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1.
肠道炎症已成为我国社会健康的难题和挑战,其发病率在我国迅速增长。肠道炎症发病原因复杂,目前尚缺乏有效的缓解药物,因此加强肠道炎症有效缓解物质的研发至关重要。低聚半乳糖(galactooligosaccharide,GOS)是一种食疗益生性较优的乳源功能性低聚糖,能够有效促进肠道内益生菌的增殖,改变肠道菌群结构,刺激免疫应答,进而改善肠黏膜屏障功能,缓解肠道炎症。本文综述近年来国内外有关肠道炎症及GOS干预缓解肠道炎症作用的研究进展,并对其应用前景进行展望,为此领域的研究提供科学依据。  相似文献   
2.
重庆地区草地贪夜蛾肠道细菌的分离鉴定   总被引:5,自引:5,他引:0       下载免费PDF全文
为了解入侵重庆地区草地贪夜蛾(Spodoptera frugiperda)肠道所携带的细菌组成,以采集自巫溪、巫山地区玉米地里的草地贪夜蛾为材料,运用传统培养方法分离了其肠道优势细菌,并基于16S rDNA测序开展了优势菌的属水平鉴定,共获得了30个细菌分离株,经16S rDNA序列同源性分析,可归于5个属,分别为克雷伯氏菌属(Klebsiella)、不动杆菌属(Acinetobacter)、假单胞菌属(Pseudomonas)、肠杆菌属(Enterobacter)以及气单胞菌属(Aeromonas);其中,克雷伯氏菌属(Klebsiella)的丰度最高,占所有分离菌株的63%;假单胞属(Pseudomonas)和肠杆菌属(Enterobacter)菌株仅在巫山地区分离得到,气单胞菌属(Aeromonas)仅在巫溪地区分离得到.实验确定了入侵重庆地区草地贪夜蛾肠道优势细菌的种类及丰度,为后续研究草地贪夜蛾肠道微生物对宿主的生长发育以及迁飞等重要问题奠定了基础.  相似文献   
3.
Endozoochory has been recognised as the most important dispersal mechanism in invasive Prosopis species, because their sugary, tasty pods attract animals and because some of their seeds remain intact after passing through some animals' digestive systems. In this study, we evaluated the role of the camel (Camelus dromedarius) as a potential disperser of the seeds of invasive tree Prosopis juliflora. Four camels of similar weight (ca. 400 kg) and age (ca. 2 years) were each fed with 70 fruits (1000 seeds approximately) of P. juliflora, which were retrieved from the camels' dung at 24‐h intervals for 4 days. The seeds retrieved were tested for germination and viability, along with seeds not eaten by the camels, with and without pericarp. Less than 3% of the seeds eaten were retrieved from the camels' dung. Most of the seeds (74%) were retrieved between 24 and 72 h after ingestion. The passage through the camel gut significantly accelerated and increased seed germination of P. juliflora in comparison with uneaten seeds covered with pericarp (48–75% and 15% respectively). While gut passage liberated P. juliflora seeds from the pericarp, increasing and accelerating their germination, the viability of seeds which had not germinated after germination trials were decreased (ca. ~20%) relative to uneaten seeds that had also not germinated. Our results show that, despite the low recorded seed recovery, camels can potentially disperse seeds of P. juliflora, which is in line with field observation showing P. juliflora expansion along the camels' routes in Gebel Elba National Park, south‐east Egypt.  相似文献   
4.
We evaluated the effects of Bacillus cereus, as an additive in water and feed, on the gut microbiota and immunological parameters of Nile tilapia (Oreochromis niloticus) fingerlings. Experiments were performed in tanks and net cages respectively. Experiment 1: Tilapia were housed in tanks for 42 days, and Bcereus was added to the water at 1.0 × 104 cfu mL?1 (Treatment 1) and 1.0 ×105 cfu mL?1 (Treatment 2) weekly. For the control, no probiotic was added. Experiment 2: Tilapia were housed in cages for 42 days, and the feed was supplemented with Bcereus at 1.0 × 107 cfu g?1 (Treatment 1) and 1.0 × 108 cfu g?1 (Treatment 2) weekly. For the control, no probiotic was added. Each treatment contained three replicates, with 50 male tilapias per replicate. The fish from the probiotic treatments in both tank and cage experiments had significantly higher serum lysozyme and peroxidase activities than the control. In the cage experiment, alkaline phosphatase and total superoxide dismutase activities in tilapia were significantly higher in probiotic treatments compared with the control. The results of polymerase chain reaction‐denaturing gradient gel electrophoresis showed that B. cereus supplementation in the feed and water affected the autochthonous gut bacteria community of tilapia and stimulated various potentially beneficial bacteria. Therefore, B. cereus, as a water or feed additive, could enhance the immune status and affect the gut microbiota of tilapia. Bacillus cereus was more effective as a feed supplement rather than a water additive for enhancing the immune status of tilapia.  相似文献   
5.
Atlantic salmon (Salmo salar) were fed five graded levels of eicosapentaenoic acid (EPA, 20:5n‐3) and docosahexaenoic acid (DHA, 22:6n‐3), from 1.4 to 5.2% of total fatty acids (FA, 5–17 mg kg?1 feed), and grew from ~160 g to ~3000 g, with the period from 1450 g onwards conducted both at 6 °C and at 12 °C. All fish appeared healthy, and there were no diet‐related differences in haematological or plasma parameters, as well as intestinal histological or gut microbiota analysis. Fish reared at 6 °C had higher accumulation of storage lipids in the liver compared to fish reared at 12 °C. Liver lipids also increased with decreasing dietary EPA + DHA at 6 °C, while there was no such relationship at 12 °C. Gene expression of SREBP1 and 2, LXR, FAS and CPT1 could not explain the differences in liver lipid accumulation. In liver polar lipids, DHA was found to be reduced when dietary EPA + DHA was <2.7% of FAs, while the level of EPA in the membranes was not affected. In conclusion, reducing dietary EPA + DHA from 5.2 to 1.4% of total FAs had a minor impact on fish health. Temperature was the factor that most affected the liver lipid accumulation, but there was also an interaction with dietary components.  相似文献   
6.
An experiment was conducted to assess the effect of supplementation of cellulolytic gut bacterium with plant protein‐based diet on growth, digestibility and digestive enzyme status of tiger shrimp, Penaeus monodon. Bacillus sp. DDKRC1. (JN641289), a potential cellulolytic bacterium, isolated from the gut of Asian seabass was used as feed supplement in this experiment. The shrimps of group I, II and III were fed with control diet (without bacterial supplement, D1), diet supplemented with live Bacillus sp. DDKRC1. at 2.94 × 10cfu per 100 g feed (D2) and diet fermented (48 hr) with same bacteria (D3) respectively. At the end of the 42 days experiment, shrimps of group II showed significantly better (< .01) growth and protein efficiency ratio (PER) and lower (< .01) feed conversion ratio (FCR) as compared to group I and III. Dry matter, cellulose, hemicellulose and lipid digestibilities were significantly (< .01) higher in group II than other two groups. Cellulase, amylase and protease activities in the gastrointestinal (GI) tract were significantly (< .01) higher in group II as compared to other two groups. Total heterotrophic count, amylolytic, cellulolytic and proteolytic bacterial counts in gut were significantly (< .01) higher in group II as compared to other two groups. Haematological analysis indicated better (< .05) immune response in groups II and III than control group. Diets D2 and D3 showed better effect on growth, digestibility, FCR, survival and immune response of P. monodon as compared to D1.  相似文献   
7.
昆虫肠道中存在大量的细菌,这些细菌具有种群结构和功能多样性的特点。目前的观点认为昆虫的种类和取食特性是造成这一现象的主要原因。昆虫的生长发育离不开这些微生物。早期的实验中只能利用传统平板培养方法通过观察菌落的生长形态和菌株的生理特性进行研究。但由于自然界中99%的微生物是无法培养的,同时培养法容易受到外界因素的干扰导致实验结果不准确,因而培养法无法满足研究人员对昆虫肠道细菌的深入研究。随着宏基因组学的兴起和分子生物学技术的发展,用新的技术研究昆虫肠道微生物成了当前的研究热点。为此,对昆虫肠道微生物的一些基本概念、主要功能和主要研究手段进行归纳整理。  相似文献   
8.
Malaysian Mahseer (Tor tambroides) has a good prospect for aquaculture because of its high market demand. However, there is a scarce information on gut microbiota associated with Malaysian Mahseer unlike other fish species. Therefore, we constructed and compared gut microbiota in different developmental stages (larval, juvenile, fingerling, yearling, and adult) using culture dependent and PCR‐DGGE fingerprinting technique for better understanding of gut microbiota composition associated with T. tambroides. Culturable gut microbiota composition in all developmental stages were composed of β‐ and γ‐Proteobacteria, and Bacilli. Biodiversity analysis of culturable gut microbiota showed that larval, juvenile, and adult stages have higher diversity than fingerling and yearling stages. Ward's linkage cluster analysis showed that culturable gut microbiota composition in larval and juvenile stages were close to adult stages, whereas fingerling and yearling stage composed same cluster. PCR‐DGGE fingerprinting technique showed that unculturable gut microbiota were constituted by α‐and γ‐Proteobacteria, and Actinobacteria. Ward's linkage cluster analysis showed that unculturable gut microbiota composition in both larval and juvenile stages were distinct from other developmental stages. Our results revealed that gut microbiota composition were varied in different developmental stages of Malaysian Mahseer and continuous shifts of gut microbiota from larval to adult stages.  相似文献   
9.
辐照对瓜实蝇遗传区性品系成虫肠道微生物的影响   总被引:1,自引:0,他引:1  
为研究辐照对瓜实蝇肠道微生物群落多样性和结构组成的影响,以100 Gy137Cs辐照来自瓜实蝇遗传区性品系(GSS)的5、8、11和13日龄的雌、雄成虫,并采用Illumina MiSeq测序技术分别对其肠道菌群进行测序分析。结果表明,瓜实蝇雌雄成虫的肠道中存在19个主要的菌属,包括17个属名已知,1个属名未知和1个属不可培养。其中,17个已知属分别属于4个细菌门,即变形菌门(Proteobacteria)(占总量的50%~98%)、厚壁菌门(Firmicutes)(占总量的2%~47%)、拟杆菌门(Bacteroidetes)(占总量的1%~16%)和1个至今微生物界还未确定的稀少菌门(unclassified rare phyla)(总量1%)。此外,辐照降低了瓜实蝇肠道中的微生物多样性以及优势菌的丰富度,且这种影响与瓜实蝇的性别和成虫日龄无关。本研究结果为评估和修复辐照对瓜实蝇的损伤提供了参考。  相似文献   
10.
To elucidate the influence of different diet on the intestinal microbe and bile acids, we characterized the microbiota and bile acids in the hindgut content of grass carp fed on formula feed (FF group) or Sudan grass (SG group). Fusobacteria and Proteobacteria were significantly more represented in FF group than in SG group whereas Bacteroidetes was significantly more abundant in SG group than in FF group. Simpson diversity was significantly higher in FF group than in SG group (t = 2.33, < 0.05). Chenodeoxycholic acid (CDCA) was the most abundant primary bile acid in the two groups, with average concentrations of 1.03 ± 0.62 and 4.44 ± 1.80 ng mg?1 in SG and FF group respectively. The most abundant secondary bile acid was deoxycholic acid (DCA) in SG group and ursodeoxycholic acid (UDCA) in FF group, with average concentrations of 0.17 ± 0.06 and 2.67 ± 0.88 ng mg?1 respectively. UDCA is significantly more abundant in FF group than in SG group, and the total bile acids were higher in FF group than in SG group. Cetobacterium and Fusobacteriaceae U114 were significantly related with the concentrations of CDCA (r = 0.85, < 0.05 and r = 0.82, < 0.05 respectively) and UDCA (r = 0.92, < 0.01 and r = 0.92, < 0.01 respectively). However, Bacteroides was negatively related with the concentration of UDCA (r = ?0.67, < 0.05). Overall, there existed certain relationship between the intestinal microbes and the faecal bile acids, and they were both influenced by the diet.  相似文献   
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