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饥饿胁迫对克氏原螯虾生理生化和肠道健康的影响
引用本文:赖婷,聂子盈,张小雨,孙存鑫,徐骁迪,蒋青,刘明阳,刘波,王爱民.饥饿胁迫对克氏原螯虾生理生化和肠道健康的影响[J].水生生物学报,2022,46(1):88-97.
作者姓名:赖婷  聂子盈  张小雨  孙存鑫  徐骁迪  蒋青  刘明阳  刘波  王爱民
作者单位:南京农业大学无锡渔业学院;中国水产科学研究院淡水渔业研究中心;西南科技大学生命科学与工程学院;盐城工学院海洋与生物工程学院
基金项目:国家现代农业产业技术体系专项(CARS-48);江苏省农业科技自主创新项目(CX(17)2007-01);江苏省现代农业产业技术体系项目(JFRS-03);南京农业大学大学生创新训练计划项目(1915A22)资助。
摘    要:研究旨在探究饥饿胁迫对克氏原螯虾(Procambarus clarkii)血淋巴生理生化指标、肠道组织病理和肠道微生态的影响.对克氏原螯虾进行为期28d的饥饿胁迫,分别于饥饿0、7d、14d和28d采集血淋巴和肠道样品.血淋巴生化分析结果表明,谷丙转氨酶(ALT)没有发生显著变化,血糖(GLU)水平随着饥饿时间延长逐渐...

关 键 词:克氏原螯虾  饥饿胁迫  肠道健康  血液生理  16S  rRNA
收稿时间:2020-09-07

EFFECTS OF STARVATION STRESS ON HEMOLYMPH PHYSIOLOGY AND INTESTINAL HEALTH OF PROCAMBARUS CLARKII
LAI Ting,NIE Zi-Ying,ZHANG Xiao-Yu,SUN Cun-Xin,XU Xiao-Di,JIANG Qing,LIU Ming-Yang,LIU Bo,WANG Ai-Min.EFFECTS OF STARVATION STRESS ON HEMOLYMPH PHYSIOLOGY AND INTESTINAL HEALTH OF PROCAMBARUS CLARKII[J].Acta Hydrobiologica Sinica,2022,46(1):88-97.
Authors:LAI Ting  NIE Zi-Ying  ZHANG Xiao-Yu  SUN Cun-Xin  XU Xiao-Di  JIANG Qing  LIU Ming-Yang  LIU Bo  WANG Ai-Min
Institution:(Wuxi Fisheries College,Nanjing Agricultural University,Wuxi,214081 China;Freshwater Fisheries Research Center of Chinese Academy of Fishery Sciences,Wuxi 214081,China;School of Life Science and Engineering,Southwest University of Science and Technology,Mianyang 621010,China;School of Marine and Biological Engineering,Yancheng Institute of Technology,Yancheng 224051,China)
Abstract:Procambarus clarkii is originated from the south-central United States and northern Mexico. In the 1930s, it was introduced to China as a freshwater economic crustacean via Japan because of its good economic benefits and a characteristic industrial chain. As the consumption hotspot of P. clarkii to grow, fundamental researches on the cultivation of P. clarkii were incredibly important. At present, researchers carried out a large number of analysis on the effects of starvation on the physiology, endocrine, and digestive systems of crustacea. To explore the effects of starvation stress on hemolymph physiological biochemical indexes, intestinal histology and intestinal flora of P. clarkii through histopathology, high-throughput sequencing and bioinformatics analysis techniques, P. clarkii was subjected to a 28-day starvation. Hemolymph and intestinal tract were collected at 0, 7, 14 and 28 days of starvation, respectively. Hemolymph was collected to assess the physiological status of P. clarkii by measuring conventional physiological and biochemical indexes; the intestinal tract was collected in 4% paraformaldehyde fixative for intestinal HE staining and TUNEL cell apoptosis detection; and intestinal contents were taken for 16S rRNA sequencing. The results of hemolymph biochemical analysis showed that alanine aminotransferase (ALT) did not change significantly; glucose (GLU) levels gradually decreased with the prolongation starvation (P<0.05). The levels of urea (UREA) and triglyceride (TG) first increased and then decreased (P<0.05), total protein (TP) and aspartate aminotransferase (AST) first decreased and then increased (P<0.05). Starvation stress caused significant changes in the intestinal morphology of P. clarkia: the intestinal cavity became wider, the intestinal villi were atrophied, the thickness of the muscle layer became thinner, and the tissue cell apoptosis index increased. High-throughput sequencing was performed on the 16S rRNA V3-V4 region of intestinal microbes. The Alpha diversity analysis showed that the highest diversity of intestinal microbes was on the day 7 of starvation. At the phylum level, the 12 samples were mainly anaerobic microorganisms such as Proteobacteria, Bacteroidetes, Firmicutes, etc. However, on the 7th day of starvation stress, the population abundance of anaerobic microorganisms (Bacteroidetes, Firmicutes, and Proteobacteria) decreased significantly; at the genetic level, the abundance of Bacteroides, Citrobacter, Streptococcus, Neisseria and Haemophilus increased significantly. The results indicated that P. clarkii may adapt to the process of starvation metabolism by changing the energy material utilization pathways and the intestinal microbiological composition structure.
Keywords:Procambarus clarkii  Starvation stress  Intestinal health  Hemolymph physiology  16S rRNA
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