116 resultados para Molecular Population genetics
Resumo:
To understand the systematic status of Larimichthys crocea in the Percoidei, we determined the complete mitochondrial (mt) genome sequence using 454 sequencing-by-synthesis technology. The complete mt genome is 16,466 bp in length including the typical structure of 22 tRNAs, 2 rRNAs, 13 protein-coding genes and the noncoding control region (CR). Further sequencing for the complete CR was performed using the primers Cyt b-F and 12S-R on six L crocea individuals and two L polyactis individuals. Interestingly, all seven CR sequences from L crocea were identical while the three sequences from L polyactis were distinct (including one from GenBank). Although the conserved blocks such as TAS and CSB-1, -2, and -3 are readily identifiable in the control regions of the two species, the typical central conserved blocks CSB-D, -E, and -F could not be detected, while they are found in Cynoscion acoupa of Sciaenidae and other Percoidei species. Phylogenetic analysis shows that L crocea is a relatively recently emerged species in Sciaenidae and this family is closely related to family Pomacanthidae within the Percoidei. L crocea, as the first species of Sciaenidae with complete mitochondrial genome available, will provide important information on the molecular evolution of the group. Moreover, the genus-specific pair of primers designed in this study for amplifying the complete mt control region will be very useful in studies on the population genetics and conservation biology of Larimichthys. (c) 2008 Elsevier B.V. All rights reserved.
Resumo:
Genetic differentiation of the shrimp Penaeus chinensis in the Yellow Sea and Bohai Sea was investigated using the mitochondrial control region (CR). RFLP of a partial CR segment (613 bp) shows that 106 out of 122 (86.9%) individuals from six sampling localities along the coast of northern China and the west coast of the Korean Peninsula share the same haplotype, and the haplotype frequencies among localities are not significantly different. The findings are further confirmed by sequencing the complete CR. Divergence of the complete CR (992 bp) is less than 1.6% in 14 individuals from the six localities. F-statistics based on RFLP data and the TCS network of sequencing data suggest little genetic differentiation of P. chinensis in the Yellow Sea and Bohai Sea. Mismatch analysis suggests a rapid expansion of P. chinensis population to the Yellow Sea and the Bohai Sea, which probably occurred with the rapid rise in sea level after the last glacial maximum. Despite the lack of genetic heterogeneity, we propose that P. chinensis populations in this region should be treated as separate management units, as fishery management programs have to be applied on a local basis by different governments.
Resumo:
General expressions used for transforming raw laser-induced fluorescence (LIF) intensity into the population and alignment parameters of a symmetric top molecule are derived by employing the density matrix approach. The molecular population and alignment are described by molecular state multipoles. The results are presented for a general excitation-detection geometry and then applied to some special geometries. In general cases, the LIF intensity is a complex function of the initial molecular state multipoles, the dynamic factors and the excitation-detection geometrical factors. It contains a population and 14 alignment multipoles. How to extract all initial state multipoles from the rotationally unresolved emission LIF intensity is discussed in detail.
Resumo:
普通野生稻的基因资源对水稻的育种已经起过并将继续起至关重要的作用。所以,研究和保存其遗传多样性具有重要的意义。首先对普通野生稻在我国的分布现状作了较为全面的野外调查。采集了69个群体,近2000个个体的硅胶干燥叶片。研究了从硅胶干燥的小量叶片中高效率、高质量制备DNA的方法。并用此方法制备了44个代表群体,1168个个体的总DNA,建立了中国普通野生稻的总DNA库。随机选取19个引物对29个群体、651个个体的总DNA进行了RAPD扩增。统计出群体和地区内的多态性片段百分比(PPB),RAPDistance和WINAMOVA程序联用分析遗传变异在地区间、地区内群体间和群体内的组成。广西濠江流域5个野生群体的分析结果表明了中下游群体的PPB值显著高于中上游群体。从而从分子水平上证实了水流对无性繁殖体的传播影响了沿江分布群体的遗传多样性和遗传结构。6个现有原位保护群体的分析结果说明了5个群体值得进一步原位保护,而另一个群体适合异位保护。中国境内29个群体的统计分析揭示出群体间的遗传多样性差异很大(PPB值从23.29%到46.18%)。广东具有的PPB值最高(79.12%),其次是海南(77.11%)和广西(68.67%)。因而,华南是我国普通野生稻的遗传多样性中心。18个群体AMOVA分析结果均表明了遗传变异主要存在于群体内,但群体间业已有较大的遗传分化。从175个随机引物中筛选出9个引物,成功地鉴定出5个群体的克隆多样性和克隆结构。这二者与群体的生态环境,特别是水分状况密切相关。也同时受人类干扰强度的影响。而与群体所处的纬度没有明显的相关性。 根据以上结果,普通野生稻原位保护的策略是选取分布在不同地理区域、遗传多样性水平高的群体。分布在广东、海南和广西的6个群体,具有很高的遗传多样性,建议加以原位保护。此外,孤岛状隔离在我国普通野生稻分布区边缘的3个小群体也应立即进行原位保护。此外,原位保护的群体应给予适度的干扰以维系较高的克隆多样性和遗传多样性。在进行遗传多样性研究和异位保护时,每群体的取样个体数应不少于25株,相邻取样个体间的距离应大于12米。
Resumo:
植物近缘物种系统发育和物种形成过程一直以来都是植物进化生物学研究中最基本的问题之一,是人们理解自然界物种多样性产生和变化的前提。近缘物种间通常形态相似,遗传和分子水平的分化很小且常受诸如渐渗杂交、谱系分选、种内重组等微观进化事件的影响,导致植物近缘物种间系统发育和物种形成过程研究极为困难。在过去十多年中,生物技术的革新和理论方法的发展极大地推动了进化生物学研究,促进了人们对一些重要模式生物与其近缘种间的系统发育关系和物种分化过程的认识,如人、果蝇、线虫、拟南芥和玉米等。然而,迄今在植物中,许多重要类群及其近缘种的系统发育和物种形成过程研究仍不多见,包括在具有特殊重要性的栽培作物中,如稻属(Oryza L.)。由于属内包含有重要粮食作物水稻,稻属向来都是禾本科内备受关注的一个类群。本研究中,我们通过多基因序列的方法,探讨了稻属C染色体组三个近缘二倍体物种的系统发育和物种形成过程,主要研究结果如下。 为选择适宜的实验策略和保证序列数据的真实性,我们利用不同聚合酶扩增自交的栽培稻Oryza sativa ssp. japonica和异交的O. longistaminata不同类型的基因片段,采用克隆测序的方法,评估聚合酶链式扩增反应(PCR)中产生的非真实变异的状况。我们使用exTaq、exTaq和Pfu混和酶和PfuUltraTM酶三种不同聚合酶扩增了Adh1、GPA1和Waxy三个基因片段。在检测到的非真实变异中,PCR 错误的类型主要为单碱基变异和不同等位基因间重组,其中以单碱基变异为主,且突变类型以转换占绝大多数。比较不同酶扩增错误的结果表明,高保真PfuUltraTM酶对PCR反应错误有显著的改善,在扩增产物的单克隆中几乎检测不到PCR噪音,错误率仅为0.0001%,而exTaq和混和酶的错误率分别为0.096%和0.073%。从不同物种比较结果来看,exTaq酶和Pfu酶混用时在自交的O. sativa ssp. japonica内对PCR错误也表现明显的改善,但在异交的O. longistaminata中改善效应不太明显。在三个不同基因位点上,PCR扩增错误出现频率随扩增区域增长而变大。在PfuUltraTM酶的扩增产物中发现重组最少,exTaq和混和酶重组较多,且混和酶对重组改善效果不明显。基于不同聚合酶扩增错误对比研究结果,我们认为,由于能保证序列变异的真实性且不遗漏等位基因,核基因的克隆测序较宜于分离杂合个体中不同的等位基因。 基于随机挑取4个叶绿体和10个核基因位点,利用12份Oryza officinalis、8份O. eichingeri和4份O. rhizomatis材料,对稻属C染色体组三个近缘二倍体物种的系统发育关系作了深入分析。利用不同的系统发育分析方法对单基因位点序列和合并序列数据作了分析,结果表明,稻属C染色体组三个近缘种间呈多歧分支。因此,三个二倍体C染色体组物种可能经快速辐射分化形成。在不同核基因和叶绿体基因的系统发育树中各分支枝长均很短,也表明C染色体组的三个物种可能在较短时期内分化出。不同基因间拓扑结构不一致主要受谱系随机分选的影响。此外,C染色体组不同物种间的种间渐渗和不同等位基因重组对系统发育树的冲突也有影响。值得注意的是,C染色体组三个物种的辐射分化不排除由于相邻两次物种形成事件间隔时间太近、目前数据量不够而无法分辨的可能。在本研究中,我们发现,对于系统发育重建困难的类群,利用等位基因构建物种谱系树有助于挖掘不同基因间结果不一致的因素。 基于10个随机选取的核基因序列数据,利用物种水平的取样方式和群体遗传学分析方法,我们研究了稻属C染色体组三个近缘物种O. officinalis、O. eichingeri和O. rhizomatis的核苷酸多态性,并根据多态性水平和式样,推测了三个近缘种分化的历史。结果表明,在C染色体组的三个近缘种中,仅分布于斯里兰卡的O. rhizomatis的核苷酸多态性水平相对最低(θsil = 0.0038),而间断分布于非洲和斯里兰卡的O. eichingeri最高(θsil = 0.0057)。与被子植物其他类群相比,稻属C染色体组三个物种的核苷酸多态性水平显得较低,O. eichingeri的核苷酸多态性仅约为玉米及其近缘野生种的23-46%和拟南芥的35%。C染色体组内三个野生种相对较低的核苷酸多态性水平可能起因于其较小的祖先有效群体。物种形成模型分析表明,O. officinalis和其近缘种从最近共同祖先分化开后可能经历了居群缩减的历史,且自最近共同祖先分开后,三个物种彼此间并无显著的基因交流。基于分子钟粗略估算了C染色体三个物种分化时间,结果表明,三个物种彼此在很短的时期内分开,约0.63-0.68 Myr。同时,O. eichingeri在非洲和斯里兰卡两个地理宗的分异时间约为0.37 Myr,且推测斯里兰卡的O. eichingeri主要由西非经长距离扩散传播到斯里兰卡。
Resumo:
We have used a combination of chromosome sorting, degenerate oligonucleotide-primed polymerase chain reaction (DOP-PCR), chromosome painting and digital image capturing and processing techniques for comparative chromosome analysis of members of the genus Muntiacus. Chromosome-specific ''paints'' from a female Indian muntjac were hybridised to the metaphase chromosomes of the Gongshan, Black, and Chinese muntjac by both single and three colour chromosome painting. Karyotypes and idiograms for the Indian, Gongshan, Black and Chinese muntjac were constructed, based on enhanced 4', 6-diamidino-2-phenylindole (DAPI) banding patterns. The hybridisation signal for each paint was assigned to specific bands or chromosomes for all of the above muntjac species. The interspecific chromosomal homology was demonstrated by the use of both enhanced DAPI banding and comparative chromosome painting. These results provide direct molecular cytogenetic evidence for the tandem fusion theory of the chromosome evolution of muntjac species.
Resumo:
Chromosomal homologies were established between human and two Chinese langurs (Semnopithecus francoisi, 2n=44, and S. phayrei, 2n=44) by chromosome painting with chromosome-specific DNA probes of all human chromosomes except the Y. Both langur species showed identical hybridization patterns in addition to similar G-banding patterns. In total, 23 human chromosome-specific probes detected 30 homologous chromosome segments in a haploid langur genome. Except for human chromosomes 1, 2, 6, 16 and 19 probes, which each gave signals on two non-homologous langur chromosomes respectively, all other probes each hybridized to a single chromosome. The results indicate a high degree of conservation of chromosomal synteny between human and these two Chinese langurs. The human chromosome 2 probe painted the entire euchromatic regions of langur chromosomes 14 and 19. Human chromosome 1 probe hybridized to three regions on langur autosomes, one region on langur chromosome 4 and two regions on langur chromosome 5. Human 19 probe hybridized on the same pattern to one region on chromosome 4 and to two regions on langur chromosome 5, where it alternated with the human chromosome 1 probe. Human 6 and 16 probes both hybridized to one region on each of the two langur autosomes 15 and 18. Only two langur chromosomes (12 and 21) were each labelled by probes specific for two whole human chromosomes (14 and 15 and 21 and 22 respectively). Comparison of the hybridization patterns of human painting probes on these two langurs with the data on other Old World primates suggests that reciprocal and Robertsonian translocations as will as inversions could have occurred since the divergance of human and the langurs from a common ancestor. This comparison also indicates that Asian colobines are karyotypically more closely related to each other that to African colobines.
Resumo:
Domestic cats and dogs are important companion animals and model animals in biomedical research. The cat has a highly conserved karyotype, closely resembling the ancestral karyotype of mammals, while the dog has one of the most extensively rearranged mammalian karyotypes investigated so far. We have constructed the first detailed comparative chromosome map of the domestic dog and cat by reciprocal chromosome painting. Dog paints specific for the 38 autosomes and the X chromosomes delineated 68 conserved chromosomal segments in the cat, while reverse painting of cat probes onto red fox and dog chromosomes revealed 65 conserved segments. Most conserved segments on cat chromosomes also show a high degree of conservation in G-banding patterns compared with their canine counterparts. At least 47 chromosomal fissions (breaks), 25 fusions and one inversion are needed to convert the cat karyotype to that of the dog, confirming that extensive chromosome rearrangements differentiate the karyotypes of the cat and dog. Comparative analysis of the distribution patterns of conserved segments defined by dog paints on cat and human chromosomes has refined the human/cat comparative genome map and, most importantly, has revealed 15 cryptic inversions in seven large chromosomal regions of conserved synteny between humans and cats.
Resumo:
With complete sets of chromosome-specific painting probes derived from flow-sorted chromosomes of human and grey squirrel (Sciurus carolinensis), the whole genome homologies between human and representatives of tree squirrels (Sciurus carolinensis, Callosciurus erythraeus), flying squirrels (Petaurista albiventer) and chipmunks (Tamias sibiricus) have been defined by cross-species chromosome painting. The results show that, unlike the highly rearranged karyotypes of mouse and rat, the karyotypes of squirrels are highly conserved. Two methods have been used to reconstruct the genome phylogeny of squirrels with the laboratory rabbit (Oryctolagus cuniculus) as the out-group: ( 1) phylogenetic analysis by parsimony using chromosomal characters identified by comparative cytogenetic approaches; ( 2) mapping the genome rearrangements onto recently published sequence-based molecular trees. Our chromosome painting results, in combination with molecular data, show that flying squirrels are phylogenetically close to New World tree squirrels. Chromosome painting and G-banding comparisons place chipmunks ( Tamias sibiricus), with a derived karyotype, outside the clade comprising tree and flying squirrels. The superorder Glires (order Rodentia + order Lagomorpha) is firmly supported by two conserved syntenic associations between human chromosomes 1 and 10p homologues, and between 9 and 11 homologues.
Resumo:
We have made a complete set of painting probes for the domestic horse by degenerate oligonucleotide-primed PCR amplification of flow-sorted horse chromosomes. The horse probes, together with a full set of those available for human, were hybridized onto metaphase chromosomes of human, horse and mule. Based on the hybridization results, we have generated genome-wide comparative chromosome maps involving the domestic horse, donkey and human. These maps define the overall distribution and boundaries of evolutionarily conserved chromosomal segments in the three genomes. Our results shed further light on the karyotypic relationships among these species and, in particular, the chromosomal rearrangements that underlie hybrid sterility and the occasional fertility of mules.
Resumo:
Chromosomal homologies have been established between the Chinese muntjac (Muntiacus reevesi, MRE, 2n = 46) and five ovine species: wild goat (Capra aegagrus, CAE, 2n = 60), argall (Ovis ammon, OAM, 2n = 56), snow sheep (Ovis nivicola, ONI, 2n = 52), red goral (Naemorhedus cranbrooki, NCR, 2n = 56) and Sumatra serow (Capricornis sumatraensis, CSU, 2n = 48) by chromosome painting with a set of chromosome-specific probes of the Chinese muntjac. In total, twenty-two Chinese muntjac autosomal painting probes detected thirty-five homologous segments in the genome of each species. The chromosome X probe hybridized to the whole X chromosomes of all ovine species while the chromosome Y probe gave no signal. Our results demonstrate that almost all homologous segments defined by comparative painting show a high degree of conservation in G-banding patterns and that each speciation event is accompanied by specific chromosomal rearrangements. The combined analysis of our results and previous cytogenetic and molecular systematic results enables us to map the chromosomal rearrangements onto a phylogenetic tree, thus providing new insights into the karyotypic evolution of these species.
Resumo:
The muntjacs (Muntiacus, Cervidae) are famous for their rapid and radical karyotypic diversification via repeated tandem chromosome fusions, constituting a paradigm for the studies of karyotypic evolution. Of the five muntjac species with defined karyotyp
Resumo:
To better understand the evolution of genome organization of eutherian mammals, comparative maps based on chromosome painting have been constructed between human and representative species of three eutherian orders: Xenarthra, Pholidota, and Eulipotyphla,
GENETIC DIVERSITY IN THE CHINESE PANGOLIN (MANIS-PENTADACTYLA) INFERRED FROM PROTEIN ELECTROPHORESIS
Resumo:
We examined protein polymorphism of Chinese pangolins (Manis pentadactyla) from Yunnan Province of China, including two forms of three brown and nine dusky Chinese pangolins. Sixty-two genetic loci were screened; 12 loci were found to be polymorphic. The percentage of polymorphic loci (P) is 0.194, the mean individual heterozygosity (H) is 0.078, and the mean number of alleles (A) is 1.258. Furthermore, we calculated the genetic distance (D) between the two forms and found a low level of genetic divergence (D = 0.0206) between them, which indicates an almost-indistinguishable divergence at the level of proteins.
Resumo:
Insectivore-like animals are traditionally believed among the first eutherian mammals that have appeared on the earth. The modern insectivores are thus crucial for understanding the systematics and phylogeny of eutherian mammals as a whole. Here cross-spe