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A novel bacterial phylum that participates in carbon and osmolyte cycling in the Challenger Deep sediments

Citation
Cui et al. (2021). Environmental Microbiology 23 (7)
Names
“Tianyaibacteriota”
Abstract
Summary Large amounts of detrital organic matter and osmolytes accumulate in the sediments of hadal trenches (>6000 m depth) due to the funnelling effect. It is still unknown whether there are novel active microbes that depend on specific carbon sources in extreme and isolated environments. In this study, we present a novel active bacterial phylum, Candidatus Tianyabacteria in the FCB superphylum, which was enriche
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The Total Population Size of ‘Candidatus Liberibacter asiaticus’ Inside the Phloem of Citrus Trees and the Corresponding Metabolic Burden Related to Huanglongbing Disease Development

Citation
Vasconcelos et al. (2021). Phytopathology® 111 (7)
Names
Ca. Liberibacter asiaticus
Abstract
‘Candidatus Liberibacter asiaticus’ (CLas) is the predominant causal agent of citrus huanglongbing, the most devastating citrus disease worldwide. CLas colonizes phloem tissue and causes phloem dysfunction. The pathogen population size in local tissues and in the whole plant is critical for the development of disease symptoms by determining the load of pathogenicity factors and metabolic burden to the host. However, the total population size of CLas in a whole plant and the ratio of CLas to cit
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Adaptability and ‘Candidatus<scp>L</scp>iberibacter asiaticus’ titres of Diaphorina citri adults on three weed species in <scp>C</scp>hina

Citation
Lu et al. (2021). Pest Management Science 77 (7)
Names
Ca. Liberibacter asiaticus
Abstract
AbstractBACKGROUNDDiaphorina citri is a vector of ‘Candidatus Liberibacter asiaticus’ (CLas), which is associated with citrus huanglongbing (HLB). In this study, the adaptability and CLas titres of D. citri adults on three weed species, namely, Ageratum conyzoides, Solanum nigrum and Praxelis clematidea, which are widely distributed in citrus orchards in China, were determined.RESULTSD. citri selected S. nigrum preferentially over the other weed species. The longest survival times of D. citri ad
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Metagenomic insights into the metabolism and evolution of a new Thermoplasmata order ( Candidatus Gimiplasmatales)

Citation
Hu et al. (2021). Environmental Microbiology 23 (7)
Names
“Gimiplasmatales” “Gimiplasmataceae”
Abstract
Summary Thermoplasmata is a widely distributed and ecologically important archaeal class in the phylum Euryarchaeota. Because few cultures and genomes are available, uncharacterized Thermoplasmata metabolisms remain unexplored. In this study, we obtained four medium‐ to high‐quality archaeal metagenome‐assembled genomes (MAGs) from the filamentous fragments of black‐odorous aquatic sediments (Foshan, Guangdong, China). Based on their 16S rRNA gene and ribos
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Natranaerofaba carboxydovora gen. nov., sp. nov., an extremely haloalkaliphilic <scp>CO</scp> ‐utilizing acetogen from a hypersaline soda lake representing a novel deep phylogenetic lineage in the class ‘ Natranaerobiia

Citation
Sorokin et al. (2021). Environmental Microbiology 23 (7)
Names
Natranaerofabaceae Natranaerofaba
Abstract
Summary An anaerobic enrichment with CO from sediments of hypersaline soda lakes resulted in a methane‐forming binary culture, whereby CO was utilized by a bacterium and not the methanogenic partner. The bacterial isolate ANCO1 forms a deep‐branching phylogenetic lineage at the level of a new family within the class ‘ Natranaerobiia ’. It is an extreme haloalkaliphilic and moderate thermophilic acetogen utilizing CO,
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