Wednesday, April 24, 2013

Insights into deadly coral bleaching could help preserve reefs

Insights into deadly coral bleaching could help preserve reefs [ Back to EurekAlert! ] Public release date: 23-Apr-2013
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Contact: Megan Fellman
fellman@northwestern.edu
847-491-3115
Northwestern University

Surprising result from study of 1893 World's Fair corals using modern technology

Coral reefs are stressed the world over and could be in mortal danger because of climate change. But why do some corals die and others not, even when exposed to the same environmental conditions?

An interdisciplinary research team from Northwestern University and The Field Museum of Natural History has a surprising answer: The corals themselves play a role in their susceptibility to deadly coral bleaching due to the light-scattering properties of their skeletons. No one else has shown this before.

Using optical technology designed for early cancer detection, the researchers discovered that reef-building corals scatter light in different ways to the symbiotic algae that feed the corals. Corals that are less efficient at light scattering retain algae better under stressful conditions and are more likely to survive. Corals whose skeletons scatter light most efficiently have an advantage under normal conditions, but they suffer the most damage when stressed.

The findings could help predict the response of coral reefs to the stress of increasing seawater temperatures and acidity, helping conservation scientists preserve coral reef health and high biodiversity.

The study of nearly a hundred different species of reef-building corals, including many from the 1893 World's Fair in Chicago, was published this week in PLOS ONE. The open-access, online journal is published by The Public Library of Science.

"We have solved a little piece of the puzzle of why coral reefs are bleaching and dying," said Luisa A. Marcelino, who led the study. "Our research is the first to show light-scattering properties of the corals are a risk factor."

Marcelino is a molecular biologist and research assistant professor of civil and environmental engineering at Northwestern.

The unusual research involved marine biology, the physics of light transport, the biophysics of how corals handle light and unique technology originally developed for medical applications. The team included Vadim Backman, a physicist and professor of biomedical engineering at Northwestern, and Mark W. Westneat, a coral reef fish biologist and curator of zoology at the Field Museum.

"Coral reefs are like the rain forests of the oceans -- the consequences will be catastrophic if coral reefs are lost in great numbers," said Backman, who invented the optical technique used by the team. "Corals are also optical machines. By identifying how much light the skeletons of individual coral species reflect, we have learned which species are more resilient under stress."

Algae provide nutrients to the corals and receive shelter and light for photosynthesis in return. When stressed, the corals can lose their algae. The corals often die of starvation shortly afterward, exposing their white skeletons.

The team used LEBS to measure light transport and light amplification inside the skeletons of 96 different coral species. How fast the light amplification increases with the loss of algae depends on the light transport at the microscale. This was impossible to measure until Backman's low-coherence enhanced backscattering (LEBS) technique became available, which is one of the reasons why this phenomenon has never been studied before.

The specimens were from long-held collections of corals from the Field Museum, including dozens retained from the original Chicago Columbian Exposition and World's Fair of 1893, and the Smithsonian Institution.

The researchers created a family tree of corals that showed bleaching is associated with the physics of light scattering across the entire evolutionary history of corals. Living reef corals are thought to have originated about 220 million years ago, and corals living today are descendants of various branches of these older lineages.

"We found that bleaching and light scattering are associated across the history of reef corals," Westneat said. "This important mechanism occurs repeatedly in all major coral groups, regardless of relationship or evolutionary age."

Corals have evolved to scatter light efficiently. Corals whose skeletons scatter light the most efficiently have an advantage under normal conditions. They also tend to grow faster as this leads to a skeletal structure that is more conducive to scattering.

However, when some of the algae are lost due to stress, the limestone skeletons amplify the light so much that remaining algae have to deal with even more light, thus being at an even greater risk of damage. This creates a vicious cycle forcing more and more algae to leave the coral. Less scattering-efficient corals, on the other hand, do not create the vicious cycle.

###

The paper is titled "Modulation of Light-Enhancement to Symbiotic Algae by Light-Scattering in Corals and Evolutionary Trends in Bleaching." This PLOS ONE paper is available at http://dx.plos.org/10.1371/journal.pone.0061492.

In addition to Marcelino, Backman and Westneat, other authors of the paper are Valentina Stoyneva, Jeremy D. Rogers, Andrew Radosevich, Vladimir Turzhitsky, Margaret Siple, Andrew Fang, Timothy D. Swain and Jennifer Fung, all of Northwestern, and Jillian Henss, of the Field Museum.

NSF funded this research (grants CBET 0937987 and DEB-0844745).


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Insights into deadly coral bleaching could help preserve reefs [ Back to EurekAlert! ] Public release date: 23-Apr-2013
[ | E-mail | Share Share ]

Contact: Megan Fellman
fellman@northwestern.edu
847-491-3115
Northwestern University

Surprising result from study of 1893 World's Fair corals using modern technology

Coral reefs are stressed the world over and could be in mortal danger because of climate change. But why do some corals die and others not, even when exposed to the same environmental conditions?

An interdisciplinary research team from Northwestern University and The Field Museum of Natural History has a surprising answer: The corals themselves play a role in their susceptibility to deadly coral bleaching due to the light-scattering properties of their skeletons. No one else has shown this before.

Using optical technology designed for early cancer detection, the researchers discovered that reef-building corals scatter light in different ways to the symbiotic algae that feed the corals. Corals that are less efficient at light scattering retain algae better under stressful conditions and are more likely to survive. Corals whose skeletons scatter light most efficiently have an advantage under normal conditions, but they suffer the most damage when stressed.

The findings could help predict the response of coral reefs to the stress of increasing seawater temperatures and acidity, helping conservation scientists preserve coral reef health and high biodiversity.

The study of nearly a hundred different species of reef-building corals, including many from the 1893 World's Fair in Chicago, was published this week in PLOS ONE. The open-access, online journal is published by The Public Library of Science.

"We have solved a little piece of the puzzle of why coral reefs are bleaching and dying," said Luisa A. Marcelino, who led the study. "Our research is the first to show light-scattering properties of the corals are a risk factor."

Marcelino is a molecular biologist and research assistant professor of civil and environmental engineering at Northwestern.

The unusual research involved marine biology, the physics of light transport, the biophysics of how corals handle light and unique technology originally developed for medical applications. The team included Vadim Backman, a physicist and professor of biomedical engineering at Northwestern, and Mark W. Westneat, a coral reef fish biologist and curator of zoology at the Field Museum.

"Coral reefs are like the rain forests of the oceans -- the consequences will be catastrophic if coral reefs are lost in great numbers," said Backman, who invented the optical technique used by the team. "Corals are also optical machines. By identifying how much light the skeletons of individual coral species reflect, we have learned which species are more resilient under stress."

Algae provide nutrients to the corals and receive shelter and light for photosynthesis in return. When stressed, the corals can lose their algae. The corals often die of starvation shortly afterward, exposing their white skeletons.

The team used LEBS to measure light transport and light amplification inside the skeletons of 96 different coral species. How fast the light amplification increases with the loss of algae depends on the light transport at the microscale. This was impossible to measure until Backman's low-coherence enhanced backscattering (LEBS) technique became available, which is one of the reasons why this phenomenon has never been studied before.

The specimens were from long-held collections of corals from the Field Museum, including dozens retained from the original Chicago Columbian Exposition and World's Fair of 1893, and the Smithsonian Institution.

The researchers created a family tree of corals that showed bleaching is associated with the physics of light scattering across the entire evolutionary history of corals. Living reef corals are thought to have originated about 220 million years ago, and corals living today are descendants of various branches of these older lineages.

"We found that bleaching and light scattering are associated across the history of reef corals," Westneat said. "This important mechanism occurs repeatedly in all major coral groups, regardless of relationship or evolutionary age."

Corals have evolved to scatter light efficiently. Corals whose skeletons scatter light the most efficiently have an advantage under normal conditions. They also tend to grow faster as this leads to a skeletal structure that is more conducive to scattering.

However, when some of the algae are lost due to stress, the limestone skeletons amplify the light so much that remaining algae have to deal with even more light, thus being at an even greater risk of damage. This creates a vicious cycle forcing more and more algae to leave the coral. Less scattering-efficient corals, on the other hand, do not create the vicious cycle.

###

The paper is titled "Modulation of Light-Enhancement to Symbiotic Algae by Light-Scattering in Corals and Evolutionary Trends in Bleaching." This PLOS ONE paper is available at http://dx.plos.org/10.1371/journal.pone.0061492.

In addition to Marcelino, Backman and Westneat, other authors of the paper are Valentina Stoyneva, Jeremy D. Rogers, Andrew Radosevich, Vladimir Turzhitsky, Margaret Siple, Andrew Fang, Timothy D. Swain and Jennifer Fung, all of Northwestern, and Jillian Henss, of the Field Museum.

NSF funded this research (grants CBET 0937987 and DEB-0844745).


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AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Source: http://www.eurekalert.org/pub_releases/2013-04/nu-iid042313.php

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Looking for life by the light of dying stars

Apr. 24, 2013 ? Because it has no source of energy, a dead star -- known as a white dwarf -- will eventually cool down and fade away. But circumstantial evidence suggests that white dwarfs can still support habitable planets, says Prof. Dan Maoz of Tel Aviv University's School of Physics and Astronomy.

Now Prof. Maoz and Prof. Avi Loeb, Director of Harvard University's Institute for Theory and Computation and a Sackler Professor by Special Appointment at TAU, have shown that, using advanced technology to become available within the next decade, it should be possible to detect biomarkers surrounding these planets -- including oxygen and methane -- that indicate the presence of life.

Published in the Monthly Notices of the Royal Astronomical Society, the researchers' "simulated spectrum" demonstrates that the James Webb Space Telescope (JWST), set to be launched by NASA in 2018, will be capable of detecting oxygen and water in the atmosphere of an Earth-like planet orbiting a white dwarf after only a few hours of observation time -- much more easily than for an Earth-like planet orbiting a sun-like star.

Their collaboration is made possible by the Harvard TAU Astronomy Initiative, recently endowed by Dr. Raymond and Beverly Sackler.

Faint light, clear signals

"In the quest for extraterrestrial biological signatures, the first stars we study should be white dwarfs," said Prof. Loeb. Prof. Maoz agrees, noting that if "all the conditions are right, we'll be able to detect signs of life" on planets orbiting white dwarf stars using the much-anticipated JWST.

An abundance of heavy elements already observed on the surface of white dwarfs suggest rocky planets orbit a significant fraction of them. The researchers estimate that a survey of 500 of the closest white dwarfs could spot one or more habitable planets.

The unique characteristics of white dwarfs could make these planets easier to spot than planets orbiting normal stars, the researchers have shown. Their atmospheres can be detected and analyzed when a star dims as an orbiting planet crosses in front of it. As the background starlight shines through the planet's atmosphere, elements in the atmosphere will absorb some of the starlight, leaving chemical clues of their presence -- clues that can then be detected from the JWST.

When an Earth-like planet orbits a normal star, "the difficulty lies in the extreme faintness of the signal, which is hidden in the glare of the 'parent' star," Prof. Maoz says. "The novelty of our idea is that, if the parent star is a white dwarf, whose size is comparable to that of an Earth-sized planet, that glare is greatly reduced, and we can now realistically contemplate seeing the oxygen biomarker."

In order to estimate the kind of data that the JWST will be able to see, the researchers created a "synthetic spectrum," which replicates that of an inhabited planet similar to Earth orbiting a white dwarf. They demonstrated that the telescope should be able to pick up signs of oxygen and water, if they exist on the planet.

A critical sign of life

The presence of oxygen biomarkers would be the most critical signal of the presence of life on extraterrestrial planets. Earth's atmosphere, for example, is 21 percent oxygen, and this is entirely produced by our planet's plant life as a result of photosynthesis. Without the existence of plants, an atmosphere would be entirely devoid of oxygen.

The JWST will be ideal for hunting out signs of life on extraterrestrial planets because it is designed to look into the infrared region of the light spectrum, where such biomarkers are prominent. In addition, as a space-based telescope, it will be able to analyze the atmospheres of Earth-like planets outside our solar system without weeding out the similar signatures of Earth's own atmosphere.

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Source: http://www.sciencedaily.com/releases/2013/04/130424112318.htm

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Feds delay policy to allow small knives on planes

(AP) ? Airline passengers will have to leave their knives at home after all. And their bats and golf clubs.

A policy change scheduled to go into effect this week that would have allowed passengers to carry small knives, bats and other sports equipment onto airliners will be delayed, federal officials said Monday.

The delay is necessary to accommodate feedback from an advisory committee made up of aviation industry, consumer, and law enforcement officials, the Transportation Security Administration said in a brief statement. The statement said the delay is temporary, but gave no indication how long it might be.

TSA Administrator John Pistole proposed the policy change last month, saying it would free up the agency to concentrate on protecting against greater threats. TSA screeners confiscate about 2,000 small folding knives from passengers every day.

The proposal immediately drew fierce opposition from flight attendant unions and federal air marshals, who said the knives can be dangerous in the hands of the wrong passengers. Some airlines and members of Congress also urged TSA to reconsider its position.

The delay announced by TSA doesn't go far enough, a coalition of unions representing 90,000 flight attendants nationwide said Monday.

"All knives should be banned from planes permanently," the group said in a statement.

Sen. Charles Schumer, D-N.Y., who opposed the policy, said TSA's decision is an admission "that permitting knives on planes is a bad idea." He also called for a permanent ban.

Rep. Ed Markey, D-Mass., another opponent, said he will continue to push TSA to drop the proposal entirely.

"People with radical ideas can use everyday objects to cause great harm," Markey said. "If there is an opportunity to decrease risks to Americans, we have a duty to protect our citizens and disallow knives from being taken onto planes."

The proposed policy would have permitted folding knives with blades that are 2.36 inches (6 centimeters) or less in length and are less than 1/2-inch (1-centimeter) wide. The policy was aimed at allowing passengers to carry pen knives, corkscrews with small blades and other small knives.

Passengers also would have been be allowed to bring onboard as part of their carry-on luggage novelty-sized baseball bats less than 24 inches long, toy plastic bats, billiard cues, ski poles, hockey sticks, lacrosse sticks and two golf clubs, the agency said.

Security standards adopted by the International Civil Aviation Organization, a U.N. agency, already call for passengers to be able to carry those items. Those standards are non-binding, but many countries follow them.

The proposal didn't affect box cutters, razor blades and knives that don't fold or that have molded grip handles, which are prohibited.

Passengers were prohibited from carrying the small knives onboard planes after the Sept. 11, 2001 terrorist attacks. Some of the terrorists in those attacks used box cutters to intimidate passengers and airline crew members.

It's unlikely in these days of hardened cockpit doors and other preventative measures that the small folding knives could be used by terrorists to take over a plane, Pistole told Congress last month.

There has been a gradual easing of some of the security measures applied to passengers after the 9/11 attacks. In 2005, the TSA changed its policies to allow passengers to carry on airplanes small scissors, knitting needles, tweezers, nail clippers and up to four books of matches. The move came as the agency turned its focus toward keeping explosives off planes, because intelligence officials believed that was the greatest threat to commercial aviation.

And in September 2011, the TSA no longer required children 12 years old and under to remove their shoes at airport checkpoints. The agency recently issued new guidelines for travelers 75 and older so they can avoid removing shoes and light jackets when they go through airport security checkpoints.

___

Follow Joan Lowy on Twitter at http://www.twitter.com/AP_Joan_Lowy

Associated Press

Source: http://hosted2.ap.org/APDEFAULT/3d281c11a96b4ad082fe88aa0db04305/Article_2013-04-22-Knives%20on%20Planes/id-17e9cc9774654c4dac516e2da0041e34

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Whoa, You Can Actually Sit in This Painting

My, that painting of that chair looks great. Very regal, very detailed and even very comfortable. How comfortable? So comfortable that you can actually sit inside the painting. Though it looks like any ordinary painting, the artwork is actually a piece of furniture. More »
    


Source: http://feeds.gawker.com/~r/gizmodo/full/~3/McB7P4_mXJ4/whoa-you-can-actually-sit-in-this-painting

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Hundreds of alterations and potential drug targets to starve tumors identified

Monday, April 22, 2013

A massive study analyzing gene expression data from 22 tumor types has identified multiple metabolic expression changes associated with cancer. The analysis, conducted by researchers at Columbia University Medical Center, also identified hundreds of potential drug targets that could cut off a tumor's fuel supply or interfere with its ability to synthesize essential building blocks. The study was published today in the online edition of Nature Biotechnology.

The results should ramp up research into drugs that interfere with cancer metabolism, a field that dominated cancer research in the early 20th century and has recently undergone a renaissance.

"The importance of this new study is its scope," said Dennis Vitkup, PhD, associate professor of biomedical informatics (in the Initiative in Systems Biology) at CUMC, the study's lead investigator. "So far, people have focused mainly on a few genes involved in major metabolic processes. Our study provides a comprehensive, global view of diverse metabolic alterations at the level of gene expression."

Cell metabolism is a dynamic network of reactions inside cells that process nutrients, such as glucose, to obtain energy and synthesize building blocks needed to produce new cellular components. To support uncontrolled proliferation, cancer needs to significantly reprogram and "supercharge" a cell's normal metabolic pathways.

The first researcher to notice cancer's special metabolism was German biochemist Otto Warburg, who in 1924 observed that cancer cells had a peculiar way of utilizing glucose to make energy for the cell. "Although a list of biochemical pathways in normal cells was comprehensively mapped during the last century," said Dr. Vitkup. "We still lack a complete understanding of their usage, regulation, and reprogramming in cancer."

"Right now we have something like a static road map. We know where the streets are, but we don't know how traffic flows through the streets and intersections," said Jie Hu, PhD, a postdoctoral researcher at Columbia and first author of the study. "What researchers need is something similar to Google Traffic, which shows the flow and dynamic changes in car traffic."

Drs. Hu and Vitkup's study is an important step toward achieving this dynamic view of cancer metabolism. Notably, the researchers found that the tumor-induced expression changes are significantly different across diverse tumors. Although some metabolic changes?such as an increase in nucleotide biosynthesis and glycolysis?appear to be more frequent across tumors, others, such as changes in oxidation phosphorylation, are heterogeneous.

"Our study clearly demonstrates that there are no single and universal changes in cancer metabolism," said Matthew Vander Heiden, MD, PhD, assistant professor at MIT, and a co-author of the paper. "That means that to understand transformation in cancer metabolism, researchers will need to consider how different tumor types adapt their metabolism to meet their specific needs."

The researchers also found that expression changes can mimic or cooperate with cancer mutations to drive tumor formation. A notable example is the enzyme isocitrate dehydrogenase. In several cancers, such as glioblastoma and acute myeloid leukemia, mutations in this enzyme are known to produce a specific metabolite?2-hydroxyglutarate?that promotes tumor growth. The Columbia team found that isocitrate dehydrogenase expression significantly increases in tumors with the recurrent mutations. Such an overexpression may create an efficient enzymatic factory for overproduction of 2-hydroxyglutarate.

The analysis also led the researchers to an interesting finding in colon cancer. In several other cancers, mutations in two enzymes?succinate dehydrogenase and fumarate hydratase?can promote tumor formation as a result of efflux from mitochondria and accumulation of their substrates, fumarate and succinate. The researchers found that in colon cancer, accumulation of these metabolites may be caused by a significant decrease in the enzymes' expression. This was confirmed when metabolomics data from colon tumor patients showed significantly higher concentrations of fumarate in tumors than in normal tissue.

"These are just several examples of how cancer cells use various creative mechanisms to hijack the metabolism of native cells for their own purposes," said Dr. Vitkup.

For cancer researchers looking for new drug targets, Dr. Vitkup's team also found hundreds of differences between normal and cancer cells' use of isoenzymes. This opens up additional possibilities for turning off cancer's fuel and supply lines. Isoenzymes often catalyze the same reactions, but have different kinetic properties: Some act quickly and sustain rapid growth, while others are more sluggish. In kidney and liver cancers, for example, a quick-acting aldolase isoenzyme?suitable for fast cell proliferation?was found to be more prevalent than the more typical slow-moving version found in normal kidney and liver tissue. Although a few examples of differential isoenzyme expression in tumors were already known, the Columbia researchers identified hundreds of isoenzymes with cancer-specific expression patterns.

"Inhibiting specific isoenzymes in tumors may be a way to selectively hit cancer cells without affecting normal cells, which could get by with other isoenzymes," said Dr. Hu.

In fact, a recent study from Matthew Vander Heiden's laboratory demonstrated the potential of targeting a specific isoenzyme, pyruvate kinase M2, expression of which often increases in tumors. "The comprehensive expression analysis suggests that a similar approach could potentially be applied in multiple other cases," said Dr. Vander Heiden.

Targeting metabolism may be a way to strike cancer at its roots. "Cancer cells usually have multiple ways to turn on their growth program," said Dr. Vitkup. "You can knock out one, but the cells will usually find another pathway to turn on proliferation. Targeting metabolism may be more powerful, because if you starve a cell of energy or materials, it has nowhere to go."

###

Columbia University Medical Center: http://www.cumc.columbia.edu

Thanks to Columbia University Medical Center for this article.

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Source: http://www.labspaces.net/127840/Hundreds_of_alterations_and_potential_drug_targets_to_starve_tumors_identified

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Samsung Galaxy S4 Review Podcast Special

Podcast MP3 URL: 
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Samsung Galaxy S4 coverage:

    


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Aunt: Boston bombings suspect struggled with Islam

MAKHACHKALA, Russia (AP) ? The elder suspect in the Boston bombings regularly attended a mosque and spent time learning to read the Quran, but he struggled to fit in during a trip to his ancestral homeland in southern Russia last year, his aunt said.

Tamerlan Tsarnaev seemed more American than Chechen and "did not fit into the Muslim life" in Russia's Caucasus, Patimat Suleimanova told The Associated Press. She said when Tsarnaev arrived in January 2012, he wore a winter hat with a little pompom, something no local man would wear, and "we made him take it off."

Tsarnaev and his younger brother are accused of setting off the two bombs at the Boston Marathon on April 15 that killed three people and wounded more than 200. Tsarnaev, 26, was killed in a gun battle with police. His 19-year-old brother, Dzhokhar Tsarnaev, was later captured alive, but badly wounded.

On Monday, two U.S. officials said preliminary evidence from an interrogation suggests the brothers were motivated by religion but were apparently not tied to any Islamic terrorist groups. The U.S. officials spoke on condition of anonymity because they were not authorized to publicly discuss the investigation.

U.S. investigators are focusing on the six months Tamerlan Tsarnaev spent last year in two predominantly Muslim Russian provinces, Dagestan and Chechnya, to see if he was radicalized by the region's militants who have waged a low-level insurgency against Russian security forces for years.

After returning from Russia, Tsarnaev made his presence known at a Boston-area mosque, where his outbursts interrupted two sermons that encouraged Muslims to celebrate American institutions such as the July 4 Independence Day and figures like Martin Luther King Jr., according to the Islamic Society of Boston Cultural Center. During one incident congregants shouted at him, telling him to leave, the center said in a statement released Monday.

The Tsarnaev family moved to the United States a decade ago, but the suspects' parents are now in Russia. Their father said he hopes to go to the United States this week to seek "justice and the truth."

Suleimanova, who wore a pea-green headscarf, said her nephew prayed regularly and studied the Muslim holy book. "He needed this. This was a necessity for him," she said.

Every day, using Skype, he spoke to his American-born wife, who had recently converted to Islam, and at times she instructed him on how to observe religious practices correctly when he lapsed, Suleimanova said Sunday from her home in Makhachkala, the capital of Dagestan. She said her nephew was considering bringing his wife to Dagestan.

His parents insist he spent much of his time visiting relatives in his mother's and father's extended families in Dagestan and Chechnya, but details of his whereabouts are vague and contradictory. His father says Tsarnaev stayed with him in Makhachkala, regularly sleeping late.

His aunt, however, said neither of Tsarnaev's parents was in Russia when he arrived. One reason his father came last year, Suleimanova said, was to make sure his elder son returned to the United States. It was not clear when his father or mother arrived. His mother was arrested in the U.S. in June on charges of shoplifting.

Tsarnaev's father explained his son's trip by saying he needed to get a new Russian passport. But an official with the federal migration service in Dagestan said Monday that Tsarnaev had applied for a new passport in July, but never picked it up, the Interfax news agency reported. Tsarnaev returned to the U.S. on July 17.

His mother, Zubeidat Tsarnaeva, told the AP that her son greatly enjoyed his time with her relatives, but never traveled to her native village in a mountainous region of Dagestan, which is a hotbed of an ultraconservative strain of Islam known as Wahabbism. Wahabbism was introduced to the Caucasus in the 1990s by preachers and teachers from Saudi Arabia.

The mother said her relatives now all live in Makhachkala and the town of Kaspiisk. She refused to say which mosque her son frequented, but Tsarnaev's parents and aunt firmly denied that he met with militants or fell under the sway of religious extremists.

"He used to say, 'I want to go somewhere in the mountains, to be all by myself, to escape from everyday life, to be alone,'" Suleimanova said.

The suspects' father, Anzor Tsarnaev, said he intends to travel to the U.S. "I want normal justice," he said. "I have many questions for the police. You know, I am a lawyer myself and I want to clear up many things. .... I want justice and the truth."

The family said he wants to bring Tsarnaev's body back to Russia.

___

Associated Press writers Eileen Sullivan and Pete Yost in Washington contributed.

Source: http://news.yahoo.com/aunt-boston-bombings-suspect-struggled-islam-125631550.html

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