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Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions

BACKGROUND: The microsporidia parasite Nosema contributes to the steep global decline of honey bees that are critical pollinators of food crops. There are two species of Nosema that have been found to infect honey bees, Nosema apis and N. ceranae. Genome sequencing of N. apis and comparative genome...

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Autores principales: Chen, Yan ping, Pettis, Jeffery S, Zhao, Yan, Liu, Xinyue, Tallon, Luke J, Sadzewicz, Lisa D, Li, Renhua, Zheng, Huoqing, Huang, Shaokang, Zhang, Xuan, Hamilton, Michele C, Pernal, Stephen F, Melathopoulos, Andony P, Yan, Xianghe, Evans, Jay D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726280/
https://www.ncbi.nlm.nih.gov/pubmed/23829473
http://dx.doi.org/10.1186/1471-2164-14-451
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author Chen, Yan ping
Pettis, Jeffery S
Zhao, Yan
Liu, Xinyue
Tallon, Luke J
Sadzewicz, Lisa D
Li, Renhua
Zheng, Huoqing
Huang, Shaokang
Zhang, Xuan
Hamilton, Michele C
Pernal, Stephen F
Melathopoulos, Andony P
Yan, Xianghe
Evans, Jay D
author_facet Chen, Yan ping
Pettis, Jeffery S
Zhao, Yan
Liu, Xinyue
Tallon, Luke J
Sadzewicz, Lisa D
Li, Renhua
Zheng, Huoqing
Huang, Shaokang
Zhang, Xuan
Hamilton, Michele C
Pernal, Stephen F
Melathopoulos, Andony P
Yan, Xianghe
Evans, Jay D
author_sort Chen, Yan ping
collection PubMed
description BACKGROUND: The microsporidia parasite Nosema contributes to the steep global decline of honey bees that are critical pollinators of food crops. There are two species of Nosema that have been found to infect honey bees, Nosema apis and N. ceranae. Genome sequencing of N. apis and comparative genome analysis with N. ceranae, a fully sequenced microsporidia species, reveal novel insights into host-parasite interactions underlying the parasite infections. RESULTS: We applied the whole-genome shotgun sequencing approach to sequence and assemble the genome of N. apis which has an estimated size of 8.5 Mbp. We predicted 2,771 protein- coding genes and predicted the function of each putative protein using the Gene Ontology. The comparative genomic analysis led to identification of 1,356 orthologs that are conserved between the two Nosema species and genes that are unique characteristics of the individual species, thereby providing a list of virulence factors and new genetic tools for studying host-parasite interactions. We also identified a highly abundant motif in the upstream promoter regions of N. apis genes. This motif is also conserved in N. ceranae and other microsporidia species and likely plays a role in gene regulation across the microsporidia. CONCLUSIONS: The availability of the N. apis genome sequence is a significant addition to the rapidly expanding body of microsprodian genomic data which has been improving our understanding of eukaryotic genome diversity and evolution in a broad sense. The predicted virulent genes and transcriptional regulatory elements are potential targets for innovative therapeutics to break down the life cycle of the parasite.
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spelling pubmed-37262802013-07-30 Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions Chen, Yan ping Pettis, Jeffery S Zhao, Yan Liu, Xinyue Tallon, Luke J Sadzewicz, Lisa D Li, Renhua Zheng, Huoqing Huang, Shaokang Zhang, Xuan Hamilton, Michele C Pernal, Stephen F Melathopoulos, Andony P Yan, Xianghe Evans, Jay D BMC Genomics Research Article BACKGROUND: The microsporidia parasite Nosema contributes to the steep global decline of honey bees that are critical pollinators of food crops. There are two species of Nosema that have been found to infect honey bees, Nosema apis and N. ceranae. Genome sequencing of N. apis and comparative genome analysis with N. ceranae, a fully sequenced microsporidia species, reveal novel insights into host-parasite interactions underlying the parasite infections. RESULTS: We applied the whole-genome shotgun sequencing approach to sequence and assemble the genome of N. apis which has an estimated size of 8.5 Mbp. We predicted 2,771 protein- coding genes and predicted the function of each putative protein using the Gene Ontology. The comparative genomic analysis led to identification of 1,356 orthologs that are conserved between the two Nosema species and genes that are unique characteristics of the individual species, thereby providing a list of virulence factors and new genetic tools for studying host-parasite interactions. We also identified a highly abundant motif in the upstream promoter regions of N. apis genes. This motif is also conserved in N. ceranae and other microsporidia species and likely plays a role in gene regulation across the microsporidia. CONCLUSIONS: The availability of the N. apis genome sequence is a significant addition to the rapidly expanding body of microsprodian genomic data which has been improving our understanding of eukaryotic genome diversity and evolution in a broad sense. The predicted virulent genes and transcriptional regulatory elements are potential targets for innovative therapeutics to break down the life cycle of the parasite. BioMed Central 2013-07-05 /pmc/articles/PMC3726280/ /pubmed/23829473 http://dx.doi.org/10.1186/1471-2164-14-451 Text en Copyright © 2013 Chen et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chen, Yan ping
Pettis, Jeffery S
Zhao, Yan
Liu, Xinyue
Tallon, Luke J
Sadzewicz, Lisa D
Li, Renhua
Zheng, Huoqing
Huang, Shaokang
Zhang, Xuan
Hamilton, Michele C
Pernal, Stephen F
Melathopoulos, Andony P
Yan, Xianghe
Evans, Jay D
Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions
title Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions
title_full Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions
title_fullStr Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions
title_full_unstemmed Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions
title_short Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions
title_sort genome sequencing and comparative genomics of honey bee microsporidia, nosema apis reveal novel insights into host-parasite interactions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726280/
https://www.ncbi.nlm.nih.gov/pubmed/23829473
http://dx.doi.org/10.1186/1471-2164-14-451
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