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Title: Airborne Bacteria in Earth's Lower Stratosphere Resemble Taxa Detected in the Troposphere: Results From a New NASA Aircraft Bioaerosol Collector (ABC)

Journal Article · · Frontiers in Microbiology
 [1];  [2];  [2];  [3];  [4];  [5];  [6];  [1];  [7];  [8];  [9];  [9];  [9];  [9];  [2];  [2];  [2];  [6];  [9]
  1. NASA Ames Research Center, Moffett Field, CA (United States)
  2. Second Genome Inc., San Francisco, CA (United States)
  3. United States Geological Survey, St. Petersburg, FL (United States)
  4. NASA Goddard Space Flight Center (GSFC), Greenbelt, MD (United States)
  5. Bay Area Environmental Research Institute, Moffett Field, CA (United States)
  6. Lawrence Livermore National Lab. (LLNL), Livermore, CA (United States)
  7. Blue Marble Space Institute of Science, Moffett Field, CA (United States)
  8. Univ. of South Florida, St. Petersburg, FL (United States)
  9. NASA Armstrong Flight Research Center, Palmdale, CA (United States)

Airborne microorganisms in the upper troposphere and lower stratosphere remain elusive due to a lack of reliable sample collection systems. To address this problem, we designed, installed, and flight-validated a novel Aircraft Bioaerosol Collector (ABC) for NASA's C-20A that can make collections for microbiological research investigations up to altitudes of 13.7 km. Herein we report results from the first set of science flights—four consecutive missions flown over the United States (US) from 30 October to 2 November, 2017. To ascertain how the concentration of airborne bacteria changed across the tropopause, we collected air during aircraft Ascent/Descent (0.3 to 11 km), as well as sustained Cruise altitudes in the lower stratosphere (~12 km). Bioaerosols were captured on DNA-treated gelatinous filters inside a cascade air sampler, then analyzed with molecular and culture-based characterization. Several viable bacterial isolates were recovered from flight altitudes, including Bacillus sp., Micrococcus sp., Arthrobacter sp., and Staphylococcus sp. from Cruise samples and Brachybacterium sp. from Ascent/Descent samples. Using 16S V4 sequencing methods for a culture-independent analysis of bacteria, the average number of total OTUs was 305 for Cruise samples and 276 for Ascent/Descent samples. Some taxa were more abundant in the flight samples than the ground samples, including OTUs from families Lachnospiraceae, Ruminococcaceae and Erysipelotrichaceae as well as the following genera: Clostridium, Mogibacterium, Corynebacterium, Bacteroides, Prevotella, Pseudomonas, and Parabacteroides. Surprisingly, our results revealed a homogeneous distribution of bacteria in the atmosphere up to 12 km. The observation could be due to atmospheric conditions producing similar background aerosols across the western US, as suggested by modeled back trajectories and satellite measurements. However, the influence of aircraft-associated bacterial contaminants could not be fully eliminated and that background signal was reported throughout our dataset. Furthermore considering the tremendous engineering challenge of collecting biomass at extreme altitudes where contamination from flight hardware remains an ever-present issue, we note the utility of using the stratosphere as a proving ground for planned life detection missions across the solar system.

Research Organization:
Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA)
Grant/Contract Number:
AC52-07NA27344
OSTI ID:
1474345
Report Number(s):
LLNL-JRNL-756269; 942195
Journal Information:
Frontiers in Microbiology, Vol. 9, Issue na; ISSN 1664-302X
Publisher:
Frontiers Research FoundationCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 50 works
Citation information provided by
Web of Science

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Cited By (6)

Beyond the planetary boundary layer: Bacterial and fungal vertical biogeography at Mount Sonnblick, Austria journal January 2019
Microbial composition in seasonal time series of free tropospheric air and precipitation reveals community separation journal September 2019
Global airborne microbial communities controlled by surrounding landscapes and wind conditions journal October 2019
Bioaerosol sampling: Classical approaches, advances, and perspectives journal October 2019
Bioaerosol field measurements: Challenges and perspectives in outdoor studies journal November 2019
Methods to Investigate the Global Atmospheric Microbiome journal February 2019

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