Literature DB >> 27572642

Mosquito C-type lectins maintain gut microbiome homeostasis.

Xiaojing Pang1, Xiaoping Xiao1, Yang Liu1,2, Rudian Zhang1,2, Jianying Liu1, Qiyong Liu1,3, Penghua Wang4, Gong Cheng1.   

Abstract

The long-term evolutionary interaction between the host immune system and symbiotic bacteria determines their cooperative rather than antagonistic relationship. It is known that commensal bacteria have evolved a number of mechanisms to manipulate the mammalian host immune system and maintain homeostasis. However, the strategies employed by the microbiome to overcome host immune responses in invertebrates still remain to be understood. Here, we report that the gut microbiome in mosquitoes utilizes C-type lectins (mosGCTLs) to evade the bactericidal capacity of antimicrobial peptides (AMPs). Aedes aegypti mosGCTLs facilitate colonization by multiple bacterial strains. Furthermore, maintenance of the gut microbial flora relies on the expression of mosGCTLs in A. aegypti. Silencing the orthologues of mosGCTL in another major mosquito vector (Culex pipiens pallens) also impairs the survival of gut commensal bacteria. The gut microbiome stimulates the expression of mosGCTLs, which coat the bacterial surface and counteract AMP activity. Our study describes a mechanism by which the insect symbiotic microbiome offsets gut immunity to achieve homeostasis.

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Year:  2016        PMID: 27572642     DOI: 10.1038/nmicrobiol.2016.23

Source DB:  PubMed          Journal:  Nat Microbiol        ISSN: 2058-5276            Impact factor:   17.745


  28 in total

1.  Species-specific mechanisms of cytotoxicity toward immune cells determine the successful outcome of Vibrio infections.

Authors:  Tristan Rubio; Daniel Oyanedel; Yannick Labreuche; Eve Toulza; Xing Luo; Maxime Bruto; Cristian Chaparro; Marta Torres; Julien de Lorgeril; Philippe Haffner; Jeremie Vidal-Dupiol; Arnaud Lagorce; Bruno Petton; Guillaume Mitta; Annick Jacq; Frédérique Le Roux; Guillaume M Charrière; Delphine Destoumieux-Garzón
Journal:  Proc Natl Acad Sci U S A       Date:  2019-06-20       Impact factor: 11.205

2.  Interactions of commensal and pathogenic microorganisms with the mucus layer in the colon.

Authors:  Rui Cai; Chen Cheng; Jianwei Chen; Xiaoqiang Xu; Chao Ding; Bing Gu
Journal:  Gut Microbes       Date:  2020-03-29

3.  mosGCTL-7, a C-Type Lectin Protein, Mediates Japanese Encephalitis Virus Infection in Mosquitoes.

Authors:  Ke Liu; Yingjuan Qian; Yong-Sam Jung; Bin Zhou; Ruibing Cao; Ting Shen; Donghua Shao; Jianchao Wei; Zhiyong Ma; Puyan Chen; Huaimin Zhu; Yafeng Qiu
Journal:  J Virol       Date:  2017-04-28       Impact factor: 5.103

4.  Topical Fungal Infection Induces Shifts in the Gut Microbiota Structure of Brown Planthopper, Nilaparvata lugens (Homoptera: Delphacidae).

Authors:  Zhengliang Wang; Yiqing Cheng; Yandan Wang; Xiaoping Yu
Journal:  Insects       Date:  2022-06-08       Impact factor: 3.139

Review 5.  An Overview on the Impact of Microbiota on Malaria Transmission and Severity: Plasmodium-Vector-Host Axis.

Authors:  Zeph Nelson Omondi; Ayşe Caner
Journal:  Acta Parasitol       Date:  2022-10-20       Impact factor: 1.534

6.  Microbial interactions in the mosquito gut determine Serratia colonization and blood-feeding propensity.

Authors:  Elena V Kozlova; Shivanand Hegde; Christopher M Roundy; George Golovko; Miguel A Saldaña; Charles E Hart; Enyia R Anderson; Emily A Hornett; Kamil Khanipov; Vsevolod L Popov; Maria Pimenova; Yiyang Zhou; Yuriy Fovanov; Scott C Weaver; Andrew L Routh; Eva Heinz; Grant L Hughes
Journal:  ISME J       Date:  2020-09-07       Impact factor: 10.302

Review 7.  Challenges and future directions for studying effects of host genetics on the gut microbiome.

Authors:  Serena Sanna; Alexander Kurilshikov; Adriaan van der Graaf; Jingyuan Fu; Alexandra Zhernakova
Journal:  Nat Genet       Date:  2022-02-03       Impact factor: 41.307

8.  Unravelling the relationship between the tsetse fly and its obligate symbiont Wigglesworthia: transcriptomic and metabolomic landscapes reveal highly integrated physiological networks.

Authors:  XiaoLi Bing; Geoffrey M Attardo; Aurelien Vigneron; Emre Aksoy; Francesca Scolari; Anna Malacrida; Brian L Weiss; Serap Aksoy
Journal:  Proc Biol Sci       Date:  2017-06-28       Impact factor: 5.349

9.  Hepatopancreas-Specific Lectin Participates in the Antibacterial Immune Response by Regulating the Expression of Antibacterial Proteins.

Authors:  Xiao-Tong Cao; Xiao-Yi Pan; Meng Sun; Yan Liu; Jiang-Feng Lan
Journal:  Front Immunol       Date:  2021-06-11       Impact factor: 7.561

10.  Proteome-wide prediction of bacterial carbohydrate-binding proteins as a tool for understanding commensal and pathogen colonisation of the vaginal microbiome.

Authors:  François Bonnardel; Stuart M Haslam; Anne Dell; Ten Feizi; Yan Liu; Virginia Tajadura-Ortega; Yukie Akune; Lynne Sykes; Phillip R Bennett; David A MacIntyre; Frédérique Lisacek; Anne Imberty
Journal:  NPJ Biofilms Microbiomes       Date:  2021-06-15       Impact factor: 7.290

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