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1.
One of the bottlenecks for the queen conch, Strombus gigas, aquaculture is the lack of well‐adapted formulated food for optimal growth. The goals of this study were to analyse the digestive gland structure of conchs fed with different diets using histochemical techniques and to evaluate the growth and survival of S. gigas juveniles with nine formulated diets (protein from 190 to 380 g kg?1 and lipids from 26 to 82 g kg?1). Proteoglycan granules and acidophilic granules were detected in the digestive cells. The abundance of both granule types was variable, according to the nutritional state of the animals. The granular content of the digestive cells of conchs fed with artificial diets was scarce when compared with conchs fed on natural food. Of the nine formulated feeds, the diet with 365 and 45 g kg?1 of protein and lipids, respectively, gave the best growth in weight (0.20 g day?1) and was also associated with digestive cells in the best condition as determined histologically. Histochemical analysis of the digestive gland differentiated with Alcian blue staining determines the nutritional status much better than a simple growth index and is therefore more useful in assessing adjustments to the feed formulation to meet the real needs of conchs.  相似文献   

2.
A study was conducted to characterize the autochthonous gut microbiota present in the pyloric caeca (PC), anterior mucosa (AM) and posterior mucosa (PM) of brown trout (Salmo trutta). Total viable counts (TVC) bacterial populations were enumerated using tryptone soy agar, lactic acid bacteria (LAB) levels were enumerated on de Man, Rogosa & Sharpe agar and PCR‐DGGE was employed as a culture‐independent method to assess the total communities. No significant differences were observed between the different gut regions for TVC or LAB levels. 16S rRNA sequencing identified all LAB isolates as Carnobacterium maltaromaticum. In contrast, the TVC community was more diverse; Firmicutes and Bacteroidetes were present but all gut regions were dominated by Proteobacteria, accounting for 88.4–92.6% of the communities. Citrobacter freundii was the dominant species and accounted for 51.0–57.8% of the isolates. Complex bacterial communities were observed using PCR‐DGGE and a trend towards the reduction in the number of operational taxonomic units (OTUs), microbial richness and microbial diversity was observed from the PC to the PM. The similarity between regions was low (52–68%) and cluster analysis revealed that the communities grouped into two distinct clusters; one dominated by the PM samples and the other contained the AM and PC samples. OTUs from the DGGE were identified as members of the phyla Proteobacteria and Firmicutes. Many OTUs were detected in all gastrointestinal regions, however, some OTUs showed regional specialization. Further studies are required to elucidate the activity of these genera in situ and how their actions impact the host.  相似文献   

3.
A 16S rDNA‐based polymerase chain reaction‐denaturing gradient gel electrophoresis (PCR‐DGGE) method was applied to detect intestinal bacterial communities of juvenile allogynogenetic crucian carp, Carassius auratus gibelio, fed with chitosan‐containing diet. This is the first time to use the molecular method to analyze the bacterial communities in the allogynogenetic crucian carp intestine. The DGGE profile with universal bacterial primers revealed simple communities in all treatment groups. Sequencing and phylogenetic analysis of excised DGGE bands showed that the dominant bacteria belonged to class γ‐Proteobacteria and Fusobacteria. The relative abundance and diversity of detected bacteria suggested that 0.5 and 0.75% of chitosan in diet were optimum for juvenile allogynogenetic crucian carp. As in these concentrations, some detected pathogen bacteria either disappeared or decreased. However, the DGGE profile with Aeromonas‐specific primers showed a similar composition among all treatment groups, which suggested that Aeromonas was one of relative stable bacteria components in the intestine of juvenile allogynogenetic crucian carp.  相似文献   

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5.
Information on the bacterial community associated with octopus is very scarce, unlike fish and other molluscs. This study revealed the bacterial community associated with digestive tract of wild Chilean octopus Octopus mimus using a culture‐dependent method and 16S rDNA clone library. Moreover, we analysed the bacterial nutritional enzyme activity of culturable bacteria. A culture‐dependent method showed that the composition of the culturable bacterial community was substantially different between female and male octopus. The predominant species in female octopus were Vibrionaceae and Streptococcaceae, whereas only Vibrionaceae was dominated in male octopus. Bacterial nutritional enzyme activities of culturable bacteria from male octopus were much higher than female octopus. The 16S rDNA clone library analysis showed that the bacterial community of male octopus exhibited a higher diversity than that of female octopus. The genus Mycoplasma was the predominant bacteria in the digestive tract of all octopus samples. The results obtained in this study raise the possibility that each octopus has different food consumption due to different bacterial community and nutritional enzyme activity, although Mycoplasma sp. is one of the predominant bacteria in the digestive tract. Moreover, our results are useful for the future of microbiological investigation associated with the octopus and for probiotics in the octopus aquaculture.  相似文献   

6.
Bacterial community associated with the gastrointestinal (GI) tract of aquaculture animals can play important roles in health, nutrition and disease. Compared with the GI tract of aquatic vertebrates such as fish, crustacean GI tract has unique structures and surfaces in different segments that may contribute to differences in the bacterial communities. This study examined the bacterial composition and distribution in different segments along the GI tract and in digesta of wild‐caught adult Penaeus monodon using Automated Ribosomal Intergenic Spacer Analysis (ARISA), real‐time quantitative PCR and clone libraries of 16S rRNA genes. Thirty‐nine bacterial species in four phyla including Proteobacteria (α, β, ε, γ), Firmicutes, Bacteroidetes and Actinobacteria were represented in the GI tract of adult P. monodon. Proteobacteria comprised over 80% abundance of the bacterial community in most segments of the GI tract, except the middle intestine that was dominated by Firmicutes (~50% abundance). The results also showed that bacterial communities showed significant differences along the GI tract segments, particularly the hindgut (p < .001) with Vibrio and Ferrimonas as dominant genera. The knowledge about the distribution of bacteria could be useful in understanding interaction of commensal bacteria and pathogens in different segments, and its potential influence on the effectiveness of probiotic bacteria in the GI tract of shrimp.  相似文献   

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8.
The polymerase chain reaction–denaturing gradient gel electrophoresis (PCR‐DGGE) of 16S ribosomal RNA gene was used to investigate bacterial communities in the intestines of large yellow croaker at six different ages (12 d, 18 d, 26 d, 40 d, 3 mo, and 1 yr old) as well as within the corresponding feed and culture water. In addition, Illumina Miseq sequencing was utilized to compare intestinal microbiota between 12‐d‐old and 1‐yr‐old individuals. PCR‐DGGE results revealed that the culture water had the highest bacterial diversity, followed by the feed, while the intestines had the lowest diversity. The intestinal microbiota at six ages changed severely; however, the change did not follow any trend. The large yellow croaker intestines harbored specific bacterial communities that differed from those in both feed and water. Illumina Miseq sequencing results revealed that the diversity of intestinal bacteria in 12‐d‐old fish was higher than that in 1‐yr‐old fish, and the bacterial composition differed significantly between them. γ‐Proteobacteria and Pseudoalteromonas supplied the most abundant phylum and genus in the 12‐d‐old fish intestine. However, in the 1‐yr‐old fish intestine, Firmicutes and Clostridium were the most dominant, respectively. The study may contribute to a better understanding of gut microbiota and dynamics of the large yellow croaker and the relationship with their surrounding environment.  相似文献   

9.
In this study, we evaluate the use of polymerase chain reaction‐denaturing gradient gel electrophoresis (PCR‐DGGE) for monitoring the effect of different aquaculture practices on sediment prokaryote (Archaea and Bacteria) communities. The effect of initial fish (gilthead seabream Sparus aurata) stocking density on the structural diversity of prokaryote communities of earth ponds bottom sediments was evaluated using PCR‐DGGE after a 5 month grow‐out period. An identical approach was used to monitor the effect of supplying different fish feeds [commercial feed (CD) versus an ecofeed (ECO)]. One additional variable was the use of copper sulphate (CuSO4) as an algicide in some of the experimental rearing tanks. The statistical analyses of prokaryote community profiles showed that the presence of fish in earth ponds significantly influenced the structure of sediment prokaryote communities, when compared with earth ponds without fish, independently of the stocking density. Our results also indicated that the structure of the prokaryote communities of earth ponds supplied with the ECO feed shared a strong similarity with that fed CD. Curiously, the use of CuSO4 in ponds receiving the ECO feed promoted significant differences on the structural composition of the bacterial community, but not on the archaeal community. DGGE molecular fingerprints are suitable for fast evaluation of new management practices in food‐fish production on earth ponds by monitoring shifts on microbial communities in bottom sediments.  相似文献   

10.
11.
The microenvironment of bacteria associated with the gastrointestinal tract of an animal influences the host in many ways, including the metabolism of several nutrients. Isolation, molecular characterization and enzymatic activities of culturable bacteria associated with the gastrointestinal tract of hatchery‐reared oceanic yellow seahorse, Hippocampus kuda, were investigated in the present study. 16S rRNA sequencing of bacterial isolates yielded 10 different bacterial genera belonging to two major groups: proteobacteria (62.9%) and firmicutes (37.03%). The predominant microbial flora belonged to the genera Vibrio spp., Enterovibrio sp. and Bacillus spp. Burkholderia cenocepacia, hitherto unreported from the gastrointestinal tract of marine fish, was retrieved from the seahorse gut, albeit in small numbers. Enzymatic studies indicated that the bacterial isolates possess the ability to degrade lipids, cellulose, xylan, starch and proteins. Lipase activity was exhibited by a majority of the isolates (70.4%), indicating that the bacterial flora associated with the intestinal tract of seahorses is capable of digesting foods rich in lipids. The possible implications for the role of these bacteria in the digestion and physiological processes are discussed. To our knowledge, this is the first time that the characterization and enzymatic activities of bacteria associated with the intestinal tract of farmed seahorses have been reported.  相似文献   

12.
洪斌  牛犇  陈萍  李薇  刘海泉  潘迎捷  赵勇 《水产学报》2019,43(5):1347-1358
探究凡纳滨对虾和罗氏沼虾肠道微生物及抗生素抗性基因(antibiotic resistance genes, ARGs)种类的差异。通过高通量测序和变性梯度凝胶电泳(denaturing gradient gel electrophoresis, DGGE)技术分析2种虾肠道微生物群落结构差异和微生物多样性,并运用PCR方法检测了2种虾肠道细菌常见38种ARGs的携带情况。结果显示,获得凡纳滨对虾和罗氏沼虾肠道细菌有效序列分别为42 795和40 713条,物种注释单元(operational taxonomic unit, OTU)数目分别为124和82,分类地位明确的细菌种类分别隶属5个门、17个属和5个门、16个属。凡纳滨对虾肠道细菌的优势类群为变形菌门,所占比例为75.45%,优势菌属为副球菌属(25.83%)和不动杆菌属(25.24%);罗氏沼虾肠道细菌的优势类群是厚壁菌门(49.74%),优势菌属为乳球菌属(49.01%)和弧菌属(29.98%)。凡纳滨对虾肠道细菌(2.19)Shannon指数高于罗氏沼虾肠道细菌(1.78),表明前者肠道细菌多样性大于后者。DGGE图谱的分析结果与高通量测序一致,2种虾肠道细菌种类差异很大。PCR结果显示,凡纳滨对虾肠道细菌携带15种ARGs,罗氏沼虾肠道细菌携带14种ARGs。本实验表明凡纳滨对虾肠道细菌的群落种类多样性、OTU丰富度、物种总数和ARGs种类均高于罗氏沼虾肠道细菌,为后续肠道微生物资源的挖掘提供了理论依据。  相似文献   

13.
Five potential relaxant chemicals were evaluated: 2-phenoxyethanol, menthol crystals, benzocaine, MS-222, and magnesium chloride to induce relaxation in the queen conch for cultured pearl production. S. gigas were exposed to each chemical and were observed continuously for 30 min. Conch were placed on the bottom of the container with the aperture facing upwards (i.e., in an inverted position). When conch returned to their ‘normal’ position, they were turned facing upwards again. This process continued until conch were unable to return to their normal position. Only 30 g L− 1 magnesium chloride induced adequate relaxation in S. gigas to attempt pearl seeding. Conch exposed to all other treatments, except 0.25 g L− 1 menthol, showed a strong ‘kicking’ (escape) reaction during the initial 2 min to 7 min of exposure. After such reaction, conch retracted into their shells and within the 30 min exposure period they showed no signs of relaxation. Conch exposed to 0.25 g L− 1 menthol did not attempt to right but slowly retracted into their shells and did not show signs of relaxation. Conch can be relaxed in 20 min with magnesium chloride. They showed an extended mantle, a relaxed foot and a slow response to physical manipulation.  相似文献   

14.
Abstract. Forces required to crack shells of a wild population of queen conchs, Strombus gigas L., from the Berry Islands. Bahamas and from three hatchery populations in Venezuela, the United States and Mexico were measured. Above about 55-mm shell length, shell strength of wild conchs increased rapidly for small length increases. To reduce the effect of predation by crustaceans in seeding programmes we recommend release into nature at sizes larger than 55 mm. The regressions of shell length to cracking force of hatchery-reared conchs from the wild population and the hatcheries differed significantly in slope or elevation, suggesting different shell lengths of conchs from different geographic locations, and between hatcheries.  相似文献   

15.
珠江口颗粒附着微生物群落沿环境梯度的演替   总被引:1,自引:0,他引:1       下载免费PDF全文
将PCR-DGGE技术和典范对应分析相结合,研究了珠江口水体颗粒附着微生物群落沿环境梯度的空间分布特征及其影响因素。DGGE指纹图谱分析表明,颗粒附着微生物群落沿环境梯度表现出明显的空间演替:不同站位之间既存在共同谱带,又具有各自的特征谱带;S4和S5两个站位的微生物群落结构与其相邻站位相比,DGGE指纹图谱变化明显,是颗粒附着微生物从海淡水混合区向海水区演替的中间过渡类型。对DGGE图谱中19条主带回收、测序表明,两个序列与已培养的微生物同源性≥99%,其余17条序列均与未培养的环境微生物种群具有很高的相似性(91%~100%);变形菌门和拟杆菌门是珠江口颗粒附着微生物的优势种群,其中变形菌门为绝对优势种群(78.9%)。典范对应分析显示,氮相关营养盐水平和盐度是影响水体颗粒附着微生物群落分布格局的两个主要因素。  相似文献   

16.
Bacterial communities in eggs and larvae of grass carp were analysed. During the early‐developmental stages, grass carp harboured five bacterial phyla, i.e. Proteobacteria, Bacteroidetes, Verrucomicrobia, Planctomycetes and Firmicutes. However, the composition of bacterial communities varied among the different developmental stages. In eggs, the bacterial communities were dominated by Proteobacteria, while in larvae the dominant bacterial community was Bacterioidetes. With the exception of a large proportion (>50%) of uncultured bacteria, Sphingobacterium (14.75%) and Acinetobacter (13.11%) were the most abundant groups in eggs at the fertilization stage (FS). However, Aermonas was the most abundant group, ranging from 40.54% to 61.76% in eggs at the cleavage (CS), blastula (BS), organ differentiation (ODS) and hatching stages (HS). In larvae after first ingestion (OW), Chitinophagaceae (79.41%) formed the predominant bacterial community. Changes in the bacterial community were further confirmed by statistical analysis, which demonstrated significant differences in the bacterial communities of eggs at FS, eggs from CS to HS and OW. However, no significant difference was found in bacterial communities of eggs from CS to HS. Furthermore, the present study revealed that bacteria related to Chitinophagaceae persisted from CS to OW, suggesting that these bacteria form part of the autochthonous microbiota of the fish.  相似文献   

17.
The autochthonous microbiota in the foregut, midgut and hindgut of juvenile grouper Epinephelus coioides following the dietary administration of probiotic Bacillus clausii for 60 days were assessed using polymerase chain reaction‐denaturing gradient gel electrophoresis (PCR‐DGGE). A complex and generally similar bacterial composition along the digestive tract of E. coioides was detected in the DGGE profiles, while several bacteria showed regional specialization. Similarity dendrogram revealed that the bacterial composition of the foregut was more similar to the midgut than the hindgut. Samples collected from the probiotic group and the control group showed generally similar DGGE patterns, while no significant difference in the total number of bands and Shannon index were observed between the probiotic group and the control group, suggested that probiotic B. clausii exerted no significant effect on the gut microbiota of E. coioides. However, various potentially beneficial bacteria, such as Enterococcus sp.‐like and Bacillus pumilus‐like bacterium were selectively stimulated by probiotic B. clausii, while some potential harmful species, like Staphylococcus sp.‐like and Vibrio ponticus‐like bacterium were depressed. These indicated that the gut microbiota was modified to some degree by probiotic B. clausii. Sequences analysis showed that the autochthonous gut bacteria of E. coioides could be classified into four groups, i.e. Proteobacteria, Firmicutes, Actinobacteria and unclassified bacteria.  相似文献   

18.
The rapidly growing yellow grouper industry has experienced relatively severe bacterial disease problems in China. The proliferation of pathogens in fish can be suppressed by commensal microbiota. In this background, we used nested polymerase chain reaction‐denaturing gradient gel electrophoresis (PCR‐DGGE) and sequence analysis to investigate microbiota in the skin, gills and intestines, including adherent bacteria and non‐adherent bacteria in yellow grouper fed with natural diet and complete feed. A total of 21 bacterial species were identified using phylogenetic analysis. The γ‐Proteobacteria group (81.0%, 17 species) dominated the bacterial communities in yellow grouper completely. Others belonged to Firmicutes (9.5%, two species), Actinobacteria (4.75%, one species) and Verrucomicrobia (4.75%, one species). The higher similarities (above 91%) of the DGGE band patterns in skin, gill and intestinal‐non‐adherent bacteria between two groups of fish indicated that existed more stable microbial communities existed in these specifically ecological niches in yellow grouper. However, considerable differences existed between two intestinal‐adherent bacteria (IAB) samples; that is, compared with natural diet fed yellow grouper, higher bacterial apparent species richness and possibly less abundance existed in IAB in fish fed with complete diets, probably indicating that the community structures in IAB were affected easily and significantly by diet.  相似文献   

19.
本研究应用PCR-RFLP(Polymerase Chain Reaction-Restriction Fragment Length Polymorphism)和PCR-DGGE(Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis)技术,对工厂化养殖的凡纳滨对虾肠道菌群进行多样性分析。RFLP结果显示,8月样品中不同的克隆子为5个,其中以不可培养细菌(Unculturable bacteria)为主要优势菌,其次为鲁杰氏菌属菌种Ruegeria spp.和Rhodobacterales spp.。依据微生物多样性的覆盖率分析结果表明,所构建16S rDNA克隆文库的覆盖率为97.5%。10月样品中克隆子为8个,其中以不可培养细菌、芽孢杆菌属Bacillus spp.和弧菌属Vibrio spp.为主要优势菌属,其次为Photobacterium spp.和Neptunomonas spp.;所构建16S rDNA克隆文库的覆盖率为90.8%。应用DGGE分析8月和10月对虾肠道样品,菌群以不可培养细菌和弧菌属为主,其次为Streptomyces spp.、Ruegeria spp.、Enterococcus spp.和Photobacterium damselae。  相似文献   

20.
养殖刀鲚与生长环境菌群PCR-DGGE指纹图谱及多样性分析   总被引:1,自引:0,他引:1  
为了分析养殖刀鲚体内与生长环境菌群结构,利用PCR-DGGE技术,对养殖刀鲚鳃、胃、肠壁及肠内容物和养殖水体菌群结构进行了初步分析。PCR-DGGE指纹图谱分离显示,42条清晰条带,其中养殖水体(27)、鳃(9)、胃(13)、肠道壁(19)、肠道内容物(18)的香农指数分别为3.037、1.883、2.193、2.825、2.683;养殖水体与刀鲚鳃、胃、肠道壁及肠道内容物分别具有6、9、11、8共有带。UPGMA聚类分析显示,样品3个重复相似度都在95%以上,差异不明显;不同样品之间,养殖刀鲚鳃和胃聚为一支,具有较高的相似度(76%),同时与养殖水体相似度达29%;养殖刀鲚肠道壁和肠道内容物聚为一支,相似度为38%。回收测定所有显示条带,主要包含变形菌、放线菌、拟杆菌、柔膜菌、蓝藻细菌、厚壁菌、梭杆菌及少量未定义菌种。研究表明,PCR-DGGE技术能区分养殖刀鲚主要部位及水体微生物的结构差异和多样性,澄清养殖刀鲚及生长水体微生物区系,可为定植益生菌的开发提供参考。  相似文献   

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