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1.
微生物VBNC状态形成及复苏机制   总被引:3,自引:1,他引:2  
张硕  丁林贤  苏晓梅 《微生物学报》2018,58(8):1331-1339
99%以上的微生物因处于活的但非可培养(viable but non-culturable,VBNC)状态而无法分离培养。复苏促进因子(resuscitation-promoting factors,Rpfs)是培养获取VBNC菌的最重要突破。结合课题组近十余年从环境功能视角利用Rpf复苏培养VBNC菌的研究,本文在阐述微生物VBNC状态的形成及复苏进展的基础上,从VBNC菌形成及复苏过程出发,探究"探索因子"与群体感应的内在关系。并总结了课题组利用Rpf所复苏培养的具有潜在环境功能的VBNC菌种。本论文将为揭示微生物VBNC状态的形成及复苏机制提供新的思路,并为认识和重新评价Rpf法复苏培养VBNC菌在污染环境微生物修复中的作用提供理论依据。  相似文献   

2.
活的但非可培养(“viable but non-culturable”,简称VBNC)状态是微生物应对各种环境压力的一种生存机制.面对日益严重的异生质污染问题,研究污染胁迫下VBNC状态菌的潜在环境功能具有重要意义.该文阐述了VBNC状态菌的研究现状,针对多氯联苯微生物降解存在的问题,重点介绍环境中潜在VBNC功能菌群的复苏培养.提出利用藤黄球菌(Micrococcus luteus)复苏促进因子(resuscitation-promoting factor,简称Rpf)探索具有潜在多氯联苯降解功能的VBNC状态菌群,为多氯联苯高效降解菌群的筛选提供新思路.同时,结合VBNC状态菌絮凝、硝化除臭等方面的探索研究,对VBNC状态菌的潜在环境功能进行了展望.  相似文献   

3.
环境中"活的非可培养(VBNC)"细菌的研究进展   总被引:9,自引:0,他引:9  
1982年徐怀恕等通过对V.cholerae和E.coli存活规律的研究,首次发现并提出了细菌“活的非可培养”状态(Viable but non—culturable state,VBNC),即细菌处于不良环境条件下,其细胞通常缩成球形(最近许多研究中发现还有些细菌表现为体积增大,细胞伸长),用常规方法培养不能使其生长繁殖,但仍然具有代谢活性,在DNA合成抑制剂的作用下,添加一定量的营养物培养时,这些细胞虽然不能分裂,但仍可以伸长生长,证明其仍然存活,并非死亡。处于VBNC状态的细菌,在一定的条件下可以复苏,并具有潜在的致病性,如V.cholerae即通过这种形式实现越冬。至今已有多种细菌进入VBNC状态的报道,许多G^-菌及某些不形成芽胞的G^ 菌在不良环境条件下都可能进入该状态。这些细菌通过进入VBNC状态,得以渡过难关并存活下来,成为细菌的一种特殊存活形式。现在,细菌VBNC状态已作为微生物学的一个全新概念,受到极大的关注,它对传统的微生态学、食品安全、水质监测、菌种保藏及流行病学研究等均提出了新的挑战,也为人们应用基因工程菌的危险性评估提供了新的认识,本文对环境中VBNC细菌的研究进展进行了综述。  相似文献   

4.
自然界中处于VBNC状态微生物的研究进展   总被引:6,自引:0,他引:6  
自然界中大约有90%以上的微生物尚未被分离鉴定。80年代初提出VBNC状态微生物的存在,所谓的VBNC是指微生物在自然界中生存的一种状态,本综述了在实验室条件下VBNC状态的形成条件、培养性的恢复及处于VBNC状态微生物的检测方法等方面的研究进展,并介绍了第一个微生物生长因子Rpf.  相似文献   

5.
为研究在低温寡营养条件下副溶血弧菌(Vibrio parahaemolyticus)能否进入活的非可培养状态(VBNC),将浓度为1×1010CFU/mL的副溶血弧菌HW799在陈海水中4℃保存,每隔5天取样分别用吖啶橙染色荧光显微镜直接计数法(AODC)、活菌直接计数法(DVC)和涂布平板法(PC)测定细菌总数、活细菌数和可培养细菌数.在第30天时总细菌数基本不变,仍保持在109CFU/mL,活菌数为106CFU/mL,比总菌数低了约三个数量级,可培养细菌数为零,表明绝大部分副溶血弧菌HW799进入了VBNC状态;用扫描电镜、流式细胞仪对副溶血弧菌HW799活的非可培养状态、正常状态以及复苏后的细胞形态的研究表明进入VBNC状态后副溶血弧菌HW799形状变为球状,体积比正常状态明显变小,活细胞数也略有减少;采用在培养液中添加营养物质升温培养的方法,使VBNC状态的副溶血弧菌细胞在48h内复苏为可培养状态,复苏后的副溶血弧菌HW799与正常状态的细菌形态相似.  相似文献   

6.
细菌的"活的非可培养状态"(VBNC, viable but nonculturable)发现于20世纪80年代,处于此状态的细菌不但丧失了在培养基上生长繁殖的能力,而且具有与原菌相似的致病性,成为可以逃避检测的"隐性"传染源,对周围的环境及人类安全构成潜在威胁.作为公认的未可培养微生物,它一直是预防医学、流行病学、微生物生态学以及公共卫生检验检疫方面研究的热点问题之一.现代分子生物学技术和基因组学的深入研究,为开发环境中的未可培养微生物提供了新的研究方法和机遇.其中遗传指纹图谱技术、宏基因组技术显示出一定的优势,同时,随着各种细菌的非可培养状态的实验室模型已日臻成熟,这为开发和利用未可培养微生物资源提供了新的研究思路.  相似文献   

7.
自然界中大约有 90 %以上的微生物尚未被分离鉴定。 80年代初提出VBNC状态微生物的存在 ,所谓的VBNC是指微生物在自然界中生存的一种状态 ,本文综述了在实验室条件下VBNC状态的形成条件、培养性的恢复及处于VBNC状态微生物的检测方法等方面的研究进展 ,并介绍了第一个微生物生长因子Rpf。  相似文献   

8.
石油降解菌在各种有害环境因素作用下会进入活的非可培养(viable but non-culturable, VBNC)状态,从而影响其生长及石油降解率。为了研究有害环境因素对石油降解菌生长及石油降解率的影响,采用分光光度法、荧光染色-激光共聚焦显微镜观测H2O2胁迫下苍白杆菌(Ochrobactrum sp.)JP1细胞的生长及VBNC状态形成情况。结果表明,不同浓度H2O2对其生长有一定抑制作用,当培养液中H2O2浓度为75.0 mmol/L时,可有效抑制苍白杆菌JP1生长,处理12 h后苍白杆菌JP1进入VBNC状态。VBNC状态的苍白杆菌JP1细胞缩小变成球体,周质间隙增大;在适宜条件下,VBNC状态苍白杆菌JP1能够复苏为可培养状态,添加丙酮酸钠能够促进VBNC状态细菌细胞的复苏。复苏后的苍白杆菌RJP1具有良好的环境适应性和石油降解能力,为石油污染生物修复的菌种筛选及应用提供了新的策略。  相似文献   

9.
目的 通过诱导空肠弯曲菌进入活的不可培养(VBNC)状态建立细胞学模型,用VeroE6细胞和HeLa细胞检测空肠弯曲菌产细胞膨胀性肠毒素(cytotoxic distendingtoxin,CDT)能力的改变,并在RNA水平上进一步验证毒素的表达。方法 采用4℃冷藏及-70℃冷冻的方法诱导空肠弯曲菌进入VBNC状态,利用细胞总数计算、活细胞染色计数及可培养细胞计数间接确证VBNC状态细菌的存在,细胞对于VBNC状态下的细菌仍然敏感,并用反转录-聚合酶链反应(RT-PCR)证实空肠弯曲菌毒素基因的表达。结果 3种不同状态的细胞计数结果表明存活细胞进入了VBNC状态,细菌经4℃冷藏及-70℃冷冻后数量减少约1个数量级,在冷冻前,细菌对细胞毒性较强,72h时70%以上细胞凋亡,冷冻后的VBNC状态细菌对VeroE6和HeLa细胞的生长仍有影响,72h时约有40%细胞进入凋亡状态。结论 低温、贫养条件下空肠弯曲菌可进入VBNC状态,用常规传统的羊血平板培养基仅能使不到10%的空肠弯曲菌复苏生长,从而可以检测,在VBNC状态时,空肠弯曲菌产毒素能力改变较大,远远低于正常状态,但仍具备产毒素的能力,也从RNA水平实验得到证实。  相似文献   

10.
细菌“活的不可培养状态”的生态意义及研究进展   总被引:1,自引:0,他引:1  
王秀娟  朱琳  陈中智  李宇 《微生物学通报》2008,35(12):1938-1942
"活的不可培养(VBNC)"状态是细菌在不良条件下的一种生存方式.VBNC状态作为细菌的一种生理状态,对传统微生物学产生了深远的影响.进入VBNC状态的细胞发生了一系列变化,无法继续用常规培养方法检测,在医学健康,环境科学等领域产生了巨大的影响,改进检测方法具有重要的意义.本文介绍了进入VBNC状态细菌在DNA、蛋白质组成等方面发生的变化,复苏过程.同时还介绍了VBNC状态的最新检测方法,最后对VBNC状态未来的研究方法进行了讨论.  相似文献   

11.
细菌有活力但不可培养状态及其机制研究进展   总被引:1,自引:1,他引:0  
有活力但不可培养(viable but non-culturable,VBNC)状态是细菌遭遇逆境时进入的一种特殊状态,该状态下的菌体在条件适宜时可复苏并恢复其致病性,被认为是细菌躲避不良环境的一种生存策略。VBNC状态菌体对人类医学和工农业生产具有巨大的潜在威胁,开展关于VBNC状态的检测及诱导、复苏及其机制研究可为减少或避免该状态细菌的危害提供理论基础。本文简要综述了细菌VBNC状态在诱导、复苏及致病性等方面的研究进展,并结合本实验室及国内外相关团队近年来在植物病原细菌VBNC状态研究中的结果,详细总结了VBNC状态细菌的形成和复苏机制,对植物病原细菌在环境胁迫下的存活机制、病害田间初侵染来源分析及VBNC状态菌体在病害循环中的作用等相关研究具有重要参考意义。  相似文献   

12.
The bioremediation of polycyclic aromatic hydrocarbon (PAH)‐contaminated sites is not running smoothly, because of the lower activity of PAH‐degrading bacteria in actual bioremediation applications. The phenomenon of “viable but nonculturable” (VBNC) state may be a main limiting factor for their poor biodegradation capabilities of PAHs. Due to their abilities of entering into the VBNC state, most of bacterial populations with PAH‐degradation potential remain unculturable. Resuscitation of VBNC bacteria will enhance the degradation capability of indigenous bacteria which will eventually obtain their better capabilities in environmental bioremediation. Although evidences have been presented indicating that resuscitation of VBNC bacteria in polychlorinated biphenyl (PCB)‐contaminated environments not only significantly enhanced PCB degradation, but also obtained novel highly efficient PCB‐degrading bacteria, scanty information is available on the VBNC bacteria in PAH‐contaminated sites. VBNC bacteria, as a vast majority of potential microbial resource could be the repository of novel highly efficient PAH‐biodegraders. Therefore, studies need to be done on resuscitation of VBNC bacteria to overcome key bottlenecks in bioremediation of PAH‐contaminated sites. This mini‐review provides a new insight into the potential functions of VBNC bacteria in PAHs biodegradation.

Significance and Impact of the Study

As the vast majority microbial resource, viable but nonculturable (VBNC) bacteria, which showed their potential functions in polycyclic aromatic hydrocarbons (PAHs) biodegradation, can be of great significance in environmental bioremediation. It is therefore important to resuscitate VBNC bacteria for their better capabilities. Meanwhile, preventing the indigenous functional community from entering into the VBNC state will also maintain the high activity of PAH‐degrading bacteria in actual bioremediation applications. Undoubtedly, much more work needs to be done to reveal indigenous micro‐organisms in the VBNC state from the perspective of environmental functions.  相似文献   

13.
A conventional plate count is the most commonly employed method to estimate the number of living bacteria in environmental samples. In fact, judging the level of viable culture by plate count is limited, because it is often several orders of magnitude less than the number of living bacteria actually present. Most of the bacteria are in “viable but non-culturable” (VBNC) state, whose cells are intact and alive and can resuscitate when surrounding conditions are more favorable. The most exciting recent development in resuscitating VBNC bacteria is a bacterial cytokine, namely, the resuscitation-promoting factor (Rpf), secreted by Micrococcus luteus, which promotes the resuscitation and growth of high G+C Gram-positive organisms, including some species of the genus Mycobacterium. However, most of studies deal with VBNC bacteria only from the point of view of medicine and epidemiology. It is therefore of great significance to research whether these VBNC state bacteria also possess some useful environmental capabilities, such as degradation, flocculation, etc. Further studies are needed to elucidate the possible environmental role of the VBNC bacteria, rather than only considering their role as potential pathogens from the point view of epidemiology and public health. We have studied the resuscitation of these VBNC bacteria in polluted environments by adding culture supernatant containing Rpf from M. luteus, and it was found that, as a huge microbial resource, VBNC bacteria could provide important answers to dealing with existing problems of environmental pollution. This mini-review will provide new insight for considering the potentially environmental functions of VBNC bacteria.  相似文献   

14.
Entry and exit from dormancy are essential survival mechanisms utilized by microorganisms to cope with harsh environments. Many bacteria, including the opportunistic human pathogen Vibrio vulnificus, enter a form of dormancy known as the viable but nonculturable (VBNC) state. VBNC cells can resuscitate when suitable conditions arise, yet the molecular mechanisms facilitating resuscitation in most bacteria are not well understood. We discovered that bacterial cell-free supernatants (CFS) can awaken preexisting dormant vibrio populations within oysters and seawater, while CFS from a quorum sensing mutant was unable to produce the same resuscitative effect. Furthermore, the quorum sensing autoinducer AI-2 could induce resuscitation of VBNC V. vulnificus in vitro, and VBNC cells of a mutant unable to produce AI-2 were unable to resuscitate unless the cultures were supplemented with exogenous AI-2. The quorum sensing inhibitor cinnamaldehyde delayed the resuscitation of wild-type VBNC cells, confirming the importance of quorum sensing in resuscitation. By monitoring AI-2 production by VBNC cultures over time, we found quorum sensing signaling to be critical for the natural resuscitation process. This study provides new insights into the molecular mechanisms stimulating VBNC cell exit from dormancy, which has significant implications for microbial ecology and public health.  相似文献   

15.
The role of the dormant-like viable but nonculturable (VBNC) condition in the etiology of bacterial infection was examined using a plant system. The plant-pathogenic bacterium Ralstonia solanacearum was first shown to enter into the VBNC state both in response to cupric sulfate when in a saline solution and when placed in autoclaved soil. To determine if the VBNC condition is related to pathogenesis, the physiological status of bacteria recovered from different regions of inoculated tomato plants was determined at different stages of infection. The fraction of in planta bacteria that were VBNC increased during infection and became greater than 99% by the late stage of disease. The possibility that soil-dwelling VBNC bacteria may resuscitate and infect plants was also examined. When tomato seeds were germinated in sterile soil that contained VBNC but no detectable culturable forms of R. solanacearum cells, resuscitation was observed to occur in soil adjacent to plant roots; these resuscitated bacteria were able to infect plants. This is the first report of R. solanacearum entering the VBNC state and of resuscitation of any VBNC plant-pathogenic bacteria and provides evidence that the VBNC state may be involved in explaining the persistent nature of some infections.  相似文献   

16.
AIMS: The viable but non-culturable (VBNC) state is a survival strategy adopted by bacteria when exposed to environmental stress. When in this state bacteria are no longer culturable on conventional growth media, but cells display metabolic activity and maintain pathogenicity factors/genes and, in some cases, resuscitation from the VBNC state has been shown. This state has been described for both human pathogens and faecal pollution indicators. In this study, we present evidence for entry of different enterococcal species into the VBNC state in an oligotrophic microcosm. METHODS AND RESULTS: The duration of the viability of the cells in the VBNC state was measured either by detecting the presence of pbp5 mRNA or by quantifying their resuscitation capability. Enterococci showed different behaviours. Enterococcus faecalis and Enterococcus hirae entered into the VBNC state within 2 weeks and remained in that state for 3 months. In the experiments described the resuscitation rate was 1:10 000 cells as soon as the cells entered the VBNC state and decreased gradually to undetectable levels over the following 3 months. Enterococcus faecium, however, remained culturable up to 4 weeks. After this time period, when the population was totally unculturable, the cells were far less resuscitable than other enterococci and only over a narrow time interval (2 weeks). CONCLUSIONS: These results suggest that Ent. faecalis and Ent. hirae enter the VBNC state but that Ent. faecium, in an oligotrophic laboratory environment, tends to die instead of entering the VBNC state. SIGNIFICANCE AND IMPACT OF THE STUDY: These experiments may mimic what happens when enterococci are released by humans and animals in natural environments.  相似文献   

17.
The role of the dormant-like viable but nonculturable (VBNC) condition in the etiology of bacterial infection was examined using a plant system. The plant-pathogenic bacterium Ralstonia solanacearum was first shown to enter into the VBNC state both in response to cupric sulfate when in a saline solution and when placed in autoclaved soil. To determine if the VBNC condition is related to pathogenesis, the physiological status of bacteria recovered from different regions of inoculated tomato plants was determined at different stages of infection. The fraction of in planta bacteria that were VBNC increased during infection and became greater than 99% by the late stage of disease. The possibility that soil-dwelling VBNC bacteria may resuscitate and infect plants was also examined. When tomato seeds were germinated in sterile soil that contained VBNC but no detectable culturable forms of R. solanacearum cells, resuscitation was observed to occur in soil adjacent to plant roots; these resuscitated bacteria were able to infect plants. This is the first report of R. solanacearum entering the VBNC state and of resuscitation of any VBNC plant-pathogenic bacteria and provides evidence that the VBNC state may be involved in explaining the persistent nature of some infections.  相似文献   

18.
19.
Various non-spore forming bacteria, including Escherichia coli, enter a dormant-like state, the viable but non-culturable (VBNC) state, characterized by the presence of viable cells but the inability to grow on routine laboratory media. Upon resuscitation, these VBNC cells recover both culturability and pathogenicity. In 2011, a large outbreak involving more than 3000 cases of bloody diarrhoea and haemolytic uremic syndrome was caused by an E.?coli O104:H4 strain expressing genes characteristic of both enterohaemorrhagic (EHEC) and enteroaggregative E.?coli (EAEC). The ability of the outbreak strain to enter the VBNC state may have complicated its detection in the suspected sources. In this paper, we investigated the ability of the outbreak strain to enter and subsequently recover from the VBNC state. We found that in a nutrient-poor micro-environment, various stresses such as toxic concentrations of copper ions or certain types of tap water are able to render the bacteria unculturable within a few days. Without copper ion stress, the majority of cells remained culturable for at least 40 days. Incubation with the stressors at 23°C compared with 4°C hastened this observed loss of culturability. The integrity of a considerable fraction of copper ion- and tap water 1-stressed bacteria was demonstrated by live/dead staining and microscopy. Relieving stress by copper-ion chelation facilitated resuscitation of these bacteria while preserving their fitness, major virulence gene markers (stx2, aggR, aggA genes) and specific phenotypes (ESBL resistance, autoaggregation typical for EAEC strains).  相似文献   

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