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21.
以线粒体16S rRNA基因部分片段为代表研究雌褐牙鲆Paralichthys olivaceus、雄夏鲆P. dentatus及其杂交子一代间线粒体DNA的遗传特性。母本与父本序列差异较大,属种间差异,在590个位点中有28个变异位点,而且全部为简约信息位点。使用同一对引物扩增亲本与杂交子代,在杂交子代中未检测到父本的线粒体DNA类型,11个处于两种生长阶段的杂交样本仅检测到一种单倍型,而且与母本的一个单倍型为同一种,表明褐牙鲆与夏鲆杂交线粒体DNA遵循母系遗传规律。  相似文献   
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The mitochondrial DNA (mtDNA) control region was sequenced to examine the genetic variability and gene flow of juvenile Siganus spinus and S. guttatus. In total, 461 nucleotide sequences were obtained from 69 specimens of juvenile S. spinus from Okinawa Island and Ishigaki Island, in which 17 variable sites and 22 haplotypes were identified. Haplotype diversity (h) was high (0.9244 in Okinawa and 0.8984 in Ishigaki), whereas nucleotide diversity (π) was low (0.0063 in Okinawa and 0.0059 in Ishigaki). The two populations were not genetically distinct. Siganus guttatus, which do not form large schools at recruitment, in contrast S. spinus, were also analyzed by studying 152 individuals collected off Okinawa Island, Miyako Island, and Ishigaki Island. Of 476 nucleotide sequences, 50 were variable, and 42 haplotypes were identified. Genetic variability values were high (h = 0.8766 and π = 0.0151 in Okinawa; h = 0.9640 and π = 0.0192 in Miyako; h = 0.9161 and π = 0.0199 in Ishigaki). The Okinawa population was genetically isolated from the Miyako and Ishigaki populations. As a result, genetic diversity was high for each of these siganid populations despite their being target species for fisheries; however, the degree of inter-population gene flow was higher for S. spinus than S. guttatus, suggesting that these species exhibit different dispersal strategies.  相似文献   
24.
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   
25.
刘皓  姚维  刘海情  刘楚吾  刘丽 《海洋科学》2014,38(11):16-23
为了解杂色龙虾(Panulirus versicolor)线粒体基因组多态位点及遗传变异,对龙虾类的分类研究奠定基础,作者通过常规PCR步移扩增法获得杂色龙虾线的线粒体基因组全序列,分析了其线粒体基因组的基本特征以及基因排列情况,并结合中国龙虾(Panulirus stimposni)、波纹龙虾(Panulirus homarus)线粒体基因组全序列,综合分析了龙虾属线粒体编码基因多态位点及基因变异状况。结果表明:杂色龙虾线粒体基因组全序列为15 700 bp,由13个蛋白质编码基因、22个t RNA基因、2个r RNA基因和D-loop区组成,保持了泛甲壳动物线粒体基因组的原始排列。杂色龙虾线粒体DNA的碱基组成具有AT偏好性,A+T含量为67%,4种碱基的含量分别为(A=34.6%,T=32.1%,C=20.5%,G=12.8%)。预测了杂色龙虾18个t RNA以及2个r RNA的二级结构。龙虾属线粒体基因组中的nad 2、nad 5基因以及D-loop区的多态位点比例较高,适合作为分子标记用于龙虾类系统进化关系、种内多态性以及遗传分化等方面的研究。  相似文献   
26.
DNA条形码是指利用一段相对较短的标准DNA片段,对物种进行识别和鉴定。目前该技术在动物、植物物种鉴定领域已经得到了广泛的研究和应用。在藻类的研究中,尚未确定一条统一的标准条形码基因,现阶段都是使用2条或2条以上基因序列来完成物种鉴定。对于形态多样、种类繁多的海洋红藻,常用的DNA条形码基因有COI基因(Partial cytochrome c oxidase I gene)、UPA基因(Partial 23SrRNA gene,universal plastid amplicon)、LSU基因(Partial 28SrRNA gene)和rbcL基因(The large subunit of ribulose-1,5-bisphosphate carboxylase)等,这些基因中2个或3个基因的互补运用准确有效地提高了红藻的鉴定准确率,尤其是COI基因的种间差异大足够区分相近物种。本文在概述条形码的原理及其标准的基础上,阐述了红藻DNA条形码鉴定研究的新进展以及常用几种基因片段的优缺点,并对条形码在红藻鉴定中存在的问题进行了分析,对其应用前景进行了展望。  相似文献   
27.
Sea cucumbers are traditional marine food and Chinese medicine in Asia. The rapid expansion of sea cucumber market has resulted in various problems, such as commercial fraud and mislabeling. Conventionally, sea cucumber species could be distinguished by their morphological and anatomical characteristics; however, their identification becomes difficult when they are processed. The aim of this study was to develop a new convenient method of identifying and distinguishing sea cucumber species. Polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) analysis of mitochondrial cytochrome oxidase I gene (COI) was used to identifing five sea cucumber species (Apostichopus japonicus, Cucumaria frondosa, Thelenota ananas, Parastichopus californicus and Actinopyga lecanora). A 692 bp fragment of COI was searched for BamHI, KpnI, PstI, XbaI and Eco31I restriction sites with DNAMAN 6.0, which were then used to PCR-RFLP analysis. These five sea cucumber species can be discriminated from mixed sea cucumbers. The developed PCR-RFLP assay will facilitate the identification of sea cucumbers, making their source tracing and quality controlling feasible.  相似文献   
28.
The small yellow croaker (Larimichthys polyactis) belongs to the family Sciaenidae, which is an offshore warm fish species and widely distributed in the western Pacific. In this study, the variation of genetic diversity and genetic differentiation among L. polyactis populations was analyzed by mitochondrial DNA control region. A total of 110 polymorphic sites were checked, which defined 134 haplotypes. High level of haplotype diversity (h=0.993±0.002) was detected in the examined range. Population genetic structure analyse (analysis of molecular variance, Fst) showed there were high gene flow among L. polyactis populations. The result showed that there were relatively high genetic diversity and low genetic differentiation among the Yellow Sea and the East China Sea populations, which can be attributed to diverse habitats, wide distribution range and high mutation rate of control region. Using phylogenetic methods, coalescent analyses (neutrality tests, mismatch distribution analysis, Bayesian skyline analyses) and molecular dating interpreted in conjunction with paleoclimatic and physiographic evidence, we inferred that the genetic make-up of extant populations of L. polyactis was shaped by Pleistocene environmental impacts on the historical demography of this species. Besides, relatively constant genetic diversity and larger effective population size were detected in recent L. polyactis population. The result showed that the fishing policy certainly, such as the summer closed fishing, played a role in protecting resources of L. polyactis. This study can offer a wealth of biological novelties which indicates genetic structure of L. polyactis population and provides the foundation for resources protection and policy setting.  相似文献   
29.
本研究通过对线粒体控制区序列进行分析的技术手段,对中国宁德(ND)、厦门(XM)、漳浦(ZP)、南澳岛(NAD)、湛江(ZJ)、海口(HK)与北海(BH)的7个野生黄鳍棘鲷(Acanthopagrus latus)群体的遗传多样性和遗传分化进行比较分析。结果表明:中国东南沿海的野生黄鳍棘鲷群体呈现出中等以上的遗传多样性特征,48个黄鳍棘鲷样品的控制区序列长度为580 bp,单倍型数目为44个,总体的单倍型多样性指数(Hd)和核苷酸多样性指数(Pi)分别为0.996和0.017 30。7个野生黄鳍棘鲷群体间的遗传分化程度较低,各群体间的遗传距离为0.010 28~0.029 87。群体间的遗传分化系数(FST)为-0.068 41~0.545 86,北海群体和其他群体间存在一定程度的遗传分化。AMOVA分析显示群体内的遗传变异占比为83.34%,大部分遗传变异发生在组群内;但北海群体与其他6个群体分为两个组群后,组群间的遗传变异占比为42.66%,两个组群间存在较大程度的遗传变异。基于Kimrua距离法构建的系统进化树中显示北海群体聚为一个分支,另外6个群体聚为一支。基于TCS network构建的单倍型网络图中44个单倍型混杂在一起,未按照水系格局和地理距离进行分布,表明黄鳍棘鲷群体间未形成多个单系群。本研究可为中国东南沿海野生黄鳍棘鲷群体的种质资源利用和保护提供科学依据。  相似文献   
30.
应用通用引物 COIL 1490和 COIH 2198对翡翠股贻贝Perna viridis的性腺和体细胞线粒体DNA进行PCR扩增,获得661bp长度的COI基因片段,经过比对性腺与体细胞的COI片段,发现雄性性腺与体细胞COI基因均为一个单倍型,即体内只有一种线粒体DNA类型,没有发现双单性遗传现象,雌、雄性腺的COI基因片段变异率很低(0.31%)。应用PAUP构建了NJ树、MP树以及贝叶斯法构建了贝叶斯树,对股贻贝属3种间的系统关系进行了分析,结果表明,翡翠股贻贝P. viridis与P. canaliculus 和 P. perna 之间的分化与分歧年代的估算是相吻合的。  相似文献   
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