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1.
崔丙健  高天明  陈琳 《微生物学通报》2019,46(12):3363-3377
【背景】水产养殖病害是限制淡水渔业发展的一个重要因素,养殖环境的微生物状况与鱼类健康紧密相关,已引起人们广泛关注。【目的】阐明养殖水体和沉积物中病原微生物丰度和细菌群落多样性变化特征。【方法】利用荧光定量PCR方法和末端限制性片段长度多态性(Terminal restriction fragment length polymorphism,T-RFLP)技术,对异育银鲫养殖环境水体和沉积物中的典型病原微生物进行定量检测,以及细菌群落多样性分析。【结果】养殖过程中病原菌丰度呈现不同的变化趋势,嗜水气单胞菌(Aeromonas hydrophila)、温和气单胞菌(A. sobria)和维氏气单胞菌(A. veronii)与鲤疱疹病毒Ⅱ型丰度变化呈显著正相关。水体中病原菌丰度受pH、温度和溶解氧等环境因子的影响显著。T-RFLP分析表明沉积物样品较水体样品细菌群落组成复杂,并且沉积物细菌群落动态变化幅度高于水体。水体和沉积物中细菌T-RFs数量范围分别在11-29和20-32之间,Shannon-wiener指数在1.44-2.87和2.44-3.25之间。【结论】养殖水体中的病原菌丰度高于沉积物,而沉积物细菌群落丰富度和多样性高于水体。病原菌丰度和细菌群落结构变化与环境因子密切相关,明确养殖池塘环境中病原微生物的生态分布和丰度变化,将为指导养殖过程中病原性疾病发生早期预警提供理论依据。  相似文献   

2.
海水混养池塘虾蛤肠道与养殖环境的微生物多样性   总被引:1,自引:0,他引:1  
【背景】海水混养池塘环境微生物以及动物肠道微生物的群落结构已有研究,但对混养环境中多品种动物肠道与环境微生物群落的关系尚未见报道。【目的】研究海水虾蛤混养环境中微生物多样性以及与养殖动物健康之间的关系。【方法】采用Illumina高通量测序技术测定冬季莆田市北江养殖区2个混养池塘中水体、底泥以及虾蛤肠道的菌群结构。【结果】同一池塘水体与底泥之间、不同池塘水体或底泥之间的微生物结构存在一定的差异;同一养殖区2个混养池塘虾与蛤肠道微生物结构之间具有极高的相似性,与养殖环境存在显著的差异。微生物多样性和丰富度差异很大,表现出底泥水体肠道;虾蛤肠道微生物以厚壁细菌和γ-变形细菌为主;池塘水体以放线菌、α-变形细菌以及拟杆菌为主,底泥以γ-变形细菌和δ-变形细菌为主。养殖动物肠道微生物主要优势种为乳球菌属和假单胞菌属,池塘环境内存在较高丰度的黄杆菌类潜在致病菌,而在虾和蛤的肠道中基本未检出。2个池塘底泥硫还原细菌含量较高,增加了底质产生硫化氢等有害物质的风险。【结论】比较混养池塘中水体、底泥以及虾蛤肠道三者之间微生物群落结构的差异,揭示虾、贝混养模式微生物与养殖环境的关系,为池塘养殖虾、贝疾病防治和混养结构的优化提供参考。  相似文献   

3.
滩涂海水种植-养殖系统细菌生态学研究   总被引:16,自引:2,他引:14  
滩涂海水种植-养殖系统是一种新型的生态养殖模式.对种植红树林的滩涂种植-养殖系统中细菌的生物量分布和水质的分析结果表明,由于红树林的净化作用,该系统内的水质达到Ⅱ~Ⅲ类海水水质标准,而对照塘的处于Ⅳ、Ⅴ类水质标准.系统中处理塘的异养菌、弧菌、磷细菌和产酶类细菌的数量比未种红树林的对照塘低1~2个数量级.用CORREL软件分析了细菌与水质的相关关系,异养菌、弧菌、磷细菌和产酶类细菌的数量与水体中的氮磷含量呈正相关.其中异养菌与弧菌的相关系数为0.9205,与氮磷的相关系数为0.6535(N)、0.8342(P),表明异养菌和弧菌可作为滩涂海水养殖系统水质的生物监测指标.  相似文献   

4.
【背景】珊瑚适应环境的能力与机体内共附生细菌有关,然而,这些细菌在珊瑚宿主适应环境变化过程中所起的作用尚不清楚。对珊瑚共附生细菌进行纯培养,探究其生物功能和生态作用,是解析珊瑚宿主环境适应机理的重要途径。【目的】研究热耐受性不同的2种造礁珊瑚共附生可培养潜在耐热细菌多样性和功能,为理解珊瑚适应环境的能力提供新的认识。【方法】从涠洲岛选取2种热耐受性差异显著的霜鹿角珊瑚(Acropora pruinosa)和丛生盔形珊瑚(Galaxea fascicularis)为研究对象,采用2216E、海水R2A和海水GYP这3种琼脂培养基,于32℃(珊瑚热耐受阈值)培养条件下对珊瑚共附生潜在耐热细菌进行分离培养,对分离菌株进行16S rRNA基因测序和序列相似性分析。选取代表菌株进行热耐受性检验,并利用平板对峙法进行抗菌活性检测。【结果】2种造礁珊瑚共附生可培养潜在耐热细菌的多样性存在显著差异。从热敏型的霜鹿角珊瑚中获得44株细菌,隶属于4个门22个属,其中弧菌属(Vibrio)、假交替单胞菌属(Pseudoalteromonas)和Tenacibaculum为优势属;从热耐...  相似文献   

5.
[背景]深海热液环境中存在大量H2S及含硫化合物,许多微生物与大型生物形成了紧密的共生体系,例如硫氧化细菌,它们利用其独特的代谢体系协助宿主更好地适应极端环境,但目前尚未对热液底栖生物共附生的硫氧化细菌进行培养鉴定和功能分析.[目的]了解深海热液生物共附生硫氧化细菌的种群特征和功能特征,筛选出深海热液生物共附生微生物中...  相似文献   

6.
采用PCR-DGGE指纹、克隆测序和系统发育分析技术较系统地对我国南海贪婪倔海绵(Dysidea avara)和澳大利亚厚皮海绵(Craniella australiensis)共附生的优势细菌进行了研究。研究发现变形菌门(Proteobacteria)细菌是这两种海绵中的主要优势细菌,贪婪倔海绵中的变形菌包含了α、β、γ三种类型,而澳大利亚厚皮海绵中仅有γ一种类型。两种海绵都有拟杆菌(Bacteroidetes),但是具体的种类不同。这些细菌都是第一次在海绵中被发现。澳大利亚厚皮海绵共附生的优势细菌还包括放线菌属(Actinobacterium)及厚壁菌门(Firmicutes)细菌,菌群多样性要比贪婪倔海绵的丰富。两种海绵尽管来自于同一海域但其共附生优势细菌的组成明显不同,这说明海绵共附生微生物具有宿主特异性。  相似文献   

7.
叶际微生物与植物有着密切的联系,对宿主生物多样性的维持、群落的稳定和生态系统的功能具有重要意义。随着分子生物学技术的快速发展,叶际微生物与植物的关系及对宿主健康的影响是近年来热点领域之一。基于明确定义的叶际概念,综述了叶际微生物群落结构、驱动因素及其与植物健康的关系,强调了叶际微生物的机遇性以及调控群落驱动因素在未来叶际微生物研究中的重要地位。加深对叶际微生物的认知,有利于实现农业微生物的功能最大化,以期为提高植物产量提供参考。  相似文献   

8.
细菌是维持养殖水体稳定的重要类群,可以反映出水质情况,微生态制剂作为一种可以去除有害物质的生物方法,目前被广泛应用。了解微生态制剂在投入养殖海水后细菌群落结构和多样性变化,探讨不同季节的水质环境因子对细菌群落的影响。通过高通量测序技术对细菌16S rRNA V3、V4区进行扩增,分析冬、春、夏3个季节下使用完商品型菌剂后,养殖海水中细菌群落分布规律及其多样性,采用冗余分析(Redundancy analysis,RDA)探讨不同季节的水质指标与细菌群落之间的关系。养殖海水中细菌多样性丰富,3个季节主要的优势菌门为变形菌门和拟杆菌门,其中Tenacibaculum(38.28%),卓贝尔氏菌属(Zobellella,30.78%)、盐单胞菌属(Halomonas,13.55%)为冬季优势属;Glycocaulis(34.00%)、盐单胞菌属(11.36%)、Planktosalinus(9.67%)为春季优势属;Pseudofulvimonas(28.94%)、Zobellella(17.51%)、Planktosalinus(15.86%)、海杆菌属(Marinobacter,12.30%)为夏季优势属,不同时期细菌属水平发生显著变化。RDA分析表明,不同时期水质环境因子对细菌群落影响不同,温度、盐度、pH、溶解氧与3个季节中10个优势属的丰度有显著相关性,冬季和春季优势属主要与盐度和溶解氧呈正相关,夏季优势属主要与温度和p H呈显著正相关。微生态制剂在净化养殖水体方面有很大优势,其在不同季节中应用虽细菌群落结构和多样性产生一定变化,但整体都发挥出各自的调控能力,该研究为以后养殖海水治理和微生态制剂应用提供新的思路。  相似文献   

9.
海绵及其共附生微生物的活性物质与化学防御   总被引:7,自引:0,他引:7  
海绵及其共附生微生物具有多种化学防御途径,具体表现在能够抵御潜在病原微生物、抗鱼类捕食、阻止污浊生物和降解表面活性剂等方面,这可能与海绵及其共附生微生物产生的活性物质有关。本文对海绵及其共附生微生物的化学防御进行讨论,希望对相关机制的揭示有所帮助。  相似文献   

10.
华北落叶松树皮表面细菌群落多样性及其分布格局   总被引:1,自引:0,他引:1  
附生在树皮表面的微生物,对于宿主植物的健康和环境适应性发挥重要作用,树皮微生境中微生物群落结构和多样性及其维持机制有待关注。【目的】本文对庞泉沟自然保护区不同海拔梯度的华北落叶松树干的背阴面与向阳面的树皮表面细菌群落的分布特征和适应机制进行了研究。【方法】通过PCR-DGGE和高通量测序技术研究细菌群落特征,对树皮表面细菌群落的空间分布特征进行了非度量多维尺度(NMDS)排序分析,通过冗余分析(RDA)研究细菌群落与树皮表面理化性质的关系,单因素方差分析(One-way ANOVA)比较树皮背阴面与向阳面细菌群落组成,基于零偏差分析研究背阴面与向阳面细菌群落构建的驱动因素。【结果】不同海拔梯度间的细菌群落结构有显著性差异(ANOSIM;P<0.05),树皮表面的微环境因子p H和总碳(TC)与群落结构显著相关(P<0.05);向阳面树皮表面的光合自养型细菌(隶属于蓝细菌门的未命名的目)的相对丰度显著高于背阴面,而根瘤菌目的相对丰度呈相反的趋势,光照可能是引起细菌群落结构发生变化的驱动因子;零偏差分析结果表明,华北落叶松树皮背阴面、向阳面细菌群落的多样性格局主要受环境过滤的影响。【结论】环境因子主导的确定性过程是驱动该地区华北落叶松树皮表面细菌群落结构和多样性的主导因素。  相似文献   

11.
Symbiotic bacteria often help their hosts acquire nutrients from their diet, showing trends of co-evolution and independent acquisition by hosts from the same trophic levels. While these trends hint at important roles for biotic factors, the effects of the abiotic environment on symbiotic community composition remain comparably understudied. In this investigation, we examined the influence of abiotic and biotic factors on the gut bacterial communities of fish from different taxa, trophic levels and habitats. Phylogenetic and statistical analyses of 25 16S rRNA libraries revealed that salinity, trophic level and possibly host phylogeny shape the composition of fish gut bacteria. When analysed alongside bacterial communities from other environments, fish gut communities typically clustered with gut communities from mammals and insects. Similar consideration of individual phylotypes (vs. communities) revealed evolutionary ties between fish gut microbes and symbionts of animals, as many of the bacteria from the guts of herbivorous fish were closely related to those from mammals. Our results indicate that fish harbour more specialized gut communities than previously recognized. They also highlight a trend of convergent acquisition of similar bacterial communities by fish and mammals, raising the possibility that fish were the first to evolve symbioses resembling those found among extant gut fermenting mammals.  相似文献   

12.
Sponge-associated microbial communities include members from the three domains of life. In the case of bacteria, they are diverse, host specific and different from the surrounding seawater. However, little is known about the diversity and specificity of Eukarya and Archaea living in association with marine sponges. This knowledge gap is even greater regarding sponges from regions other than temperate and tropical environments. In Antarctica, marine sponges are abundant and important members of the benthos, structuring the Antarctic marine ecosystem. In this study, we used high throughput ribosomal gene sequencing to investigate the three-domain diversity and community composition from eight different Antarctic sponges. Taxonomic identification reveals that they belong to families Acarnidae, Chalinidae, Hymedesmiidae, Hymeniacidonidae, Leucettidae, Microcionidae, and Myxillidae. Our study indicates that there are different diversity and similarity patterns between bacterial/archaeal and eukaryote microbial symbionts from these Antarctic marine sponges, indicating inherent differences in how organisms from different domains establish symbiotic relationships. In general, when considering diversity indices and number of phyla detected, sponge-associated communities are more diverse than the planktonic communities. We conclude that three-domain microbial communities from Antarctic sponges are different from surrounding planktonic communities, expanding previous observations for Bacteria and including the Antarctic environment. Furthermore, we reveal differences in the composition of the sponge associated bacterial assemblages between Antarctic and tropical-temperate environments and the presence of a highly complex microbial eukaryote community, suggesting a particular signature for Antarctic sponges, different to that reported from other ecosystems.  相似文献   

13.
How microbial symbionts are established and maintain on their hosts is a leading question with important consequences for the understanding of the evolution and functioning of mutualistic relationships. The acquisition by hosts of mutualistic microbial symbionts can be considered as colonization processes of environments (i.e., host) by symbionts. Colonization processes can be explored by characterizing the nestedness of communities, but this approach has rarely been applied to communities of microbial symbionts. We used this approach here, and estimated the nestedness of bacterial communities of hoopoes (Upupa epops), a species with symbiotic bacteria in their uropygial gland that are expected to colonize eggshells where they protect embryos from pathogens. Bacterial communities were characterized by ARISA (Automated rRNA Intergenetic Spacer Region) and studied the nestedness characteristics of bacterial communities living in the uropygial secretion, bill, belly and eggshells of each sampled female hoopoes. We detected a consistent nested pattern of bacterial communities of hoopoes; from the uropygial gland to the eggshell. We also found evidence of study year and reproductive events influencing the level of nestedness of bacterial communities of hoopoes. These results indicate that bacterial communities of eggshells and body parts of female hoopoes are at least partially conditioned by the symbiotic community in the uropygial gland. We discuss the importance of these results for understanding this host–microbial mutualism functioning and evolution.  相似文献   

14.
The mucosal surfaces of wild and farmed aquatic vertebrates face the threat of many aquatic pathogens, including fungi. These surfaces are colonized by diverse symbiotic bacterial communities that may contribute to fight infection. Whereas the gut microbiome of teleosts has been extensively studied using pyrosequencing, this tool has rarely been employed to study the compositions of the bacterial communities present on other teleost mucosal surfaces. Here we provide a topographical map of the mucosal microbiome of an aquatic vertebrate, the rainbow trout (Oncorhynchus mykiss). Using 16S rRNA pyrosequencing, we revealed novel bacterial diversity at each of the five body sites sampled and showed that body site is a strong predictor of community composition. The skin exhibited the highest diversity, followed by the olfactory organ, gills, and gut. Flectobacillus was highly represented within skin and gill communities. Principal coordinate analysis and plots revealed clustering of external sites apart from internal sites. A highly diverse community was present within the epithelium, as demonstrated by confocal microscopy and pyrosequencing. Using in vitro assays, we demonstrated that two Arthrobacter sp. skin isolates, a Psychrobacter sp. strain, and a combined skin aerobic bacterial sample inhibit the growth of Saprolegnia australis and Mucor hiemalis, two important aquatic fungal pathogens. These results underscore the importance of symbiotic bacterial communities of fish and their potential role for the control of aquatic fungal diseases.  相似文献   

15.
The relationship between invasions by two exotic fishes (Micropterus salmoides and Lepomis macrochirus) and species diversity in native fish communities was studied in 14 Japanese farm ponds. We found that mean number of species in native fish communities was three times higher in the ponds without the exotic fish than in the ponds with them. Further, negative relationships were observed between abundance of the two exotic fish and the total abundance of native fish communities. Our results suggest that invasions by the two exotic fish caused serious depletion of native fish communities, although another process can also be considered , that is, that ponds with poor native fish communities were prone to colonization by these exotic fish.  相似文献   

16.
Estimated length–weight relationships are presented for 22 commercially important marine fish species representing nine families, found in the East China Sea. A total of 2776 specimens were caught by otter trawl on the continental shelf in the East China Sea between 2009 and 2013. Information pertaining to length–weight relationships should lead to a better understanding of fish communities in the East China Sea.  相似文献   

17.
Each year, millions of hatchery‐reared sea‐run brown trout Salmo trutta L. (the sea trout) juveniles are released into the natural environment in the Atlantic region. The aim of this work was to investigate the growth responses of sea trout to changing temperature conditions and to compare the growth plasticity between wild and hatchery‐reared fish. Scales were collected from sea trout in a selected river flowing into the southern Baltic Sea. We analyzed the scale increment widths as a proxy of somatic growth and investigated the interannual variabilities and differences in growth between fish groups (wild and hatchery‐reared). We used mixed‐effects Bayesian modeling and ascribed the variances in growth to different sources. Furthermore, we developed indices of interannual (2003–2015) growth variation in the marine and freshwater phases of the life cycle of the fish and analyzed the relationships between trout growth and temperature. Temperature positively affects fish growth, regardless of the origin of the fish. We observed stronger relationships between fish growth and temperature conditions in the marine phase than in the freshwater phase. Additionally, wild sea trout are characterized by stronger responses to temperature variability and higher phenotypic plasticity of growth than those of the hatchery‐reared individuals. Therefore, wild sea trout might be better suited to changing environmental conditions than hatchery‐reared sea trout. This knowledge identifies possible threats in management actions for sea trout with an emphasis on ongoing climate change.  相似文献   

18.
  1. Planktonic and benthic bacterial communities hold central roles in the functioning of freshwater ecosystems and mediate key ecosystem services such as primary production and nutrient remineralisation. Although it is clear that such communities vary in composition both within and between lakes, the environmental factors and processes shaping the diversity and composition of freshwater bacteria are still not fully understood.
  2. In order to assess seasonal and spatial variability in lake bacterial communities and identify environmental factors underpinning biogeographical patterns, we performed a large-scale sampling campaign with paired water and sediment sample collection at 18 locations during four seasons in Lake Balihe, a subtropical shallow fish-farming lake in mid-eastern China.
  3. Pelagic and benthic bacterial communities were distinctly different in terms of diversity, taxonomic composition and community structure, with Actinobacteria, Bacteroidetes, Cyanobacteria and Alphaproteobacteria dominating lake water, and Acidobacteria, Bacteroidetes, Chloroflexi, Gammaproteobacteria and Deltaproteobacteria dominating sediment. Nevertheless, these two communities had stronger spatial concordance and overlap in taxa during spring and autumn seasons. Together, the main drivers of both the spatial and temporal variations in Lake Balihe bacterial communities were identified as water temperature, turbidity, nitrogen and phosphorus availability, and thermal stratification controlled by wind-mixing and activity of the dense farmed fish populations. Notably, populations affiliated with Firmicutes, known to be abundant in fish gut microbiome, were especially abundant in the summer season and locations where high fish biomass was found, suggesting a potential link between fish gut microbiome and the pelagic bacterial communities.
  4. Our findings demonstrated seasonal homogenisation of pelagic and benthic bacterial communities linked to marked shifts in a set of seasonally-driven environmental variables including water temperature and nutrient availability.
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19.
Global climate change is impacting and will continue to impact marine and estuarine fish and fisheries. Data trends show global climate change effects ranging from increased oxygen consumption rates in fishes, to changes in foraging and migrational patterns in polar seas, to fish community changes in bleached tropical coral reefs. Projections of future conditions portend further impacts on the distribution and abundance of fishes associated with relatively small temperature changes. Changing fish distributions and abundances will undoubtedly affect communities of humans who harvest these stocks. Coastal-based harvesters (subsistence, commercial, recreational) may be impacted (negatively or positively) by changes in fish stocks due to climate change. Furthermore, marine protected area boundaries, low-lying island countries dependent on coastal economies, and disease incidence (in aquatic organisms and humans) are also affected by a relatively small increase in temperature and sea level. Our interpretations of evidence include many uncertainties about the future of affected fish species and their harvesters. Therefore, there is a need to research the physiology and ecology of marine and estuarine fishes, particularly in the tropics where comparatively little research has been conducted. As a broader and deeper information base accumulates, researchers will be able to make more accurate predictions and forge relevant solutions.  相似文献   

20.
Trebouxiophyceae are a ubiquitous class of Chlorophyta encountered in aquatic and terrestrial environments. Most taxa are photosynthetic, and many acts as photobionts in symbiotic relationships, while others are free-living. Trebouxiophyceae have also been widely investigated for their use for biotechnological applications. In this work, we aimed at obtaining a comprehensive image of their diversity by compiling the information of 435 freshwater, soil and marine environmental DNA samples surveyed with Illumina sequencing technology in order to search for the most relevant environments for bioprospecting. Freshwater and soil were most diverse and shared more than half of all operational taxonomic units (OTUs), however, their communities were significantly distinct. Oceans hosted the highest genetic novelty, and did not share any OTUs with the other environments; also, marine samples host more diversity in warm waters. Symbiotic genera usually found in lichens such as Trebouxia, Myrmecia and Symbiochloris were also abundantly detected in the ocean, suggesting either free-living lifestyles or unknown symbiotic relationships with marine planktonic organisms. Altogether, our study opens the way to new prospection for trebouxiophycean strains, especially in understudied environments like the ocean.  相似文献   

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