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Exploring diazotrophic diversity: unveiling Nif core distribution and evolutionary patterns in nitrogen-fixing organisms. [PDF]
Nichio BTL +3 more
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Response of Phytoplankton Communities to Hydrological Pulses and Nutrient Changes Induced by Heavy Summer Rainfall in a Shallow Eutrophic Lake. [PDF]
Li Y +5 more
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Adaptive pangenomic remodeling in the Azolla cyanobiont amid a transient microbiome. [PDF]
Armitage DW +7 more
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Mixotrophic cyanobacteria are critical active diazotrophs in polychlorinated biphenyl-contaminated paddy soil. [PDF]
Hu W +9 more
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Competition and interdependence define interactions of Nostoc sp. and Agrobacterium sp. under inorganic carbon limitation. [PDF]
Teikari JE +6 more
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Parathyroid carcinoma located in the thyroid gland: A case report. [PDF]
Gui SY +4 more
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Phytochemistry, 2013
The heterocysts of limnetic nitrogen-fixing filamentous cyanobacteria contain unique glycolipids in their cell wall that create the distinctive gas impermeability of the heterocyst cell wall as well as serve as biomarker lipids for these microbes.
Schouten, S. +5 more
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The heterocysts of limnetic nitrogen-fixing filamentous cyanobacteria contain unique glycolipids in their cell wall that create the distinctive gas impermeability of the heterocyst cell wall as well as serve as biomarker lipids for these microbes.
Schouten, S. +5 more
openaire +3 more sources
Heterocyst development in Anabaena
Current Opinion in Microbiology, 2003Many filamentous nitrogen-fixing cyanobacteria protect nitrogenase from oxygen in differentiated cells called heterocysts. Heterocyst development is controlled by the availability of nitrogen compounds in the environment and by intrinsic factors that regulate the frequency and pattern of heterocysts along vegetative cell filaments.
James W, Golden, Ho-Sung, Yoon
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