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1.
嗜盐菌耐盐机制相关基因的研究进展   总被引:6,自引:1,他引:5  
嗜盐微生物能够在高盐环境中生存,其耐盐机制一直是微生物学家研究的热点。目前嗜盐微生物耐盐机制的研究主要集中在细胞吸K+排Na+作用、胞内积累小分子相容性溶质及嗜盐酶的氨基酸组成特性三个方面。文章从基因水平综述了嗜盐菌的耐盐机制,并对其在高盐废水处理上的应用进行讨论与展望。  相似文献   

2.
嗜盐放线菌的研究进展   总被引:12,自引:0,他引:12  
嗜盐放线菌是极端微生物的重要组成部分 ,也是一类极具应用前景的微生物资源。就嗜盐菌的分类标准、嗜盐放线菌的分离、分布及系统学研究的历史、现状及其发展趋势、应用前景进行了概述。同时还讨论了嗜盐放线菌的分离及其生理学、分类学研究中存在的问题及困难  相似文献   

3.
由高盐环境中生长的微生物里分离出的嗜盐酶在高盐度下仍然具有催化活性,工业上具有良好的应用前景。一些嗜盐酶已被克隆纯化出来,它们的分子结构特点也已经被广泛研究。该文从嗜盐酶的蛋白质序列和结构特征等方面综述了嗜盐酶嗜盐的分子结构基础研究进展,分析了存在的问题并对未来工作提出了展望。研究嗜盐酶盐适应性的分子基础,可以为新的功能蛋白的发展和鉴定提供依据。  相似文献   

4.
近年来抗生素耐药性问题日趋严重,患癌人数也在逐年增加,亟需开发新型药物。嗜盐微生物作为一类特殊的极端环境微生物,具有代谢多样性丰富、营养需求较低和能适应恶劣条件等特点,是发现新型药物的希望。目前,国内外学者已从嗜盐微生物中分离出了多种代谢产物和酶,具有明显的抗菌和/或抗肿瘤等活性。文中综述了嗜盐微生物及其相关产物在抗菌、抗炎、抗肿瘤、抗氧化、生物医学材料以及药物载体等生物医学方面的作用,尤其对近年来在嗜盐微生物中发现的新型抗菌和抗肿瘤物质以及嗜盐微生物特有的代谢产物四氢嘧啶等进行了总结,并对其后续在生物医药领域的开发和产业化应用进行了展望。  相似文献   

5.
【背景】嗜盐微生物多生活于高盐环境,具有独特的生理代谢特征,是一类重要的极端环境微生物资源。【目的】为更好地认识我国陆相盐矿的嗜盐微生物多样性组成,更好地开发利用嗜盐微生物资源积累丰富的微生物菌种。【方法】对安徽定远盐矿盐芯样品进行嗜盐微生物的纯培养分离,并对所分离菌株进行基于16SrRNA基因的测序和序列相似性分析,并对所分离菌株进行物种多样性分析。在此基础上,对代表菌株进行菌落形态和耐盐度及酶活测定。【结果】通过纯培养共分离获得了嗜盐微生物264株,其中嗜盐古菌150株,占56.8%;嗜盐细菌114株,占43.2%。嗜盐古菌物种分别来自于Halorubrum、 Halopenitus、 Haloterrigena、 Natrinema、 Natronoarchaeum和Natronomonas等6个属;嗜盐细菌物种分别来自于Pseudomonas、Aliifodinibius、Halobacillus、Halomonas和Halospina等5个属。通过代表菌株的酶活平板检测,发现产胞外蛋白酶菌株1株,酯酶1株,淀粉酶2株;能液化明胶菌株2株。在物种多样性组成方面,发现嗜盐古菌的物种多样性指数高于嗜盐细菌。【结论】本研究对我国安徽定远陆相盐矿的可培养嗜盐微生物多样性进行探究,积累了丰富的嗜盐微生物菌株资源。  相似文献   

6.
嗜盐微生物在环境修复中的研究进展   总被引:3,自引:1,他引:3       下载免费PDF全文
人类活动产生的污染物,使一些天然盐环境遭受不同程度的污染,或者使环境受到污染物与高盐的双重污染。在高盐条件下,非嗜盐微生物的代谢会受到抑制,其生物修复效率明显降低,甚至丧失修复能力。嗜盐微生物则能够在高盐环境中栖息繁殖,凸显其修复被污染高盐环境的生物学效率和广阔的应用前景。就嗜盐微生物降解石油烃、芳香烃衍生物和有机磷等污染物的研究进展进行了综述和讨论。  相似文献   

7.
嗜极微生物(extremophilicmicrobes)指的是极端条件下生存及繁衍的微生物,也称极端环境微生物。这个微生物世界的成员,有的能培养,从中获得培养物;有的则否,但它是客观存在的,通过间接的方法推断其存在。这些年来,人们较为熟悉的嗜极微生物有嗜碱微生物、嗜酸微生物、嗜高温微生物、嗜冷微生物、嗜盐微生物、嗜高压微生物;还有把抗辐射微生物、耐干旱微生物列为嗜极微生物。这充分表明,嗜极微生物生存于地球、宇宙间的多样性。就那些嗜盐微生物而言,也有它的多样性,丰富多彩。在美国,研究人员发现结晶盐中存在着微生物世界,也就是说,在大块…  相似文献   

8.
徐俊 《微生物学报》2017,(9):1311-1313
所谓极端微生物(extremophile)是站在人类的角度,对栖居于地球上所有"非宜居"空间中的微生物的统称。这些微生物包括嗜热、嗜冷、嗜酸、嗜碱、嗜盐、嗜压,以及仍然有待发现的其他嗜"极"微生物。沧海桑田,大千世界,微生物一直在地球和生命的协同演化过程中扮演着重要角色。  相似文献   

9.
离子转运蛋白在维持细胞内pH稳态、离子动态平衡等方面发挥着重要作用。钠离子转运体和钾离子转运体在嗜盐耐盐微生物中广泛存在,其"保钾排钠"机制是微生物抗盐胁迫的两大策略之一。近年来,嗜盐耐盐微生物中许多新型钠、钾离子转运体被陆续发现,如RDD蛋白、UPF0118蛋白、DUF蛋白和KimA蛋白等;Fe3+、Mg2+等其他金属离子的转运蛋白也被证实可通过影响微生物胞内相容性溶质的合成起到渗透调节的作用。本文综述了嗜盐耐盐微生物中抗盐胁迫相关的各类离子转运蛋白,分析其分子结构和工作机理,并对这些蛋白在农业方面的应用进行了展望。继续发现新的离子转运蛋白,探究抗盐胁迫相关离子转运蛋白的结构和机理,解析各转运系统的协同作用及分子调控机制,将进一步加深对嗜盐耐盐微生物抗盐胁迫调控的认识,并为盐碱地农作物的改良等提供新的思路。  相似文献   

10.
高盐废水因具有硬度高、可生化性差、水质成分复杂等特点,是较难处理的工业废水之一。现有物化处理技术存在运行成本高、处理效率低、二次污染重等诸多瓶颈。耐盐/嗜盐微生物可在高盐环境下进行正常生理代谢,因此,开发经济、高效、可靠的高盐废水生物处理技术有望成为高盐废水处理的主流方向之一。本文系统综述了耐盐/嗜盐微生物盐溶、胞内小分子相容溶质积累、蛋白质稳定和细胞表面稳定等高渗透压适应策略。由于嗜盐微生物存在生长条件苛刻、功能微生物种类稀缺等问题,因此,耐盐微生物在高盐废水处理的未来应用空间更大。最新研究发现强化调控技术(电、光、磁)可提升微生物的高渗透压适应能力,其中电调控技术或是未来高盐废水生物处理的重点研究方向。  相似文献   

11.
极端嗜盐菌的特性及其应用前景   总被引:7,自引:0,他引:7  
主要介绍极端嗜盐菌的嗜盐机理、细菌视紫红质(bR)和嗜盐菌素的研究进展,然后对其在环境生物治理、生物电子和医药工业等领域的应用研究进行总结和展望。  相似文献   

12.
Many archaea colonize extreme environments. They include hyperthermophiles, sulfur-metabolizing thermophiles, extreme halophiles and methanogens. Because extremophilic microorganisms have unusual properties, they are a potentially valuable resource in the development of novel biotechnological processes. Despite extensive research, however, there are few existing industrial applications of either archaeal biomass or archaeal enzymes. This review summarizes current knowledge about the biotechnological uses of archaea and archaeal enzymes with special attention to potential applications that are the subject of current experimental evaluation. Topics covered include cultivation methods, recent achievements in genomics, which are of key importance for the development of new biotechnological tools, and the application of wild-type biomasses, engineered microorganisms, enzymes and specific metabolites in particular bioprocesses of industrial interest.  相似文献   

13.
Halotolerant and halophilic microorganisms can grow in (hyper)saline environments, but only halophiles specifically require salt. Genotypic and phenotypic adaptations are displayed by halophiles; the halotolerants adapt phenotypically, but it is not established whether they show genotypic adaptation. This paper reviews the various strategies of haloadaptation of membrane proteins and lipids by halotolerant and halophilic microorganisms. Moderate halophiles and halotolerants adapt their membrane lipid composition by increasing the proportion of anionic lipids, often phosphatidylglycerol and/or glycolipids, which in the moderately halophilic bacteriumVibrio costicola appears to be part of an osmoregulatory response to minimize membrane stress at high salinities. Extreme halophiles possess typical archaebacterial ether lipids, which are genotypically adapted by having additional substitutions with negatively-charged residues such as sulfate. In contrast to the lipids, it is less clear whether membrane proteins are haloadapted, although they may be more acidic; very few depend on salt for their activity.  相似文献   

14.
分离自青海湖可培养耐盐真菌的多样性研究   总被引:1,自引:0,他引:1  
青海湖位于青藏高原东北部,属于典型的高原盐湖沉积环境。作者以常规的分离培养方法对青海湖中的耐盐真菌多样性进行了研究。从黑马河、耳海和尕海共分离得到617株耐盐真菌,结合形态学和分子生物学的方法将菌株鉴定到18个属和45个种。子囊菌的菌株数比接合菌和担子菌多,枝孢菌和青霉菌为优势耐盐真菌。在这45种耐盐真菌中,轻度、中度和极端嗜盐真菌分别有19、25和1种。分离自黑马河地区的耐盐真菌,其物种丰富度指数Ma(3.12)、多样性指数H′(1.11)和均匀度指数J(0.267)均比耳海和尕海的高。从1.5%浓度下  相似文献   

15.
Members of the Archaea domain are extremely diverse in their adaptation to extreme environments, yet also widespread in "normal" habitats. Altogether, among the best characterized archaeal representatives all mechanisms of gene transfer such as transduction, conjugation, and transformation have been discovered, as briefly reviewed here. For some halophiles and mesophilic methanogens, usable genetic tools were developed for in vivo studies. However, on an individual basis no single organism has evolved into the "E. coli of Archaea" as far as genetics is concerned. Currently, and unfortunately, most of the genome sequences available are those of microorganisms which are either not amenable to gene transfer or not among the most promising candidates for genetic studies.  相似文献   

16.
Solar salterns, based on a multi-pond system, give a discontinuous gradient of salt concentrations. The heterotrophic bacterial populations of ponds containing from 10% salt to saturation have been studied. Saltern samples were spread on agar plates containing different media for halophilic bacteria and one medium made with water of the pond plus nutrients. Replica plating was done to determine the salt range for growth of the colonies. We studied 150 strains to determine the salt spectra of growth, the morphology, and nutrient requirements. The following conclusions were reached: (a) In salt concentrations above 10% (total salts), most bacteria are halophilic and few are halotolerant; (b) the two types of halophilic bacteria, moderate and extreme, show different distributions; in these ponds a narrow overlap exists between 25% and 32% salts with moderate halophiles predominating below this interval and extreme halophiles above it; (c) the populations of moderate halophiles are highly heterogeneous, and the salt concentration of their habitat affects their taxonomic composition, salt range for growth, and nutrient requirements. The population composition of extreme halophiles is less affected by the salt concentrations at which these bacteria are found.  相似文献   

17.
Nucleic acid studies on halophilic archaebacteria   总被引:5,自引:0,他引:5  
DNA-16S rRNA hybridization studies of archaebacterial halophiles revealed nine major groups. High (greater than 45%) DNA-DNA homologies were found only within DNA-rRNA groups. The DNA-DNA homology between the type strains of Halobacterium halobium, Hb. salinarium and Hb. cutirubrum was greater than 70%. The implications for the taxonomy of the extreme halophiles are discussed.  相似文献   

18.
Euryhaline halophiles grow over a wide range of salinity, from <3% NaCl (seawater equivalent) to >15% NaCl and even saturation level (about 30% NaCl). Several species of euryhaline halophiles occur worldwide, especially in marine environments and also in aquatic and terrestrial habitats of the Antarctic ice-free areas. A biogeographic view of Antarctic halophiles is that their migration among lakes on land is more difficult than in marine setting. Ponds and lakes on land may thus serve as “islands” which facilitate the selection and separation of unique species. We isolated euryhaline halophiles from the saline lake, Suribati Ike, near Syowa Station and placed them into seven groups, each demonstrating a clear depth-related distribution. Six of the seven groups probably represent new species of the genera Halomonas and Marinobacter. This result suggests that Antarctic saline lakes exhibit high selectivity of unique euryhaline halophiles and possibly of other microbial groups.  相似文献   

19.
Abstract Gas vesicles can be used to measure the hydrostatic pressure (turgor pressure) in prokaryotic cells. Halophilic cyanobacteria have turgor pressures that are substantially less than those of cyanobacteria from fresh water. Turgor pressure acts so as to tend to burst cell walls and collapse hollow gas vesicles. The halophiles take advantage of their lower turgor pressures by producing cell walls that are relatively thinner and gas vesicles that are relatively wider than in the mesophilic cyanobacteria. In this way the halophilic structure encounters the same stress and saves on material. Extreme halophiles, with negligible turgor, have been able to adopt various shapes and to produce the weakest and widest gas vesicles.  相似文献   

20.
The Archaea, designated since 1979 as a separate Super-Kingdom (the highest taxonomic order), are a highly novel group of microorganisms which look much like bacteria but have many molecular and genetic characteristics that are more typical of eukaryotes. These unusual organisms can be conveniently divided according to their 'extreme' environmental niche, into three broad phenotypes: the thermophiles, methanogens and extreme halophiles. Each group has unique biochemical features which can be exploited for use in the biotechnological industries. The extreme molecular stability of thermophile enzymes, the novel C1 pathways of the methanogens and the synthesis of organic polymers by some halophiles are all currently or potentially valuable examples of the biotechnology of the Archaea.  相似文献   

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