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1.
【目的】构建禽致病性大肠杆菌(Avian pathogenic Escherichia coli,APEC)VI型分泌系统2(Type VI secretion system 2,T6SS2)结构基因vgrG缺失株,研究其对APEC生物学特性及致病性的影响。【方法】通过Red同源重组方法构建DE719菌株vgrG基因缺失株,并利用低拷贝质粒pSTV28构建互补株。比较分析野生株、缺失株与互补株的生长特性、运动性、生物被膜形成能力、黏附侵袭能力、动物致病力等差异。【结果】vgr G基因缺失不影响DE719的生长速度、运动能力及生物被膜形成能力。致病性试验表明缺失vgrG导致体内定殖能力及致病力显著下降,然而对DF-1细胞的黏附能力增强。【结论】T6SS2核心组分VgrG在APEC感染过程中发挥重要作用,为了解APEC的致病作用提供参考。  相似文献   

2.
高清清  夏乐  刘娟华  高崧  刘秀梵 《微生物学报》2016,56(10):1571-1582
【目的】探究荚膜对肠道外致病性大肠杆菌致病作用的影响。【方法】选取负责荚膜多糖转运的基因kpsE和kpsD,利用λRed重组系统构建APEC E058和UPEC U17荚膜缺失株E058ΔkpsED和U17ΔkpsED,并通过一系列的体内及体外试验对其生物学特性及致病性进行研究。【结果】双基因缺失株的生长速度较野生株没有明显差异,但缺失株抗血清补体杀菌能力和抗鸡巨噬细胞HD-11细胞吞噬能力显著下降。1日龄雏鸡LD50致病性试验结果显示,缺失株E058ΔkpsED和U17ΔkpsED对鸡失去致病力,而回复株毒力恢复至野生株水平;35日龄SPF鸡体内动态分布和竞争试验显示ΔkpsED缺失株在鸡体内定殖能力和竞争性生长能力显著下降,表明kpsED双基因的缺失能显著降低APEC E058和UPEC U17的致病力。【结论】荚膜与肠道外致病性大肠杆菌的致病性相关,是其重要的毒力因子。  相似文献   

3.
【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   

4.
【背景】副溶血弧菌(Vibrioparahaemolyticus)具有两套III型分泌系统(typeIIIsecretion system,T3SS)。T3SS1通过向宿主细胞分泌效应蛋白发挥致病作用,vcrV基因位于T3SS1编码基因簇。【目的】以vcrV基因为研究对象,探索其对副溶血弧菌生物学特性及T3SS1致病机制的影响。【方法】以副溶血弧菌POR-1株为参考菌株,利用同源重组技术构建vcrV基因缺失株ΔvcrV和回补株CΔvcrV,比较各菌株在生长性能、生物被膜形成能力、细胞黏附及细胞毒性等生物学特性的差异,应用Western Blot检测T3SS1诱导条件下POR-1、ΔvcrV和CΔvcrV等菌株效应蛋白分泌量,进一步利用具有过表达载体pMMB207-vp1683-CyaA的各菌株侵染HeLa细胞,通过Western Blot检测细胞内效应蛋白VopR(Vp1683)的易位量。【结果】与基础菌株POR-1相比,缺失vcrV基因不影响副溶血弧菌的生长性能、生物被膜形成能力及细胞黏附等生物学特性,显著降低了对HeLa细胞的毒性作用,具有过表达载体的POR-1、ΔvcrV和CΔv...  相似文献   

5.
【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   

6.
【目的】为探究脂多糖对O1、O78血清型禽致病性大肠杆菌(Avian pathogenic Escherichia coli,APEC)致病作用的影响。【方法】选取负责脂质A生物合成相关基因lpx L和lpx M,利用λ噬菌体的Red同源重组系统分别构建APECE516(O1血清型)和APECE522(O78血清型)缺失株E516Δlpx L、E516Δlpx M、E516Δlpx LΔlpx M、E522Δlpx L、E522Δlpx M和E522Δlpx LΔlpx M,并通过体内外试验对其生物学特性及致病性进行研究。【结果】各菌株生长速度基本一致。E516Δlpx L、E516Δlpx LΔlpx M、E522Δlpx M和E522Δlpx LΔlpx M的抗血清补体杀菌能力和抗鸡巨噬细胞HD-11吞噬能力较野生株显著下降,而缺失株E516Δlpx M、E522Δlpx L与野生株相比无明显差异;半数致死剂量测定结果显示,除E516Δlpx M、E522Δlpx L外,各缺失株毒力降低1000倍左右;SPF鸡体内动态分布试验结果显示,各缺失株在鸡体内定殖能力较野生株显著下降,但回补株的毒力未能恢复至野生株水平。【结论】lpx L和lpx M基因与O1血清型APECE516株和O78血清型APECE522株的毒力有关,但是lpx L和lpx M基因对E516和E522菌株毒力的影响存在差异。  相似文献   

7.
【目的】构建猪支气管败血波氏杆菌(Bordetella bronchiseptica,Bb)Ⅵ型分泌系统(T6SS)溶血素共调节蛋白hcp基因缺失株,并对其基本生物学特性进行初步的研究。【方法】使用自杀性质粒介导同源重组的方法敲除猪支气管败血波氏杆菌QH0814菌株hcp基因,并比较hcp基因缺失前后,菌体对细胞的黏附入侵、小鼠毒力及组织载菌量上的差异。【结果】成功构建支气管败血波氏杆菌hcp基因缺失株QH0814Δhcp,连续传50代且遗传稳定;缺失株与亲本株生长无明显差异;缺失株的黏附能力与亲本株差异不显著,但入侵能力显著降低(P0.05);与亲本株相比,半数致死量提高,同时,缺失株对昆明鼠的感染能力也显著降低(P0.05)。【结论】hcp基因的缺失对支气管败血波氏杆菌增殖无影响,但缺失后其入侵能力和定殖能力显著降低,由此推测hcp基因与支气管败血波氏杆菌的入侵和定殖相关。  相似文献   

8.
【背景】沙门氏菌(Salmonella)是重要的人畜共患病原菌,由于耐药菌株的不断出现,新型防治方法的研究迫在眉睫。【目的】探究ssrAB、hilA、hilD基因对肠炎沙门氏菌致病作用的影响,筛选安全可靠的沙门氏菌减毒活疫苗或载体用菌株。【方法】采用自杀性质粒介导的同源重组技术,分别构建ssrAB、hilA、hilD单基因缺失株(ΔssrAB、ΔhilA、ΔhilD)、双基因缺失株(ΔssrABhilA、ΔssrABhilD、ΔhilAhilD)和三基因缺失株(ΔssrABhilAhilD),并比较上述缺失菌株与亲本菌株间生物学特性的差异。【结果】基因缺失后菌株的生长速率无显著变化(P0.05);除ΔhilD生物膜形成能力最强外,其他基因缺失菌株生物膜形成能力变化不显著(P0.05);ΔssrABhilAhilD和ΔssrABhilA的LD50值最高,ΔssrAB、ΔhilA、ΔhilD次之;亲本菌株引起的小鼠十二指肠的病变程度较所有缺失菌株明显严重;在所有缺失菌株中,ΔssrABhilAhilD对HeLa细胞的黏附力最低,ΔhilD在小鼠体内的定殖率最高;而机体分泌IL-1、IL-18、IFN-γ的能力与沙门氏菌ssrAB、hilA、hilD基因无显著相关性(P0.05)。【结论】构建的7株基因缺失株中,ΔssrAB、ΔhilA、ΔhilD、ΔssrABhilA和ΔssrABhilAhilD有致病力低、生长速率良好、能有效刺激细胞因子产生等特性,具备作为沙门氏菌减毒活疫苗或载体的潜质。  相似文献   

9.
Ⅵ型分泌系统(T6SS)是大多数革兰氏阴性细菌中都存在的一种重要的分泌系统,能介导细菌与细菌之间以及细菌和宿主细胞之间的相互作用,溶血素共调节蛋白(Hcp)和缬氨酸甘氨酸重复蛋白G(VgrG)是组成T6SS穿刺装置的重要组分。但鼠伤寒沙门氏菌Ⅵ型分泌系统的Hcp与VgrG在该菌入侵宿主细胞及抗吞噬过程中发挥的作用尚不十分清楚。【目的】本研究旨在利用基因敲除技术构建的鼠伤寒沙门氏菌hcp及vgrg基因缺失株体外接种真核上皮细胞和巨噬细胞,并以其亲本株作为对照,以研究Hcp及VgrG在该菌粘附、侵入上皮细胞及抗吞噬过程中所发挥的作用。【方法】通过优化Red同源重组系统操作过程中各个条件,建立一套快速敲除鼠伤寒沙门氏菌Ⅵ型分泌系统相关基因的操作系统,成功构建鼠伤寒沙门氏菌CVCC541的hcp及vgrg单基因缺失株、双基因缺失株及三基因缺失株,并用Hela细胞接种试验和菌落计数试验,评估不同菌株的粘附和侵袭能力;用小鼠巨噬细胞RAW 264.7接种试验,评估不同菌株的抗吞噬能力。【结果】与亲本株CVCC541粘附侵袭Hela细胞相比,基因缺失株CVCC541Δvgrg、CVCC541Δhcp2Δvgrg和CVCC541Δhcp1Δhcp2Δhcp3的粘附率分别为17.17%±2.1%、14.73%±2.5%和82%±3.7%;CVCC541Δvgrg、CVCC541Δhcp2Δvgrg和CVCC541Δhcp1Δhcp2Δhcp3的侵袭率分别为7.05%±1.05%、6.21%±1.35%和87%±3.25%;与亲本株CVCC541在小鼠巨噬细胞RAW 264.7中的存活相比,基因缺失株CVCC541Δvgrg、CVCC541Δhcp2Δvgrg和CVCC541Δhcp1Δhcp2Δhcp3的存活率分别为15.67%±2.9%、14.47%±1.87%和56.12%±3.48%。【结论】鼠伤寒沙门氏菌Ⅵ型分泌系统VgrG和Hcp对该菌入侵细胞和抗吞噬方面具有重要作用,该研究为鼠伤寒沙门氏菌通过六型分泌系统与宿主细胞相互作用的机制研究奠定了基础。  相似文献   

10.
【目的】除了猪链球菌2型外,猪链球菌9型(SS9)也是目前流行血清型,同时也是人畜共患病原菌。前期研究发现,DNA核酸酶(Ssn A)存在于SS9毒力株中,在SS9无毒株中不存在。为明确Ssn A对SS9毒力的影响,本研究构建ssn A缺失株Δssn A,并研究其生物学功能。【方法】用穿梭质粒p SET-4s构建Δssn A,并通过斑马鱼毒力试验、HEp-2细胞黏附、猪全血存活和酶活检测等试验,评价Ssn A对SS9毒力的影响。【结果】斑马鱼毒力试验显示,Δssn A对斑马鱼毒力显著降低,半数致死量是野生株的11.2倍;Δssn A对HEp-2细胞的黏附率为野生株的60.61%;Δssn A在猪全血中的存活率为野生株的71.88%;酶活试验表明,Ssn A可降解线性和环状DNA。【结论】本研究表明SS9 Ssn A具有降解线性和环状DNA能力,该基因缺失后细菌对斑马鱼毒力、黏附HEp-2细胞能力、在猪全血中存活及分解DNA能力都显著降低,证实Ssn A是SS9的一个毒力因子。  相似文献   

11.
We have cloned fourNeurospora crassagenes by complementation analysis. Cloned genes include thearginine-1(arg-1),methionine-6(met-6),unknown-7(un-7), andribosome production-1(rip-1) loci. Chromosome walks were initiated in ordered cosmid libraries from the cloned loci. A total of about 700 kb of theNeurosporagenome is covered in these walks.  相似文献   

12.
NIN1 is an essential gene for growth of the yeastSaccharomyces cerevisiae and was recently found to encode a component of the regulatory subunit of the 26S proteasome. Thenin1-1 mutant is temperature sensitive and its main defect is in G1/S progression and G2/M progression at non-permissive temperatures. One of the two multicopy suppressors ofnin1-1, SUN2 (SUppressor of Nin1-1), was found to encode a protein of 523 amino acids whose sequence is similar to those ofDrosophila melanogaster diphenol oxidase A2 and the mouse mast-cell Tum transplantation antigen, P91A. The C-terminal half of Sun2p was found to be functional as Sun2p at 25° C, 30° C, and 34° C but not at 37° C. The open reading frame (ORF) of theDrosophila diphenol oxidase A2 gene (Dox-A2) was obtained from a lambda phage cDNA library using the polymerase chain reaction technique. TheDox-A2 ORF driven by theTDH3 promoter complemented the phenotype of a strain deleted forsun2. ThisDox-A2-dependent strain was temperature sensitive and accumulated dumb-bell-shaped cells, with an undivided nucleus at the isthmus, after temperature upshift. This morphology is similar to that ofnin1-1 cells kept at a restrictive temperature. These results suggest thatSUN2 is a functional counterpart ofDox-A2 and that these genes play a pivotal role in the cell cycle in each organism.  相似文献   

13.
In order to dissect the genetic regulation of leafblade morphogenesis, 16 genotypes of pea, constructed by combining the wild-type and mutant alleles of MFP, AF, TL and UNI genes, were quantitatively phenotyped. The morphological features of the three domains of leafblades of four genotypes, unknown earlier, were described. All the genotypes were found to differ in leafblade morphology. It was evident that MFP and TL functions acted as repressor of pinna ramification, in the distal domain. These functions, with and without interaction with UNI, also repressed the ramification of proximal pinnae in the absence of AF function. The expression of MFP and TL required UNI function. AF function was found to control leafblade architecture multifariously. The earlier identified role of AF as a repressor of UNI in the proximal domain was confirmed. Negative control of AF on the UNI-dependent pinna ramification in the distal domain was revealed. It was found that AF establishes a boundary between proximal and distal domains and activates formation of leaflet pinnae in the proximal domain.  相似文献   

14.
Cell cycle control in the fission yeastSchizosaccharomyces pombe involves interplay amongst a number of regulatory molecules, including thecdc2, cdc13, cdc25, weel, andmik1 gene products. Cdc2, Cdc13, and Cdc25 act as positive regulators of cell cycle progression at the G2/M boundary, while Wee1 and Mik1 play a negative regulatory role. Here, we have screened for suppressors of the lethal premature entry into mitosis, termed mitotic catastrophe, which results from simultaneous loss of function of both Wee1 and Mik1. Through such a screen, we hoped to identify additional components of the cell cycle regulatory network, and/or G2/M-specific substrates of Cdc2. Although we did not identify such molecules, we isolated a number of alleles of bothcdc2 andcdc13, including a novel wee allele ofcdc2, cdc2-5w. Here, we characterizecdc2-5w and two alleles ofcdc13, which have implications for the understanding of details of the interactions amongst Cdc2, Cdc13, and Wee1.  相似文献   

15.
为了解开花麻竹(Dendrocalamus latiflorus)的Dl AP2基因功能,采用RT-PCR和RACE技术克隆了mi R172a靶基因AP2同源序列c DNA全长,命名为Dl AP2。结果表明,Dl AP2基因c DNA全长为1729 bp,包含5′端非编码区81 bp、开放阅读框1464 bp、3′端非编码区160 bp和24个碱基的Poly A尾巴,在编码框靠近3′端130 bp处有1个高度匹配mi R172a的结合位点(CTGCAGCATCATCAGGATTCT)。Dl AP2编码487个氨基酸的蛋白,具有两个AP2结构域,属于AP2/ERF家族AP2亚家族的AP2组,与来自其它单子叶植物的AP2蛋白均有较高同源性。RLM-5′RACE分析表明,mi R172a主要在靶序列的第11~12个碱基之间剪切靶基因Dl AP2的mi RNA。q RT-PCR结果表明,麻竹花芽中Dl AP2基因的表达规律与mi R172a表达变化正好相反,证明mi R172a对Dl AP2基因的表达具有调控作用。  相似文献   

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Seven bean rhizobial strains EBRI 2, 3, 21, 24, 26, 27 and 29 identified as Rhizobium etli, and EBRI 32 identified as Rhizobium gallicum, isolated from Egyptian soils and which nodulated Phaseolus vulgaris efficiently, were subjected to hybridization with a nifH probe in order to estimate the copy number of this gene. Seven strains (EBRI 2, 3, 21, 24, 26, 27 and 29) which were only able to nodulate Phaseolus vulgaris, contained three copies of the nifH gene, consistent with their identification as Rhizobium etli bv. phaseoli. Only one strain (EBRI 32) which nodulated both Phaseolus vulgaris and Leucaena leucocephala, had one copy of nifH gene. This confirmed the classification of this strain as Rhizobium gallicum bv. gallicum.  相似文献   

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Summary The two components of theBg-rbg transposable element system of maize have been cloned. TheBg element, isolated from the mutable allelewx-m32 :: Bg is inserted in the intron of theWaxy (Wx) gene between exons 12 and 13. The length of the element is of 4869 bp.Bg has 5 by terminal inverted repeats, and generates upon insertion an 8 by direct duplication of the target sequence. Both ends of theBg element contain a 76 by direct repeat adjacent to the terminal inverted repeats. The hexamer motif TATCGkC G is here repeated several times in direct or inverse orientation. Therbg element was isolated from the mutable alleleo2m(r) where it is located in the promoter region of theOpaque-2 (O2) gene.rbg is approximately 4.5 kb in length, has terminal inverted repeats identical to those of theBg element, and is also flanked by an 8 by direct duplication at the target site. LikeBg, rbg carries the 76 by direct repeats. Restriction enzyme analysis reveals that, compared toBg, the receptor element is distinguishable by small deletion and insertion events. Sequence data indicate that not more than 75% homology exists at the DNA level between therbg element and the autonomousBg element.  相似文献   

20.
Many Cola plant species are endemic to West and Central Africa. Cola acuminata and Cola nitida are used as masticatory when fresh, while the dried nuts are used for beverages and pharmaceutical purposes in Europe and North America. Garcinia kola seeds, that serve as a substitute for the true kola nuts, are used in African traditional medicine for the treatment of various diseases, including colic, headache and liver cirrhosis. Seeds extracts of G. kola are also known for their anti-inflammatory, antimicrobial and antiviral properties. To gain information on the chemical properties of the kolas, we have isolated and analyzed cell wall polysaccharides, arabinogalactan-proteins and phenolic substances from the seeds of the three kola species. The sugar composition of cell wall material of C. acuminata, C. nitida and G. kola revealed that Gal (up to 30%), Ara, GalA and Glc as the predominant monosaccharides, representing approximately 90% by mol of the total hydrolysable sugar present in this material. In Ammonium oxalate cell wall fraction, GalA was found to be the major sugar present in all kola species. In the alkali-soluble fraction, there were significant differences in the level of Glc and Gal. The level of Glc was high in C. acuminata and C. nitida while the level of Gal and Xyl were high in C. nitida and G. cola. Isolation and quantification of arabinogalactan-proteins demonstrate that G. kola seeds contained four to eight times more of these proteoglycans than the seeds of the other two species. Finally, analysis of soluble phenolic substances shows that caffeine and catechin were largely represented in C. acumina and C. nitida seeds, with caffeine accounting for 50% of all soluble phenolics. These findings indicate that the three Kola seeds are highly enriched in pectins and proteoglycans and that C. acuminata and C. nitida can be used as a possible source of caffeine and catechin.  相似文献   

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