virulence

毒力
  • 文章类型: Journal Article
    Sclerotinia sclerotiorum is a typical necrotrophic plant pathogenic fungus, which has a wide host range and can cause a variety of diseases, leading to serious loss of agricultural production around the world. It is difficult to control and completely eliminate the characteristics, chemical control methods is not ideal. Therefore, it is very important to know the pathogenic mechanism of S. sclerotiorum for improving host living environment, relieving agricultural pressure and promoting economic development. In this paper, the life cycle of S. sclerotiorum is introduced to understand the whole process of S. sclerotiorum infection. Through the analysis of the pathogenic mechanism, this paper summarized the reported content, mainly focused on the oxalic acid, cell wall degrading enzyme and effector protein in the process of infection and its mechanism. Besides, recent studies reported virulence-related genes in S. sclerotiorum have been summarized in the paper. According to analysis, those genes were related to the growth and development of the hypha and appressorium, the signaling and regulatory factors of S. sclerotiorum and so on, to further influence the ability to infect the host critically. The application of host-induced gene silencing (HIGS)is considered as a potential effective tool to control various fungi in crops, which provides an important reference for the study of pathogenesis and green control of S. sclerotiorum.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    Fowl cholera is an infectious disease that affects both poultry and wild birds, characterized by hemorrhagic and septicemic symptoms, caused by Pasteurella multocida (P. multocida), and leading to substantial economic losses in the poultry sector. The development of genetic engineering vaccines against avian P. multocida encountered early-stage challenges due to the limited availability of effective gene editing tools. Presently, NgAgoDM-enhanced homologous recombination stands as a potent technique for achieving efficient gene knockout in avian P. multocida. Hence, this study employed NgAgoDM-enhanced homologous recombination to target and knockout hyaE (239-359aa), hyaD, hexABC, and hexD, denoted as ΔhyaE (239-359aa), ΔhyaD, ΔhexABC, and ΔhexD, respectively. Additionally, we generated a hyaD recovery strain with two point mutations, designated as mhyaD. Thus, this study systematically examined the impact of capsular synthetic gene clusters on the pathogenicity of P. multocida. Moreover, the study demonstrated the critical role of hyaD activity in the virulence of avian P. multocida. This study offers novel insights for enhancing attenuated vaccines further.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    螺旋虫,属于Mollicutes班,是一个小,螺旋,缺乏细胞壁的能动细菌。它的宿主范围包括昆虫,植物,和水生甲壳类动物。最近,已经报道了一些人感染螺旋体的病例。螺旋虫引起的疾病给农业带来了严重的经济损失,阻碍了农业的健康发展。螺旋体的发病机制涉及粘附能力,例如通过螺旋体的末端结构,殖民,和侵入性酶。然而,螺旋体的确切致病机制仍然是个谜。因此,在这篇综述文章中,我们系统地总结了有关螺旋体的所有信息。这为今后研究螺旋体的毒力因子和治疗策略提供了参考。
    Spiroplasma, belonging to the class Mollicutes, is a small, helical, motile bacterium lacking a cell wall. Its host range includes insects, plants, and aquatic crustaceans. Recently, a few human cases of Spiroplasma infection have been reported. The diseases caused by Spiroplasma have brought about serious economic losses and hindered the healthy development of agriculture. The pathogenesis of Spiroplasma involves the ability to adhere, such as through the terminal structure of Spiroplasma, colonization, and invasive enzymes. However, the exact pathogenic mechanism of Spiroplasma remains a mystery. Therefore, we systematically summarize all the information about Spiroplasma in this review article. This provides a reference for future studies on virulence factors and treatment strategies of Spiroplasma.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    使用特定种族的抗性基因仍然是保护小麦免受全球小麦锈病(Pt)引起的叶锈病的有效策略,而新出现的铂种族,由于快速的遗传进化,经常克服由种族特异性抗性基因传递的免疫反应。新进化的毒力Pt病原体的分子机制仍然未知。这里,我们从Pt中鉴定出一种诱导Lr15依赖性免疫应答的无毒蛋白AvrLr15。异源产生的AvrLr15触发了Lr15等基因小麦叶片中明显的细胞死亡。AvrLr15含有功能性信号肽,定位于植物细胞核和细胞质,可以抑制BAX诱导的细胞死亡。小麦中Lr15介导的抗性的逃避与AvrLr15中氨基酸的缺失和点突变有关,而不是与Lr15破坏Pt种族中的AvrLr15基因丢失有关,这意味着AvrLr15是Pt毒力功能所必需的。我们的发现确定了小麦种族特异性免疫的第一个分子决定子,并促进了Pt-小麦病理系统中第一个AVR/R基因对的鉴定,这将提供一个分子标记来监测天然Pt种群,并指导在田间部署Lr15抗性小麦品种。
    Employing race-specific resistance genes remains an effective strategy to protect wheat from leaf rust caused by Puccinia triticina (Pt) worldwide, while the newly emerged Pt races, owing to rapid genetic evolution, frequently overcome the immune response delivered by race-specific resistance genes. The molecular mechanisms underlying the newly evolved virulence Pt pathogen remain unknown. Here, we identified an avirulence protein AvrLr15 from Pt that induced Lr15-dependent immune responses. Heterologously produced AvrLr15 triggered pronounced cell death in Lr15-isogenic wheat leaves. AvrLr15 contains a functional signal peptide, localized to the plant nucleus and cytosol and can suppress BAX-induced cell death. Evasion of Lr15-mediated resistance in wheat was associated with a deletion and point mutations of amino acids in AvrLr15 rather than AvrLr15 gene loss in the Lr15-breaking Pt races, implying that AvrLr15 is required for the virulence function of Pt. Our findings identified the first molecular determinant of wheat race-specific immunity and facilitated the identification of the first AVR/R gene pair in the Pt-wheat pathosystem, which will provide a molecular marker to monitor natural Pt populations and guide the deployment of Lr15-resistant wheat cultivars in the field.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    白僵菌,节肢动物的病原体,在宿主血淋巴(液体环境)中增殖,并在宿主尸体(气生表面)上形成腐生生长。在这项研究中,我们使用转录组学分析来比较这两个生长阶段的基因表达模式。在白僵菌的10366个预测基因中,10,026和9985个基因在空中(AM)和浸没(SM)菌丝体中表达,分别,与9853个基因重叠。两个转录组之间的比较分析表明,与SM文库相比,AM文库中有1041个上调基因。1995年基因下调,特别是,有7085个基因在两个转录组之间的表达没有显着变化。此外,25个酰胺酶基因(AMD),BbAMD5在两个转录组中都有高表达水平,其蛋白产物与气生菌丝体和浸没菌丝体的细胞壁有关。BbAMD5的破坏显着降低了菌丝体的疏水性,疏水蛋白易位,和在空中板块上的分体。功能分析还表明,BbAmd5参与肉汤中的球孢芽孢杆菌囊胚孢子形成,但对真菌毒力来说是可有可无的。这项研究揭示了在两种培养条件下生长的菌丝体之间在整体表达模式上的高度相似性。
    Beauveria bassiana, the causative agent of arthropod, proliferates in the host hemolymph (liquid environment) and shits to saprotrophic growth on the host cadaver (aerial surface). In this study, we used transcriptomic analysis to compare the gene expression modes between these two growth phases. Of 10,366 total predicted genes in B. bassiana, 10,026 and 9985 genes were expressed in aerial (AM) and submerged (SM) mycelia, respectively, with 9853 genes overlapped. Comparative analysis between two transcriptomes indicated that there were 1041 up-regulated genes in AM library when compared with SM library, and 1995 genes were down-regulated, in particular, there were 7085 genes without significant change in expression between two transcriptomes. Furthermore, of 25 amidase genes (AMD), BbAMD5 has high expression level in both transcriptomes, and its protein product was associated with cell wall in aerial and submerged mycelia. Disruption of BbAMD5 significantly reduced mycelial hydrophobicity, hydrophobin translocation, and conidiation on aerial plate. Functional analysis also indicated that BbAmd5 was involved in B. bassiana blastospore formation in broth, but dispensable for fungal virulence. This study revealed the high similarity in global expression mode between mycelia grown under two cultivation conditions.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    嗜麦芽窄食单胞菌复合体(Smc)已成为导致死亡率增加的重要医院病原体,特别是在血液感染的情况下。
    这项研究采用全基因组测序(WGS)来评估遗传多样性,抗菌素耐药性概况,从9年的菌血症病例中获得的55株嗜麦芽嗜血杆菌分离株的分子流行病学和毒力基因频率。
    基于95%平均核苷酸同一性(ANI)和70%数字DNA-DNA杂交(dDDH)的阈值,我们将37个分离株分为6个已知物种,都属于Smc。在这项研究中测序的其余18个分离株被分配给6个新的基因组物种。在55个分离株中,我们确定了44种不同的序列类型(ST),包括22个已知的和22个新的等位基因组合。Smc对甲氧苄啶-磺胺甲恶唑(TMP/SMX)的耐药率为3.6%,在这些分离物中检测到sul1和一类整合子整合酶基因(intI)。所有Smc分离株都对米诺环素敏感。此外,所有Smc菌株都带有mota,pilu,smf-1和Stmpr2基因。同源物种1(100%,n=9),嗜麦芽窄食单胞菌(84.21%,n=19)和窄食单胞菌(71.43%,n=7)表明afaD基因的百分比较高,这也与较高的分离率有关。除了mota,pilu,smf-1和Stmpr2基因,所有嗜麦芽窄食链球菌菌株(100%)都含有entA,gspD,卡塔,和stmPr1基因,虽然所有基因物种1菌株(100%)都含有afaD,entA,gspD,和KatA基因.
    我们的研究强调了来自菌血症患者的Smc分离株的遗传多样性,揭示了22种新颖的ST类型,58个新等位基因和6个新基因组。研究发现嗜麦芽窄食链球菌和巴氏链球菌携带更多的毒力因子,强调准确菌株识别的重要性。对于对TMP/SMX耐药的患者,米诺环素是一种有前途的替代抗生素。
    UNASSIGNED: The Stenotrophomonas maltophilia complex (Smc) has emerged as a significant nosocomial pathogen contributing to increased mortality rates, particularly in case of bloodstream infections.
    UNASSIGNED: This study employed whole-genome sequencing (WGS) to assess the genetic diversity, antimicrobial resistance profiles, molecular epidemiology and frequencies of virulence genes among 55 S. maltophilia isolates obtained from bacteremic cases over a 9-year period.
    UNASSIGNED: Based on the threshold of 95% average nucleotide identity (ANI) and 70% digital DNA-DNA hybridization (dDDH) for genospecies delineation, we classified 37 isolates into 6 known species, all belonging to the Smc. The remaining 18 isolates sequenced in this study were assigned to 6 new genomospecies. Among the 55 isolates, we identified 44 different sequence types (STs), comprising 22 known and 22 novel allele combinations. The resistance rate of Smc against trimethoprim-sulfamethoxazole (TMP/SMX) was found to be 3.6%, with the sul1 and class one integron integrase genes (intI) detected in these isolates. All Smc isolates were susceptible to minocycline. Furthermore, all Smc strains harbored the motA, pilU, smf-1 and Stmpr2 genes. Genomospecies 1 (100%, n = 9), Stenotrophomonas maltophilia (84.21%, n = 19) and Stenotrophomonas sepilia (71.43%, n = 7) demonstrated a higher percentage of the afaD gene, which was also associated with a higher separation rate. In addition to motA, pilU, smf-1, and Stmpr2 genes, all S. maltophilia strains (100%) contained entA, gspD, KatA, and stmPr1 genes, while all genomospecies 1 strains (100%) contained afaD, entA, gspD, and KatA genes.
    UNASSIGNED: Our study highlights the genetic diversity among Smc isolates from patients with bacteremia, revealing 22 novel ST types, 58 new alleles and 6 new genomospecies. S. maltophilia and S. pavanii were found to carry more virulence factors, emphasizing the importance of accurate strain identification. Minocycline emerged as a promising alternative antibiotic for patients who were resistant to TMP/SMX.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    沙门氏菌,一种突出的食源性病原体,对食品安全和全球公共卫生的发展提出了持久的挑战。对抗生素滥用的担忧不断升级,导致动物源性食品中药物残留过多,迫切需要探索沙门氏菌控制的替代策略。噬菌体作为抗致病菌的有前途的绿色生物防治剂出现。本研究描述了两种新型强毒性沙门氏菌噬菌体的鉴定,即噬菌体vB_SalS_ABTNLsp11241(称为sp11241)和噬菌体8-19(称为8-19)。两种噬菌体均表现出对肠道沙门氏菌血清型肠炎(SE)的有效感染性。此外,这项研究评估了两种噬菌体在三种不同食物中控制SE的有效性(全鸡蛋,生鸡肉,和生菜)在不同的MOI(1、100和10000)在4°C。值得注意的是,在MOI=100时,sp11241和8-19分别在3h和6h后以及在MOI=10000时在2h和5h后实现了对卵SE的完全消除。用sp11241处理12小时后,生鸡肉的SE最大降低3.17log10CFU/mL,生菜最大降低3.00log10CFU/mL。噬菌体8-19对生菜的作用与sp11241相同,但对鸡肉的作用略低于sp11241(最大降低2.69log10CFU/mL)。总之,sp11241和8-19在低温下控制食品中沙门氏菌污染方面具有相当大的潜力,并代表了作为食品应用绿色抗菌剂的可行候选物。
    Salmonella, a prominent foodborne pathogen, has posed enduring challenges to the advancement of food safety and global public health. The escalating concern over antibiotic misuse, resulting in the excessive presence of drug residues in animal-derived food products, necessitates urgent exploration of alternative strategies for Salmonella control. Bacteriophages emerge as promising green biocontrol agents against pathogenic bacteria. This study delineates the identification of two novel virulent Salmonella phages, namely phage vB_SalS_ABTNLsp11241 (referred to as sp11241) and phage 8-19 (referred to as 8-19). Both phages exhibited efficient infectivity against Salmonella enterica serotype Enteritidis (SE). Furthermore, this study evaluated the effectiveness of two phages to control SE in three different foods (whole chicken eggs, raw chicken meat, and lettuce) at different MOIs (1, 100, and 10000) at 4°C. It\'s worth noting that sp11241 and 8-19 achieved complete elimination of SE on eggs after 3 h and 6 h at MOI = 100, and after 2 h and 5 h at MOI = 10000, respectively. After 12 h of treatment with sp11241, a maximum reduction of 3.17 log10 CFU/mL in SE was achieved on raw chicken meat, and a maximum reduction of 3.00 log10 CFU/mL was achieved on lettuce. Phage 8-19 has the same effect on lettuce as sp11241, but is slightly less effective than sp11241 on chicken meat (a maximum 2.69 log10 CFU/mL reduction). In conclusion, sp11241 and 8-19 exhibit considerable potential for controlling Salmonella contamination in food at a low temperature and represent viable candidates as green antibacterial agents for food applications.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    SakazakiiCronobacter,机会食源性病原体,可能会污染各种食物材料,并导致婴儿出现危及生命的症状。细菌包膜结构有助于细菌环境耐受性,革兰氏阴性细菌中各种生物膜的形成和毒力。DsbA和PepP是与细菌包膜生物发生和稳固性有关的两个重要基因。在这项研究中,在Sakazakii中删除DsbA和PepP,以评估它们对病原体的胁迫耐受性和毒力的贡献。细菌环境抗性分析显示,DsbA和PepP在控制不同培养基中对热和干燥的影响是必不可少的。以及酸,渗透,氧化和胆汁盐应激。DsbA和PepP在调节生物膜形成和运动方面也起着重要作用。此外,DsbA和PepP缺失削弱了Caco-2中的Sakazakii粘附和侵袭、RAW264.7中的细胞内存活和复制。qRT-PCR结果表明,Sakazakii的DsbA和PepP在调节环境胁迫耐受性相关基因的表达中起作用,生物膜的形成,细菌运动和细胞入侵。这些发现表明,DsbA和PepP在环境抗性中起着重要的调节作用,Sakazakii的生物膜形成和毒力,这丰富了对病原体适应性和毒力的遗传决定因素的理解。
    Cronobacter sakazakii, an opportunity foodborne pathogen, could contaminate a broad range of food materials and cause life-threatening symptoms in infants. The bacterial envelope structure contribute to bacterial environment tolerance, biofilm formation and virulence in various in Gram-negative bacteria. DsbA and PepP are two important genes related to the biogenesis and stability of bacterial envelope. In this study, the DsbA and PepP were deleted in C. sakazakii to evaluate their contribution to stress tolerance and virulence of the pathogen. The bacterial environment resistance assays showed DsbA and PepP are essential in controlling C. sakazakii resistance to heat and desiccation in different mediums, as well as acid, osmotic, oxidation and bile salt stresses. DsbA and PepP also played an important role in regulating biofilm formation and motility. Furthermore, DsbA and PepP deletion weaken C. sakazakii adhesion and invasion in Caco-2, intracellular survival and replication in RAW 264.7. qRT-PCR results showed that DsbA and PepP of C. sakazakii played roles in regulating the expression of several genes associated with environment stress tolerance, biofilm formation, bacterial motility and cellular invasion. These findings indicate that DsbA and PepP played an important regulatory role in the environment resisitance, biofilm formation and virulence of C. sakazakii, which enrich understanding of genetic determinants of adaptability and virulence of the pathogen.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    灰霉病是造成农业生产重大损失的毁灭性疾病,灰霉病菌是一种坏死性模型真菌植物病原体。膜蛋白是杀菌剂的重要靶标,也是杀菌剂产品研发的热点。武义恩辛影响灰霉病菌的通透性和致病性,平行反应监测揭示了膜蛋白Bcsdr2的缔合,并阐明了五味子素的抑菌机理。在目前的工作中,我们产生并表征了ΔBcsdr2缺失,并补充了突变的B.cinerea菌株。ΔBcsdr2缺失突变体表现出生物膜丢失和溶解,草莓和葡萄果实坏死定植减少说明了它们的功能活性。Bcsdr2的靶向缺失也阻断了菌丝体生长方面的几种表型缺陷,分生孢子和毒力。通过靶向基因互补恢复所有表型缺陷。定量实时RT-PCR结果也支持了Bcsdr2在生物膜和致病性中的作用,结果表明,磷脂酰丝氨酸脱羧酶合成基因Bcpsd和几丁质合酶基因BcCHSVII在ΔBcsdr2菌株的感染早期被下调。结果表明,Bcsdr2在调节灰霉病菌的各种细胞过程中起着重要作用。要点:•乌依恩辛抑制灰白芽孢杆菌的机制与膜蛋白密切相关。•Wuyiencin可以下调灰霉病中膜蛋白Bcsdr2的表达。•Bcsdr2参与调节灰霉病毒力,成长和发展。
    Grey mould caused by Botrytis cinerea is a devastating disease responsible for large losses to agricultural production, and B. cinerea is a necrotrophic model fungal plant pathogen. Membrane proteins are important targets of fungicides and hotspots in the research and development of fungicide products. Wuyiencin affects the permeability and pathogenicity of B. cinerea, parallel reaction monitoring revealed the association of membrane protein Bcsdr2, and the bacteriostatic mechanism of wuyiencin was elucidated. In the present work, we generated and characterised ΔBcsdr2 deletion and complemented mutant B. cinerea strains. The ΔBcsdr2 deletion mutants exhibited biofilm loss and dissolution, and their functional activity was illustrated by reduced necrotic colonisation on strawberry and grape fruits. Targeted deletion of Bcsdr2 also blocked several phenotypic defects in aspects of mycelial growth, conidiation and virulence. All phenotypic defects were restored by targeted gene complementation. The roles of Bcsdr2 in biofilms and pathogenicity were also supported by quantitative real-time RT-PCR results showing that phosphatidylserine decarboxylase synthesis gene Bcpsd and chitin synthase gene BcCHSV II were downregulated in the early stages of infection for the ΔBcsdr2 strain. The results suggest that Bcsdr2 plays important roles in regulating various cellular processes in B. cinerea. KEY POINTS: • The mechanism of wuyiencin inhibits B. cinerea is closely associated with membrane proteins. • Wuyiencin can downregulate the expression of the membrane protein Bcsdr2 in B. cinerea. • Bcsdr2 is involved in regulating B. cinerea virulence, growth and development.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    建立完整的细胞内寄生虫液泡(PV),以实现有效的营养吸收和蛋白质运输对于弓形虫的生存和增殖至关重要。尽管PV膜(PVM)定位的致密颗粒蛋白17(GRA17)和GRA23介导了PVM对小分子的渗透性,包括代谢副产物的营养吸收和排泄,弓形虫获取营养物质的分子机制尚不清楚。在这项研究中,我们表明分泌蛋白GRA47有助于正常的PV形态,PVM对小分子的渗透性,增长,还有弓形虫的毒力.免疫共沉淀分析显示了GRA47与GRA72的潜在相互作用,并且GRA72的丢失影响了PV形态,寄生虫生长和传染性。为了研究GRA47,GRA72,GRA17和GRA23之间的生物学关系,尝试构建具有双基因缺失和过表达菌株的菌株。仅成功构建了Δgra23Δgra72。与Δgra23菌株相比,该菌株的异常PV比例显着增加。过表达三个相关GRA之一部分挽救了Δgra47,Δgra72和Δgra17中形态异常的PV,而恶性疟原虫PVM蛋白PfExp2的表达是GRA17和GRA23的直系同源,完全挽救了PV形态缺陷。所有三个Δgra菌株。这些结果表明,这三种GRA蛋白可能不是功能上的冗余,而是以不同的方式调节营养获取。这些发现强调了弓形虫营养吸收机制的多功能性,这可能有助于寄生虫在非常广泛的宿主中的不同细胞壁龛中生长的非凡能力。
    Establishing an intact intracellular parasitophorous vacuole (PV) that enables efficient nutrient uptake and protein trafficking is essential for the survival and proliferation of Toxoplasma gondii. Although the PV membrane (PVM)-localized dense granule protein 17 (GRA17) and GRA23 mediate the permeability of the PVM to small molecules, including nutrient uptake and excretion of metabolic by-products, the molecular mechanism by which T. gondii acquires nutrients remains unclear. In this study, we showed that the secreted protein GRA47 contributed to normal PV morphology, PVM permeability to small molecules, growth, and virulence in T. gondii. Co-immunoprecipitation analysis demonstrated potential interaction of GRA47 with GRA72, and the loss of GRA72 affected PV morphology, parasite growth and infectivity. To investigate the biological relationship among GRA47, GRA72, GRA17 and GRA23, attempts were made to construct strains with double gene deletion and overexpressing strains. Only Δgra23Δgra72 was successfully constructed. This strain exhibited a significant increase in the proportion of aberrant PVs compared with the Δgra23 strain. Overexpressing one of the three related GRAs partially rescued PVs with aberrant morphology in Δgra47, Δgra72 and Δgra17, while the expression of the Plasmodium falciparum PVM protein PfExp2, an ortholog of GRA17 and GRA23, fully rescued the PV morphological defect in all three Δgra strains. These results suggest that these three GRA proteins may not be functionally redundant but rather work in different ways to regulate nutrient acquisition. These findings highlight the versatility of the nutrient uptake mechanisms in T. gondii, which may contribute to the parasite\'s remarkable ability to grow in different cellular niches in a very broad range of hosts.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

公众号