Ecology of Nitrogen Fixing, Nitrifying, and Denitrifying Microorganisms in Tropical Forest Soils

Экология азотфиксирующих, нитрифицирующих и денитрифицирующих микроорганизмов в почвах тропических лесов
Silvia Pajares, Brendan J. M. Bohannan
2016-07-05

denitrificationnitrificationnitrogen cycling microorganismsnitrogen fixationtropical forest soils
Soil microorganisms play important roles in nitrogen cycling within forest ecosystems. Current research has revealed that a wider variety of microorganisms, with unexpected diversity in their functions and phylogenies, are involved in the nitrogen cycle than previously thought, including nitrogen-fixing bacteria, ammonia-oxidizing bacteria and archaea, heterotrophic nitrifying microorganisms, and anammox bacteria, as well as denitrifying bacteria, archaea, and fungi. However, the vast majority of this research has been focused in temperate regions, and relatively little is known regarding the ecology of nitrogen-cycling microorganisms within tropical and subtropical ecosystems. Tropical forests are characterized by relatively high precipitation, low annual temperature fluctuation, high heterogeneity in plant diversity, large amounts of plant litter, and unique soil chemistry. For these reasons, regulation of the nitrogen cycle in tropical forests may be very different from that of temperate ecosystems. This is of great importance because of growing concerns regarding the effect of land use change and chronic-elevated nitrogen deposition on nitrogen-cycling processes in tropical forests. In the context of global change, it is crucial to understand how environmental factors and land use changes in tropical ecosystems influence the composition, abundance and activity of key players in the nitrogen cycle. In this review, we synthesize the limited currently available information regarding the microbial communities involved in nitrogen fixation, nitrification and denitrification, to provide deeper insight into the mechanisms regulating nitrogen cycling in tropical forest ecosystems. We also highlight the large gaps in our understanding of microbially mediated nitrogen processes in tropical forest soils and identify important areas for future research.
1
Land-use change and chronic nitrogen deposition could substantially alter nitrogen-cycling processes in tropical forests, making microbial responses to these pressures important to understand.
2
Nitrogen cycling in forest soils involves unexpectedly diverse microorganisms, including bacteria, archaea, fungi, and anammox organisms across multiple functional pathways.
3
Research on nitrogen-cycling microorganisms has predominantly focused on temperate ecosystems, leaving tropical and subtropical forest soils comparatively understudied.
4
The review synthesizes limited evidence on nitrogen-fixing, nitrifying, and denitrifying communities in tropical soils and identifies major knowledge gaps and priorities for future research.
5
Tropical forest characteristics—including high precipitation, stable temperatures, plant diversity, abundant litter, and distinctive soil chemistry—may regulate nitrogen cycling differently from temperate forests.

Nitrogen-cycling microorganisms in tropical forest soils

The composition, abundance, activity, ecology, and environmental and land-use controls of nitrogen-fixing, nitrifying, and denitrifying microbial communities

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2016-07-05
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Silvia Pajares
Brendan J. M. Bohannan
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