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Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39

Accurate house dust mite (HDM) genome and transcriptome data would promote our understanding of HDM allergens. We sought to assemble chromosome-level genome and precise transcriptome profiling of Dermatophagoides farinae and identify novel allergens. In this study, genetic material extracted from HD...

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Autores principales: Chen, Jiajie, Cai, Zelang, Fan, Dingding, Hu, Jiayu, Hou, Yibo, He, Yongsen, Zhang, Zhen, Zhao, Zhenfu, Gao, Pan, Hu, Wanzhen, Sun, Jinlyu, Li, Jiang, Ji, Kunmei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: World Allergy Organization 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8487952/
https://www.ncbi.nlm.nih.gov/pubmed/34659625
http://dx.doi.org/10.1016/j.waojou.2021.100590
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author Chen, Jiajie
Cai, Zelang
Fan, Dingding
Hu, Jiayu
Hou, Yibo
He, Yongsen
Zhang, Zhen
Zhao, Zhenfu
Gao, Pan
Hu, Wanzhen
Sun, Jinlyu
Li, Jiang
Ji, Kunmei
author_facet Chen, Jiajie
Cai, Zelang
Fan, Dingding
Hu, Jiayu
Hou, Yibo
He, Yongsen
Zhang, Zhen
Zhao, Zhenfu
Gao, Pan
Hu, Wanzhen
Sun, Jinlyu
Li, Jiang
Ji, Kunmei
author_sort Chen, Jiajie
collection PubMed
description Accurate house dust mite (HDM) genome and transcriptome data would promote our understanding of HDM allergens. We sought to assemble chromosome-level genome and precise transcriptome profiling of Dermatophagoides farinae and identify novel allergens. In this study, genetic material extracted from HDM bodies and eggs were sequenced. Short-reads from next generation sequencing (NGS) and long-reads from PacBio/Nanopore sequencing were used to construct the D. farinae nuclear genome, transcriptome, and mitochondrial genome. The candidate homologs were screened through aligning our assembled transcriptome data with amino acid sequences in the WHO/IUIS database. Our results showed that compared with the D. farinae draft genome, bacterial DNA content in the presently developed sequencing reads was dramatically reduced (from 22.9888% to 1.5585%), genome size was corrected (from 53.55 Mb to 58.77 Mb), and the contig N50 was increased (from 8.54 kb to 9365.49 kb). The assembled genome has 10 contigs with minimal microbial contamination, 33 canonical allergens and 2 novel allergens. Eight homologs (≥50% homology) were cloned; 2 bound HDM allergic-sera and were identified as allergens (Der f 37 and Der f 39). In conclusion, a chromosome-level genome, transcriptome and mitochondrial genome of D. farinae was generated to support allergen identification and development of diagnostics and immunotherapeutic vaccines.
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spelling pubmed-84879522021-10-14 Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39 Chen, Jiajie Cai, Zelang Fan, Dingding Hu, Jiayu Hou, Yibo He, Yongsen Zhang, Zhen Zhao, Zhenfu Gao, Pan Hu, Wanzhen Sun, Jinlyu Li, Jiang Ji, Kunmei World Allergy Organ J Article Accurate house dust mite (HDM) genome and transcriptome data would promote our understanding of HDM allergens. We sought to assemble chromosome-level genome and precise transcriptome profiling of Dermatophagoides farinae and identify novel allergens. In this study, genetic material extracted from HDM bodies and eggs were sequenced. Short-reads from next generation sequencing (NGS) and long-reads from PacBio/Nanopore sequencing were used to construct the D. farinae nuclear genome, transcriptome, and mitochondrial genome. The candidate homologs were screened through aligning our assembled transcriptome data with amino acid sequences in the WHO/IUIS database. Our results showed that compared with the D. farinae draft genome, bacterial DNA content in the presently developed sequencing reads was dramatically reduced (from 22.9888% to 1.5585%), genome size was corrected (from 53.55 Mb to 58.77 Mb), and the contig N50 was increased (from 8.54 kb to 9365.49 kb). The assembled genome has 10 contigs with minimal microbial contamination, 33 canonical allergens and 2 novel allergens. Eight homologs (≥50% homology) were cloned; 2 bound HDM allergic-sera and were identified as allergens (Der f 37 and Der f 39). In conclusion, a chromosome-level genome, transcriptome and mitochondrial genome of D. farinae was generated to support allergen identification and development of diagnostics and immunotherapeutic vaccines. World Allergy Organization 2021-09-28 /pmc/articles/PMC8487952/ /pubmed/34659625 http://dx.doi.org/10.1016/j.waojou.2021.100590 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Jiajie
Cai, Zelang
Fan, Dingding
Hu, Jiayu
Hou, Yibo
He, Yongsen
Zhang, Zhen
Zhao, Zhenfu
Gao, Pan
Hu, Wanzhen
Sun, Jinlyu
Li, Jiang
Ji, Kunmei
Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39
title Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39
title_full Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39
title_fullStr Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39
title_full_unstemmed Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39
title_short Chromosome-level assembly of Dermatophagoides farinae genome and transcriptome reveals two novel allergens Der f 37 and Der f 39
title_sort chromosome-level assembly of dermatophagoides farinae genome and transcriptome reveals two novel allergens der f 37 and der f 39
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8487952/
https://www.ncbi.nlm.nih.gov/pubmed/34659625
http://dx.doi.org/10.1016/j.waojou.2021.100590
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