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1.
在中国,入侵生物松材线虫进行传播的主要媒介昆虫松墨天牛(Monochamus alternatus)可与一种中国本地蓝变真菌Sporothrix sp.1建立体外共生关系.然而在天牛和真菌共生互作过程中,松墨天牛对蓝变菌S.sp.1的免疫响应却未见报道.因此,本文通过比较体外共生真菌S.sp.1和昆虫病原真菌球孢白僵菌(Beauveria bassiana)感染松墨天牛蛹所产生的免疫反应,发现天牛对两种菌的免疫应答方式具有显著性差异.将真菌注射到刚化蛹的天牛体内,S.sp.1感染的天牛不会死亡,B.bassiana感染的天牛则全部死亡.转录组测序结果显示,B.bassiana感染48 h后的松墨天牛的差异表达基因数量是S.sp.1感染的2倍.值得注意的是,在体外共生真菌感染的松墨天牛免疫系统中起主导作用的是Toll和IMD信号通路;而在昆虫病原真菌感染松墨天牛后,只有Toll信号通路上调表达.此外,体外共生真菌S.sp.1在感染天牛48 h后可通过下调天牛的Toll通路和IMD通路来产生免疫逃避.本研究提供了松墨天牛转录组全测序数据,为后续松墨天牛和其相关真菌互作研究提供了基础.  相似文献   

2.
果蝇先天性免疫研究进展   总被引:2,自引:0,他引:2  
曹慧  李宗芸  王秋香 《昆虫知识》2009,46(2):196-202
果蝇是生命科学与人类疾病研究的重要模式生物,虽然不具有人类高度专一的获得性免疫,但也有对病原微生物感染作出快速有效反应的先天性免疫应答系统,主要包括体液免疫,细胞免疫和黑化反应。文章结合国外最新研究,详细介绍果蝇体液免疫中控制抗菌肽合成的Toll信号通路和Imd信号通路中涉及的蛋白及其相互作用,并对果蝇细胞免疫中的吞噬、包埋功能和黑化反应作简要阐述。研究表明,果蝇的Toll和Imd信号通路分别与人类的TLR4和TNRF-1信号通路存在着惊人的相似之处,说明果蝇与人类在免疫调控通路方面可能存在着共同的进化起源。  相似文献   

3.
家蚕免疫稳态调控分子的鉴定和表达模式分析   总被引:1,自引:0,他引:1  
王菲  李亚明  化晓婷  夏庆友 《昆虫学报》2012,55(9):999-1007
昆虫免疫稳态的维持有赖于准确地激活和有效地抑制Toll或IMD信号通路中的关键转录因子-- Dorsal/Dif或Relish。在果蝇等昆虫中, 已报道了多种降低转录因子稳定性和活性的免疫稳态调控分子, 突变或敲除这类分子导致免疫系统的过度激活。对家蚕Bombyx mori免疫信号通路的研究中, 至今为止尚无对这类分子的探索。本研究通过比较基因组学, 在家蚕基因组中鉴定了多个可能参与免疫稳态调控的分子, 包括Wnt家族成员、 Ubc9、 FAF和POSH等; 并通过检测家蚕被微生物感染后这些分子在多种免疫器官中的诱导表达模式, 发现这些分子的表达水平在微生物感染后普遍呈下降趋势, 虽然在某些组织中表达量有明显的升高(>1.5倍), 但此高表达水平均不能维持且迅速下降; 而且免疫稳态调控分子和受其调控的信号通路的对应关系在不同组织中表现出差异。本研究是首次对家蚕免疫稳态调控分子的报道, 为深入研究家蚕免疫负调控的分子机制提供了参考。  相似文献   

4.
何慧芬  张璐  秦爱建  钱琨 《微生物学通报》2022,49(12):5331-5341
cGAS-STING信号通路是一种细胞内DNA感受器,可以识别自身病变或外部进入细胞质中的双链DNA。其不仅与肿瘤、病毒和细菌感染及自身免疫系统疾病密切相关,而且在非特异性免疫系统中发挥重要作用。截至目前,国内外对于cGAS-STING信号通路的研究主要集中在哺乳动物肿瘤相关性疾病及与先天性免疫系统相关的疾病中,而通路对畜禽疾病调控的影响机制非常重要。本文以cGAS-STING信号通路在宿主受到病原感染中发挥的作用为切入点,对其在不同畜禽病原感染中的调控作用进行综合论述,以期为畜禽疾病的防控提供理论依据和参考。  相似文献   

5.
昆虫免疫致敏研究进展   总被引:1,自引:0,他引:1  
通常认为昆虫缺少获得性免疫(acquired immunity)且完全依赖天然免疫系统(innate immune defense system)来应对病原微生物的感染。然而越来越多的研究表明,昆虫等无脊椎动物早期的病原菌感染经历能够增强后期遭遇病原感染时的免疫力,这种现象称为免疫致敏(immune priming)。类似于脊椎动物的获得性免疫,一些昆虫在致敏后可以展现出极大程度的特异性和记忆性,致敏保护效应甚至可以达到种或菌株水平的特异性,并且可以跨代传递。昆虫在体内缺乏获得性免疫分子元件的基础上,仍然可以实现免疫的记忆性和特异性,说明昆虫的天然免疫系统存在独特的机制来调控该过程。本文综述了昆虫免疫致敏和跨代传递的研究进展,探讨了昆虫免疫致敏发生的特定条件及影响因素,并对昆虫免疫致敏和跨代传递的潜在调控机理进行了阐述。此外,免疫致敏本身可能是耗能的过程,本文也从致敏可塑的角度探讨了致敏反应的适应性代价。最后,对昆虫免疫致敏未来的研究方向以及在害虫防治中的应用前景进行了展望。  相似文献   

6.
鱼类Toll样受体及其信号传导的研究进展   总被引:6,自引:0,他引:6  
鱼类是脊椎动物中的一个重要类群, 在其生存与进化的过程中, 免疫系统担负着保护鱼类免受病原感染的重任, 其中Toll样受体家族等介导的先天性免疫是鱼类抗病免疫的第一道防线, 并在连接先天性免疫与获得性免疫反应中起着桥梁作用. 虽然从无脊椎动物到高等脊椎动物, Toll样受体家族内多数成员在蛋白质结构与功能上都较为保守, 但是鱼类作为最低等的脊椎动物, 在其进化过程中又形成了一些特有Toll样受体分子, 其剪接类型也更丰富; 鱼类Toll样受体家族介导的免疫识别、免疫信号传导、激活和调控方式与高等脊椎动物也不尽相同. 文章主要综述了鱼类Toll样受体的结构、种类、功能、多样性、免疫信号传导及其调控特点, 为深入了解鱼类的免疫反应奠定基础.    相似文献   

7.
刘小民  袁明龙 《遗传》2018,40(6):451-466
在长期进化过程中,昆虫形成了强大的天然免疫防御系统,即体液免疫和细胞免疫。体液免疫主要包括Toll、IMD和JAK/STAT 3条信号通路,通过信号转导及免疫途径调控免疫相关基因的表达,诱导产生抗菌肽和其他效应分子。细胞免疫由血细胞介导,主要完成对病原物的包裹、吞噬和集结等。近年来,昆虫基因组学快速发展,通过生物信息学等方法从昆虫基因组数据中已鉴定到大量免疫相关基因,对这些基因的研究加深了人们对昆虫天然免疫分子机制的认识和理解。根据基因功能,免疫相关基因分为识别、信号转导、调制器、效应分子、黑化反应、RNA干扰和其他基因等7类,这些基因通过互作来调控体液免疫和细胞免疫。本文对昆虫免疫相关基因的分类、功能及家族进化等方面的研究成果进行总结,并对今后昆虫免疫的研究重点进行了展望,以期为昆虫免疫分子机制的研究及开发新的害虫防治策略提供依据。  相似文献   

8.
戴静雯  周萍萍  李素  仇华吉 《微生物学报》2022,62(10):3709-3721
天然免疫是机体通过识别自身或外部危险信号后,为维持体内稳态而逐步建立起来的一系列防御反应,当宿主细胞内的模式识别受体识别胞内病原相关分子模式后激活干扰素(interferon, IFN)、核因子-kappa B (nuclear factor-kappa B, NF-κB)和炎性小体等信号通路。IFNs在天然免疫应答中发挥重要作用,它诱导的抗病毒基因能够通过多种方式抵御病毒的感染,炎症反应则是机体自动的防御反应,能够在病毒感染机体时释放促炎性细胞因子以调控机体的免疫反应,进而发挥抗病毒作用。在病毒感染过程中,IFN信号通路与炎症反应调控网络中的关键分子如NF-κB/RelA、PKR等存在一定的交互作用,此外,IFN信号通路及其产生的细胞因子又影响其他信号通路的活化,进而调控机体的免疫应答以维持自身稳态,它们之间的交互调控失衡将会引起过度炎症反应,导致组织器官的免疫病理损伤,例如SARS-CoV-2感染机体时产生的过度炎症反应。本文综述了机体抗病毒免疫过程中干扰素信号通路与炎症反应之间的交互调控,为研发抗病毒策略提供新思路。  相似文献   

9.
Toll样受体家族是一类模式识别受体,它介导了一个植物,昆虫,哺乳动物共同拥有的高度保守的信号通路。最近几年相继发现了多种人类Toll样受体以及相关的病原微生物配体,这些配体涵盖了病毒,细菌,真菌等微生物上多种保守的病原相关分子模式。可见Toll样受体在多种病原微生物及其产物的识别和免疫防御反应中有重要的作用。  相似文献   

10.
张雨茜  王荣花  陈祥  严彦  张评浒 《病毒学报》2021,37(5):1234-1243
Toll样受体(Toll-like receptors,TLR)是参与非特异性免疫的Ⅰ型跨膜蛋白分子,可识别病原相关分子模式(Pathogen-associated molecular patterns,PAMP)并在病原体侵入体内的早期阶段激活机体的免疫应答,在响应宿主细胞对微生物病原体的识别中起重要作用,是机体抵抗感染疾病的重要屏障.以流感病毒和冠状病毒为代表的呼吸道病毒感染在临床具有极高的发病率和死亡率.此类病毒感染细胞后可通过模式识别受体和病原体相关分子模式相互作用激活宿主的先天免疫系统,诱发宿主产生过激的炎症反应从而引发"细胞因子风暴",最终导致急性肺损伤与急性呼吸窘迫综合症而致人死亡.因此,本文就Toll样受体家族中的Toll样受体4介导的信号通路为对象,就其介导的信号通路在流感病毒与冠状病毒复制及其在导致病毒性急性肺损伤与ARDS形成中的作用及靶向抑制该通路治疗病毒性肺炎的研究进展作一综述,以供同行参考.  相似文献   

11.
Insects are infected by a wide array of viruses some of which are insect restricted and pathogenic, and some of which are transmitted by biting insects to vertebrates. The medical and economic importance of these viruses heightens the need to understand the interaction between the infecting pathogen and the insect immune system in order to develop transmission interventions. The interaction of the virus with the insect host innate immune system plays a critical role in the outcome of infection. The major mechanism of antiviral defense is the small, interfering RNA pathway that responds through the detection of virus-derived double-stranded RNA to suppress virus replication. However, other innate antimicrobial pathways such as Imd, Toll, and Jak-STAT and the autophagy pathway have also been shown to play important roles in antiviral immunity. In this review, we provide an overview of the current understanding of the main insect antiviral pathways and examine recent findings that further our understanding of the roles of these pathways in facilitating a systemic and specific response to infecting viruses.  相似文献   

12.
Insects possess an immune system that protects them from attacks by various pathogenic microorganisms that would otherwise threaten their survival. Immune mechanisms may deal directly with the pathogens by eliminating them from the host organism or disarm them by suppressing the synthesis of toxins and virulence factors that promote the invasion and destructive action of the intruder within the host. Insects have been established as outstanding models for studying immune system regulation because innate immunity can be explored as an integrated system at the level of the whole organism. Innate immunity in insects consists of basal immunity that controls the constitutive synthesis of effector molecules such as antimicrobial peptides, and inducible immunity that is activated after detection of a microbe or its product(s). Activation and coordination of innate immune defenses in insects involve evolutionary conserved immune factors. Previous research in insects has led to the identification and characterization of distinct immune signalling pathways that modulate the response to microbial infections. This work has not only advanced the field of insect immunology, but it has also rekindled interest in the innate immune system of mammals. Here we review the current knowledge on key molecular components of insect immunity and discuss the opportunities they present for confronting infectious diseases in humans.  相似文献   

13.
14.
All metazoans have evolved means to protect themselves from threats present in the environment: injuries, viruses, fungi, bacteria and other parasites. Insect protection includes innate physical barriers and both cellular and humoral responses. The insect innate immune response, best characterized in Drosophila melanogaster, is a rapid broad response, triggered by pathogen-associated molecular patterns (PAMPs) recognition, which produces a limited range of effectors that does not alter upon continued pathogen exposure and lacks immunological memory. The Drosophila response, particularly its humoral response, has been investigated by both low and high-throughput methods. Three signalling pathways conserved between insects and mammals have been implicated in this response: Toll (equivalent to mammalian TLR), Imd (equivalent to TNFalpha) and Hop (equivalent to JAK/STAT). This review provides an entry point to the insect immune system literature outlining the main themes in D. melanogaster bacterial pathogen detection and humoral and cellular immune responses. The Drosophila immune response is compared with other insects and the mammalian immune system.  相似文献   

15.
Bacterial recognition and signalling by the Drosophila IMD pathway   总被引:5,自引:0,他引:5  
  相似文献   

16.
Infectious microbes face an unwelcoming environment in their mammalian hosts, which have evolved elaborate multicelluar systems for recognition and elimination of invading pathogens. A common strategy used by pathogenic bacteria to establish infection is to secrete protein factors that block intracellular signalling pathways essential for host defence. Some of these proteins also act as toxins, directly causing pathology associated with disease. Bacillus anthracis, the bacterium that causes anthrax, secretes two plasmid-encoded enzymes, LF (lethal factor) and EF (oedema factor), that are delivered into host cells by a third bacterial protein, PA (protective antigen). The two toxins act on a variety of cell types, disabling the immune system and inevitably killing the host. LF is an extraordinarily selective metalloproteinase that site-specifically cleaves MKKs (mitogen-activated protein kinase kinases). Cleavage of MKKs by LF prevents them from activating their downstream MAPK (mitogen-activated protein kinase) substrates by disrupting a critical docking interaction. Blockade of MAPK signalling functionally impairs cells of both the innate and adaptive immune systems and induces cell death in macrophages. EF is an adenylate cyclase that is activated by calmodulin through a non-canonical mechanism. EF causes sustained and potent activation of host cAMP-dependent signalling pathways, which disables phagocytes. Here I review recent progress in elucidating the mechanisms by which LF and EF influence host signalling and thereby contribute to disease.  相似文献   

17.
Many viruses regulate a crucial point in the apoptotic pathway by expressing viral Bcl-2 homologues, which have become useful tools to investigate the mechanisms behind the control of the mitochondrial checkpoint of apoptosis. Concurrently, a number of viral inhibitors of innate immune signalling have been instrumental tools in the discovery of key host pathways. Here we discuss how viral inhibitors of the apoptotic and innate signalling pathways have further enhanced the understanding of both research fields and are beginning to shed light on how these two pathways converge.  相似文献   

18.
As a cytoplasmic protein tyrosine kinase, Bruton's tyrosine kinase (Btk) is widely considered as a vital kinase in many aspects of different physiologic processes. It is engaged in many important signalling pathways related to the immune response, such as the B cell receptor pathway, pattern‐recognition receptor pathway, and triggering receptor expressed on myeloid cell pathway. Recent studies have increasingly focused on the important role of Btk in various inflammatory diseases, which are related to Btk expression in myeloid innate immune cells, such as macrophages, dendritic cells and neutrophils. Although some investigations have explored the role of Btk in microbial infections, many aspects remain elusive, and some of the results are opposite and controversial. Considering the complicated and multiple roles of Btk in the immune system, we summarized the engagement of Btk signalling in various pathogenic microorganism infections, the possible mechanisms involved and its therapeutic potential in the control of infectious diseases.  相似文献   

19.
Wu J  Randle KE  Wu LP 《Cellular microbiology》2007,9(4):1073-1085
The immune response-deficient 1 (ird1) gene was identified in a forward genetic screen as a novel regulator for the activation of Imd NFkappaB immune signalling pathway in Drosophila. ird1 animals are also more susceptible to Escherichia coli and Micrococcus luteus bacterial infection. ird1 encodes the Drosophila homologue of the Vps15/p150 serine/threonine kinase that regulates a class III phosphoinositide 3-kinase and is necessary for phagosome maturation and starvation-induced autophagy in yeast and mammalian cells. To gain insight into the role of ird1 in the immune response, we examine how amino acid starvation affects the immune signalling pathways in Drosophila. Starvation, in the absence of infection, leads to expression of antimicrobial peptide (AMP) genes and this response is dependent on ird1 and the Imd immune signalling pathway. Starvation, in addition to bacterial infection, suppresses the AMP response in wild-type animals and reduces the ability to survive M. luteus infection. Our results suggest that starvation and innate immune signalling may be intimately linked processes.  相似文献   

20.
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