposition?). According to quantum theory it is possible that the cat is both dead and alive ? until, that is, the cat?s state of health is ?measured? by opening the box. When the box is opened, allowing the health of the cat to be measured, the superposition collapses and the cat ends up definitively dead or alive. The measurement has disturbed the cat.

This is a property of quantum systems in general. Perform a measurement for which you can?t know the outcome in advance, and the system changes to match the outcome you get. What happens if you look a second time? The researchers assume the system is not evolving in time or affected by any outside influence, which means the quantum state stays collapsed. You would then expect the second measurement to yield the same result as the first. After all, ?If you look into the box and find a dead cat, you don?t expect to look again later and find the cat has been resurrected,? says Wehner. ?You could say we?ve formalised the principle of accepting the facts?, says Wehner.

Pfister and Wehner show that this principle rules out various theories of nature. They note particularly that a class of theories they call ?discrete? are incompatible with the principle. These theories hold that quantum particles can take up only a finite number of states, rather than choose from an infinite, continuous range of possibilities. The possibility of such a discrete ?state space? has been linked to quantum gravitational theories proposing similar discreteness in spacetime, where the fabric of the universe is made up of tiny brick-like elements rather than being a smooth, continuous sheet. As is often the case in research, Pfister and Wehner reached this point having set out to solve an entirely different problem altogether.

Pfister was trying to find a general way to describe the effects of measurements on states, a problem that he found impossible to solve. In an attempt to make progress, he wrote down features that a ?sensible? answer should have. This property of information gain versus disturbance was on the list. He then noticed that if he imposed the property as a principle, some theories would fail. Pfister and Wehner are keen to point out it?s still not the whole answer to the big ?why? question: theories other than quantum physics, including classical physics, are compatible with the principle. But as researchers compile lists of principles that each rule out some theories to reach a set that singles out quantum physics, the principle of information gain versus disturbance seems like a good one to include.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/matter_energy/physics/~3/qvjXxYhDzmQ/130514112738.htm

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Galaxy S4 headed to NTT Docomo May 23, blue color confirmed

Blue Galaxy S4New color option for Japanese Galaxy S4

Japan's NTT Docomo will start selling the Samsung Galaxy S4 from next Thursday, May 23 -- and as per the pre-announcement rumors, it'll be getting a "blue arctic" color option in addition to "white frost" and "black mist." The Docomo version will also support digital terrestrial TV broadcasts through a pull-out antenna, and FeliCa NFC payment capabilities.

Besides that (and some branding changes) it's pretty much the same old Galaxy S4 we've come to know over the past few weeks. In case you were wondering, Japan's getting the quad-core Snapdragon 600 version most other countries are selling, as opposed to the rarer "octa-core" Exynos version.

YouTuber mappan777 has posted a quick side-by-side comparison between the new blue version and the better-known black model, which we've embedded past the break. (Quick spoiler: you're going to have a hard time telling these two colors apart.)

More: Samsung Galaxy S4 review

Source: NTT Docomo, Video via SamMobile

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Source: http://feedproxy.google.com/~r/androidcentral/~3/uNB8_CHHYbo/story01.htm

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Tuesday, May 14, 2013

PayPal's new Android SDK offers multiple in-app payment options

PayPal's new Android SDK offers multiple inapp payment options

PayPal just announced a new Android SDK for developers. Previously released for iOS, the kit lets app devs integrate mobile payments via both PayPal and credit card. As the mockup above demonstrates, it's very straightforward -- and we're pretty sure that's the point. The SDK will support Android 2.2 (Froyo) and up when it becomes available to US developers on May 15th.

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Via: The Next Web

Source: PayPal

Source: http://www.engadget.com/2013/05/13/paypals-android-sdk-multiple-in-app-payment-options/?utm_medium=feed&utm_source=Feed_Classic&utm_campaign=Engadget

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Taking Stock With Chuck Todd (talking-points-memo)

Share With Friends: Share on FacebookTweet ThisPost to Google-BuzzSend on GmailPost to Linked-InSubscribe to This Feed | Rss To Twitter | Politics - Top Stories News, News Feeds and News via Feedzilla.

Source: http://news.feedzilla.com/en_us/stories/politics/top-stories/305483701?client_source=feed&format=rss

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New Orleans Mother's Day Parade Shooting Video Released; Three Suspects Wanted

Source: http://www.thehollywoodgossip.com/2013/05/new-orleans-mothers-day-parade-shooting-video-released-three-sus/

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