Planting Spartina alterniflora in a salt marsh denuded of vegetation by an oil spill induces a rapid response in the soil microbial community

被引:20
作者
Cagle, G. [1 ]
Lin, Q. [2 ]
Graham, S. A. [3 ]
Mendelssohn, I [2 ]
Fleeger, J. W. [4 ]
Deis, D. [5 ]
Johnson, D. S. [6 ]
Zhou, J. [7 ]
Hou, A. [1 ]
机构
[1] Louisiana State Univ, Dept Environm Sci, Baton Rouge, LA 70803 USA
[2] Louisiana State Univ, Dept Oceanog & Coastal Sci, Baton Rouge, LA 70803 USA
[3] Gulf South Res Corp, Baton Rouge, LA 70820 USA
[4] Louisiana State Univ, Dept Biol Sci, Baton Rouge, LA 70803 USA
[5] Atkins, Jacksonville, FL 32256 USA
[6] Virginia Inst Marine Sci, Coll William & Mary, Gloucester Point, VA 23062 USA
[7] Univ Oklahoma, Inst Environm Genom, Dept Microbiol & Plant Biol, Norman, OK 73019 USA
关键词
Salt marsh; Soil microbial community; Sulfate-reducing bacteria; Planting; Fertilizer; Habitat restoration; Oil spill; Wetland; SULFATE-REDUCING BACTERIA; COASTAL WETLANDS; CRUDE-OIL; SEDIMENT; RECOVERY; IMPACTS; ECOSYSTEM; RHODOBACTERACEAE; ADAPTATION; REDUCTION;
D O I
10.1016/j.ecoleng.2020.105815
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The need for a comprehensive understanding of coastal wetland restoration strategies became clear following the Deepwater Horizon oil spill when quantities of oil reaching the marshes overwhelmed the ecosystem's natural attenuation capacity for several years in the worst-hit areas. Planting and fertilization are common habitat restoration methods in wetlands, but how these treatments impact the native soil microbial community when implemented in formerly oiled salt marshes is not well understood. This research used DNA sequencing to determine how the soil microbial community changed in response to planting, fertilization, and their interaction, and how environmental variables were related to the soil microbial community structure. We studied a salt marsh in northern Barataria Bay, Louisiana, USA that had not revegetated four years after the Deepwater Horizon oil spill using factorial combinations of Spartina alterniflora transplants and biannual fertilizer applications. Transplants significantly affected the soil microbial community structure during the first 13 months after initiating treatment. A cohort of putative sulfate-reducing bacteria (SRB) were significantly more abundant in the transplanted treatments than in the unplanted treatments after 13 months. The response of the microbial community to fertilizer depended on the presence or absence of transplants during that time. Fertilizer application in the absence of transplants resulted in a proliferation of a Staphylococcus taxon after two months, a significant increase in community heterogeneity after 7 months, and a shift in community composition after 13 months, but fertilizer application had no apparent effect on the soil microbial community in combination with S. alterniflora transplants. These results suggest that transplanted S. alterniflora promotes a rapid shift in the soil microbial community composition with concurrent establishment of a diverse community of SRB and mediates the effect of fertilizer on the soil microbial community in previously oiled salt marsh systems. The rapid response by the microbial community to revegetation suggests that planting S. alterniflora will hasten habitat restoration following future oil spills.
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页数:12
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共 80 条
[41]   Restoring the sustainability of the Mississippi River Delta [J].
Kemp, G. Paul ;
Day, John W. ;
Freeman, Angelina M. .
ECOLOGICAL ENGINEERING, 2014, 65 :131-146
[42]   Microbial Responses to the Deepwater Horizon Oil Spill: From Coastal Wetlands to the Deep Sea [J].
King, G. M. ;
Kostka, J. E. ;
Hazen, T. C. ;
Sobecky, P. A. .
ANNUAL REVIEW OF MARINE SCIENCE, VOL 7, 2015, 7 :377-401
[43]   Tidal wetland stability in the face of human impacts and sea-level rise [J].
Kirwan, Matthew L. ;
Megonigal, J. Patrick .
NATURE, 2013, 504 (7478) :53-60
[44]   lmerTest Package: Tests in Linear Mixed Effects Models [J].
Kuznetsova, Alexandra ;
Brockhoff, Per B. ;
Christensen, Rune H. B. .
JOURNAL OF STATISTICAL SOFTWARE, 2017, 82 (13) :1-26
[45]   Comparisons of Three Automated Systems for Genomic DNA Extraction in a Clinical Diagnostic Laboratory [J].
Lee, Jong-Han ;
Park, Yongjung ;
Choi, Jong Rak ;
Lee, Eun Kyung ;
Kim, Hyon-Suk .
YONSEI MEDICAL JOURNAL, 2010, 51 (01) :104-110
[46]   Consistent responses of soil microbial communities to elevated nutrient inputs in grasslands across the globe [J].
Leff, Jonathan W. ;
Jones, Stuart E. ;
Prober, Suzanne M. ;
Barberan, Albert ;
Borer, Elizabeth T. ;
Firn, Jennifer L. ;
Harpole, W. Stanley ;
Hobbie, Sarah E. ;
Hofmockel, Kirsten S. ;
Knops, Johannes M. H. ;
McCulley, Rebecca L. ;
La Pierre, Kimberly ;
Risch, Anita C. ;
Seabloom, Eric W. ;
Schuetz, Martin ;
Steenbock, Christopher ;
Stevens, Carly J. ;
Fierer, Noah .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112 (35) :10967-10972
[47]   Response of salt marshes to oiling from the Deepwater Horizon spill: Implications for plant growth, soil surface-erosion, and shoreline stability [J].
Lin, Qianxin ;
Mendelssohn, Irving A. ;
Graham, Sean A. ;
Hou, Aixin ;
Fleeger, John W. ;
Deis, Donald R. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2016, 557 :369-377
[48]   Impacts and Recovery of the Deepwater Horizon Oil Spill on Vegetation Structure and Function of Coastal Salt Marshes in the Northern Gulf of Mexico [J].
Lin, Qianxin ;
Mendelssohn, Irving A. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (07) :3737-3743
[49]   Abundance and community structure of sulfate reducing prokaryotes in a paddy soil of southern China under different fertilization regimes [J].
Liu, Xin-Zhan ;
Zhang, Li-Mei ;
Prosser, James I. ;
He, Ji-Zheng .
SOIL BIOLOGY & BIOCHEMISTRY, 2009, 41 (04) :687-694
[50]   Community structure and activity of sulfate-reducing bacteria in an intertidal surface sediment:: a multi-method approach [J].
Llobet-Brossa, E ;
Rabus, R ;
Böttcher, ME ;
Könneke, M ;
Finke, N ;
Schramm, A ;
Meyer, RL ;
Grötzschel, S ;
Rosselló-Mora, R ;
Amann, R .
AQUATIC MICROBIAL ECOLOGY, 2002, 29 (03) :211-226