Genetics


Publications
355

Genome Sequence of “ Candidatus Arthromitus” sp. Strain SFB-Mouse-NL, a Commensal Bacterium with a Key Role in Postnatal Maturation of Gut Immune Functions

Citation
Bolotin et al. (2014). Genome Announcements 2 (4)
Names
Ca. Arthromitus
Abstract
ABSTRACT “ Candidatus Arthromitus” sp. strain SFB-mouse-NL (SFB, segmented filamentous bacteria) is a commensal bacterium necessary for inducing the postnatal maturation of homeostatic innate and adaptive immune responses in the mouse gut. Here, we report the genome sequence of this bacterium, which sets it apart from earlier sequenced mouse SFB isolates.

Draft Genome Sequence of “ Candidatus Cronobacter colletis” NCTC 14934 T , a New Species in the Genus Cronobacter

Citation
Masood et al. (2014). Genome Announcements 2 (3)
Names
Ca. Cronobacter colletis
Abstract
ABSTRACT Members of the Cronobacter genus are associated with serious infections in neonates. This is the first report of the draft genome sequence for the newly proposed species Cronobacter colletis .

Whole-Genome Sequence of “ Candidatus Liberibacter asiaticus” from Guangdong, China

Citation
Zheng et al. (2014). Genome Announcements 2 (2)
Names
Ca. Liberibacter asiaticus
Abstract
ABSTRACT The draft genome sequence of “ Candidatus Liberibacter asiaticus” strain A4, isolated from a mandarin citrus in Guangdong, People's Republic of China, is reported. The A4 strain has a genome size of 1,208,625 bp, G+C content of 36.4%, 1,107 predicted open reading frames, and 53 RNA genes.

Draft Genome Sequence of the Sulfolobales Archaeon AZ1, Obtained through Metagenomic Analysis of a Mexican Hot Spring

Citation
Servín-Garcidueñas, Martínez-Romero (2014). Genome Announcements 2 (2)
Names
“Aramenus sulfurataquae” “Aramenus”
Abstract
ABSTRACT The Sulfolobales archaea have been found inhabiting acidic hot springs all over the world. Here, we report the 1.798-Mbp draft genome sequence of the thermoacidophilic Sulfolobales archaeon AZ1, reconstructed from the metagenome of a Mexican hot spring. Sequence-based comparisons revealed that the Sulfolobales archaeon AZ1 represents a novel candidate genus.