The Cyanobacterial Role in the Resistance of Feather Mosses to Decomposition-Toward a New Hypothesis

Rousk, Kathrin; DeLuca, Thomas H.; Rousk, Johannes (2013). The Cyanobacterial Role in the Resistance of Feather Mosses to Decomposition-Toward a New Hypothesis. PLoS ONE, 8, (4)
Download:
DOI:
| Published | English
Authors:
Rousk, Kathrin ; DeLuca, Thomas H. ; Rousk, Johannes
Department:
MEMEG
Microbial Ecology
BECC: Biodiversity and Ecosystem services in a Changing Climate
Project:
Effect of environmental factors on fungal and bacterial growth in soil
Microbial carbon-use efficiency
Research Group:
Microbial Ecology
Abstract:
Cyanobacteria-plant symbioses play an important role in many ecosystems due to the fixation of atmospheric nitrogen (N) by the cyanobacterial symbiont. The ubiquitous feather moss Pleurozium schreberi (Brid.) Mitt. is colonized by cyanobacteria in boreal systems with low N deposition. Here, cyanobacteria fix substantial amounts of N-2 and represent a potential N source. The feather moss appears to be resistant to decomposition, which could be partly a result of toxins produced by cyanobacteria. To assess how cyanobacteria modulated the toxicity of moss, we measured inhibition of bacterial growth. Moss with varying numbers of cyanobacteria was added to soil bacteria to test the inhibition of their growth using the thymidine incorporation technique. Moss could universally inhibit bacterial growth, but moss toxicity did not increase with N-2 fixation rates (numbers of cyanobacteria). Instead, we see evidence for a negative relationship between moss toxicity to bacteria and N-2 fixation, which could be related to the ecological mechanisms that govern the cyanobacteria - moss relationship. We conclude that cyanobacteria associated with moss do not contribute to the resistance to decomposition of moss, and from our results emerges the question as to what type of relationship the moss and cyanobacteria share.
ISSN:
1932-6203
LUP-ID:
0f3e3ec1-b764-43db-85ac-eb39899852ae | Link: https://lup.lub.lu.se/record/0f3e3ec1-b764-43db-85ac-eb39899852ae | Statistics

Cite this