The Complete Genome Sequences of 39 Species of Reptiles.
We present the complete genome sequences of 39 species of reptiles.
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We present the complete genome sequences of 39 species of reptiles.
The complete genome sequence of Lactobacillus acidophilus LA120, from the NORDBIOTIC collection, was generated using Illumina and Oxford Nanopore sequencing. The genome comprises a circular 1,991,955-bp chromosome with 34.5% G + C content, providing a reference for comparative genomic and functional analyses of this strain.
We present the complete genome sequence of Colaptes auratus, the Northern Flicker.
Bacillus subtilis strain S-LA1 is an endophytic bacterium isolated from Leucas aspera roots that harbors a 4.2 Mbp genome predicted to encode several traits for nutrient acquisition, plant growth promotion, and plant probiotic efficacy. Genomic characterization underscores its potential as a microbial resource supporting sustainable agriculture and crop disease management strategies.
We present the complete genome sequence of a novel alternavirus, tentatively named "Fusarium falciforme alternavirus 1 (FfAV1)", isolated from Fusarium falciforme. The host, F. falciforme strain Fod375, was isolated from a soil sample in Spain in 2012 and was found to be infected with a virus containing a tetra-segmented double-stranded (ds) RNA genome. The genome segments, designated as dsRNA1 (3529 bp), dsRNA2 (2641 bp), dsRNA3 (2459 bp), and dsRNA4 (1471 bp), each possess a single open reading frame (ORF). The protein predicted from dsRNA1 contains the typical domains of an RNA-dependent RNA polymerase (RdRP) homologous to those of previously reported alternaviruses, while the protein predicted from dsRNA3 shows homology to alternavirus capsid proteins. The proteins encoded by dsRNA2 and dsRNA4 are of unknown function. All predicted proteins exhibited the highest sequence identity with their counterparts in Hebei alternavirus and Marquandomyces marquandii alternavirus 1. Phylogenetic analysis supported the placement of this FfAV1 isolate within the genus Alternavirus. Considering these results, we propose that FfAV1, along with the two closely related unassigned alternaviruses, represents a new species within the genus.
We present complete genome sequences of 22 species of Cambodian Amphibians and Reptiles.
Here, we report the complete genome sequences of two Thermus thermophilus, one Thermus brockianus, and two Thermus brevis strains isolated from Kinosaki Hot Spring, Japan, generated using a hybrid assembly approach combining Oxford Nanopore long-read and Illumina short-read data.
We report complete genome sequences of four Ralstonia solanacearum strains from Philippine Musaceae plants. Genomes spanned 5.5-5.6 Mb (66.5% GC) and comprised a chromosome and megaplasmid; three strains additionally carried a small plasmid (146-190 kb). All four isolates were assigned to phylotype IIB-3.
We report the complete genome sequences of 38 Streptococcus sanguinis genomes, isolated from human oral and endocarditis-associated samples. These genomes are each comprised of a single chromosome that ranges from approximately 2.29 to 2.48 Mb in length, with an average GC content of 43.2%.
We report the first complete genome sequence of Streptomyces diastaticus strain GN02, isolated from a patient with actinomycetoma. The genome comprises a 6.8 Mb linear chromosome with a GC content of 73.5%. Genome analysis identified 23 biosynthetic gene clusters.
Here, we report the coding-complete genome sequence of Arabidopsis latent virus 1 (ArLV1; Comovirus arabidopsis) from Iraq. The virus was identified by metatranscriptomic sequencing of asymptomatic cucumber (Cucumis sativus) leaves harboring thrips collected from commercial greenhouses. The bipartite genome comprises RNA1 (5,553 nt) and RNA2 (3,582 nt).
We report the complete genome sequence of Acinetobacter sp. strain BZX-2, isolated from a hybrid sturgeon (Acipenser baerii ♀ × Acipenser schrenckii ♂). The genome consists of a 3,819,278-bp chromosome with 3,566 predicted protein-coding genes. The genomic characteristics and antibiotic resistance genes identified provide a basis for the prevention and control of sturgeon diseases.
A potyvirus (isolate AMLV-CQ) infecting culantro (Eryngium foetidum L.) imported from Vietnam was identified by RT-PCR. The complete genome sequence of AMLV-CQ was determined to be 9,549 nucleotides in length. It contains a large open reading frame encoding a 3,082-amino-acid putative polyprotein, flanked by 5´ and 3´ untranslated regions (UTRs) of 77 and 226 nt, respectively. AMLV-CQ is closely related to five other completely sequenced potyviruses, sharing 68-69% nucleotide and 69-70% amino acid sequence identity. However, the coat protein (CP) gene shares 89% nucleotide and 93% amino acid sequence identity with that of a partially sequenced potyvirus, Ammi majus latent virus (isolate AMLV-WF17). These results suggest that AMLV-CQ and AMLV-WF17 are isolates of the same species. To our knowledge, this is the first report of a complete genome sequence of an AMLV isolate, and culantro was identified as a new natural host for this virus. In addition, a one-step RT-PCR assay was developed that provides a rapid, robust, and highly sensitive approach for the detection of AMLV.
We report complete genome sequences of three nitrogen-fixing Bradyrhizobium ottawaense strains isolated from soybeans in Canada. Each ~9.0 Mb genome (chromosome and plasmid) harbors predicted genes for nodulation, nitrogen fixation, N2O mitigation, phosphate solubilization, iron acquisition, phytohormone production, and stress tolerance, highlighting their potential for sustainable agriculture.
I report the complete genome sequence of Sphingobacterium kitahiroshimense strain Ss8-5, isolated from a sclerotium on a cabbage head affected by Sclerotinia rot. The complete genome consists of a single circular chromosome of 6.1 Mb with a GC content of 36.3%.
We report the complete genome sequences of three Pseudomonas isolates recovered from topsoil at the California Botanic Garden. Two isolates share ~99.4% average nucleotide identity, enabling investigation of intraspecies microvariation; the third represents a co-occurring distinct species, together capturing species- and strain-level genomic diversity within a natural soil community.
OBJECTIVE: Streptomyces californicus strain ADR1 is an endophytic actinobacterium isolated from Datura metel that produces secondary metabolites with potent antibacterial and anti-biofilm activities against WHO-listed high-priority Gram-positive pathogens. While anti-bacterial and antioxidant potential of the strain ADR1 has been extensively characterized, its complete genome sequence remains to be investigated for further insights into its biosynthetic potential. This study presents the complete genome sequence analysis of the strain ADR1 to provide a robust genomic foundation for understanding its metabolic versatility and biosynthesis of compounds with therapeutic significance. DATA DESCRIPTION: The ADR1 genome was sequenced using Illumina HiSeq. The assembly comprised 262 scaffolds with a total genome size of 8.4 Mb and G + C content of 72.5%, containing 7427 protein-coding genes. AntiSMASH and IIT-Hyderabad novelBGC analysis revealed 39 biosynthetic gene clusters, including non-ribosomal peptide synthetases, type I polyketide synthases, terpene and melanin clusters, correlating with the diverse therapeutic compounds previously identified through GC-MS analysis. This high-quality genome provides crucial insights into the biosynthetic potential underlying potent antimicrobial and antioxidant activities of the strain ADR1.
Here, we report the complete genome sequence of Prevotella bivia GTC 18476, isolated from a clinical specimen in Nagano, Japan. The genome comprises two circular chromosomes and one plasmid measuring 1,298,955 bp, 1,212,313 bp, and 19,020 bp, respectively.