Cargando…

The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks

Fowl cholera caused by Pasteurella multocida exerts a massive economic burden on the poultry industry. Lipopolysaccharide (LPS) is essential for the growth of P. multocida genotype L1 strains in chickens and specific truncations to the full length LPS structure can attenuate bacterial virulence. Her...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Xinxin, Shen, Hui, Liang, Sheng, Zhu, Dekang, Wang, Mingshu, Jia, Renyong, Chen, Shun, Liu, Mafeng, Yang, Qiao, Wu, Ying, Zhang, Shaqiu, Huang, Juan, Ou, Xumin, Mao, Sai, Gao, Qun, Zhang, Ling, Liu, Yunya, Yu, Yanling, Pan, Leichang, Cheng, Anchun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931556/
https://www.ncbi.nlm.nih.gov/pubmed/33663572
http://dx.doi.org/10.1186/s13567-021-00910-4
_version_ 1783660318553014272
author Zhao, Xinxin
Shen, Hui
Liang, Sheng
Zhu, Dekang
Wang, Mingshu
Jia, Renyong
Chen, Shun
Liu, Mafeng
Yang, Qiao
Wu, Ying
Zhang, Shaqiu
Huang, Juan
Ou, Xumin
Mao, Sai
Gao, Qun
Zhang, Ling
Liu, Yunya
Yu, Yanling
Pan, Leichang
Cheng, Anchun
author_facet Zhao, Xinxin
Shen, Hui
Liang, Sheng
Zhu, Dekang
Wang, Mingshu
Jia, Renyong
Chen, Shun
Liu, Mafeng
Yang, Qiao
Wu, Ying
Zhang, Shaqiu
Huang, Juan
Ou, Xumin
Mao, Sai
Gao, Qun
Zhang, Ling
Liu, Yunya
Yu, Yanling
Pan, Leichang
Cheng, Anchun
author_sort Zhao, Xinxin
collection PubMed
description Fowl cholera caused by Pasteurella multocida exerts a massive economic burden on the poultry industry. Lipopolysaccharide (LPS) is essential for the growth of P. multocida genotype L1 strains in chickens and specific truncations to the full length LPS structure can attenuate bacterial virulence. Here we further dissected the roles of the outer core transferase genes pcgD and hptE in bacterial resistance to duck serum, outer membrane permeability and virulence in ducks. Two P. multocida mutants, ΔpcgD and ΔhptE, were constructed, and silver staining confirmed that they all produced truncated LPS profiles. Inactivation of pcgD or hptE did not affect bacterial susceptibility to duck serum and outer membrane permeability but resulted in attenuated virulence in ducks to some extent. After high-dose inoculation, ΔpcgD showed remarkably reduced colonization levels in the blood and spleen but not in the lung and liver and caused decreased injuries in the spleen and liver compared with the wild-type strain. In contrast, the ΔhptE loads declined only in the blood, and ΔhptE infection caused decreased splenic lesions but also induced severe hepatic lesions. Furthermore, compared with the wild-type strain, ΔpcgD was significantly attenuated upon oral or intramuscular challenge, whereas ΔhptE exhibited reduced virulence only upon oral infection. Therefore, the pcgD deletion caused greater virulence attenuation in ducks, indicating the critical role of pcgD in P. multocida infection establishment and survival.
format Online
Article
Text
id pubmed-7931556
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-79315562021-03-05 The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks Zhao, Xinxin Shen, Hui Liang, Sheng Zhu, Dekang Wang, Mingshu Jia, Renyong Chen, Shun Liu, Mafeng Yang, Qiao Wu, Ying Zhang, Shaqiu Huang, Juan Ou, Xumin Mao, Sai Gao, Qun Zhang, Ling Liu, Yunya Yu, Yanling Pan, Leichang Cheng, Anchun Vet Res Research Article Fowl cholera caused by Pasteurella multocida exerts a massive economic burden on the poultry industry. Lipopolysaccharide (LPS) is essential for the growth of P. multocida genotype L1 strains in chickens and specific truncations to the full length LPS structure can attenuate bacterial virulence. Here we further dissected the roles of the outer core transferase genes pcgD and hptE in bacterial resistance to duck serum, outer membrane permeability and virulence in ducks. Two P. multocida mutants, ΔpcgD and ΔhptE, were constructed, and silver staining confirmed that they all produced truncated LPS profiles. Inactivation of pcgD or hptE did not affect bacterial susceptibility to duck serum and outer membrane permeability but resulted in attenuated virulence in ducks to some extent. After high-dose inoculation, ΔpcgD showed remarkably reduced colonization levels in the blood and spleen but not in the lung and liver and caused decreased injuries in the spleen and liver compared with the wild-type strain. In contrast, the ΔhptE loads declined only in the blood, and ΔhptE infection caused decreased splenic lesions but also induced severe hepatic lesions. Furthermore, compared with the wild-type strain, ΔpcgD was significantly attenuated upon oral or intramuscular challenge, whereas ΔhptE exhibited reduced virulence only upon oral infection. Therefore, the pcgD deletion caused greater virulence attenuation in ducks, indicating the critical role of pcgD in P. multocida infection establishment and survival. BioMed Central 2021-03-04 2021 /pmc/articles/PMC7931556/ /pubmed/33663572 http://dx.doi.org/10.1186/s13567-021-00910-4 Text en © The Author(s) 2021 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research Article
Zhao, Xinxin
Shen, Hui
Liang, Sheng
Zhu, Dekang
Wang, Mingshu
Jia, Renyong
Chen, Shun
Liu, Mafeng
Yang, Qiao
Wu, Ying
Zhang, Shaqiu
Huang, Juan
Ou, Xumin
Mao, Sai
Gao, Qun
Zhang, Ling
Liu, Yunya
Yu, Yanling
Pan, Leichang
Cheng, Anchun
The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks
title The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks
title_full The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks
title_fullStr The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks
title_full_unstemmed The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks
title_short The lipopolysaccharide outer core transferase genes pcgD and hptE contribute differently to the virulence of Pasteurella multocida in ducks
title_sort lipopolysaccharide outer core transferase genes pcgd and hpte contribute differently to the virulence of pasteurella multocida in ducks
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931556/
https://www.ncbi.nlm.nih.gov/pubmed/33663572
http://dx.doi.org/10.1186/s13567-021-00910-4
work_keys_str_mv AT zhaoxinxin thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT shenhui thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT liangsheng thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhudekang thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT wangmingshu thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT jiarenyong thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT chenshun thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT liumafeng thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT yangqiao thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT wuying thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhangshaqiu thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT huangjuan thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT ouxumin thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT maosai thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT gaoqun thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhangling thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT liuyunya thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT yuyanling thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT panleichang thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT chenganchun thelipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhaoxinxin lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT shenhui lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT liangsheng lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhudekang lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT wangmingshu lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT jiarenyong lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT chenshun lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT liumafeng lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT yangqiao lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT wuying lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhangshaqiu lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT huangjuan lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT ouxumin lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT maosai lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT gaoqun lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT zhangling lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT liuyunya lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT yuyanling lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT panleichang lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks
AT chenganchun lipopolysaccharideoutercoretransferasegenespcgdandhptecontributedifferentlytothevirulenceofpasteurellamultocidainducks