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Tales of Dune
US Edition. Log in using your social network account. Please enter a valid password. Keep me logged in. Want an ad-free experience? Subscribe to Independent Premium. Many of the OTUs found only in FCs are related to known phytopathogen groups the fungal genera Periconia , Curvularia , and Aspergillus , the fungal order Pleosporales and family Chaetomiaceae, and the bacterial class Gammaproteobacteria [ 58 — 63 ] , suggesting that they may play a role in this phenomenon. To further investigate this hypothesis, the FC-specific phylotypes should be isolated and used in controlled greenhouse experiments to identify patterns related to phytopathology The funders had no role in study design, data collection and interpretation, or the decision to submit the work for publication.
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Microbial Ecology. Andries J. Johnson , Don A. Kelly , Editor. North Carolina State University.
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View this table: View inline View popup. TABLE 1 Physicochemical properties of the soils of the dune and gravel plain fairy circle centers and their respective vegetated controls. FIG 2 Principal-component analysis of physicochemical data from fairy circle and control soils based on a Euclidean distance matrix. FIG 4 Redundancy analysis RDA plots showing the influence of soil physicochemical properties on bacterial a , archaeal b , and fungal c communities. FIG 5 Venn diagrams showing the distributions of bacterial a , archaeal b , and fungal c OTUs within the soils studied.
Accepted 16 May Accepted manuscript posted online 20 May The fairy circles of Kaokoland Northwest Namibia —is the harvester termite Hodotermes mossambicus the prime causal factor in circle formation? Basic Appl Ecol 3 : — OpenUrl CrossRef. Mysterious circles in the Namib Desert: review of hypotheses on their origin. J Arid Environ 57 : — Discovery of fairy circles in Australia supports self-organization theory.
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Tschinkel WR. The life cycle and life span of Namibian fairy circles. PLoS One 7 : e OpenUrl Web of Science. Experiments testing the causes of Namibian fairy circles. PLoS One 10 : e Evidence for a geochemical origin of the mysterious circles in the Pro-Namib desert. J Arid Environ 75 : — Gradual regime shifts in fairy circles. Juergens N. The biological underpinnings of Namib Desert fairy circles. Science : — Ants and the enigmatic Namibian fairy circles—cause and effect?
Ecol Entomol 37 : 33 — Herbivory by subterranean termite colonies and the development of fairy circles in SW Namibia. Ecol Entomol 40 : 42 — Adopting a spatially explicit perspective to study the mysterious fairy circles of Namibia. Ecography 38 : 1 — PLoS One 8 : e The occurrence of triterpenoids from Euphorbia gummifera inside the fairy circles of Garub in the southern Namibian pro-desert.
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Niche-partitioning of edaphic microbial communities in the Namib Desert gravel plain Fairy Circles. PLoS One 9 : e Biology and management of dollar spot Sclerotinia homoeocarpa ; an important disease of turfgrass. Hort Sci 34 : 13 — Walkley A. An examination of methods for determining organic carbon and nitrogen in soils.
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J Agric Sci 25 : — Bouyoucos GJ. Hydrometer method improved for making particle size analyses of soils. Agron J 54 : — Rapid determination of 16S ribosomal RNA sequences for phylogenetic analyses. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics , p — QIIME allows analysis of high-throughput community sequencing data. Nat Methods 7 : — Appl Environ Microbiol 72 : — Towards a unified paradigm for sequence-based identification of fungi.
Mol Ecol 22 : — Naive Bayesian classifier for rapid assignment of rRNA sequences into the new bacterial taxonomy. Appl Environ Microbiol 73 : — Ihaka R , Gentleman R. R: a language for data analysis and graphics. J Comput Graph Stat 5 : — Applied multivariate statistical analysis , vol 2.