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Discovery and genomic characterization of three double-stranded RNA viruses coinfecting Conidiobolus taihushanensis
by
Huang, Bo
, Wang, Ping
, He, Lili
, Yang, Guogen
, Yin, Ying
in
Acids
/ Bats
/ Capsid protein
/ Conidiobolus
/ DNA-directed RNA polymerase
/ Double-stranded RNA
/ Evolution
/ Genetic diversity
/ Genomes
/ Molecular weight
/ New genera
/ Next-generation sequencing
/ Nucleotide sequence
/ Open reading frames
/ Phylogeny
/ Plant debris
/ RNA polymerase
/ RNA viruses
/ RNA-directed RNA polymerase
/ Viruses
2024
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Discovery and genomic characterization of three double-stranded RNA viruses coinfecting Conidiobolus taihushanensis
by
Huang, Bo
, Wang, Ping
, He, Lili
, Yang, Guogen
, Yin, Ying
in
Acids
/ Bats
/ Capsid protein
/ Conidiobolus
/ DNA-directed RNA polymerase
/ Double-stranded RNA
/ Evolution
/ Genetic diversity
/ Genomes
/ Molecular weight
/ New genera
/ Next-generation sequencing
/ Nucleotide sequence
/ Open reading frames
/ Phylogeny
/ Plant debris
/ RNA polymerase
/ RNA viruses
/ RNA-directed RNA polymerase
/ Viruses
2024
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Discovery and genomic characterization of three double-stranded RNA viruses coinfecting Conidiobolus taihushanensis
by
Huang, Bo
, Wang, Ping
, He, Lili
, Yang, Guogen
, Yin, Ying
in
Acids
/ Bats
/ Capsid protein
/ Conidiobolus
/ DNA-directed RNA polymerase
/ Double-stranded RNA
/ Evolution
/ Genetic diversity
/ Genomes
/ Molecular weight
/ New genera
/ Next-generation sequencing
/ Nucleotide sequence
/ Open reading frames
/ Phylogeny
/ Plant debris
/ RNA polymerase
/ RNA viruses
/ RNA-directed RNA polymerase
/ Viruses
2024
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Discovery and genomic characterization of three double-stranded RNA viruses coinfecting Conidiobolus taihushanensis
Journal Article
Discovery and genomic characterization of three double-stranded RNA viruses coinfecting Conidiobolus taihushanensis
2024
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Overview
Conidiobolus sensu lato, a genus within the family Ancylistaceae, encompasses a diverse range of fungal species that are widely distributed in plant debris and soil. In this study, we identified three double-stranded RNA (dsRNA) viruses coinfecting a strain of Conidiobolus taihushanensis. These viruses were identified as Conidiobolus taihushanensis totivirus 1 (CtTV1), Conidiobolus nonsegmented RNA virus 1–2 (CNRV1-2), and Conidiobolus taihushanensis virus 1 (CtV1). Through high-throughput sequencing and RNA-ligase-mediated rapid amplification of cDNA ends (RLM-RACE), we determined their complete genome sequences. The genome of CtTV1 is 6,921 nucleotides in length, containing two open reading frames (ORFs). ORF1 encodes a 1,124-amino-acid capsid protein (CP) with a molecular weight of 125.07 kDa, and ORF2 encodes a 780-amino-acid RNA-dependent RNA polymerase (RdRp) with a molecular weight of 88.05 kDa. CNRV1-2, approximately 3.0 kb in length, also contains two ORFs, which are predicted to encode a 186-amino-acid hypothetical protein (HP) and a 758-amino-acid RdRp. CtV1 has a smaller genome consisting of 3,081 base pairs (bp) with two ORFs: one encoding a 244-amino-acid HP (26.85 kDa) and the other encoding a 707-amino-acid RdRp (80.64 kDa). Phylogenetic analysis based on RdRp sequences revealed that CtTV1 shows the highest similarity to Phytophthora pluvialis RNA virus 1, with 38.79% sequence identity, and clusters with members of the family Orthototiviridae, and it is most closely related to Utsjoki toti-like virus. In contrast, CtV1 formed a unique branch and might represent a new genus. The genome sequence of CNRV1-2 is 99.74% identical to that of the previously described Conidiobolus non-segmented RNA virus 1 (CNRV1). Our findings indicate that CtTV1 and CtV1 are distinct novel viruses, while CNRV1-2 appears to be a variant of CNRV1. This study enhances our understanding of the genetic diversity and evolutionary relationships among mycoviruses associated with C. taihushanensis.
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