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11.
东海原甲藻的分子鉴定   总被引:6,自引:2,他引:4  
采用nrDNAITS序列及18S序列两种分子标记,对东海原甲藻和美国国家海洋藻种保藏中心(CCMP)的具齿原甲藻进行分子鉴定,结果表明,两者之间序列非常相似,两者的nrDNAITS序列碱基差异值仅为0.002,nrDNA18S序列的碱基差异值为0.000,根据分子数据,东海原甲藻和美国国家海洋藻种保藏中心的具齿原甲藻应为同一个种.从基因库获取原甲藻的另外3个种nrD-NAITS序列和8个种的18S序列,用计算机软件进行分析和构建分子系统树,结果显示18S序列用于原甲藻的分子鉴定过于保守,而nrDNAITS更适合于该种属界定的分子标准.  相似文献   
12.
三株赤潮硅藻5.8S rDNA及转录间隔区(ITS)的克隆及序列分析   总被引:1,自引:1,他引:0  
对引发赤潮的3株硅藻——1株尖刺拟菱形藻(Pseudo-nitzshia pungens)和2株中肋骨条藻(Skeletonema costatum)的5.8SrDNA和ITS(internal transcribed spacers)序列进行了PCR扩增、克隆和序列测定,并分析了硅藻门10株赤潮藻(7株从GenBank获得)的系统进化关系.研究结果表明,尖刺拟菱形藻的ITS和5.8SrDNA的长度为693bp,SK-1(分离自东海赤潮暴发区)测序得到715bp,除ITS和5.8SrDNA外,还包含部分18SrDNA和28SrDNA;SK-2(分离自青岛养殖场)的ITS和5.8SrDNA的长度为331bp,尖刺拟菱形藻与从GenBank中获得的2株尖刺拟菱形藻相似程度最高,为100%,与该属的多列拟菱形藻相似程度稍低,为82.9%.SK-2的ITS序列与SK-1的相似程度很低,只有51%,但与拟中肋骨条藻的ITS序列相似程度高,为95.5%.SK-1的ITS序列与拟中肋骨条藻的相似程度也低,为56.7%.系统进化树反映的结果与相似性反映的结果一致.研究的该株尖刺拟菱形藻从根据ITS序列研究的结果与形态鉴定的结果看是一致的;SK-2可能属于拟中肋骨条藻;SK-1比较特殊,有待于用其他的方法进一步研究确定其分类地位.  相似文献   
13.
报道了首次分离于东海海域的三叶原甲藻(Prorocentrum triestinum Schiller)藻株号(LAMB100721),通过利用光学显微镜、荧光显微镜、扫描电镜及分子生物学方法,对其形态特征、显微结构和分子系统进化进行了详尽描述和鉴定。细胞长卵形或披针形,后端细长且尖,前端圆,最宽部位于细胞中央。顶刺长而显,三角状。壳面光滑,无刺或突起物。刺丝胞孔稀疏而不规则地分布于壳面边缘。叶绿体无具体形状,分布于整个细胞中,细胞核球形,位于中下部。老化的细胞可见细胞边缘的间接带,且间接带表面光滑。细胞长为19~25 μm,平均值为(22.6±0.9)μm;宽为11~16 μm,平均值为(13.2±1.1) μm。所测目标藻株的rDNA ITS序列长度为569 bp,其中GC含量为47.6%。三叶原甲藻系赤潮种,为东海原甲藻春季大规模赤潮的伴随种。加强有害赤潮的预防和监测工作是减少危害的有效途径,而对赤潮原因种的准确识别和鉴定则是基础和关键。  相似文献   
14.
利用16S rRNA基因序列分子识别红斑后海螯虾,然后对海南附近海域(18°30′-19°00′N,111 °30′-112°30′ E)、北部湾口海域(15°41′ N,110°40′ E)和南沙群岛海域(5°20′-5°29′N,110°09′-111°26′E)三个地理群体进行ITS1的扩增测序.16S rRNA基因序列的结果表明所取样本准确;三个地理群体分别得到616-623bp、619bp和614bp的ITS1全长序列,A、G、T、C含量平均分别为22.3%、29.4%、17.8%和30.6%;其中562个保守位点,39个多态位点.ML和NJ聚类分析显示三个地理群体共聚为三个大支,其中海南群体有群体分化.表明红斑后海螯虾三个地理群体分化极其显著,且海南群体具有相对高的遗传多样性.  相似文献   
15.
The black-footed abalone Haliotis iris is an economically important shellfish species in New Zealand. We successfully amplified, sequenced and analysed the complete nuclear ribosomal DNA (nrDNA) of H. iris. The length of the nrDNA was determined to be around 9.6?kb and included, in order, small subunit ribosomal RNA (nrSSU, 1858bp), internal transcribed spacer (ITS, 749?bp), large subunit ribosomal RNA (nrLSU, 3412bp) and an intergenic spacer (IGS, 3560–3662?bp). The nrLSU genes were identical in two individuals, whereas the nrSSU and ITS regions existed at three and four base differences, respectively. The IGS was more variable than the other nrDNA regions. A phylogenetic tree was constructed based on the ITS sequence datasets, which revealed that Haliotidae has two major subclades, mainly distributed in the North Pacific, Europe and Australia. The complete nrDNA sequence will be useful for the classification, phylogeny and breeding of this shellfish.  相似文献   
16.
A small armed dinoflagellate bloomed in the aquaculture ponds off the coast of Liaodong Bay, Bohai Sea of China,resulting in heavy mortalities of the cultured prawns(Penaeus japonicus) and larvae of Chinese mitten handed crabs(Eriocheir sinensis). The bloom-forming species was successfully isolated, and cellular morphology of the specimen was consequently investigated through light, fluorescent and electron microscopy. The small((14.4±1.6) μm in length) ellipsoid cells show typical Heterocapsa thecal plate arrangement(Po, cp, 5′, 3 a, 7′′, 6 c,5 s, 5′′′, 2′′′′). The episome is evidently bigger than the hyposome. One to three spherical pyrenoids are located above or beside the large elongated nucleus. The body scale is characterized by a triangle basal plate with one central upright and nine peripheral spines. Above all, Heterocapsa bohaiensis could be distinguished from other Heterocapsa species by the combination of the cell size, morphology, cellular structure and body scale. Sequence analyses of both ITS and LSU regions reveal the significant genetic divergence between H. bohaiensis and other established species in this genus, further supporting novelty of this species. Noticeably, different sample treatment methods resulted in morphological variation of the apical pore complex(APC) of H. bohaiensis, which needs to be taken into account in future study.  相似文献   
17.
A loop-mediated isothermal amplification (LAMP) assay was designed and evaluated for rapid detection of the toxic microalgae Alexandrium catenella and A. minutum, which can produce paralytic shellfish poisoning (PSP). Two sets of four specific primers targeting these two species were derived from the sequence of internal transcribed spacer (ITS) of ribosomal DNA. The method worked well in less than an hour under isothermal conditions of 65℃. LAMP specificity was validated in closely related algae as a comparison, suggesting the strict specificity of the LAMP primers. Two visual inspection approaches were feasible to interpret the positive or negative results. The detection limits of A. catenella and A. minutum samples using the LAMP assay were found to be 5.6 and 4.5 pg DNA, respectively. The sensitivity of this LAMP assay was 10 or 100-fold higher than Polymerase Chain Reaction (PCR) method in detecting the two microalgae. These characteristics of species specificity, sensitivity, and rapidity suggest that this method has the potentiality in the monitoring of red tide caused by A. catenella and A. minutum.  相似文献   
18.
广西文蛤(Meretrix)的fAFLP 及ITS 分析   总被引:5,自引:1,他引:4  
利用fAFLP标记技术和PCR-RFLP技术,对采集于广西的形态和壳色变异很大的2个文蛤群体(G、W)以及山东文蛤(S)群体进行了遗传结构和亲缘关系研究.fAFLP分析显示:在457个总扩增位点中存在53个W群体的特异性位点(其中9个为100%显性)、21个G群体的特异性位点、14个S群体的特异性位点,这些位点可作为群体鉴别的特征性标记;通过计算群体间相对遗传距离和聚类分析,发现S和G间的遗传距离最小(0.0424),在系统树上首先聚在一起,而W与S、G的相对遗传距离均很大(0.2308和0.2305),单独分出一支.对文蛤核糖体ITS的PCR-RFLP结果显示:W的三个不同壳色类群(WX、WC、WH)的酶切结果完全一致,而与G和S群体差别较大;G和S群体基本一致,但也稍有差别.进一步的ITS序列分析显示:W的ITS序列长度为1266-1269bp.而G和S分别为1614bp和1520bp;W群体内部序列比较保守,而与G和S群体之间在ITSl和ITS2开始和结尾处均存在多处插入/缺失;在依据序列构建的系统树上,WX、WC、WH三个类群聚在一起,S和G聚为另一支,两支相距甚远.本研究结果表明,fAFLP标记分析、PCR-RFLP分析和ITS序列分析结果一致,W群体和G、S群体的差异较大,已超出种内群体间的遗传变异,S和G尽管存在遗传分化,但仍应同属Meretrix meretrix-个物种.  相似文献   
19.
测定了角叉菜属(Chondrus)5个代表种的核糖体DNA内转录间隔区(ITS)及5.8SrDNA基因序列。结果表明,角叉菜属ITS区(含ITS1、5.8SrDNA和ITS2)序列长度范围为704—714bp,G+C含量为44.6%—45.7%,变异位点69个,信息位点16个;其中,ITS1和ITS2的长度范围分别为147—149bp和398—404bp。5.8SrDNA长度为158bp,没有变异和信息位点。由MEGA3构建的系统进化树(ME和MP)显示:在进化尺度上,真红藻纲的松节藻科(Rhodomelaceae)与红毛菜纲(Bangiophyceae)亲缘关系较近。在真红藻纲内,杉藻目(Gigartinales)的进化地位相对较高,其次是海膜科(Halymeniaceae)、石花菜科(Gelidiaceae)、红叶藻科(Delesseriaceae)和粉枝藻科(Liagoraceae)等,而松节藻科进化地位相对较低。在杉藻目内,杉藻科(Gigartinaceae)和胶黏藻科(Dumontiaceae)进化关系密切,而形态学特征相似的角叉菜和马泽藻(Mazzaella)亲缘关系非常近。  相似文献   
20.
In the past two decades, many studies have focused on the classification within genus Laminaria, ultimately trying to divide it into two subgroups or genera: Laminaria and Saccharina. A significant debate still surrounds the question of its division, as the conflicting phylogenetic hypotheses that have resulted from the classification studies are based on different taxon sampling, molecular markers, or analysis methods. It is aimed at elucidate the molecular phylogeny within Laminaria and Saccharina. The nine species of Laminariales are sampled from northern Asia and Europe, and 23 new sequences in the nuclear, plastid, and mitochondrial genomes are determined to identify their taxonomic status. The phylogenetic analyses of 71 species are performed, including representatives from six of the seven families of the order Laminariales, based on three separate data sets. An evidence is provided to strongly support a clear split that maintains the two recognized genera, Laminaria and Saccharina, with Laminaria appearing to be the ancestor group. Further, analyses indicate that all taxa in Saccharina and Laminaria did not form a monophyletic lineage, instead Laminariaceae and Lessoniaceae grouped together interlacedly, and Costariaceae appeared as the sister taxon of the Lessoniaceae–Laminariaceae clade. In the phylogenetic analysis, mitochondrial c oxidase I(COI) sequences appeared to be the most credible molecular marker which was more befitting than nuclear encoded internal transcribed spacer(ITS) and plastid encoded rbcL for establishment of Laminariales systematics. It is the most comprehensive phylogeny of the order Laminariales, and contributes to an enhanced understanding and estimation of the phylogenetic relationships for the economically important seaweeds, Laminaria and Saccharina.  相似文献   
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