134 resultados para 16s rRNA sequencing


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高分辨率的核糖体精细结构揭示,核糖体行使功能的主体是RNA。核糖体的主要功能:催化肽键形成,识别、 选择tRNA 等都主要由rRNA 来完成。

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盾腹亚纲吸虫被认为是寄生扁形动物中古老的类群,包括盾腹科、多萼科、裂杯科和皱腹科,科间系统发育关系尚存争议。本研究收集GenBank数据库中所有的盾腹吸虫18S rRNA基因序列,测定了三种盾腹吸虫的相应序列,分别采用最大简约法和最大似然法构建分子系统发育树。结果显示,多萼科的分类地位不成立,多萼属应还原到盾腹科;盾腹科的盾腹亚科和杯盾亚科均非单系,吸槽列数可能是平行进化特征,不能反映盾腹科各亚科间的系统发育关系。建议将具有边缘器的吸槽型腹吸盘,以及不具边缘器的吸杯型和皱褶型腹吸盘分别鉴定为盾腹科、裂杯科

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东方鲀属鱼类是一个区域性分布类群,该属目前包括22个有效种,主要分布区域从日本海西部到中国沿海.本研究通过联合17种(21尾)东方鲀属鱼类的细胞色素b(1137bp)和12SrRNA(952bp)基因全序列研究了东方鲀属鱼类的系统发育关系.采用了邻接法(NJ)、最大简约法(MP)、最大似然法(ML)和Baysian方法构建了分子系统树.结果表明:(ⅰ)东方鲀属鱼类为一单系类群;(ⅱ)基于分子系统发育分析,东方鲀属鱼类可划分为6个亚群;(ⅲ)在分子水平上,本属各鱼类物种的遗传距离比较接近,这显示了其物种间分

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海洋喇叭虫Maristentordinoferus 1996年在关岛(Guam)的珊瑚暗礁上被发现 ,至今尚未阐明其确切的系统发育地位。克隆到的海洋喇叭虫的 18S ITS1 5 8SrDNA序列包括 2 2 2bp的 18S序列 ,77bp的ITS1序列和 2 2bp的 5 8S序列。比较分析了纤毛虫主要类群的ITS1序列后得出 :短的ITS1序列可能是异毛类纤毛虫的特征。根据 18S序列 ,利用邻接法构建 ,最大简约法和最大似然法构建系统发育树。其拓扑结构显示海洋喇叭虫属于异毛纲纤毛虫 ,但并不隶属喇

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通过对鲤形目鱼类 5个科的代表类群的完整线粒体 12SrRNA进行测序和分析 ,以检验目前的形态学假说。经序列比对后 ,有 10 0 0个位点 ,其中 467个位点在茎区 ,53 3个在环区 ;有 3 95个位点为变化位点 ,其中 2 67个为系统发育信息位点。采用邻接法和最大简约法进行了系统发育分析 ,其结果支持鲤科鱼类成为一个单系群 ,非鲤科的鲤形目鱼类成为另一个单系群的观点 ,这与Siebert提出的假说相一致。鲤科鱼类包含 3个主要的分支 ,即鱼丹系、鲤系和雅罗鱼系 ;但在非鲤科鲤形目鱼类中 ,其

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建立了由采自自然界中的样品、不经实验室培养而直接用于大核DNA提取和PCR反应的原位(in situ)方法;在此基础上,测定并比较了6种累枝虫(Epistylis wenrichi,E.urceolata,E.chrysemydis,E.plicatilis,E.hentscheli,E.galea)的18S-ITS1序列,结果显示:E.wenrichi,E.urceolata,E.chrysemydis,E.plicatilis和E.hentscheli间18S和ITS1区序列的碱基相似性很高,而它们与

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测定并比较了自接型的上海四膜虫 (Tetrahymenashanghaienisis)和两株接合型的嗜热四膜虫(T thermophilaⅡ和T thermophilaⅥ )的ITS - 1序列 ,以多态喇叭虫 (Stentorpolymorphrus)为外来群 ,利用最大简约法和邻接法构建了它们的系统发育树。分析指出 :三者中 ,T shanghaienisis较早地从祖先种中分化出来 ;自接型可能是一种较接合型原始的生殖方式。

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Brain structure and function experience dramatic changes from embryonic to postnatal development. Microarray analyses have detected differential gene expression at different stages and in disease models, but gene expression information during early brain development is limited. We have generated >27 million reads to identify mRNAs from the mouse cortex for>16,000 genes at either embryonic day 18 (E18) or postnatal day 7 (P7), a period of significant synapto-genesis for neural circuit formation. In addition, we devised strategies to detect alternative splice forms and uncovered more splice variants. We observed differential expression of 3,758 genes between the 2 stages, many with known functions or predicted to be important for neural development. Neurogenesis-related genes, such as those encoding Sox4, Sox11, and zinc-finger proteins, were more highly expressed at E18 than at P7. In contrast, the genes encoding synaptic proteins such as synaptotagmin, complexin 2, and syntaxin were up-regulated from E18 to P7. We also found that several neurological disorder-related genes were highly expressed at E18. Our transcriptome analysis may serve as a blueprint for gene expression pattern and provide functional clues of previously unknown genes and disease-related genes during early brain development.

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To explore the relationships between community composition and the environment in a reservoir ecosystem, plankton communities from the Three Gorges Reservoir Region were studied by PCR-denaturing gradient gel electrophoresis fingerprinting. Bacterial and eukaryotic operational taxonomic units (OTUs), generated by DGGE analysis of the PCR-amplified 16S and 18S rRNA genes, were used as surrogates for the dominant "biodiversity units". OTU composition among the sites was heterogeneous; 46.7% of the total bacteria] OTUs (45) and 64.1% of the eukaryotic OTUs (39) were identified in less than half of the sampling sites. Unweighted pair group method with arithmetic averages (UPGMA) clustering of the OTUs suggested that the plankton communities in the Xiangxi Rive sites were not always significantly different from those from the Yangtze River sites, despite clear differences in their environmental characterizations. Canonical correspondence analysis (CCA) was applied to further investigate the relationships between OTU composition and the environmental factors. The first two CCA ordination axes suggested that the bacterial community composition was primarily correlated with the variables of NO3--N, dissolved oxygen (DO), and SiO32--Si, whereas, the eukaryotic community was mainly correlated with the concentrations of DO, PO43--P, and SiO32--Si.

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The 16S and 18S rRNA genes of planktonic organisms derived from five stations with nutrient gradients in Lake Donghu, China, were studied by PCR-denaturing gradient gel electrophoresis (DGGE) fingerprinting, and the relationships between the genetic diversity of the plankton community and biotic/abiotic factors are discussed. The concentrations of total nitrogen (TN), total phosphorus (TP), NH4-N and As were found to be significantly related (P < 0.05) to morphological composition of the plankton community. Both chemical and morphological analyses suggested that temporal heterogeneity was comparatively higher than spatial heterogeneity in Lake Donghu. Although the morphological composition was not identical to the DGGE fingerprints in characterizing habitat similarity, the two strongest eutrophic stations (I and II) were always initially grouped into one cluster. Canonical correspondence analysis suggested that the factors strongly correlated with the first two ordination axes were seasonally different. The concentrations of TN and TP and the densities of rotifers and crustaceans were generally the main factors related to the DGGE patterns of the plankton communities. The study suggested that genetic diversity as depicted by metagenomic techniques (such as PCR-DGGE fingerprinting) is a promising tool for ecological study of plankton communities and that such techniques are likely to play an increasingly important role in assessing the environmental conditions of aquatic habitats.

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The complete mitochondrial genome sequence of the Chinese hook snout carp, Opsariichthys bidens, was newly determined using the long and accurate polymerase chain reaction method. The 16,611-nucleotide mitogenome contains 13 protein-coding genes, two rRNA genes (12S, 16S) 22 tRNA genes, and a noncoding control region. We use these data and homologous sequence data from multiple other ostariophysan fishes in a phylogenetic evaluation to test hypothesis pertaining to codon usage pattern of O. bidens mitochondrial protein genes as well as to re-examine the ostariophysan phylogeny. The mitochondrial genome of O. bidens reveals an alternative pattern of vertebrate mitochondrial evolution. For the mitochondrial protein genes of O. bidens, the most frequently used codon generally ends with either A or C, with C preferred over A for most fourfold degenerate codon families; the relative synonymous codon usage of G-ending codons is greatly elevated in all categories. The codon usage pattern of O. bidens mitochondrial protein genes is remarkably different from the general pattern found previously in the relatively closely 9 related zebrafish and most other vertebrate mitochondria. Nucleotide bias at third codon positions is the main cause of codon bias in the mitochondrial protein genes of O. bidens, as it is biased particularly in favor of C over A. Bayesian analysis of 12 concatenated mitochondrial protein sequences for O. bidens and 46 other teleostean taxa supports the monophyly of Cypriniformes and Otophysi and results in a robust estimate of the otophysan phylogeny. (C) 2007 Published by Elsevier B.V.

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Based on morphological characters, peritrich ciliates (Class Olygohymenophorea, Subclass Peritrichia) have been subdivided into the Orders Sessilida and Mobilida. Molecular phylogenetic studies on peritrichs have been restricted to members of the Order Sessilida. In order to shed more light into the evolutionary relationships within peritrichs, the complete small subunit rRNA (SSU rRNA) sequences of four mobilid species, Trichodina nobilis, Trichodina heterodentata, Trichodina reticulata, and Trichodinella myakkae were used to construct phylogenetic trees using maximum parsimony, neighbor joining, and Bayesian analyses. Whatever phylogenetic method used, the peritrichs did not constitute a monophyletic group: mobilid and sessilid species did not cluster together. Similarity in morphology but difference in molecular data led us to suggest that the oral structures of peritrichs are the result of evolutionary convergence. In addition, Trichodina reticulata, a Trichodina species with granules in the center of the adhesive disc, branched separately from its congeners, Trichodina nobilis and Trichodina heterodentata, trichodinids without such granules. This indicates that granules in the adhesive disc might be a phylogenetic character of high importance within the Family Trichodinidae.

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Using conserved primers and the PCR reaction, the growth hormone (GH) gene and the 3'-UTR of the large yellow croaker (Pseudosciaena crocea) were amplified and sequenced. The gene structure was analyzed and compared to the GH genes of 5 other percoid fish downloaded from Genbank. Also the GH gene of the large yellow croaker and the genes from 14 Percoidei and 2 Labroidei species were aligned using Clustal X. A matrix of 564 bp was used to construct the phylogenetic tree using maximum parsimony and neighbor-joining methods. Phylogenetic trees by the two methods are identical in most of the clades with high bootstrap support. The results are also identical to those from morphological data. In general, this analysis does not support the monophyly of the families Centropomidae and Carangidae. But our GH gene tree indicates that the representative species of the families Sparidae and Sciaenidae are a monophyletic group.

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The phylogenetic relationships among peritrichs remain unresolved. In this study, the complete small subunit rRNA (SSrRNA) gene sequences of seven species (Epistylis galea, Campanella umbellaria, Carchesium polypinum, Zoothamnium arbuscula, Vaginicola crystallina, Ophrydium versatile, and Opercularia microdiscum) were determined. Trees were constructed using distance-matrix, maximum-likelihood and maximum-parsimony methods, all of which strongly supported the monophyly of the subclass Peritrichia. Within the peritrichs, 1) E. galea grouped with Opercularia microdiscum and Campanella umbellaria but not the other Epistylis species, which indicates that the genus Epistylis might not be monophyletic; 2) the topological position of Carchesium and Campanella suggested that Carchesium should be placed in the family Zoothammidae, or be elevated to a higher taxonomic rank, and that Campanella should be independent of the family Epistylididae, and probably be given a new rank; and 3) Opisthonecta grouped strongly with Asty/ozoon, which suggested that Opisthonecta species were not the ancestors of the stalked peritrichs.