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1.
【目的】通过构建单核细胞增生李斯特菌(单增李斯特菌) LPXTG蛋白Lmo0880的基因缺失菌株和回补菌株,探究Lmo0880在细菌生长、细胞感染和宿主感染等方面发挥的作用。【方法】利用同源重组原理构建lmo0880的基因缺失株及回补株,比较野生株、缺失株和回补株在生长能力、细胞黏附与侵袭和胞内增殖能力等方面的差异,从而鉴定Lmo0880在单增李斯特菌感染宿主中的作用。【结果】缺失lmo0880基因后,单增李斯特菌在生长能力上无明显变化;对细胞的黏附能力无显著差异,但对细胞侵袭能力、胞内增殖能力、小鼠致病力和小鼠组织定殖能力显著降低。【结论】本研究阐明了单增李斯特菌LPXTG蛋白Lmo0880在细胞侵袭、胞内增殖和组织定殖等方面发挥的重要作用。  相似文献   

2.
【背景】已有研究表明,微生物在宿主肠道中的定殖受宿主、肠道环境、微生物物种特性和菌株来源等多个因素的影响。一般认为,来源于同类宿主的微生物菌株,在该类宿主肠道中具有定殖优势,但缺乏在物种和菌株水平上研究微生物自身特性在宿主肠道中定殖的研究报道。【目的】将不同来源(同类宿主肠道、非同类宿主肠道和非肠道环境)、具有不同生物学特性的3株香坊肠球菌(Enterococcus xiangfangensis)和4株罗伊氏乳杆菌(Lactobacillusreuteri)对无菌猪肠道进行定殖,在物种和菌株2个水平上探究物种特性和菌株来源对宿主肠道定殖的偏好性,揭示影响微生物定殖效率的关键因素。【方法】在本项研究中,将从藏猪(Tibetan pigs)、小鼠(ob/ob mice)、食蟹猴(Macaca fascicularis)和发酵食品中分离得到的多株香坊肠球菌和罗伊氏乳杆菌,制成混合菌剂对无菌巴马香猪(Bama miniature pig)进行为期4周的饲喂,并通过实时荧光定量PCR方法检测这7株菌在无菌猪肠道中的定殖情况。【结果】在物种水平上,香坊肠球菌和罗伊氏乳杆菌在无菌猪体内具有相近的定殖...  相似文献   

3.
【背景】杜比亚蟑螂(Blaptica dubia)可用于活体饲料、化妆品和医药保健品的生产,其肠道菌的研究对杜比亚蟑螂的饲养和肠道菌资源的开发与利用都十分重要。【目的】揭示杜比亚蟑螂肠道可培养菌的种类,筛选具有产消化酶功能的菌株,为理解肠道菌对宿主的影响机理及功能菌株的利用提供科学依据和研究材料。【方法】采用体外培养法获得杜比亚蟑螂肠道菌,结合形态学和分子生物学方法进行鉴定;用水解圈法分别筛选产纤维素酶、蛋白酶、脂肪酶和淀粉酶菌株。【结果】在杜比亚蟑螂肠道中共分离出4属7种细菌,其中芽孢杆菌属(Bacillus)2种,沙雷氏菌属(Serratia)和柠檬酸杆菌属(Citrobacter)各2种,肠球菌属(Enterococcus)1种。从获得的20个菌株中筛选出10个具有产消化酶功能的菌株。其中,芽孢杆菌属的菌株D6、D12和D20具有产纤维素酶、蛋白酶、淀粉酶及脂肪酶4种消化酶的功能;沙雷氏菌属的菌株D3、D7、D9、D11和D15具有产纤维素酶、蛋白酶和脂肪酶3种消化酶的能力;柠檬酸杆菌属的菌株D5具有产纤维素酶的功能;肠球菌属的菌株D17具有产蛋白酶的能力。【结论】杜比亚蟑螂肠道多种细菌具有产消化酶帮助降解大分子营养物质的功能,可通过协助食物消化影响宿主健康。菌株D12、D7和D11分别具有最强产纤维素酶、蛋白酶和脂肪酶的能力,是可进一步开发利用的肠道功能菌株资源。  相似文献   

4.
产肠毒素大肠杆菌(enterotoxigenic Escherichia coli, ETEC)是引起人和动物腹泻的重要病原菌之一,其中黏附素和肠毒素是其感染引起腹泻的主要毒力因子。首先,黏附素介导ETEC与宿主小肠上皮细胞的黏附和定殖。随后,定殖的细菌产生肠毒素,导致水、电解质代谢紊乱,最终引起水样腹泻。传统的观点认为ETEC属于非侵袭性大肠杆菌,并不会引起肠上皮细胞凋亡和破坏肠道的屏障结构。但是越来越多的研究证据表明,在体外和体内ETEC感染均可诱导肠上皮细胞凋亡,破坏宿主肠黏膜屏障的完整性,促进疾病发展。本文将就ETEC不同毒力因子诱导细胞凋亡的具体机制、细胞凋亡与疾病发展的相关性以及在临床如何利用抗凋亡治疗预防ETEC感染等方面进行综述,旨为进一步深入阐明ETEC的分子致病机制提供参考,为防治ETEC引起的腹泻提供新策略。  相似文献   

5.
本文用Penner氏被动血凝法,对476株空肠弯曲菌进行血清学分型,分型率为69.33%,共检出30种不同血清型,其中人源菌有17个型,鸡源菌有19个型,鸭源菌有16个型,猪源菌有17个型。其中常见型与国外报道的完全不同,与国内上海、苏州等地区报道的材料也有不同,说明空肠弯曲菌的血清型分布存在着明显的地区性差异。但发现当地的动物源菌株的血清型与人源菌血清型的关系密切,鸡、鸭、猪的血清型与当地人源菌血清型相同者分别占89.7、81.4和94.07%,因此认为这三种宿主动物是莆田地区人类空肠弯曲菌肠炎的主要传  相似文献   

6.
空肠弯曲菌增菌方法的研究与血清学分型   总被引:1,自引:0,他引:1  
本文对空肠弯曲菌增菌培养基作了改进,以增菌法与直接分离法(直接法)对比进行实验。从379份腹泻成人粪便中分离出29株空肠弯曲菌,其中增菌法分离出29株(100%),直接法15株(51.72%)。增菌法提高检出率48.28%,P<0.001,两法差异非常显著,符合率为96.3%,说明增菌法优于直接法。另外,用烛缸培养法从鸡和猪粪便中分离出空肠弯曲菌分别为50和32株。对人、鸡和猪粪便中检出的110株菌作了血清学和生物学分型。从分出的15个血清型谱中发现不同来源菌株有共同性血清型,多集中于45型  相似文献   

7.
【背景】北京欧文氏菌(Erwinia beijingensis)引起的刺芹侧耳细菌性软腐病(bacterial soft rot)给企业带来了严重的经济损失。wbnH2糖基转移酶基因在北京欧文氏菌中的生物学功能尚不明确。【目的】构建wbnH2基因的缺失株Δ-wbnH2和回补株C-wbnH2,探究wbnH2基因对北京欧文氏菌致病性的影响。【方法】采用同源重组方法构建北京欧文氏菌LMG 27579TwbnH2基因缺失突变株Δ-wbnH2,并对基因缺失菌株的致病性、生长速度、运动能力、生物膜形成能力、黏附能力等生物学特性与野生型菌株进行比较分析;采用广宿主质粒pBBR1MCS2构建回补株C-wbnH2,排除了极性效应引起的突变株表型变化。【结果】与野生型菌株相比,基因缺失株Δ-wbnH2的生长速度无明显差别。但是wbnH2基因的缺失导致多糖分泌、生物膜形成能力、黏附能力、致病能力明显下降。【结论】wbnH2基因影响北京欧文氏菌多糖分泌、生物膜的形成能力、黏附能力及致病力,表明该基因在北京欧文氏菌致病过程中起重要作用,本研究为软腐病的防控提供了理论基础。  相似文献   

8.
产志贺毒素大肠杆菌(Shiga toxin-producing Escherichia coli,STEC)是重要的食源性病原,而STEC往往以正常菌群的形式存在于牛羊等反刍动物肠道。[目的] 本研究对牛羊粪便样品中的STEC分离和鉴定并对分离株进行致病潜力分析。从江苏、云南和河北等地共分离到羊源STEC菌株11株,牛源STEC菌株1株,另新疆农业大学佟盼盼组馈赠牛源菌株10株。[方法] 通过细菌选择培养及特异性基因stx1stx2的检测进行分离鉴定;并通过Vero细胞毒性试验、溶血活性试验和毒力因子的检测分析STEC分离株的致病潜力。[结果] 分离到羊源分离株11株,分离率17.5%(11/63);分离得到牛源分离株1株,分离率0.7%(1/134);11株羊源分离株中有5株对Vero细胞具有强的毒性,3株有溶血活性;11株牛源分离株中有5株对Vero细胞具有强的毒性,3株有溶血活性。11株羊源STEC分离株eae基因携带率为63.6%(7/11),而11株牛源STEC分离株eae基因携带率仅为9.0%(1/11)。[结论] 结果表明羊源STEC菌株的分离率和致病潜力高于牛源菌株,所以,除牛外,羊作为STEC菌株宿主也应该得到更多的重视。  相似文献   

9.
鸭源鸡杆菌(Gallibacterium anatis,G.anatis)是家禽中常见的条件性致病菌,主要引起蛋鸡生殖道疾病,造成产蛋量下降。【目的】为探究RTX样毒素GtxA及外膜蛋白(OmpW)对鸭源鸡杆菌生物学特性和致病力的影响。【方法】本研究采用自然转化法对突变株RZ△ompW进一步缺失gtxA构建突变株RZ△ompW△gtxA,通过分析其生长特性、黏附能力、引起细胞凋亡程度及对小鼠致病性等,探究其与生物学特性及致病性可能的关系。【结果】结果显示,RZ△ompW△gtxA能稳定遗传gtxA的缺失;单双基因突变株溶血活性均消失、与RZ株相比菌落形态及生长速率并未出现显著改变;相比RZ、RZ△ompW和RZ△gtxA,双基因缺失株RZ△ompW△gtxA在不同时段对鸡原代输卵管上皮细胞的黏附能力显著降低(P0.05),诱导鸡输卵管上皮原代细胞发生凋亡的能力明显减弱,对小鼠的致病力显著降低。【结论】GtxA毒素和外膜蛋白OmpW在鸭源鸡杆菌毒力、黏附宿主细胞及诱导其细胞凋亡中起重要作用,且可能存在明显的协同关系。本研究为鸭源鸡杆菌感染机制的阐明奠定基础。  相似文献   

10.
沙门菌病(Salmonellosis)是全世界最普遍的食源性疾病之一,不仅对养殖业造成经济损失,还对人类安全构成威胁。禽沙门菌感染肠道后,可诱导肠上皮细胞表达多种TLRs和炎症反应的发生,在分泌的趋化因子作用下免疫效应细胞迁移到感染部位。细菌通过肠上皮细胞屏障后被巨噬细胞或树突状细胞吞噬,其中巨噬细胞是沙门菌的主要定殖场所。天然免疫系统将抗原递呈给淋巴细胞后,机体能够在2–3周内通过以Th1为主的免疫应答清除在肠道和深层组织中的沙门菌。而宿主特异性血清型鸡白痢沙门菌从肠道侵入后,在肝脾和其他器官中定殖,进而引发全身感染。早期感染阶段不会引起肠道炎症反应,主要诱导以Th2为主的免疫应答,而Th1型应答相对较弱,有利于鸡白痢沙门菌在机体内的持续存在和感染。本文围绕禽沙门菌的致病机理和免疫应答特性进行阐述,尤其对鸡白痢沙门菌免疫逃逸和持续载菌的特性进行深入分析,为禽沙门菌病的防控提供新靶标和新见解。  相似文献   

11.
The aim of this research was to determine the potential probiotic activity of Lactobacillus acidophilus ATCC 4356 against several human Campylobacter jejuni isolates. The ability to inhibit the pathogen’s growth was evaluated by co-culture experiments as well as by antimicrobial assays with cell-free culture supernatant (CFCS), while interference with adhesion/invasion to intestinal Caco-2 cells was studied by exclusion, competition, and displacement tests. In the co-culture experiments L. acidophilus ATCC 4356 strain reduced the growth of C. jejuni with variable percentages of inhibition related to the contact time. The CFCS showed inhibitory activity against C. jejuni strains, stability to low pH, and thermal treatment and sensitivity to proteinase K and trypsin. L. acidophilus ATCC 4356 was able to reduce the adhesion and invasion to Caco-2 cells by most of the human C. jejuni strains. Displacement and exclusion mechanisms seem to be the preferred modalities, which caused a significant reduction of adhesion/invasion of pathogens to intestinal cells. The observed inhibitory properties of L. acidophilus ATCC 4356 on growth ability and on cells adhesion/invasion of C. jejuni may offer potential use of this strain for the management of Campylobacter infections.  相似文献   

12.
The Dsb family of redox proteins catalyzes disulfide bond formation and isomerization. Since mutations indsb genes change the conformation and stability of many extracytoplasmic proteins, and since many virulence factors of pathogenic bacteria are extracytoplasmic, inactivation ofdsb genes often results in pathogen attenuation. This study investigated the role of 2 membrane-bound oxidoreductases, DsbB and DsbI, in theCampylobacter jejuni oxidative Dsb pathway.Campylobacter mutants, lacking DsbB or DsbI or both, were constructed by allelic replacement and used in the human intestinal epithelial T84 cell line for the gentamicin protection assay (invasion assay) and chicken colonization experiments. InC. coli strain 23/1, the inactivation of thedsbB ordsbI gene separately did not significantly affect the colonization process. However, simultaneous disruption of both membrane-bound oxidoreductase genes significantly decreased the strain’s ability to colonize chicken intestines. Moreover,C. jejuni strain 81–176 with mutateddsbB ordsbI genes showed reduced invasion/intracellular survival abilities. No cells of the double mutants (dsbB dsbI ) ofC. jejuni 81–176 were recovered from human cells after 3 h of invasion.  相似文献   

13.
Campylobacter is a normal inhabitant of the chicken gut. Pathogenic infection with this organism in humans is accompanied by severe inflammation of the intestinal mucosal surface. The aim of this study was to evaluate the ability of Lactobacillus gasseri SBT2055 (LG2055) to inhibit the adhesion and invasion of Campylobacter jejuni in vitro and to suppress C. jejuni colonization of chicks in vivo. Pretreatment with LG2055 significantly reduced adhesion to and invasion of a human epithelial cell line, Intestine 407, by C. jejuni 81–176. Methanol (MeOH)-fixed LG2055 also reduced infection by C. jejuni 81–176. However, proteinase K (ProK)-treated LG2055 eliminated the inhibitory effects. Moreover, LG2055 co-aggregated with C. jejuni 81–176. ProK treatment prevented this co-aggregation, indicating that the co-aggregation phenotype mediated by the proteinaceous cell-surface components of LG2055 is important for reducing C. jejuni 81–176 adhesion and invasion. In an in vivo assay, oral doses of LG2055 were administered to chicks daily for 14 days after oral inoculation with C. jejuni 81–176. At 14 days post-inoculation, chicks treated with LG2055 had significantly reduced cecum colonization by C. jejuni. Reduction in the number of C. jejuni 81–176 cells adhering to and internalized by human epithelial cells demonstrated that LG2055 is an organism that effectively and competitively excludes C. jejuni 81–176. In addition, the results of the chick colonization assay suggest that treatment with LG2055 could be useful in suppressing C. jejuni colonization of the chicks at early growth stages.  相似文献   

14.
The mechanisms used by Campylobacter jejuni to colonize the (chicken) intestinal tract have not been defined. In this study, we obtained evidence that in the presence of chicken serum and mucus, C. jejuni secreted proteins that may play a role in the colonization of chicken gut (Campylobacter invasion antigen = Cia). C. jejuni strains NCTC11168V1 and 81-176, as well as an NCTC11168V1 flaA mutant, were found to colonize intestinal tract and secrete proteins in the presence of chicken mucus, chicken serum, or fetal bovine serum in cell culture–conditioned medium. C. jejuni strain NCTC11168V26, which was observed to be a poor colonizer compared with the other C. jejuni isolates, did not secrete Cia proteins. Secreted proteins were also recognized by Western immunoblot using sera from birds that had been colonized by C. jejuni. These data suggest that C. jejuni secretes Cia proteins during colonization of chicken gut and that these Cia proteins play an important role in colonization.  相似文献   

15.
【背景】禽致病性大肠杆菌(avian pathogenic Escherichia coli,APEC)可引起禽类急性或亚急性感染,在近年新发现的大肠杆菌Ⅲ型分泌系统2 (Escherichia coli type III secretion system 2,ETT2)中,毒力基因yqeH对其致病性的影响尚不明确。【目的】探究yqeH在APEC致病过程中的作用,为后期深入研究ETT2致病机制奠定基础。【方法】利用Red同源重组技术构建yqeH缺失株ΔyqeH及其回复株CΔyqeH,通过运动性、生物被膜形成能力、抗逆性、抗血清杀菌能力等试验分析yqeH对APEC生物学功能的影响,并通过细胞黏附、侵袭试验、致病力测定及荧光定量PCR检测细胞炎性因子转录水平,探究yqeH对APEC感染宿主的影响。【结果】构建了缺失株ΔyqeH和回复株CΔyqeH;生物学特性试验结果表明,与野生株APEC81相比,缺失株ΔyqeH生物被膜形成能力、运动能力降低,对酸、碱、渗透压、氧化休克的耐受力降低,抗血清杀菌能力及致病力显著降低;与野生株APEC81相比,缺失株ΔyqeH对鸡气管黏膜上皮细胞的黏附及侵袭能...  相似文献   

16.
【目的】筛选鉴定沙门菌噬菌体侵染裂解过程中的抗性菌株,研究抗性菌株的生物学特性及致病力的差异,为解决噬菌体治疗应用中的抗性菌问题提供理论依据。【方法】本研究通过次级感染法和双层平板法筛选沙门菌噬菌体抗性菌,通过生物学特性和毒力基因检测比较宿主菌ATCC 13076及其噬菌体抗性菌株R3之间的差异,并通过小鼠攻毒实验和细胞粘附实验比较致病力强弱。【结果】噬菌体抗性菌株R3的生长速度较宿主菌略慢;生化及毒力基因检测均表明抗性菌株与宿主菌无差异;与宿主菌相比,抗性菌R3的LD50增加了74.8%(P0.05);对MODE-K细胞粘附能力稍弱,但是差异不显著。【结论】该研究表明,与噬菌体宿主菌相比,噬菌体抗性菌株的生物学特性和毒力基因并没有改变,对小鼠致病力减弱,但是对MODE-K细胞粘附能力差异不显著。  相似文献   

17.
【背景】硫氧还蛋白还原酶(thioredoxin reductase,TRR)是硫氧还蛋白系统关键组成部分,对病原菌应对体内外氧化应激、调节细菌稳态和介导致病过程具有重要作用。【目的】探究硫氧还蛋白还原酶TRR在人畜共患猪链球菌2型感染过程中参与的生物学效应。【方法】同源重组法构建猪链球菌2型硫氧还蛋白还原酶trr基因缺失株(Δtrr)及回补株(cΔtrr),通过细菌染色、点板计数、体外细胞和动物感染模型等试验比较分析trr基因对细菌形态、抗应激反应及致病过程的影响。【结果】缺失trr对猪链球菌2型形态与生长特性的影响不大,但可增强细菌抗热应激、氧化应激和酸应激能力,缺失株对上皮细胞黏附力下降,侵袭进入脑血管内皮细胞作用显著降低,易于被吞噬细胞吞噬清除,对小鼠模型致病效应显著减弱。【结论】猪链球菌2型TRR因子参与细菌应激反应,介导细菌黏附、侵袭等致病过程,是猪链球菌2型新的潜在毒力因子。  相似文献   

18.
Campylobacter jejuni isolates possess multiple adhesive proteins termed adhesins, which promote the organism's attachment to epithelial cells. Based on the proposal that one or more adhesins are shared among C. jejuni isolates, we hypothesized that C. jejuni strains would compete for intestinal and cecal colonization in broiler chicks. To test this hypothesis, we selected two C. jejuni strains with unique SmaI pulsed-field gel electrophoresis macrorestriction profiles and generated one nalidixic acid-resistant strain (the F38011 Nalr strain) and one streptomycin-resistant strain (the 02-833L Strr strain). In vitro binding assays revealed that the C. jejuni F38011 Nalr and 02-833L Strr strains adhered to LMH chicken hepatocellular carcinoma epithelial cells and that neither strain influenced the binding potential of the other strain at low inoculation doses. However, an increase in the dose of the C. jejuni 02-833L Strr strain relative to that of the C. jejuni F38011 Nalr strain competitively inhibited the binding of the C. jejuni F38011 Nalr strain to LMH cells in a dose-dependent fashion. Similarly, the C. jejuni 02-833L Strr strain was found to significantly reduce the efficiency of intestinal and cecal colonization by the C. jejuni F38011 Nalr strain in broiler chickens. Based on the number of bacteria recovered from the ceca, the maximum number of bacteria that can colonize the digestive tracts of chickens may be limited by host constraints. Collectively, these data support the hypothesis that C. jejuni strains compete for colonization in chicks and suggest that it may be possible to design novel intervention strategies for reducing the level at which C. jejuni colonizes the cecum.  相似文献   

19.
【背景】多年生林下参在自然环境下生长多年,其体内存在的内生菌具有更强的适应性和定殖性,可以提高植物自身抗性,抑制病原菌的生长,更好地发挥与植物的互作。【目的】筛选定殖能力强、繁殖能力快且对病原菌具有拮抗作用的优势菌株。【方法】采用常规组织分离方法,从健康林下参根部组织中分离内生菌,通过对峙试验筛选出对人参病原菌有拮抗作用的内生细菌并对其以传统的鉴定方法进行鉴定。【结果】在得到的6株内生细菌中,菌株LXS-N2对人参立枯病病原菌、人参猝倒病病原菌均有明显抑菌性,而且具有定殖性好、繁殖快的特点,通过破坏病原真菌细胞壁和细胞膜以及改变菌丝形态从而抑制病原真菌生长。【结论】经形态学观察、生理生化反应及16S rRNA基因序列分析鉴定内生菌LXS-N2为贝莱斯芽孢杆菌,具有良好的应用开发潜力。  相似文献   

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