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Communities of methanogenic archaeas in different uses of Amazonian soils

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Author(s):
Kelly Jaqueline Alves
Total Authors: 1
Document type: Master's Dissertation
Press: Piracicaba.
Institution: Universidade de São Paulo (USP). Escola Superior de Agricultura Luiz de Queiroz (ESALA/BC)
Defense date:
Examining board members:
Fernando Dini Andreote; Tsai Siu Mui; Cristina Rossi Nakayama; Rodrigo Gouvêa Taketani
Advisor: Fernando Dini Andreote
Abstract

Amazonian forest conversion into agricultural and livestock areas disrupts processes related to carbon stock, being considered, after the fossil fuels burning, the activity contributes most to greenhouse gases emission, of which is methane. Methane production is mediated by methanogenic archaea, acting in organic matter anaerobic decomposition. Therefore, to understand the changes in the flow of this gas in the Amazonian ecosystem, it is necessary to study microbial communities involved in this process. This study aims to monitor and characterize methanogenic archaeal communities by population enrichment from soil samples collected in primary, secondary and pasture of the Amazon region. Soil samples were placed into an enriched medium and received separately acetate, methanol, and H2:CO2 to stimulate the three metabolism types: acetoclastic, methylotrophic and hydrogenotrophic. Monitoring was performed by methane emission analysis by gas chromatography, mcrA quantification by the quantitative PCR and the community characterization was performed by microscopy and sequencing of the V4-V5 region of the 16S rRNA gene. Analyzing the methane emission by the three types of carbon sources in the three soil samples, methanol enrichments presented a higher methane yield than the acetate samples and much larger than cultures with H2:CO2. These results indicate that methylotrophic pathway, although considered as an alternative, may be important in methane production in the Amazonian soil. Was possible to quantify the mcrA gene by qPCR from pasture samples at the initial incubation time, which was not possible for forest samples. In incubation final time, copies number of this gene was similar for the three soil profiles. The phenotypic characterization of enrichments revealed aggregated cells, characteristic of the genus Methanosarcina, later identified by 16S rRNA sequencing. The cells in rod-shaped and cocci formats were also observed. Was identify by sequencing 7 different methanogenic archaeas groups affiliated with Euryarchaeota and Bathyarchaeota phylum. In the initial pasture samples, were identified sequences affiliated with all these groups, while forest samples presented sequences affiliated with only a Methanosarcina genus. Pasture samples showed a final community composition similar to initial, however more abundant. Soil samples enrichment from primary and secondary forest presented a distinct composition due to groups enrichment that was not identified at incubation beginning. These results showed that although methanogenic archaeas are in low abundance in forest soils, they can be enriched when submitted to favorable conditions, archive methane production and reaching similar composition pasture samples. (AU)

FAPESP's process: 16/18745-0 - Changes in communities of methanogenic archaea communities due to changes in the land use in Amazonia
Grantee:Kelly Jaqueline Alves
Support Opportunities: Scholarships in Brazil - Master