Interactions between the gut bacterial community of Exopalaemon carinicauda and infection by Enterocytozoon hepatopenaei

IF 3.6 3区 生物学 Q1 ZOOLOGY
Wanying Li , Songsong Hua , Zhengwei Du , Haiyi Jiang , Shanshan Jiang , Miaomiao Yu , Wazir Ali Baloch , Sumera Noonari , Binlun Yan , Huan Gao
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Abstract

To explore the relationship between the intestinal flora of Exopalaemon Carinicauda and infection by Enterocytozoo Hepatopenaei (EHP), we analyzed the species and richness of gut microbiota in infected individuals in different EHP load groups [i.e., control (C), high load (H), and low load (L)] using gene sequencing after infection. The results showed that the abundance of intestinal flora in the high-load EHP group was significantly lower than that in the healthy group. Based on the UPGMA cluster tree and PCoA analysis, with comparisons to healthy shrimp, the gut microbiota of the EHP high load and low load groups were clustered into one branch, which indicated that EHP infection changed the composition of the gut microbiota of infected shrimps. The heat map analysis of species abundance clustering revealed that the dominant bacteria in the low EHP load group and the control group were beneficial genera such as Lactococcus, Ligilactobacillius, and Bifidobacterium, but the dominant bacteria in the high EHP load group were harmful genera such as Pseudomonas, Photobacterium, and Candidatus hepatincola. The functions of the intestinal flora predicted that most genes related to metabolism were more abundant in healthy shrimp, most genes related to metabolism and the organisms’ system were more abundant in the low EHP load group, and most genes related to diseases and environmental information processing were more abundant in the high EHP load group. After separation and purification, the dominant bacteria (Bifidobacterium animalis in healthy shrimp and Lactococcus garvieae in the low EHP load group) and the non-dominant bacteria (Macrococus caseolyticus in the low EHP load group) were obtained. Each of these isolated strains were used together with EHP to infect E. carinicauda, and the results showed that Bifidobacterium animali and Lactococcus garvieae significantly reduced the EHP load in EHP-infected individuals. At the same time, the morphology and structure of the hepatopancreas and intestinal tissue of EHP-infected E. carinicauda were improved. No improvement was seen in tissue that was infected with Macrococus caseolyticus.

Abstract Image

Exopalaemon carinicauda肠道细菌群落与肝肠孢子虫感染之间的相互作用。
为了探讨卡氏栉水母(Exopalaemon Carinicauda)肠道菌群与Enterocytozoo Hepatopenaei(EHP)感染之间的关系,我们在感染后利用基因测序分析了不同EHP负荷组[即对照组(C)、高负荷组(H)和低负荷组(L)]受感染个体肠道微生物群的种类和丰富度。结果显示,高负荷 EHP 组的肠道菌群丰度明显低于健康组。根据 UPGMA 聚类树和 PCoA 分析,与健康虾比较,EHP 高负载组和低负载组的肠道微生物群聚成一个分支,这表明 EHP 感染改变了感染虾的肠道微生物群组成。物种丰度聚类热图分析表明,EHP低负荷组和对照组的优势菌为乳球菌、ligilactobacillius和双歧杆菌等有益菌属,而EHP高负荷组的优势菌为假单胞菌、光杆菌和 hepatincola念珠菌等有害菌属。根据肠道菌群的功能预测,健康虾体内与新陈代谢有关的基因较多,低 EHP 负荷组中与新陈代谢和机体系统有关的基因较多,高 EHP 负荷组中与疾病和环境信息处理有关的基因较多。经过分离和纯化,得到了优势菌(健康虾中的动物双歧杆菌和低 EHP 负荷组中的 Lactococcus garvieae)和非优势菌(低 EHP 负荷组中的 Macrococus caseolyticus)。结果表明,动物双歧杆菌(Bifidobacterium animali)和加维乳酸球菌(Lactococcus garvieae)能显著降低 EHP 感染者的 EHP 负荷。同时,感染 EHP 的鲤鱼肝胰腺和肠道组织的形态和结构也得到了改善。而感染 Macrococus caseolyticus 的组织则没有得到改善。
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来源期刊
CiteScore
6.10
自引率
5.90%
发文量
94
审稿时长
1 months
期刊介绍: The Journal of Invertebrate Pathology presents original research articles and notes on the induction and pathogenesis of diseases of invertebrates, including the suppression of diseases in beneficial species, and the use of diseases in controlling undesirable species. In addition, the journal publishes the results of physiological, morphological, genetic, immunological and ecological studies as related to the etiologic agents of diseases of invertebrates. The Journal of Invertebrate Pathology is the adopted journal of the Society for Invertebrate Pathology, and is available to SIP members at a special reduced price.
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