Matches in SemOpenAlex for { <https://semopenalex.org/work/W3199213503> ?p ?o ?g. }
- W3199213503 abstract "ABSTRACT Background An optimal starting point for relating genome function to organismal biology is a high-quality nuclear genome assembly, and long-read sequencing is revolutionizing the production of this genomic resource in insects. Despite this, nuclear genome assemblies have been under-represented for agricultural insect pests, particularly from the order Coleoptera. Here we present a de novo genome assembly and structural annotation for the coconut rhinoceros beetle, Oryctes rhinoceros (Coleoptera: Scarabaeidae), based on Oxford Nanopore Technologies (ONT) long-read data generated from a wild-caught female, as well as the assembly process that also led to the recovery of the complete circular genome assemblies of the beetle’s mitochondrial genome and that of the biocontrol agent, Oryctes rhinoceros nudivirus (OrNV). As an invasive pest of palm trees, O. rhinoceros is undergoing an expansion in its range across the Pacific Islands, requiring new approaches to management that may include strategies facilitated by genome assembly and annotation. Results High-quality DNA isolated from an adult female was used to create four ONT libraries that were sequenced using four MinION flow cells, producing a total of 27.2 Gb of high-quality long-read sequences. We employed an iterative assembly process and polishing with one lane of high-accuracy Illumina reads, obtaining a final size of the assembly of 377.36 Mb that had high contiguity (fragment N50 length = 12 Mb) and accuracy, as evidenced by the exceptionally high completeness of the benchmarked set of conserved single-copy orthologous genes (BUSCO completeness = 99.11%). These quality metrics place our assembly as the most complete of the published Coleopteran genomes. The structural annotation of the nuclear genome assembly contained a highly-accurate set of 16,371 protein-coding genes showing BUSCO completeness of 92.09%, as well as the expected number of non-coding RNAs and the number and structure of paralogous genes in a gene family like Sigma GST. Conclusions The genomic resources produced in this study form a foundation for further functional genetic research and management programs that may inform the control and surveillance of O. rhinoceros populations, and we demonstrate the efficacy of de novo genome assembly using long-read ONT data from a single field-caught insect." @default.
- W3199213503 created "2021-09-27" @default.
- W3199213503 creator A5004819642 @default.
- W3199213503 creator A5015493360 @default.
- W3199213503 creator A5031378200 @default.
- W3199213503 creator A5038783239 @default.
- W3199213503 creator A5059931881 @default.
- W3199213503 creator A5066933109 @default.
- W3199213503 creator A5085745586 @default.
- W3199213503 date "2021-09-12" @default.
- W3199213503 modified "2023-09-23" @default.
- W3199213503 title "A high-quality <i>de novo</i> genome assembly based on nanopore sequencing of a wild-caught coconut rhinoceros beetle (<i>Oryctes rhinoceros</i>)" @default.
- W3199213503 cites W1220385903 @default.
- W3199213503 cites W1487554690 @default.
- W3199213503 cites W1982855075 @default.
- W3199213503 cites W1991342776 @default.
- W3199213503 cites W2007818959 @default.
- W3199213503 cites W2011657487 @default.
- W3199213503 cites W2011993186 @default.
- W3199213503 cites W2045204781 @default.
- W3199213503 cites W2067962728 @default.
- W3199213503 cites W2069313265 @default.
- W3199213503 cites W2097706568 @default.
- W3199213503 cites W2098937968 @default.
- W3199213503 cites W2101212568 @default.
- W3199213503 cites W2103226493 @default.
- W3199213503 cites W2108234281 @default.
- W3199213503 cites W2116895571 @default.
- W3199213503 cites W2124791602 @default.
- W3199213503 cites W2126419817 @default.
- W3199213503 cites W2129296076 @default.
- W3199213503 cites W2131271579 @default.
- W3199213503 cites W2141152740 @default.
- W3199213503 cites W2147841875 @default.
- W3199213503 cites W2152192351 @default.
- W3199213503 cites W2153113745 @default.
- W3199213503 cites W2155628349 @default.
- W3199213503 cites W2160814097 @default.
- W3199213503 cites W2216234219 @default.
- W3199213503 cites W2235368041 @default.
- W3199213503 cites W2322420990 @default.
- W3199213503 cites W2411304278 @default.
- W3199213503 cites W2415684137 @default.
- W3199213503 cites W2465681871 @default.
- W3199213503 cites W2735845524 @default.
- W3199213503 cites W2788228074 @default.
- W3199213503 cites W2791563343 @default.
- W3199213503 cites W2805675793 @default.
- W3199213503 cites W2807674901 @default.
- W3199213503 cites W2900287627 @default.
- W3199213503 cites W2904031666 @default.
- W3199213503 cites W2941342985 @default.
- W3199213503 cites W2941629467 @default.
- W3199213503 cites W2946454300 @default.
- W3199213503 cites W2949439444 @default.
- W3199213503 cites W2964849163 @default.
- W3199213503 cites W2980554152 @default.
- W3199213503 cites W2995764440 @default.
- W3199213503 cites W2998871023 @default.
- W3199213503 cites W3000090711 @default.
- W3199213503 cites W3008488412 @default.
- W3199213503 cites W3012330054 @default.
- W3199213503 cites W3046337776 @default.
- W3199213503 cites W3080198030 @default.
- W3199213503 cites W3082005324 @default.
- W3199213503 cites W3100348855 @default.
- W3199213503 cites W3119465130 @default.
- W3199213503 cites W3160171729 @default.
- W3199213503 cites W3174638824 @default.
- W3199213503 cites W3178542913 @default.
- W3199213503 cites W3195010157 @default.
- W3199213503 cites W4243601081 @default.
- W3199213503 doi "https://doi.org/10.1101/2021.09.12.459717" @default.
- W3199213503 hasPublicationYear "2021" @default.
- W3199213503 type Work @default.
- W3199213503 sameAs 3199213503 @default.
- W3199213503 citedByCount "0" @default.
- W3199213503 crossrefType "posted-content" @default.
- W3199213503 hasAuthorship W3199213503A5004819642 @default.
- W3199213503 hasAuthorship W3199213503A5015493360 @default.
- W3199213503 hasAuthorship W3199213503A5031378200 @default.
- W3199213503 hasAuthorship W3199213503A5038783239 @default.
- W3199213503 hasAuthorship W3199213503A5059931881 @default.
- W3199213503 hasAuthorship W3199213503A5066933109 @default.
- W3199213503 hasAuthorship W3199213503A5085745586 @default.
- W3199213503 hasBestOaLocation W31992135031 @default.
- W3199213503 hasConcept C104317684 @default.
- W3199213503 hasConcept C126513998 @default.
- W3199213503 hasConcept C141231307 @default.
- W3199213503 hasConcept C150194340 @default.
- W3199213503 hasConcept C162317418 @default.
- W3199213503 hasConcept C18949551 @default.
- W3199213503 hasConcept C2777591057 @default.
- W3199213503 hasConcept C2779927696 @default.
- W3199213503 hasConcept C54355233 @default.
- W3199213503 hasConcept C78458016 @default.
- W3199213503 hasConcept C86803240 @default.
- W3199213503 hasConcept C90856448 @default.
- W3199213503 hasConceptScore W3199213503C104317684 @default.
- W3199213503 hasConceptScore W3199213503C126513998 @default.