941 resultados para 12S rRNA
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The sequences of the 16S rRNA genes from 38 strains of the family Thermaceae were compared by alignment analysis. The genus-specific and species-specific base substitutions or base deletions (signature positions) were found in three hypervariable regions (in the helices 6, 10 and 17). The differentiation of secondary structures of the high variable regions in the 5' end (38-497) containing several signature positions further supported the concept. Based on the comparisons of the secondary structures in the segments of 16S rRNAs, a key to the species of the family Thermaceae was proposed. (C) 2003 Published by Elsevier Science B.V. on behalf of the Federation of European Microbiological Societies.
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To understand pharmacophore properties of pyranmycin derivatives and to design novel inhibitors of 16S rRNA A site, comparative molecular field analysis (CoMFA) approach was applied to analyze three-dimensional quantitative structure-activity relationship (3D-QSAR) of 17 compounds. AutoDock 3.0.5 program was employed to locate the orientations and conformations of the inhibitors interacting with 16S rRNA A site. The interaction mode was demonstrated in the aspects of inhibitor conformation, hydrogen bonding and electrostatic interaction. Similar binding conformations of these inhibitors and good correlations between the calculated binding free energies and experimental biological activities suggest that the binding conformations of these inhibitors derived from docking procedure were reasonable. Robust and predictive 3D-QSAR model was obtained by CoMFA with q(2) values of 0.723 and 0.993 for cross-validated and noncross-validated, respectively. The 3D-QSAR model built here will provide clear guidelines for novel inhibitors design based on the Pyranmycin derivatives against 16S rRNA A site. (c) 2005 Elsevier B.V. All rights reserved.
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分别在2004年、2005年和2006年洱海鱼腥藻水华暴发时期,分离优势种,获得藻株EH-A、EH-B和EH-C,通过形态学特征和16S rRNA基因序列分析鉴定了藻株的种类。选用藻丝的形态、气囊的存在与否、异形胞和孢子的位置、各种细胞的形状以及营养细胞、异形胞和孢子的大小等传统的分类特征描述藻株的形态。依据形态特征,初步判断这3个藻株可能为卷曲鱼腥藻(Anabaena circinalis)或A.crassa株系成员。利用16S rRNA基因序列构建邻接树分析了藻株间的系统进化关系,分析表明:藻株EH-
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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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对从青岚湖采集的 10属 14种河蚌的 19个样本进行了 16SrRNA的序列测定 ,并同GenBank中鄱阳湖流域相同物种河蚌的序列比较 ,分析了基于Kimura 2 parameter模型参数得到的遗传距离 ,并构建了它们的UPGMA树。结果显示 ,所有用于比较的河蚌种间遗传距离变化范围在 0 .0 2 74— 0 .2 2 90 ,平均为 0 .132 5 ,种内遗传距离在0 .0 0 34— 0 .0 0 6 8之间 ,平均为 0 .0 0 4 5 ,种间遗传距离远大于种内距离。表明以 16SrR
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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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采用PCR技术获得了中国鮡科鱼类10属9种鰋鮡鱼类和6种非鰋鮡鱼类线粒体DNA 16S rRNA基因部分序列. 序列分析表明, 16S rRNA序列非配对区有A碱基偏倚性, 配对区有G碱基偏倚性. 在非配对区, 主要由于A→G转换引起转换大于颠换的偏倚, 且平均替代率几乎是配对区的2倍. 配对区和非配对区均没有替代饱和现象. 采用最大似然法(ML)和Bayesian方法构建分子系统树, 结果表明, 鮡科是一个单系群, 由(黑鮡属(魾属, 纹胸鮡属))与(褶鮡属+ 鰋鮡鱼类)两支构成. 鰋鮡鱼类可能不是一个
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首次测定了中国淡水贝类———蚌科 (Unionidae) 1 3个属代表种类的线粒体 1 6SrRNA部分序列。用Clustal X排序软件进行 1 6SrRNA序列的对位排列 ,序列总长度为 30 5— 32 0bp。通过Mega 2 0软件对所得线粒体 1 6SrRNA片段序列进行比较 ,共发现 1 0 8个碱基存在变异 ,其中包括 77个简约信息位点 ,并用“Pairwisedistance”计算了各属间的相对遗传距离。以贻贝为外类群 ,采用Mega 2 0软件中的“Neighbore Joinin
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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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以缘毛目褶累枝虫为研究材料,探索和建立了适用于较难培养的单细胞原生动物的分子生物学研究方法.并测定了褶累枝虫16SrRNA基因3′端1115个核苷酸.通过比较分析,从分子水平探讨了累枝虫属与缘毛目其它属之间的亲缘关系,为进一步重构原生动物的系统图提供最基本的资料.
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The mitochondrial 16S ribosomal RNA (rRNA) gene sequences from 93 cyprinid fishes were examined to reconstruct the phylogenetic relationships within the diverse and economically important subfamily Cyprininae. Within the subfamily a biased nucleotide composition (A > T, C > G) was observed in the loop regions of the gene, and in stem regions apparent selective pressures of base pairing showed a bias in favor of G over C and T over A. The bias may be associated with transition-transversion bias. Rates of nucleotide substitution were lower in stems than in loops. Analysis of compensatory substitutions across these taxa demonstrates 68% covariation in the gene and a logical weighting factor to account for dependence in mutations for phylogenetic inference should be 0.66. Comparisons of varied stem-loop weighting schemes indicate that the down-weightings for stem regions could improve the phylogenetic analysis and the degree of non-independence of stem substitutions was not as important as expected. Bayesian inference under four models of nucleotide substitution indicated that likelihood-based phylogenetic analyses were more effective in improving the phylogenetic performance than was weighted parsimony analysis. In Bayesian analyses, the resolution of phylogenies under the 16-state models for paired regions, incorporating GTR + G + I models for unpaired regions was better than those under other models. The subfamily Cyprininae was resolved as a monophyletic group, as well as tribe Labein and several genera. However, the monophyly of the currently recognized tribes, such as Schizothoracin, Barbin, Cyprinion + Onychostoma lineages, and some genera was rejected. Furthermore, comparisons of the parsimony and Bayesian analyses and results of variable length bootstrap analysis indicates that the mitochondrial 16S rRNA gene should contain important character variation to recover well-supported phylogeny of cyprinid taxa whose divergences occurred within the recent 8 MY, but could not provide resolution power for deep phylogenies spanning 10-19 MYA. (c) 2008 Published by Elsevier Inc.
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The phylogenetic relationships within the family Penaeidae are examined based on mitochondrial 16S rRNA gene sequence analysis of 30 species from 20 genera. The analysis generally supports the three- tribe scheme proposed by Burkenroad ( 1983) but it is not consistent with the five- group classification of Kubo ( 1949). Three clades are resolved: ( Penaeus sensu stricto + Fenneropenaeus + Litopenaeus + Farfantepenaeus + Marsupenaeus + Melicertus + Funchalia + Heteropenaeus), ( Metapenaeus + Parapenaeopsis + Xiphopenaeus + Rimapenaeus + Megokris + Trachysalambria) and ( Metapenaeopsis + Penaeopsis + Parapenaeus), corresponding to the Penaeini, Trachypenaeini and Parapenaeini respectively, while the affinities of Atypopenaeus and Trachypenaeopsis are obscure. The molecular data support that Miyadiella represents the juvenile stage of Atypopenaeus. Within the Trachypenaeini, Trachypenaeus sensu lato is clearly paraphyletic, while the monophyly of Penaeus sensu lato in the Penaeini is questionable.
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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.