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Legume–microbiome interactions unlock mineral nutrients in regrowing tropical forests

Citation
Epihov et al. (2021). Proceedings of the National Academy of Sciences 118 (11)
Names
Acidiferrales Acidiferrum typicum Ts Acidiferrum “Acidiferrum panamense”
Abstract
Significance Symbiotic dinitrogen (N 2 )-fixing trees fulfill a critical function in tropical forests by bringing in new nitrogen, yet it remains unclear how they overcome constraints by highly weathered, nutrient-poor tropical soils. We advance forest biogeochemistry and microbial ecology with the discovery from field trials in Panama that fast-growing N 2 -fixing trees in tropical forests exhibit accelerated mineral weather
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PBP4 Is Likely Involved in Cell Division of the Longitudinally Dividing Bacterium Candidatus Thiosymbion Oneisti

Citation
Wang et al. (2021). Antibiotics 10 (3)
Names
Ca. Thiosymbion Ca. Thiosymbion oneisti
Abstract
Peptidoglycan (PG) is essential for bacterial survival and maintaining cell shape. The rod-shaped model bacterium Escherichia coli has a set of seven endopeptidases that remodel the PG during cell growth. The gamma proteobacterium Candidatus Thiosymbion oneisti is also rod-shaped and attaches to the cuticle of its nematode host by one pole. It widens and divides by longitudinal fission using the canonical proteins MreB and FtsZ. The PG layer of Ca. T. oneisti has an unusually high peptide cross-
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Metagenomic Insights Into Ecological and Phylogenetic Significances of Candidatus Natranaeroarchaeales, a Novel Abundant Archaeal Order in Soda Lake Sediment

Citation
Zhou et al. (2021).
Names
Ca. Natranaeroarchaeales
Abstract
Abstract BackgroundArchaea were originally discovered in extreme environments, and thrive in many extreme habitats including soda lakes with high pH and salinity. Characteristic and diverse archaeal community played a significant role in biogeochemical cycles; however, the archaeal community and their functions are still less-studied in the intricate sediment of soda lakes. ResultsIn this article, the archaeal community of the deep sediment (40-50 cm depth) of five artificially-separated
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Candidatus Sarmatiella mevalonica’ endosymbiont of the ciliate Paramecium provides insights on evolutionary plasticity among Rickettsiales

Citation
Castelli et al. (2021). Environmental Microbiology 23 (3)
Names
Ca. Sarmatiella mevalonica
Abstract
Summary Members of the bacterial order Rickettsiales are obligatorily associated with a wide range of eukaryotic hosts. Their evolutionary trajectories, in particular concerning the origin of shared or differential traits among distant sub‐lineages, are still poorly understood. Here, we characterized a novel Rickettsiales bacterium associated with the ciliate
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