997 resultados para mantel test


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The distribution of a freshwater species is often dependent on its ability to disperse within the riverine system. Species with high dispersal abilities tend to be widespread, whereas those with restricted dispersal tend to be geographically restricted and are usually given higher conservation priority. Population structure was compared between a widespread freshwater prawn species, Macrobrachium australiense, and a narrow-range endemic freshwater prawn, Macrobrachium koombooloomba. The distribution of M. australiense and M. koombooloomba did not overlap, although suggested historical river-boundary rearrangements indicate that there has been the potential for dispersal into neighbouring catchments. A fragment of the mtDNA CO1 gene was analysed and a Mantel test revealed a significant isolation by distance effect for both species. Significant overall FST values confirmed that both species exhibited low levels of dispersal, a prediction for populations inhabiting a fragmented upland environment. The level of structure in M. australiense is surprising for a widely distributed species. Not all M. australiense populations conformed to the stream-hierarchy model, with results being best explained by historical river realignment or cross-catchment dispersal. The fact that both species show limited dispersal highlights the importance of conservation in highland areas for both endemic and widely spread species.

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Community diversity and the population abundance of a particular group of species are controlled by immediate environment, inter-and intra-species interactions, landscape conditions, historical events and evolutionary processes. Nestedness is a measure of order in an ecological system, referring to the order in which the number of species is related to area or other factors. In this study we have studied the nestedness pattern in stream diatom assemblages in 24 stream sites of central Western Ghats, and report 98 taxa from the streams of central Western Ghats region. The communities show highly significant nested pattern. The Mantel test of matrix revealed a strong relationship between species assemblages and environmental conditions at the sites. A significant relationship between species assemblage and environmental condition was observed. Principal component analysis (PCA) indicated that environmental conditions differed markedly across the sampling sites, with the first three components explaining 78% of variance. Species composition of diatoms is significantly correlated with environmental distance across geographical extent. The current pattern suggests that micro-environment at regional levels influences the species composition of epilithic diatoms in streams. The nestedness shown by the diatom community was highly significant, even though it had a high proportion of idiosyncratic species, characterized with high numbers of cosmopolitan species, whereas the nested species were dominated by endemic species. PCA identifies ionic parameters and nutrients as the major features which determine the characteristics of the sampling sites. Hence the local water quality parameters are the major factors in deciding the diatom species assemblages.

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青藏高原是世界上最高的高原,被称为“地球第三极”,环境条件相当严酷。本研究通过ISSR标记的方法研究青藏高原两种相对克隆构型的克隆植物紫花针茅(Stipa purpurea Griseb.)和青藏苔草(Carex moorcroftii Falc. ex Boott)不同种群的遗传多样性及克隆格局,在分子水平上揭示两种植物对极端环境适应的机理。主要结果如下: 与其它针茅属植物相比,紫花针茅各种群平均遗传多样性相对较低,其遗传变异主要存在于种群之内;与其它苔草属植物相比,青藏苔草各种群平均遗传多样性也较低,而总的遗传多样性较高,其遗传变异主要存在于种群之间。紫花针茅各种群平均遗传多样性高于青藏苔草各种群平均遗传多样性,尽管差异不显著。紫花针茅和青藏苔草各种群间具有较高的遗传分化。 紫花针茅具有与其它分蘖型克隆植物相当的克隆多样性,说明有性生殖在其生活史中起着重要作用。青藏苔草具有与其它克隆植物相当的克隆多样性,而与北极地区苔草属植物相比,其克隆多样性则较低。 Pearson相关显示,紫花针茅遗传多样性与纬度、经度均成显著负相关,而与海拔高度相关关系不显著;青藏苔草克隆多样性及遗传多样性与纬度、经度、海拔高度均不相关,而克隆多样性与遗传多样性的比值则与纬度显著相关。唐古拉山对紫花针茅遗传格局未产生显著影响,山南北地区遗传多样性无显著差别;唐古拉山对青藏苔草遗传格局产生了重要影响,唐古拉山南北地区基因交流有显著隔离,唐古拉山以北地区种群遗传多样性显著高于以南地区,推测其种群自北向南迁移过程中的瓶颈效应起着重要作用。青藏苔草种群的克隆多样性与遗传多样性成显著正相关。Mantel test检验显示,紫花针茅和青藏苔草的地理距离与遗传距离间的关系均不显著。 紫花针茅以分蘖生长的方式由源株向外扩展,有明确、致密的边界,野外观察和室内检测的结果显示其环上其它基株也可进行生长成活,可形成一种克隆环镶嵌格局,克隆环或其边界可能是幼苗定居有利的生境;空间自相关也显示在较小的尺度内紫花针茅遗传相关性强,推测克隆繁殖在其中也起重要作用。青藏苔草种群不同尺度的取样其克隆多样性不同,小面积(1 × 1 m2)的克隆多样性均小于大面积的(10 × 10 m2),空间自相关也显示克隆生长在其中起重要作用;尽管青藏苔草有较强的克隆生长能力,在环境条件较好时其呈密集分布,表现出较强的可塑性。 总之,尽管青藏高原环境非常严酷,紫花针茅与青藏苔草仍有较高水平的克隆多样性和一定的遗传多样性;高原严酷的环境造成了两种植物较大的遗传隔离。紫花针茅环状结构对其有性更新有重要作用,青藏苔草克隆生长具有较大可塑性,这些都是植物对高原严酷环境的适应形式。

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Knowledge of the effect of geographic factors on the assemblages of protozoan testate amoebae is still limited, despite there having been a number of studies on this fauna. We applied statistical analyses to data on the distribution of testate amoebae from nine major lakes in the Yunnan Plateau, southwest China. Cluster analysis, based on community structure, separated the lakes into two groups - the oligotrophic/mesotrophic lakes and the hypercutrophic lakes - confirming the idea that the testate amoebae assemblages in lakes are closely related to the trophic status. Additionally, within the oligotrophic/mesotrophic lakes, there was distinct geographic clustering. Linear regression analysis and the Mantel test both revealed that similarity of species composition decreased with increasing geographic distance among the oligotrophic/mesotrophic lakes.

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Habitat fragmentation may have some significant effects on population genetic structure because geographic distance and physical barriers may impede gene flow between populations. In this study, we investigated whether recent habitat fragmentation affected genetic structure and diversity of populations of the nematode Procamallanus fulvidraconis in the yellowhead catfish, Pelteobagrus fin't4draco. The nematode was collected from 12 localities in 7 floodplain lakes of the Yangtze River. Using I I intersirnple sequence repeat markers, analysis of molecular variance showed that genetic diversity occurred mainly within populations (70.26%). Expected heterozygosity (He) of P. fulvidraconis was barely different between connected (0.2105) and unconnected lakes (0.2083). Population subdivision (Fst) between connected lakes (0.2177) was higher than in unconnected lakes (0. 1676). However, the connected and unconnected lakes did not Cluster into 2 clades. A Mantel test revealed significant positive correlation between genetic and geographic distances (R = 0.5335, P < 0.01). These results suggest that habitat fragmentation did not cause genetic differentiation among populations or a reduction of diversity in isolated populations of P. fulvidraconis. At least 2 factors may increase the dispersal range of the nematode, i.e., flash flooding in summer and other species of fish that may serve as the definitive hosts. Moreover, lake fragmentation is probably a recent process; population size of the nematode in these lakes is large enough to maintain Population structure.

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西南地区在我国的经济发展和生态环境建设中占重要地位,但也是我国生态环境最脆弱的地区之一,生态系统退化,生态功能减弱,严重制约着西南林业的可持续经营与发展。本项目采用DNA 分子标记SSR 研究不同生境条件下粗枝云杉群体的遗传变异及其时空分布格局,考察遗传变异与复杂的山地生态环境间的潜在联系,系统地揭示粗枝云杉天然群体与环境系统相互作用的生态适应与分子进化机制。粗枝云杉适应性强,生长迅速,在植树造林和工业用材方面占有重要地位,研究成果可为中国西南部亚高山天然林的可持续经营及退化生态系统的恢复与重建提供理论依据和科学指导。主要研究结果如下: 1. SSR 位点变异丰富,等位基因频率的分布格局多样。7 个SSR 标记全是多态位点,每位点的等位基因数变化范围为13~24,平均为19.9 个。SSR 位点的等位基因片段长度范围变化较大。73.1%的等位基因变异遵循逐步突变模型(SSM)而发生1 个重复基元的变化,22.3%和4.6%的变异分别按两阶段突变模型(TMP)发生1 个重复基元以上的变化和在SSR 位点侧翼区发生1 个碱基变化的插入-删除事件。 2. 粗枝云杉拥有中等偏高水平的遗传多样性和相对大的群体间遗传分化。通过分析代表10 个群体的250 个个体在7 个SSR位点的变化,调查了源自中国西南山区的粗枝云杉的微卫星变异。相当高的遗传多样性和强烈的群体分化发生在粗枝云杉中, 其群体平均Nei's 期望杂合度为0.707 , 群体间遗传距离为0.121~0.224(FST)和0.100~0.537(RST)。然而,群体间遗传距离与地理距离之间无相关性,从而排除了简单的距离分离模式并暗示迁移不是影响粗枝云杉遗传变异格局的主要因素。事实上,使用私有等位基因估算的基因流数量非常低,仅等于0.753。等位基因置换检验(Allele permutation tests)揭示逐步突变及遗传漂变都对群体间分化有贡献。另外,在多数位点检测到显著的群体间遗传差异,这个结果说明自然选择,假设通过环境压力,是引起粗枝云杉微地理分化的主要因素之一。根据SSR基因型,250 个粗枝云杉个体的70%被正确地归类入其各自的来源群体,结果表明微卫星(SSR)对区分来自中国不同生态地理位点的粗枝云杉基因型是有效的。 3. 在SSR、RAPD 和AFLP 位点,显著的群体间遗传结构被发现的,但三种标记间遗传分化程度和群体遗传关系有差异。利用来自10 个群体的247 个个体,我们报告了关于样本粗枝云杉群体间遗传关系的总体看法。根据各自对评价遗传关系的信息能力和适用性,SSR、RAPD 和AFLP 标记被选用,三种技术非常有效地区别这些基因型。使用的SSR、RAPD 和AFLP 标记分别估计平均Dice 相似性系数。Mantel 检验产生显著但相对低的共表型适合度(RAPD = 0.63£AFLP = 0.60和SSR = 0.75)。比较三种标记系统,RAPD 和AFLP 共表型指数相对高地相关(r =0.59),而RAPD 和SSR 及SSR 和AFLP 之间的相关系数分别是0.53 和0.35。所有系统树,包括不同标记资料结合获得的系统树,反映了多数群体依据它们的地理条件而成某种特定关系。结果暗示单个或结合标记系统能用来深入洞察粗枝云杉遗传研究,并且不同标记系统合并资料能提供更可靠的信息。 Southwestern region plays an important role in economic developmentand ecological construction in China. Yet, it is also one of the weak regionsof ecological environment in China with degraded ecosystem and imperfectfunction, which restricts the sustaining management and development ofsouthwestern forestry. The genetic variation and spatial distribution patternof P. asperata populations originating from different habitats wereinvestigated using SSR molecular markers in this study. The correlationsbetween genetic variation and ecological and environmental conditionswere detected, and the interaction between P. asperata populations andenvironmental system and the mechanism of ecological adaption -molecular evolution were revealed. Given the significant ecological andeconomic roles of the fast-growing and wide-adaptive species in reforestation and production of pulp wood and timber, the study couldprovide a strong theoretical evidence and scientific direction for thesustaining management of subalpine natural forest, and the afforestationand rehabilitation of degraded ecosystem. The results are as follows: 1. The genetic variation at SSR loci was abundant and the distributionof allelic frequencies was uneven. All seven loci were polymorphic, and thenumber of alleles per locus varied from 13 to 24 with a mean valueequaling 19.9. The allele sizes at SSR loci were found to vary widely.73.1% of allelic variation followed stepwise mutation model (SSM) whichresults increase or decrease by one repeat type, and 22.3% and 4.6% wereresulted from two-phase mutation model (TMP) with allele size varying bymore than one repeat type and from insertion-deletion events in theflanking regions at SSR loci with a single basepair changing, respectively. 2. P. asperata possessed a moderate to high level of genetic diversityand considerable genetic differentiation. Microsatellite variation of P.asperata. originating from the mountains of southwestern China wasinvestigated by analyzing variation at seven SSR loci in 250 individualsrepresenting ten populations. A fair degree of genetic diversity and strongpopulation subdivision occurred with the mean gene diversity (H) of 0.707,and genetic distances among populations varying between 0.121 and 0.224(FST) and between 0.100 and 0.537 (RST). However, inter-populationgenetic distances showed no correlation with geographic distances between the population sites. This ruled out a simple isolation by distance modeland suggested that migration does not have a great impact. In fact, theamount of gene flow, detected using private alleles, was very low, equalingonly 0.753. Allele permutation tests revealed that stepwise-like mutations,coupled with genetic drift, could contribute to population differentiation.Moreover, significant genetic differences between populations weredetected at most loci. The results indicate that natural selection, presumablythrough environmental stress, may be one of the main factors causingmicro-geographical differentiation in the genetic structure of P. asperata.Based on SSR genotypes, 70% of the 250 individuals were correctlyclassified into their sites of origin. This suggests that microsatellites (SSRs) are effective in distinguishing genotypes of P. asperata originating fromdiverse eco-geographical sites in China. 3. Using a set of 247 individuals from ten P. asperata populations wereport an overview on the genetic relationship among the sampled P.asperata populations. RAPD, AFLP and SSR were used in terms of theirinformativeness and applicability for evaluate relationship and all threetechniques discriminated the genotypes very effectively. Mean Dicesimilarities coefficient were estimated using RAPD, AFLP and SSR,respectively. The Mantel test resulted in a significant but relatively low fit(RAPD = 0.63, AFLP = 0.60 and SSR = 0.75) of cophenetic values.Comparing the three marker systems to each other, RAPD and AFLP cophenetic indices were highly correlated (r = 0.59), while correlationcoefficient between RAPD and SSR was r = 0.53 and between SSR andAFLP was r = 0.35. For all markers a relatively high similarity indendrogram topologies was obtained although some differences wereobserved. All the dendrograms, including that obtained by the combineduse of all the marker data, reflect some relationships for most of thepopulations according to their geographic conditions. The results indicatethat single or combined marker system could be used to insight into geneticstudy in P. asperata and the combined data of different marker systems canprovide more reliable information.

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ISSR analysis was used to investigate genetic variations of 184 haploid and diploid samples from nine North Atlantic Chondrus crispus Stackhouse populations and one outgroup Yellow Sea Chondrus ocellatus Holmes population. Twenty-two of 50 primers were selected and 163 loci were scored for genetic diversity analysis. Genetic diversity varied among populations, percentage of polymorphic bands (PPB) ranged from 27.0 to 55.8%, H(Nei's genetic diversity) ranged from 0.11 to 0.20 and I(Shannon's information index) ranged from 0.16 to 0.30. Estimators PPB, H and I had similar values in intra-population genetic diversity, regardless of calculation methods. Analysis of molecular variance (AMOVA) apportioned inter-population and intra-population variations for C crispus, showing more genetic variance (56.5%) occurred in intra-population, and 43.5% variation among nine populations. The Mantel test suggested that genetic differentiation between nine C. crispus populations was closely related with geographic distances (R = 0.78, P = 0.002). Results suggest that, on larger distance scale (ca. > 1000 km), ISSR analysis is useful for determining genetic differentiations of C crispus populations including morphologically inseparable haploid and diploid individuals. (c) 2007 Elsevier B.V. All rights reserved.

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Sargassum muticum is important in maintaining the structure and function of littoral ecosystems, and is used in aquaculture and alginate production, however, little is known about its population genetic attributes. In this study, random amplified polymorphic DNA (RAPD) and inter-simple sequence repeat (ISSR) markers were used to investigate the genetic structure of four populations of S. muticum and one outgroup of S. fusiforme (Harv.) Setchell from Shandong peninsula of China. The selected 24 RAPD primers and 19 ISSR primers amplified 164 loci and 122 loci, respectively. Estimates of genetic diversity with different indicators (P%, percentage of polymorphic loci; H, the expected heterozygosity; I, Shannon's information index) revealed low or moderate level of genetic variations within each S. muticum population, and a high level of genetic differentiations were determined with pairwise unbiased genetic distance (D) and fixation index (F-ST ) among the populations. The Mantel test showed that two types of matrices of D and F-ST were highly correlated whether from RAPD (r = 0.9706, P = 0.009) or ISSR data (r = 0.9161, P = 0.009). Analysis of molecular variance (AMOVA) was conducted to apportion the variations among and within the S. muticum populations. It indicated that variations among populations were higher than those within populations, being 55.82% verse 44.18% by RAPD and 55.21% verse 44.79% by ISSR, respectively. Furthermore, the Mantel test suggested that genetic differentiations among populations were related to the geographical distances (r > 0.6), namely, conformed to the IBD (isolation by distance) model, as expected from UPGMA (unweighted pair group method with arithmetic averages) cluster analysis. On the whole, the high genetic structuring among the four S. muticum populations along the distant locations was clearly indicated in RAPD and ISSR analyses (r > 0.9, P < 0.05) in our study.

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Genetic variation of four populations of Sargassum thunbergii (Mert.) O. Kuntze and one outgroup of S. fusiforme (Harv.) Setchell from Shandong peninsula of China was studied with random amplified polymorphic DNA (RAPD) and inter-simple sequence repeat (ISSR) markers. A total of 28 RAPD primers and 19 ISSR primers were amplified, showing 174 loci and 125 loci, respectively. Calculation of genetic diversity with different indicators (P%, percentage of polymorphic loci; H, the expected heterozygosity; I, Shannon's information index) revealed low or moderate levels of genetic variations within each S. thunbergii population. High genetic differentiations were determined with pairwise Nei's unbiased genetic distance (D) and fixation index (F-ST) between the populations. The Mantel test showed that two types of matrices of D and FST were highly correlated, whether from RAPD or ISSR data, r=0.9310 (P = 0.008) and 0.9313 (P=0.009) respectively. Analysis of molecular variance (AMOVA) was used to apportion the variations between and within the S. thunbergii populations. It indicated that the variations among populations were higher than those within populations, being 57.57% versus 42.43% by RAPD and 59.52% versus 40.08% by ISSR, respectively. Furthermore, the Mantel test suggested that the genetic differentiations between the four populations were related to the geographical distances (r > 0.5), i.e., they conformed to the IBD (isolation by distance) model, as expected from UPGMA (unweighted pair group method with arithmetic averages) cluster analysis. As a whole, the high genetic structuring between the four S. thunbergii populations along distant locations was clearly indicated in the RAPD and ISSR analyses (r > 0.8) in our study.

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Inter-simple sequence repeat (ISSR) analysis was used to assess eleven pairs of Undaria pinnatifida (Harv.) Suringar male and female gametophytes. After screening fifty primers, 18 ISSR primers were selected for final analysis. A total of 104 loci were obtained, of which 77 were polymorphic, among the gametophytes studied. Genetic relationships were analyzed with simple matching (S), Jaccard's (J) and Dice's (D) distance coefficients. Little genetic variations were found among the selected Undaria gametophytes, for instance, the genetic distances ranging from 0.010 to 0.125 with Dice coefficients. UPGMA dendrograms showed that 11 pairs of Undaria gametophytes were distributed into five groups. Most Undaria strains cultivated in China exhibited closely genetic relationships with the strains from Japan. However, gametophytes from Qingdao appeared as distinct clades from other Undaria strains with all three distance coefficients used. Mantel test showed that the three distance measurements generated congruent clustering patterns on the same data. Our results demonstrated the feasibility of applying ISSR markers for genetic analysis of Undaria gametophytes. (c) 2006 Elsevier B.V. All rights reserved.

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Ensis siliqua is regarded as an increasingly valuable fishery resource with potential for commercial aquaculture in many European countries. The genetic variation of this razor clam was analysed by randomly amplified polymorphic DNA (RAPD) in six populations from Spain, Portugal and Ireland. Out of the 40 primers tested, five were chosen to assess genetic variation. A total of 61 RAPD loci were developed ranging in size from 400 to 2000 bp. The percentages of polymorphic loci, the allele effective number and the genetic diversity were comparable among populations, and demonstrated a high level of genetic variability. The values of Nei's genetic distance were small among the Spanish and Portuguese populations (0.051-0.065), and high between these and the Irish populations. Cluster and principal coordinate analyses supported these findings. A mantel test performed between geographic and genetic distance matrices showed a significant correlation (r=0.84, P

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Eusociality is widely considered a major evolutionary transition. The socially polymorphic sweat bee Halictus rubicundus, solitary in cooler regions of its holarctic range and eusocial in warmer parts, is an excellent model organism to address this transition, and specifically the question of whether sociality is associated with a strong barrier to gene flow between phenotypically divergent populations. Mitochondrial DNA (COI) from specimens collected across the British Isles, where both solitary and social phenotypes are represented, displayed limited variation, but placed all specimens in the same European lineage; haplotype network analysis failed to differentiate solitary and social lineages. Microsatellite genetic variability was high and enabled us to quantify genetic differentiation among populations and social phenotypes across Great Britain and Ireland. Results from conceptually different analyses consistently showed greater genetic differentiation between geographically distant populations, independently of their social phenotype, suggesting that the two social forms are not reproductively isolated. A landscape genetic approach revealed significant isolation by distance (Mantel test r = 0.622, p

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Although the knowledge on heavy metal hyperaccumulation mechanisms is increasing, the genetic basis of cadmium (Cd) hyperaccurnulation remains to be elucidated. Thlaspi caerulescens is an attractive model since Cd accumulation polymorphism observed in this species suggests genetic differences between populations with low versus high Cd hyperaccumulation capacities. In our study, a methodology is proposed to analyse at a regional scale the genetic differentiation of T. caerulescens natural populations in relation to Cd hyperaccumulation capacity while controlling for different environmental, soil, plant parameters and geographic origins of populations. Twenty-two populations were characterised with AFLP markers and cpDNA polymorphism. Over all loci, a partial Mantel test showed no significant genetic structure with regard to the Cd hyperaccumulation capacity. Nevertheless, when comparing the marker variation to a neutral model, seven AFLP fragments (9% of markers) were identified as presenting particularly high genetic differentiation between populations with low and high Cd hyperaccurnulation capacity. Using simulations, the number of outlier loci was showed to be significantly higher than expected at random. These loci presented a genetic structure linked to Cd hyperaccumulation capacity independently of the geography, environment, soil parameters and Zn, Pb, Fe and Cu concentrations in plants. Using a canonical correspondence analysis, we identified three of them as particularly related to the Cd hyperaccumutation capacity. This study demonstrates that populations with low and high hyperaccurnulation capacities can be significantly distinguished based on molecular data. Further investigations with candidate genes and mapped markers may allow identification and characterization of genomic regions linked to factors involved in Cd hyperaccumulation.

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Das Kleine Immergrün (Vinca minor L.) aus der Familie der Apocynaceae ist in der Krautschicht sommergrüner Wälder Südeuropas heimisch, während es in weiten Teilen Mitteleuropas als wahrscheinlich von den Römern eingeführter, altetablierter Archäophyt gilt. Noch heute ist die Art als Kulturreliktzeiger häufig in der Umgebung ehemaliger römischer Tempel und mittelalterlicher Burgruinen zu finden. Zudem wird V. minor in zahlreichen Gartenformen kultiviert. In Teilen Nordamerikas wird der Chamaephyt hingegen als eingeführte, invasive Art eingestuft, die die einheimische Flora und Fauna bedroht. Da V. minor Stolonen bilden kann und in Mitteleuropa selten reife Samen beobachtet werden, wurde bislang vermutet, dass V. minor Bestände in Mitteleuropa sich rein asexuell erhalten. Diese Hypothese wurde aber bisher nie mit molekularen Methoden überprüft. Auch zur Populationsgenetik der Art ist bisher nichts bekannt. Aus diesen Gegebenheiten resultieren folgende Fragen: Wie hoch ist die genetische Diversität von V. minor im submediterranen Ursprungsgebiet im Vergleich zu Mitteleuropa und Nordamerika und wie ist sie in den Großregionen jeweils strukturiert? Korreliert die anthropogen bedingte Einführung mit einer genetischen Verarmung in Mitteleuropa? Gibt es in mitteleuropäischen und nordamerikanischen Populationen Hinweise auf sexuelle Reproduktion, oder erfolgt eine rein vegetative Vermehrung? Gibt es genetische Hinweise für Auswilderungen aus Gärten? Lassen sich die historischen Ausbreitungswege der Art von Süd- nach Mitteleuropa, innerhalb Mitteleuropas sowie nach Nordamerika rekonstruieren? Mikrosatellitenmarker stellen für populationsgenetische Analysen heute die weitaus gängigste Technik dar. Als codominante, locusspezifische Marker erlauben sie die präzise Erfassung populationsgenetischer Parameter zur Quantifizierung der genetischen Diversität und Struktur, die Abschätzung von Genfluss, und die Detektion von Klonen. Mikrosatelliten sind mit Hilfe neuer DNA-Sequenziertechniken (NGS) unproblematisch und kosteneffektiv isolierbar. Im Rahmen der hier vorliegenden Arbeit wurden daher zunächst nukleäre und plastidäre Mikrosatellitenmarker über NGS-454-Sequenzierung entwickelt. Etablierung von nukleären und plastidären Mikrosatellitenmarkern Zur Etablierung artspezifischer nukleärer Mikrosatellitenmarker wurden zwei Verfahren angewendet. Zum einen wurde in einer öffentlich zugänglichen, über 454-Sequenzierung der cDNA von V. minor gewonnene und im 'sequence read archive' von NCBI hinterlegte Datenbank (Akzessionsnummer SRX039641) nach Mikrosatelliten gesucht. Zum anderen wurde die 454-Technologie eingesetzt, um in Kooperation mit Dr. Bruno Huettel vom Max-Planck-Institut für Pflanzenzüchtung in Köln genomische Sequenzdaten anhand einer V. minor-Akzession zu generieren und aus diesen Mikrosatelliten zu etablieren. Eine Assemblierung der 723.230 cDNA-Sequenzen mit insgesamt 387 Mbp erzielte eine Reduzierung auf 267.199 Unigenes (267 Mbp), die der genomischen Sequenzen eine Reduzierung von 43.565 (18 Mbp) auf 24.886 Sequenzen (13,7 Mbp). Die assemblierten Datensätze enthielten 25.253 bzw. 1.371 Mikrosatellitenloci aus Mono- bis Hexa-Nukleotidmotiven. Die Effizienz der Assemblierung war somit v. a. bei den cDNA-Sequenzen gering. Da die Etablierung von Mikrosatellitenloci aber auch auf Basis redundanter Sequenzen möglich ist, sofern ein manueller Abgleich der selektierten Sequenzen erfolgt, wurde auf eine weitere Optimierung der Assemblierung verzichtet. Aus den so identifizierten Loci wurden 60 (cDNA) bzw. 35 (genomische DNA) Di-, Tri- und Tetranukleotidmotive selektiert, flankierende Primer synthetisiert und in umfangreichen Pilotstudien getestet. Jeweils neun der Loci erwiesen sich als robuste, polymorphe Marker. Die sieben vielversprechendsten Marker wurden schließlich für die populationsgenetische Untersuchung ausgewählt. Auch die Etablierung plastidärer Mikrosatellitenmarker erfolgte über zwei Ansätze. Zum einen wurde das Plastom von V. minor aus dem genomischen 454-Sequenzdatensatz rekonstruiert und auf das Vorhandensein von (A)n/(T)n-Wiederholungseinheiten hin untersucht. Für 14 der 17 dabei detektierten Loci konnten Primer entworfen werden. In einer Pilotstudie erwiesen sich vier der Loci als funktionelle, polymorphe Marker. Zusätzlich wurden die zehn universellen (ccmp) Primerpaare zur Amplifikation plastidärer Mikrosatellitenloci aus Weising & Gardner (1999) getestet, von denen zwei als funktionelle, polymorphe Marker für die Hauptstudie geeignet waren. Populationsgenetische und phylogeographische Analyse Ein Probenset aus insgesamt 967 Pflanzenproben aus 70 Populationen aus Mitteleuropa inkl. der Alpen, den Regionen südlich und westlich der Alpen sowie aus Kanada und 18 Cultivaren wurde mittels der sieben neu etablierten, artspezifischen nukleären Mikrosatellitenmarker populationsgenetisch untersucht. Dabei erwiesen sich 21 der 31 untersuchten Populationen südlich und westlich der Alpen als genetisch hoch divers, die übrigen 10 zeigten vor allem klonales Wachstum und wiesen jeweils ein bis drei Multilocus-Genotypen (MLGs) auf. In 30 der 36 mitteleuropäischen Vorkommen (inkl. der Alpen) sowie den kanadischen Beständen war jeweils nur ein einziger MLG präsent. Drei der Vorkommen zeigten mit einem Heterozygotendefizit einzelner Stichproben Hinweise auf Geitonogamie, an drei weiteren Vorkommen traten jeweils zwei sowohl hinsichtlich der Blütenfarbe und -architektur als auch des MLG unterschiedliche Linien auf. An einem dieser Vorkommen wurde ein Hybrid-Genotyp detektiert, bisher der einzige molekulare Hinweis auf sexuelle Reproduktion im engeren Sinn in Mitteleuropa. Die 967 Stichproben konnten insgesamt 310 individuellen Multilocus-Genotypen (MLGs) zugeordnet werden. Davon traten 233 MLGs nur in jeweils einer einzigen Probe auf, die 77 verbleibenden wurden in mehreren Akzessionen detektiert. Aus einer Simulation ging hervor, dass diese wiederholten MLGs auf rein asexuelle Reproduktion zurückzuführen sind. In Mitteleuropa waren lediglich 18 MLGs vertreten, von denen sieben an bis zu zehn, mehrere hundert Kilometer entfernten Fundorten auftraten. In Nordamerika gehören gar alle drei untersuchten Populationen dem gleichen Klon an. In Mitteleuropa traten in zwei Fällen somatische Mutationen zwischen zwei MLGs auf, sodass diese zu klonalen Linien (Multilocus-Linien; MLL) zusammengefasst werden konnten. Sieben der 18 Cultivare weisen einen zu diversen Freilandvorkommen identischen Genotypen auf. Die Ergebnisse reflektieren den durch die anthropogene Selektion bedingten genetischen Flaschenhalseffekt, in dessen Folge der Genpool von Vinca minor in Mitteleuropa gegenüber der südeuropäischen Heimat der Art stark reduziert wurde. Sexuelle Reproduktion in Mitteleuropa zwischen zwei genetisch unterschiedlichen Individuen ist nur an wenigen Standorten überhaupt möglich und da meist nur ein Klon am gleichen Fundort auftritt, sehr selten. Die Ausbreitung erfolgt zudem rein anthropogen und über erhebliche Strecken, wie die identischen MLGs an unterschiedlichen, weit auseinander liegenden Fundorten belegen. Südlich und westlich der Alpen hingegen ist sexuelle Reproduktion über Samen häufig. Aus den kalkulierten Neighbour-Joining Phenogrammen, Neighbour-Nets und der Bayes'schen Analyse ergibt sich prinzipiell eine Abtrennung der in Norditalien und Slowenien gelegenen Vorkommen von den übrigen Regionen, wohingegen mehrere mittelitalienische Populationen mit denen westlich der Alpen und den mitteleuropäischen Vorkommen in einer engeren genetischen Beziehung stehen. Da die mittelitalienischen Vorkommen jedoch Anzeichen anthropogenen Ursprungs aufweisen (Monoklonalität, Lage an Wegrändern oder Burgen), lassen sich diese Populationen nur bedingt als potentielle Ursprungspopulationen ableiten. Die genetisch diversen norditalienischen und slowenischen Populationen sind trotz der Fragmentierung der norditalienischen Waldvegetation insgesamt nur moderat voneinander differenziert (FST=0,14, GST=0,17, RST=0,19). Die AMOVA ergab, dass über 80 % der genetischen Variation auf Variation innerhalb der Populationen zurückzuführen ist. Dennoch ergab sich aus einem Mantel-Test eine zunehmende genetische Differenzierung mit zunehmender geographischer Distanz (r=0,59). Die phylogeographische Analyse wurde mit Hilfe von vier plastidären Mikrosatellitenmarkern aus der 454-Sequenzierung und zwei universellen plastidären ccmp-Mikrosatellitenloci durchgeführt. Untersucht wurden jeweils eine bis sechs Stichproben aus den o. g. 70 Populationen, die 18 Cultivare sowie zusätzliche Einzelproben aus mehreren Ländern, deren DNA aus Herbarbelegen isoliert wurde. Insgesamt wurden 297 Proben untersucht. Unter diesen wurden in der phylogeographischen Analyse sieben plastidäre Haplotypen detektiert. In der Region südlich der Alpen traten sechs Haplotypen auf (H1 bis H5, H7), in Mitteleuropa vier Haplotypen (H1 bis H3, H6), in Nordamerika, Großbritannien, Schweden und Nordamerika trat hingegen nur ein einziger Haplotyp H1 auf. Die beiden häufigsten Haplotypen nahmen im berechneten Haplotypen-Netzwerk periphere Positionen ein und waren durch sieben Mutationschritte voneinander getrennt. Südlich der Alpen ergab sich jedoch keine klare geographische Verteilung der Haplotypen. Auch die plastidären Daten indizieren somit eine geringere genetische Diversität in den Gebieten, wo V. minor eingeführt wurde. Der geographische Ursprung der mitteleuropäischen Vorkommen in Südeuropa konnte nicht abschließend geklärt werden, jedoch lässt das Vorkommen von zwei weit entfernten Haplotypen den Schluss zu, dass Vinca minor mindestens zweimal (und vermutlich mehrfach) unabhängig in Mitteleuropa eingeführt wurde.

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Amplified fragment length polymorphism (AFLP) genetic fingerprinting of 14 accessions of Chara curta and Chara aspera Willd., sampled across a range of habitats and morphologies in Britain, suggests that these taxa are part of the variation within a single species complex. Two primer combinations generating 397 fragments (97% of which were polymorphic), analysed by Jaccard's similarity coefficient and principal co-ordinate analysis, did not recover groups which reflect the current taxonomy. By contrast with the genetic study, a Gower general similarity coefficient and principal co-ordinate analysis of 52 morphological characters recovered the currently recognized species groups. A Mantel test showed no significant correlation between the genetic data and the morphological data, supporting the hypothesis that phenotypic variability in Chara L. is either to some extent environmentally induced or represents developmental stages. Implications for the conservation status of C. curta in Britain are discussed. (c) 2007 The Linnean Society of London, Botanical Journal of the Linnean Society, 2007, 155, 467-476.