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1.
以鲎血为主要原料制备鲎试剂是我国鲎资源开发的关键产业链。我国鲎种群数量逐年下降,为实现鲎资源的保护和可持续利用,开展对中国鲎造血作用机理的相关研究刻不容缓。本研究向中国鲎体内注射N-乙酰半胱氨酸(NAC)和灭活鳗弧菌(V),比较注射后0, 6, 12, 24, 48小时(h)中国鲎的血淋巴细胞总数、活性氧含量及非特异性免疫酶活性变化。结果表明,与对照组相比,注射NAC后血淋巴细胞总数(THC)、活性氧(ROS)、丙二醛(MDA)活性均有下降趋势,超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、总抗氧化酶(T-AOC)、溶菌酶(LZM)、碱性磷酸酶(AKP)活性均有升高趋势。NAC与不同浓度V共同刺激下,THC、ROS、MDA含量相对仅注射NAC的下降有所减缓,其它酶活性有所升高。而血蓝蛋白(HC)在整个实验中无明显变化。6-48h,NAC组的THC、ROS与V组、NAC和V共刺激组相比呈降低趋势,共同刺激下SOD活性显著高于其它组。48h,NAC、V及共刺激下CAT、T-AOC组间无显著差异,但均高于对照组。NAC+106V的MDA含量在48h最低,AKP活性在12-48h呈升高趋势,而NAC组的LZM活性在48h最高。注射NAC可降低THC、ROS,共刺激可缓和下降,V组THC、ROS升高,但其余血淋巴参数均提高,由此推测NAC和V均能刺激中国鲎血淋巴细胞的免疫机能;机体内的ROS含量对中国鲎血淋巴细胞增殖及再生起着重要作用。  相似文献   
2.
副溶血弧菌(Vibrio parahaemolyticus)是人-兽-鱼共患的致病菌,严重威胁食品安全和人类的健康。为了研究宿主嗜中性粒细胞清除细菌感染的动态变化过程,利用红色荧光蛋白标记的副溶血弧菌Vp57~(RFP)菌株感染受精后48 h(hours post fertilization,hpf)的斑马鱼(Danio rerio)幼鱼耳泡,建立局部感染模型,并以大肠杆菌(Escherichia coli)Ec01菌株为对照,系统比较了副溶血弧菌和大肠杆菌的半数致死剂量(median lethal dose,LD_(50))、存活曲线以及和嗜中性粒细胞相互作用的动态过程,RT-qPCR验证炎症相关基因il1b和il10在感染前后的表达量变化。结果显示副溶血弧菌和大肠杆菌感染斑马鱼幼鱼的LD_(50)分别为7.90×10~8 CFU/mL和1.14×10~(11) CFU/mL,与感染大肠杆菌相比,斑马鱼感染副溶血弧菌后招募嗜中性粒细胞的速度更快,且数量更多。RT-qPCR结果发现斑马鱼感染副溶血弧菌后在相同时间点能够激活更高的il1b和il10基因的表达,引起强烈的炎症反应。基于以上研究,我们建立的副溶血弧菌-斑马鱼幼鱼耳泡局部感染模型,为进一步研究嗜中性粒细胞清除副溶血弧菌感染的动态过程,以及深入揭示天然免疫应答机制提供了依据。  相似文献   
3.
本试验分析体质量(190.34±2.13)g的红鳍东方鲀白介素基因IL-1b、IL-8和IL-10的序列特征,检测其在红鳍东方鲀脑、鳃、心脏、肌肉、肝脏和脾脏中的表达,以及每尾红鳍东方鲀注射密度1×10^7 cfu/mL的哈维氏弧菌菌液0.1 mL后0、12、24、48 h在肝脏和脾脏中的表达。试验结果表明,IL-1b、IL-8和IL-10基因的序列全长分别为771、822 bp和844 bp。3个基因在健康成鱼脑、鳃、心脏、肌肉、肝脏、脾脏中均有表达,其中肝脏和脾脏表达显著(P<0.05)。感染哈维氏弧菌后12 h,IL-1b基因在肝脏中显著上调,12 h和48 h在脾脏中显著升高(P<0.05)。感染哈维氏弧菌后12 h和24 h IL-8基因在肝脏和脾脏中均显著上调(P<0.05);而感染后24 h和48 h IL-10基因在肝脏中显著升高,在脾脏中12 h和48 h显著升高(P<0.05)。笔者首次探讨红鳍东方鲀IL-1b、IL-8和IL-10基因的序列特性及表达特征,为研究3个基因的原核表达提供了试验信息,将为进一步深入探究重组蛋白活性及其在红鳍东方鲀健康养殖中的应用奠定基础。  相似文献   
4.
Vibrio parahaemolyticus causes acute human gastroenteritis and is often linked to consumption of raw oysters. Previous investigations indicated that refrigerated seawater depuration at 12.5°C could significantly reduce V. parahaemolyticus contamination in Pacific oysters; however, further optimization is necessary to achieve the regulatory target of >3.52 log most probable number (MPN)/g reduction. The current study investigated influences of algal feeding on efficacy of depuration to reduce V. parahaemolyticus in raw oysters. A V. parahaemolyticus cocktail (10290, 10292, 10293, BE 98–2029, 027-1c1) was mixed in artificial seawater (70 L) to inoculate oysters (n = 35) at 4–5 log MPN/g. Inoculated oysters were subjected to depuration with feed (algae = 0.036 ml/gram of oyster) and without feed at 12.5°C. Oysters (n = 5) were analyzed for V. parahaemolyticus using a three-tube MPN method after 0, 1, 3, 5, and 6 days of depuration. Depuration (6 days) achieved average V. parahaemolyticus reductions of 2.75 log MPN/g and 3.03 log MPN/g in the fed and unfed systems, respectively; however, feeding status did not significantly impact the efficacy of depuration to reduce V. parahaemolyticus in Pacific oysters. Further optimization of depuration is necessary to achieve the regulatory target for V. parahaemolyticus decontamination in raw oysters.  相似文献   
5.
嗜盐古菌存在于高盐水体中,是高盐环境微生物种群的重要组成部分。本研究利用从日晒盐场结晶池卤水中分离得到的3株红色嗜盐古菌,分别命名为Haloarcula sp.HG-1、Haloferax sp.KN-4和Halorubrum sp.IT-5。采用悉生实验系统,探讨不同盐度(30、100和150)条件下3株古菌能否作为卤虫(Artemia)的唯一饵料,并比较其作为饵料对卤虫存活、生长和抗鳗弧菌(Vibrio anguillarum)感染能力的影响。结果表明,在盐度30的悉生系统中,投喂3株古菌组卤虫存活率和体长均保持较高水平;鳗弧菌攻毒条件下,卤虫存活率有所下降,其中投喂Haloferax sp.KN-4菌株组卤虫抗鳗弧菌感染能力最强。正常和攻毒条件下,在盐度100和盐度150悉生系统中分别投喂3株古菌,卤虫均保持较高存活率和体长,其中投喂Haloarcula sp.HG-1菌株组卤虫具有最高存活率和最长体长,但攻毒组卤虫存活率和生长普遍优于未攻毒组,这可能与高盐条件下V.anguillarum毒力下降有关。本研究利用"卤虫-古菌"悉生实验系统,证实了3株嗜盐古菌均可作为卤虫的唯一饵料,为卤虫提供营养;利用"卤虫-古菌-致病菌"攻毒实验系统,证实3株嗜盐古菌均可以增强卤虫抗鳗弧菌感染能力。本研究结果为研究古菌在高盐环境食物链中的作用提供了基础数据。  相似文献   
6.
哈维氏弧菌(Vibrio harveyi)是引起海南省后水湾深水网箱养殖卵形鲳鲹(Trachinotus ovatus)"烂身病"的主要病原菌。为了能够快速诊断该病原菌,急需建立一种耗时短、准确以及便捷的检测方法。本研究利用分离到的致病菌株QT520的ToxR基因序列设计特异性引物和加入SYTO-9特异荧光染料,建立了一种可以实时、快速检测哈维氏弧菌的LAMP法(RT-LAMP)。该方法对哈维氏弧菌的基因组DNA及菌液灵敏度分别为100 fg/μL和10~3 cfu/mL,与Real-time PCR法检测灵敏度相当,比普通PCR的检测灵敏度要分别高1000倍和10倍,能有效区分哈维氏弧菌与坎氏弧菌(Vibrio campbellii);可以实时观察检测结果,且检测时间只需要40 min;具有耗时短、特异性和灵敏度高、仪器便携、操作简单且能实时观察检测结果等优点,非常适合在生产现场进行哈维氏弧菌的检测。  相似文献   
7.
Skin ulcerations rank amongst the most prevalent lesions affecting wild common dab (Limanda limanda) with an increase in prevalence of up to 3.5% in the Belgian part of the North Sea. A complex aetiology of these ulcerations is suspected, and many questions remain on the exact factors contributing to these lesions. To construct the aetiological spectrum of skin ulcerations in flatfish, a one‐day monitoring campaign was undertaken in the North Sea. Fifteen fish presented with one or more ulcerations on the pigmented and/or non‐pigmented side. Pathological features revealed various stages of ulcerations with loss of epidermal and dermal tissue, inflammatory infiltrates and degeneration of the myofibers bordering the ulceration, albeit in varying degrees. Upon bacteriological examination, pure cultures of Vibrio tapetis were retrieved in high numbers from five fish and of Aeromonas salmonicida in one fish. The V. tapetis isolates showed cross‐reactivity with the sera against the representative strain of serotype O2 originating form a carpet‐shell clam (Ruditapes descussatus). Moreover, the A. salmonicida isolates displayed a previously undescribed vapA gene sequence (A‐layer type) with possible specificity towards common dab. Further research is necessary to pinpoint the exact role of these agents in the development of skin ulcerations in common dab.  相似文献   
8.
With the widespread occurrence of aquaculture diseases and the broad application of antibiotics, drug-resistant pathogens have increasingly affected aquatic animals’ health. Marine probiotics, which live under high pressure in a saltwater environment, show high potential as a substitute for antibiotics in the field of aquatic disease control. In this study, twenty strains of non-hemolytic bacteria were isolated from the intestine of wild oysters and perch, and a model of Caenorhabditis elegans infected by Vibrio anguillarum was established. Based on the model, ML1206, which showed a 99% similarity of 16S rRNA sequence to Planococcus maritimus, was selected as a potential marine probiotic, with strong antibacterial capabilities and great acid and bile salt tolerance, to protect Caenorhabditis elegans from being damaged by Vibrio anguillarum. Combined with plate counting and transmission electron microscopy, it was found that strain ML1206 could significantly inhibit Vibrio anguillarum colonization in the intestinal tract of Caenorhabditis elegans. Acute oral toxicity tests in mice showed that ML1206 was safe and non-toxic. The real-time qPCR results showed a higher expression level of genes related to the antibacterial peptide (ilys-3) and detoxification (ugt-22, cyp-35A3, and cyp-14A3) in the group of Caenorhabditis elegans protected by ML1206 compared to the control group. It is speculated that ML1206, as a potential probiotic, may inhibit the infection caused by Vibrio anguillarum through stimulating Caenorhabditis elegans to secrete antibacterial effectors and detoxification proteins. This paper provides a new direction for screening marine probiotics and an experimental basis to support the potential application of ML1206 as a marine probiotic in aquaculture.  相似文献   
9.
Despite significant improvements in aquaculture to compensate wild catch, disease organisms have thrived in limiting its national and global potential. Using antibiotics, in a bid to remedy the havoc, has given rise to complications, attracting attention to disease prevention by immune enhancement against diseases. Grouper production has been inhibited for the threats of bacterial infection, particularly of Vibrio origin. Considering the rise in vibriosis cases, improved vaccines are necessary; moreover, recombinant vaccines, the choice for trial in the present experiment have been effective and more specific in improving immunity. The current work deals with grouper immune system enhancement with a recombinant vaccine developed from VirB11 gene in Vibrio harveyi. VirB11 was cloned in V. harveyi for recombinant vaccine development against vibriosis in orange‐spotted grouper (Epinephelus coioides). As indicated by the results, recombinant VirB11 protein showed effectiveness in conferring protection against vibriosis with observable specific antibody response in enzyme‐linked immunosorbent assay (ELISA) analysis; a significant increase (p < 0.05) in antibody levels was observed after a week and after 8 weeks post‐vaccination. From the weeks post‐vaccination, log2 (antibody titres) in the sera of vaccinated groups reached a peak of 14.2 at week 5 in the vaccinated group in comparison with a peak of approximately 5 and 2 in adjuvant and PBS controls. As indicated by the challenge results, 90% relative survival was observed in vaccinated group and 13% relative survival in control group I (adjuvant control). The cumulative performance of protein concludes VirB11 commendable for recombinant vaccine development.  相似文献   
10.
Juvenile Atlantic halibut (~100 mg, Hippoglossus hippoglossus) were exposed to Vibrio proteolyticus, a Vibrio spp. isolate, Photobacterium damselae ssp. damselae and five different isolates of Aeromonas salmonicida ssp. achromogenes via an hour‐long bath immersion to ascertain their variation in pathogenicity to this fish species. Results were analysed using Kaplan–Meier survival analysis. Analysis of the data from challenges using A. salmonicida ssp. achromogenes revealed three survival values of zero and a spread of values from 0 to 28.43. Challenges using a Vibrio spp isolate, Vproteolyticus and P. damselae resulted in Kaplan–Meier survival estimates of 31.21, 50.41 and 57.21, respectively. As all bacterial species tested could induce juvenile halibut mortalities, they must all be considered as potential pathogens. However, the degree of pathogenicity of A. salmonicida is isolate dependent.  相似文献   
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