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1.
杀鲑气单胞菌(Aeromonas salmonicida)是一种重要的鱼类致病菌,可以感染多种海淡水鱼类。杀鲑气单胞菌包括5个亚种,目前常用的生理生化特征和16S rDNA序列分析方法很难实现亚种的快速精确区分。为实现杀鲑气单胞菌亚种的快速鉴定和检测,针对我国常见的杀鲑气单胞菌杀鲑亚种(A. salmonicida subsp. salmonicida)和杀日本鲑亚种(A. salmonicida subsp. masoucida),本研究开发了其特异性的PCR检测方法。根据Gene Bank已公布的杀鲑气单胞菌基因组信息,选择杀鲑亚种phoB基因和杀日本鲑亚种LOC111476736基因作为目标基因,根据其序列设计特异性引物,进一步对PCR反应的退火温度、引物浓度、dNTPs浓度、Mg2+浓度和酶浓度5个方面进行了优化,并测试了该方法的特异性、敏感性和应用效果。结果显示,2对引物分别可以扩增出杀鲑气单胞菌杀鲑亚种522 bp的phoB特异性基因片段和杀日本鲑亚种515 bp的LOC111476736特异性基因片段。杀鲑亚种特异性引物最适退火温度为64 ℃,10 µmol/L引物、2 mmol/L dNTPs、25 mmol/L MgSO4和1 U/µL KOD酶的最适添加量分别为1.5、2、1.5和0.5 µL。杀日本鲑亚种特异性引物最适退火温度为64 ℃,10 µmol/L引物、2 mmol/L dNTPs、25 mmol/L MgSO4和1 U/µL KOD酶的最适添加量分别为0.75、1、1.5和0.5 µL。以鳗弧菌(Vibrio anguillarum)、美人鱼发光杆菌(Photobacterium damselae)、杀鱼爱德华氏菌(Edwardsiella piscicida)、杀鲑气单胞菌其他亚种等14种其他水产病原菌或常见环境菌为模板进行PCR检测,均无特异性条带。该方法对杀鲑气单胞菌杀鲑亚种的检测灵敏度为12.8 CFU/反应(菌体)或17.6 fg/反应(DNA),对杀鲑气单胞菌杀日本鲑亚种的检测灵敏度为23.8 CFU/反应(菌体)或27.2 fg/反应(DNA)。利用杀鲑气单胞菌杀鲑亚种和杀日本鲑亚种分别对大菱鲆(Scophthalmus maximus)进行人工感染实验,感染后取病鱼组织进行PCR检测,结果显示,本方法可以从感染后的大菱鲆中分别检测到相应病原。综上所述,本研究建立了杀鲑气单胞菌杀鲑亚种和杀日本鲑亚种的特异性PCR检  相似文献   

2.
用玻璃纸平板法提取了杀鲑气单胞菌杀日本鲑亚种Aeromonassal monicida masoucida的胞外产物(ECP)。毒性试验证实,ECP对剑尾鱼Xiphophorus helleri具有致死性,其半致死量(LD50)为4.72μg蛋白/g体重。SDS-PAGE表明,ECP由13条蛋白带组成。利用大鼠抗ECP血清进行的Western-blot印迹显示,组成ECP的13条蛋白带中有7条具有免疫原性,能够引发机体的免疫应答反应产生抗体,其分子量分别为88、70、42、39、36、22和15kDa。  相似文献   

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大西洋鲑杀鲑气单胞菌的分离鉴定   总被引:3,自引:0,他引:3  
从皮肤溃烂的大西洋鲑(Salmon salar)肌肉、肝、肾分离到一致病性的菌株(AB080226),经人工感染实验证实其为该病的病原菌,研究了该菌的形态、生理生化特征并对其16SrDNA序列进行了在线Classifer和Blast分析。结果显示:该菌为革兰氏阴性杆菌,葡萄糖氧化发酵阳性,氧化酶检测阳性,0%NaCl生长;能利用甘露醇,不具运动性,能发酵麦芽糖,葡萄糖产酸阳性,精氨酸双水解酶阳性,苯丙氨酸脱氨酶阴性;该菌属于气单胞菌属的细菌,在系统发育树上与杀鲑气单胞菌形成一个簇群,同源性高达99.9%以上。综合形态学、生理生化特征及16SrDNA序列鉴定其为杀鲑气单胞菌(Aeromonas salmonicida)。  相似文献   

5.
自凡纳滨对虾养殖水体中分离得到1株杀鲑气单胞菌YK-48,为确定YK-48与在鞍山养殖场金鱼体内分离出来的AS.17和烟台大西洋鲑体内分离出来的S68和S121等不同来源的杀鲑气单胞菌的毒力基因特征之间是否存在差异,对YK-48的形态、生理生化特征和药物敏感性进行分析,随后进行全基因组测序,对4株杀鲑气单胞菌进行基因组...  相似文献   

6.
为探讨利用鱼类行为及血细胞数量变化预警杀鲑气单胞菌(Aeromonas salmonicida)病害发生的可行性,监测了生产中感染杀鲑气单胞菌的大西洋鲑(Salmo salar L.)的游泳行为,以及杀鲑气单胞菌攻毒后大西洋鲑血细胞数量的变化。实验采用同一养殖基地和同一批次的大西洋鲑,其中现场实验鱼选自生产车间健康的和感染杀鲑气单胞菌的养殖鱼,攻毒实验中处理组实验鱼每尾背肌注射100μL、浓度为3.05×107CFU/m L的菌液,对照组注射等体积灭菌生理盐水。现场实验表明,感染杀鲑气单胞菌的大西洋鲑临界游泳速度较健康鱼低26.7%(P0.05),摆尾频率与游泳速度的线性回归方程的斜率也存在显著差异(P0.05)。攻毒实验表明,从攻毒的第4天开始,处理组大西洋鲑白细胞、淋巴细胞、单核细胞和粒细胞数量较对照组均发生显著变化,其中第6天的变化最为显著,白细胞总数、粒细胞数分别降低了2.8%和43.9%(P0.05),淋巴细胞数及单核细胞数分别升高了63.3%和23.9%(P0.05),且处理组4种血细胞数随时间呈现显著的线性变化(P0.05)。研究结果表明通过监测大西洋鲑游泳行为(临界游泳速度和摆尾频率)以及血细胞相关指标的变化可快速判断其健康状况,为病害的早期预警提供依据。  相似文献   

7.
2018年和2019年,山东省烟台市蓬莱市一养殖场工厂化养殖的绿鳍马面鲀(Thamnaconus septentrionalis)和许氏平鲉(Sebastes schlegeli)发病死亡,主要症状为嘴部溃疡、红肿和出血。从发病鱼内脏中均可分离到大量形态一致的优势菌,分别命名为2018TS-1和2019SS-1,分离菌株经16S rRNA测序、生理生化鉴定和vapA基因分析确定为杀鲑气单胞菌杀日本鲑亚种(Aeromonas salmonicida subsp. masoucida)。人工感染结果显示,2018TS-1和2019SS-1分别能引起绿鳍马面鲀和许氏平鲉的死亡,被感染鱼呈嘴部红肿症状,与自然发病症状一致,其半数致死量分别为1.78×105和0.89×105 CFU/尾。本研究首次报道了国内工厂化养殖绿鳍马面鲀和许氏平鲉感染杀鲑气单胞菌的病例,是目前人工养殖绿鳍马面鲀的首个疾病报道,也是继大西洋鲑(Salmo salar)、大菱鲆(Scophthalmus maximus)和裸盖鱼(Anoplopoma fimbria)等品种后,在山东省海水养殖鱼类中再次发现杀鲑气单胞菌杀日本鲑亚种的感染。本研究结果丰富了杀鲑气单胞菌杀日本鲑亚种的感染宿主范围,也为绿鳍马面鲀和许氏平鲉养殖的病害防控提供依据。  相似文献   

8.
为观察中草药对杀鲑气单胞菌(Aeromonas salmonicida)的体外抑菌效果,采用水煎煮法提取黄柏、黄芩等12种中草药活性成分,首先采用纸片法判断中草药有无抑菌作用,然后使用试管二倍稀释法测定具有抑菌效果的2种中药的最小抑菌浓度。结果表明,黄芩和连翘抑菌效果较好,黄芩的最小抑菌浓度为10 mg/mL,连翘的最小抑菌浓度为20 mg/mL,其余10种中草药抑制杀鲑气单胞菌效果不佳。  相似文献   

9.
从患溃疡病的养殖刺参(Apostichopus japonicus)病灶处分离出1株优势菌H1,以浸浴、创伤浸浴、体腔注射和体壁肌肉注射等方式进行感染实验,证实菌株H1为养殖刺参溃疡病病原菌,并证明该菌通过体表创伤侵入的方式感染刺参,以创伤浸浴和体壁肌肉注射感染的LD50(半数致死量)分别为2.26×107CFU/尾和1.80×107CFU/尾。经形态学观察、生理生化特性分析和mini API系统鉴定,确定菌株H1为杀鲑气单胞菌杀日本鲑亚种(Aeromonas salmonicida ma-soucida)。提取菌株H1的胞外产物(ECP)进行致病性实验,结果表明ECP可导致刺参死亡,其对刺参的LD50为5.24μg蛋白/g体质量。H1-ECP具有酪蛋白酶、明胶蛋白酶、几丁质酶和淀粉酶活性,并具有溶血素活性;对底物偶氮酪蛋白(Azocasin)作用的酶比活力可达到674.5活力单位/mg蛋白,最适作用温度为50℃;对热不稳定,70℃作用30 min时,酪蛋白酶活性降到0;100℃作用30 min,ECP对刺参的毒性消失;ECP酶活可被10 mmol/L EDTA完全抑制,可被5 mmol/L PMSF抑制98.8%,Ca2 和Mg2 可使酶活性分别提高约9%和4%。结论认为,该病原菌通过体表创伤侵入方式感染宿主刺参,菌株H1胞外产物是其对刺参致病的因子之一。  相似文献   

10.
为了预防大菱鲆疥疮病,本研究将杀鲑气单胞菌菌株HHSM1905经甲醛灭活制备成灭活疫苗,通过腹腔注射途径免疫健康大菱鲆;对免疫后大菱鲆血清抗体效价、血清溶菌酶(LZM)活性、酸性磷酸酶(ACP)活性及疫苗保护率进行测定;以β-actin为内参,对免疫相关基因(IL-1β、TLR-5、MHCⅠ、MHCⅡ-α、CD4)表达情况进行定量PCR分析。结果显示,在免疫后2周时,疫苗组血清抗体效价显著高于对照组并达到最大值;疫苗组LZM活性在免疫2周时达到峰值,4周时仍与对照组保持显著差异;疫苗组ACP活性在免疫后的2周达到峰值,与对照组差异显著;灭活疫苗相对保护率(RPS)为72.72%。免疫组与对照组相比,IL-1β、TLR-5、MHCⅠ、MHCⅡ-α、CD4的表达量均呈上调趋势,与对照组差异显著。本研究成功制备了大菱鲆用杀鲑气单胞菌灭活疫苗,其对大菱鲆疥疮病能够起到一定的预防作用,可为大菱鲆养殖过程中疾病预防提供新方法。  相似文献   

11.
对从1尾病死的观赏用龙胆石斑鱼Epinephelus lanceolatus L.中分离到的细菌,进行了形态特征、理化特性和对抗菌类药物的敏感性等较系统的表观生物学性状鉴定。同时,测定了16S rRNA基因序列、分析了相关细菌相应序列的同源性、构建了系统发生树。结果表明,供试两株纯培养菌(编号:HQ061227-1、HQ061227-2)为发光杆菌属Photobacterium(Beijerinck 1889)的美人鱼发光杆菌美人鱼亚种P.damselae subsp.damselae(Love et al.1982;Smith et al.1991),用HQ061227-1株作为代表菌株的16S rRNA基因序列长度(不包括引物结合区)为1469bp(GenBank登录号:EF635307),与GenBank数据库中美人鱼发光杆菌美人鱼亚种的同源性在99%。药敏试验结果显示,对供试37种抗菌药物中的青霉素G等4种耐药,对头孢唑啉等32种敏感,对氨苄青霉素低敏。  相似文献   

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Atypical Aeromonas salmonicida (AAS) causes generalized lethal infections in farmed Arctic charr, Salvelinus alpinus (L.), and European grayling, Thymallus thymallus (L.), and is thus a serious threat for culture of these fish species. Virulence factors were studied among isolates of AAS from Arctic charr (n = 20), European grayling (n = 19) and other fish species (n = 20), of which 48 were of Finnish and 11 of Swedish origin. All isolates produced an A-layer. Extracellular products (ECP) of the AAS isolates did not produce detectable gelatinase and caseinase activity in test assays. Analysis of the same ECP preparations with substrate sodium dodecyl sulphate-polyacrylamide gel electrophoresis showed weak proteolytic activity, indicating the different sensitivity of the detection methods used. The ECP from AAS isolates showed low cytotoxic activity against cultured cells. However, the ECP did not induce mortality in challenged Arctic charr. The results suggest that toxic components, like ECP, secreted by the bacterium may not be the major virulence factor in AAS-infection in Arctic charr and European grayling, and hence the pathogenesis also differs from the pathogenesis of AAS-infection in Atlantic salmon, Salmo salar L.  相似文献   

14.
Turbot was shown to be sensitive to injection challenges by Aeromonas salmonicida subsp. achromogenes (Asa). A systemic disease was induced and the bacterium was isolated from various internal organs. Histopathological changes involved haemorrhages, necrosis and degeneration in skin and muscle, haemorrhages and necrosis in kidney, degeneration in the heart muscle, and fusion of the secondary gill lamellae. A polyvalent commercial salmon vaccine, containing A. salmonicida subsp. salmonicida as one of five antigens, did not confer protection in turbot against an experimental Asa infection 13 weeks post-vaccination. Vaccination induced a significant antibody response against Asa cells but not against extracellular products of the bacterium. The results of the study indicate that Asa may be a potential threat to turbot farming and that the development of new turbot vaccines is needed.  相似文献   

15.
Photobacteriosis, caused by Photobacterium damselae subsp. piscicida (Phdp), is a serious disease in marine fish species worldwide. To date, the epidemiological characterization of this pathogen in Taiwan remains limited. In this study, we collected 39 Phdp isolates obtained from different farmed fish for phenotypic and genotypic analysis. Phenotype bioassays using API-20E and API-20NE systems showed that the Phdp is a homogeneous group. However, genotyping using the pulsed-field gel electrophoresis (PFGE) technique revealed genetic variability among Phdp isolates when 13 and 11 different PFGE band patterns were obtained with SmaI and NotI as restriction enzymes, respectively. Phylogenetic analysis using 16S rDNA and the Fur gene clustered Taiwanese isolates and other species of P. damselae in the same clade. In contrast, the ToxR phylogenetic tree, a powerful discriminatory marker, separated the two subspecies. Furthermore, the virulence-associated genes, AIP56, P55, PDP_0080, Sod and Irp1, were detected from all isolates. Virulence testing with nine representative isolates in cobia (Rachycentron canadum) and Asian sea bass (Lates calcarifer) showed that some were highly pathogenic with 80%–100% mortality rates. This study provides epidemiological data of Phdp infections in farmed fish in Taiwan, which is necessary to develop comprehensive prevention and control strategies for the disease.  相似文献   

16.
The metalloendopeptidase AsaP1 is one of the major extracellular virulence factors of A. salmonicida subsp. achromogenes, expressed as a 37‐kDa pre‐pro‐peptide and processed to a 19‐kDa active peptide. The aim of this study was to construct mutant strains secreting an AsaP1‐toxoid instead of AsaP1‐wt, to study virulence of these strains and to test the potency of the AsaP1‐toxoid bacterin and the recombinant AsaP1‐toxoids to induce protective immunity in Arctic char. Two A. salmonicida mutants were constructed that secrete either AsaP1E294A or AsaP1Y309F. The secreted AsaP1Y309F‐toxoid had weak caseinolytic activity and was processed to the 19‐kDa peptide, whereas the AsaP1E294A‐toxoid was found as a 37‐kDa pre‐pro‐peptide suggesting that AsaP1 is auto‐catalytically processed. The LD50 of the AsaP1Y309F‐toxoid mutant in Arctic char was significantly higher than that of the corresponding wt strain, and LD50 of the AsaP1E294A‐toxoid mutant was comparable with that of an AsaP1‐deficient strain. Bacterin based on AsaP1Y309F‐toxoid mutant provided significant protection, comparable with that induced by a commercial polyvalent furunculosis vaccine. Detoxification of AsaP1 is very hard, expensive and time consuming. Therefore, an AsaP1‐toxoid‐secreting mutant is more suitable than the respective wt strain for production of fish bacterins aimed to protect against atypical furunculosis.  相似文献   

17.
Since 2011, high mortality rates and symptoms consistent with vibriosis have been observed in farmed amberjack (Seriola dumerili) in Japan. To identify 41 strains isolated from diseased amberjack, a multilocus sequence analysis using nine concatenated genes (ftsZ, gapA, gyrB, mreB, pyrH, recA, rpoA, topA and 16S rRNA) was conducted. Twenty‐seven strains were identified as Vibrio harveyi, suggesting an epidemic of V. harveyi infection in amberjack farms. Other strains were identified as Vibrio anguillarum, Vibrio owensii and Photobacterium damselae subsp. damselae. To develop an efficient diagnostic method for vibriosis in amberjack, a multiplex PCR system was developed to identify V. anguillarum, V. harveyi and P. damselae subsp. damselae. The method successfully discriminated between these three bacterial species, with amplification products of 350 bp for V. anguillarum, 545 bp for V. harveyi and 887 bp for Pdamselae subsp. damselae and can be used for diagnosis in aquaculture farms.  相似文献   

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Aerolysin (aer) is one of the most important and abundant virulence factors in the infection of fish by Aeromonas veronii. A comprehensive study on the molecular characterization and pathogenicity of the aer gene from 34 A. veronii isolates from diseased carp and catfish was carried out and its interactome was analysed to observe the functional correlations between aer and other proteins within the A. veronii network. The PCR‐based amplification of aer from the 34 isolates of A. veronii showed more aer‐positive isolates from catfish with a high pathogenic potential in the in vivo challenge test than the carp fish. The analysis of aer gene sequence from challenged fish revealed significant sequence divergence according to the types and geographical distribution of the fish. The networking analysis of aer from the model A. veronii B565 revealed histidine kinase (cheA) as the most functional interacting partner. The study of the interaction between aer from the experimental A. veronii and cheA demonstrated that the A chain of cheA plays a more important role than the corresponding B chain during contact, and a linker sequence of 15 residues controlled the entire interaction process. Therefore, cheA could be an excellent drug target for controlling A. veronii infection of fish.  相似文献   

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