Subscribe free to our newsletters via your
. Space Industry and Business News .




WOOD PILE
Amazon deforestation brings loss of microbial communities
by Staff Writers
Amherst MA (SPX) Dec 27, 2012


The Amazon Rainforest containing thousands of plant species (background) is converted to a pasture. First hard timber is removed, followed by fire and sowing of a single exotic grass species. Credit: UMass Amherst.

An international team of microbiologists led by Klaus Nusslein of the University of Massachusetts Amherst has found that a troubling net loss in diversity among the microbial organisms responsible for a functioning ecosystem is accompanying deforestation in the Amazon rainforest.

Nusslein, an expert in tropical rain forest microbial soil communities, says, "We found that after rainforest conversion to agricultural pastures, bacterial communities were significantly different from those of forest soils. Not only did the pasture soils show increased species numbers, these species were also less related to one another than in rainforest soil.

"This is important because the combination of lost forest species and the homogenization of pasture communities together signal that this ecosystem is now a lot less capable of dealing with additional outside stress."

He and colleagues studied a large farm site over the past four years at the frontier where farmers drive agriculture into pristine rainforest in Rondonia, Brazil, to convert rainforest to agricultural use. Findings in part validated previous research showing that bacteria in the soil became more diverse after conversion to pasture.

However, in its fourth year, their study overcame limitations of earlier investigations to show that changes in microbial diversity occurred over larger geographic scales. Results appear in the current issue of Proceedings of the National Academy of Sciences.

In addition to Nusslein at UMass Amherst, the research group includes first author Jorge Rodrigues at the University of Texas at Arlington with Brendan Bohannan at the University of Oregon, James Tiedje at Michigan State University, and others at the University of Sao Paulo. Lead investigators Nusslein and Rodrigues emphasize that the study is an equal collaboration among the four research groups.

Findings do not support earlier study conclusions, instead they show that the loss of restricted ranges for different bacteria communities results in a biotic homogenization and net loss of diversity overall. Scientists worry that the loss of genetic variation in bacteria across a converted forest could reduce ecosystem resilience. The researchers hope their work will provide valuable data to those making decisions about the future of the Amazon rainforest.

Biologist and first author Jorge Rodrigues of the University of Texas at Arlington adds, "We have known for a long time that conversion of rainforest land in the Amazon for agriculture results in a loss of biodiversity in plants and animals. Now we know that microbial communities which are so important to the ecosystem also suffer significant losses."

As Nusslein and colleagues point out, the Amazon represents half of the world's rainforest and is home to one-third of Earth's species, yet the Amazon has one of the highest rates of deforestation. Agriculture is one of the largest and most dynamic parts of Brazil's economy, so dealing with standing rainforests in the tropics will be tricky, but nevertheless, it is vital that the issue is tackled."

Rodrigues says he and colleagues are currently compiling findings about the potential for recovery of the microbial diversity after pastureland is abandoned and returned to "secondary forest."

At the same time, Nusslein and colleagues are leading an effort to investigate how the redundancy of functions provided by soil microbes provides resilience to the effects of agricultural land use change to support a stressed ecosystem to recover stability.

"Whether bacterial diversity will completely recover from ecosystem conversion will depend in part on whether the taxa lost due to conversion are truly locally extinct or whether they are present in the pasture sites but of such low abundance that they are undetectable in our study," the authors write.

This work was supported by grants from the USDA National Institute of Food and Agriculture and the Research Support Foundation of the State of Sao Paulo.

.


Related Links
University of Massachusetts at Amherst
Forestry News - Global and Local News, Science and Application






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








WOOD PILE
Deforestation in the Amazon equals net losses of diversity for microbial communities
Arlington VA (SPX) Dec 27, 2012
Research from an international team of microbiologists has revealed a new concern about deforestation in the Amazon rainforest - a troubling net loss in the diversity among the microbial organisms responsible for a functioning ecosystem. The group, which includes professors from The University of Texas at Arlington, University of Oregon, University of Massachusetts, Michigan State Universi ... read more


WOOD PILE
US readers turn increasingly to digital books: study

LG seeks ban on Samsung tablet sales in Korea

2012: Consumer tech takes center stage

Molecular levers may make materials better

WOOD PILE
China opens its version of GPS to public

Raytheon's US Navy satellite terminals reach Full Rate Production milestone

General Dynamics' 30,000th Combat Search and Rescue Radio Goes to Work for USAF

Europe launches major British military satellite

WOOD PILE
Ariane 5 ECA orbits Skynet 5D and Mexsat Bicentenario satellites

Payload integration complete for final 2012 Ariane 5 mission

Arctic town eyes future as Europe's gateway to space

ISRO planning 10 space missions in 2013

WOOD PILE
China's Beidou system starts service in Asian-Pacific

Cellphone, GPS data suggest new strategy for alleviating traffic tie-ups

KAIST announced a major breakthrough in indoor positioning research

Third Boeing GPS IIF Begins Operation After Early Handover to USAF

WOOD PILE
Taiwan's China Airlines to buy six Boeing planes

Bird strike prevention radar system takes off

Boeing's Final Design for Wedgetail AEW and C Airborne Mission Segment Accepted by Australia

$4.07B Oman Eurofighter deal bolsters BAE

WOOD PILE
Marvell hit with billion-dollar verdict in patent case

Physicists take photonic topological insulators to the next level

China shows electronic circuit advance

Taiwan's UMC to buy majority stake in Chinese firm

WOOD PILE
Satellites eye Great Lakes invasive plant

Turkey Steps up Collaboration with Astrium Services For SPOT 6 And SPOT 7 Data

Eighth Landsat Satellite Arrives At Launch Site

Eighth Landsat Satellite Arrives at Launch Site

WOOD PILE
Small, Portable Sensors Allow Users to Monitor Exposure to Pollution on Their Smart Phones

Ozone levels have sizeable impact on worker productivity

US tightens restrictions on soot

Onion soaks up heavy metal




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement