首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 78 毫秒
1.
本研究对厚唇裸重唇鱼(Gymnodiptychus pachycheilus)基因组进行Illumina HiSeq高通量测序,共获得85 905条序列,包含567 200个微卫星位点,从中筛选出15个微卫星位点,采用雅砻江新龙种群和黄河渭河种群对其多态性进行了验证。新龙种群中,15个位点的平均等位基因数为6.9(3 ~ 13),观测杂合度(Ho)为0.712 4,多态信息含量(PIC)为0.630 3,有8个位点显著偏离哈迪-温伯格平衡,1对位点表现出连锁。渭河种群中,15个位点的平均等位基因数为8.4(4 ~ 16),观测杂合度(Ho)为0.719 5,多态信息含量(PIC)为0.680 7,有7个位点显著偏离了哈迪-温伯格平衡,4对位点表现出连锁。筛选获得的15个微卫星位点多态性较高,适合用于厚唇裸重唇鱼种群遗传学研究。  相似文献   

2.
综述了限制性长度多态性(RFLP)、随机扩增多态性DNA(RAPD)、扩增片段长度多态性(AFLP)、简单重复序列(SSR)等不同类型分子标记在草莓指纹图谱构建、品种鉴别、遗传多样性、进化、遗传作图以及相关性状的标记等方面的应用,分析了草莓分子标记研究中的关键问题,提出了今后研究方向。  相似文献   

3.
DNA标记和分子育种钱惠荣郑康乐(中国水稻研究所生物工程系杭州310006)生物技术的发展给作物遗传育种研究带来了巨大的变化,DNA分子标记技术的应用是其中最显著的变化之一[9,48]。由于分子标记相对于经典遗传育种研究中的形态性状具有无可比拟的优越性,它的使用也越来越广泛。许多以前无法进行的研究,比如环境因素的影响,数量性状的多重效应等等,在分子标记的帮助下已经开展。同时分子标记直接应用于...  相似文献   

4.
藏绵羊DNA分子遗传标记的研究进展   总被引:3,自引:0,他引:3  
分析讨论了藏绵羊DNA分子遗传标记在其遗传育种研究中的应用现状和存在的问题,展望了其今后的研究趋势和发展前景。  相似文献   

5.
基于DNA分子标记数据构建系统进化树的新策略   总被引:7,自引:0,他引:7  
结合DPS软件和MEGA软件优点,进行DNA分子标记数据处理和系统发育树构建的新策略:首先使用DPS软件进行0,1数据系统聚类方法获得遗传距离矩阵,然后将此矩阵输入MEGA3,利用NJ或者UPGMA进行系统进化树的构建和树的优化。该方法操作简单,得到的树形美观。  相似文献   

6.
利用自行开发的12个EST-SSR分子标记,采用最大似然法对鹅掌楸(L.chinense (Hemsl.)Sarg.)实验群体3个半同胞家系的180个子代进行父本分析。结果表明,每个SSR位点的等位基因数为3-7,平均为4.67;其平均观测杂合度(Ho)、平均期望杂合度(He)及平均多态信息含量(PIC)分别为0.458、0.635和0.580。利用12个SSR标记可在95%的可信度确定114个子代的父本,占子代群体的63.3%,其累积排除概率为98.52%。自由授粉状态下,鹅掌楸的自交率为11.6%,而北美鹅掌楸自交率为0,且种内交配比例大于种间交配。鹅掌楸平均有效花粉散布距离为20-30m,最大散布距离为70m。  相似文献   

7.
利用SSR分子标记对中国沙棘(Hippophae rhamnoides ssp. sinensis Rousi)自由授粉的种子进行父本分析,研究其子代的父本来源和花粉散布模式。结果显示:在80%的置信水平上,193个子代中有104个个体可以确定花粉来源;在20个确定的父本中,16个为中国沙棘,4个为肋果沙棘(H.neurocarpa S.W.Liu et T.N.He)。传粉格局分析结果显示,中国沙棘有效花粉散布范围为3~71 m,平均距离为20.4 m,2株母本分别有87.23%和78.95%的有效花粉来自距其30 m的范围之内,研究结果表明中国沙棘自然种群以近距离传粉为主。此外,在黑河上游沙棘杂交带中,中国沙棘子代中的肋果沙棘花粉平均贡献率达到14.84%,表明中国沙棘与肋果沙棘存在较高的种间当代花粉流。  相似文献   

8.
染色体外环形DNA(extrachromosomal circular DNA,eccDNA)指来源于基因组DNA并游离于染色体之外的双链环状DNA分子,它在真核生物中普遍存在.eccDNA在数目、序列长度和基因组来源上存在很大差异,其功能也不尽相同,包括端粒可变延长、rDNA拷贝数维持、衰老、耐药性和肿瘤发生等,ec...  相似文献   

9.
孙亚光  李火根 《植物学报》2007,24(5):590-596
利用自行开发的12个EST-SSR分子标记, 采用最大似然法对鹅掌楸(L.chinense (Hemsl.) Sarg.)实验群体3个半同胞家系的180个子代进行父本分析。结果表明, 每个SSR位点的等位基因数为3-7, 平均为4.67; 其平均观测杂合度(Ho)、平均期望杂合度(He)及平均多态信息含量(PIC)分别为0.458、0.635和0.580。利用12个SSR标记可在95%的可信度确定114个子代的父本, 占子代群体的63.3%, 其累积排除概率为98.52%。自由授粉状态下, 鹅掌楸的自交率为1.6%, 而北美鹅掌楸自交率为0, 且种内交配比例大于种间交配。鹅掌楸平均有效花粉散布距离为20-30 m, 最大散布距离为70 m。  相似文献   

10.
微卫星DNA在分子遗传标记研究中的应用   总被引:13,自引:1,他引:12  
随着种群遗传学的发展 ,分子遗传标记特别是微卫星标记已经成为研究种群遗传的有力工具。本文就微卫星遗传标记的研究背景、技术应用以及优势与不足等方面进行了综述。  相似文献   

11.
Understanding precisely how plants disperse their seeds and pollen in their neighbourhood is a central question for both ecologists and evolutionary biologists because seed and pollen dispersal governs both the rate of spread of an expanding population and gene flow within and among populations. The concept of a 'dispersal kernel' has become extremely popular in dispersal ecology as a tool that summarizes how dispersal distributes individuals and genes in space and at a given scale. In this issue of Molecular Ecology, the study by Moran & Clark (2011) (M&C in the following) shows how genotypic and spatial data of established seedlings can be analysed in a Bayesian framework to estimate jointly the pollen and seed dispersal kernels and finally derive a parentage analysis from a full-probability approach. This approach applied to red oak shows important dispersal of seeds (138 m on average) and pollen (178 m on average). For seeds, this estimate contrasts with previous results from inverse modelling on seed trap data (9.3 m). This research gathers several methodological advances made in recent years in two research communities and could become a cornerstone for dispersal ecology.  相似文献   

12.
C. M. HERRERA 《Molecular ecology》2009,18(22):4533-4535
In two studies on mating patterns and spatial components of pollen and seed dispersal of Prunus mahaleb based on parentage analysis, García et al. (2005, 2007) depicted their 196 focal trees as a spatially isolated population where all reproductive trees had been genotyped. Additional distributional data for P. mahaleb trees in their study area, however, revealed that García and colleagues’ depiction of their study system bears little resemblance to reality. The trees these authors studied did not form a discrete, geographically isolated population. Around 300 ungenotyped reproductive trees occurred within the 1.5‐km distributional gap to the nearest population proclaimed by García and colleagues. Since exhaustive sampling of potential parental genotypes is essential in parentage analyses, the occurrence of a large number of ungenotyped trees in the immediate neighbourhood of focal trees can severely affect the main conclusions of García et al. (2005, 2007) as well as of several related publications on gene dispersal and mating patterns of P. mahaleb conducted on the same trees and relying on the same false premises of spatial isolation and exhaustive sampling.  相似文献   

13.
The neighbourhood model apportions offspring of individual mother plants to self-fertilization, outcrossing to males within a circumscribed area around the mother plant (the neighbourhood), and outcrossing to males outside the neighbourhood. Formerly the model was applied only to haploid pollen gametes in the offspring of conifers, but is extended so that it can be used with genotypic data from diploid offspring of both angiosperms and gymnosperms. In addition, it is shown that the mating parameters can be estimated without independent estimates of allele frequencies in the pollen pools outside the neighbourhood; thus the model might be applied effectively to natural populations exposed to unknown external pollen sources. Parameters of the neighbourhood mating model were estimated for a 10-year-old seed orchard population of the insect-pollinated tree, Eucalyptus regnans, in southeast Australia, which contained a mixture of two geographical provenances (Victoria and Tasmania). The mating patterns revealed were complex. Crosses between trees of the same provenance occurred three times more often than crosses between trees of different provenances. Levels of self-fertilization and patterns of mating within neighbourhoods were influenced by provenance origin, crop fecundity and orchard position (central vs. edge) of mother trees. Gene dispersal, however, was extensive, with approximately 50% of effective pollen gametes coming from males more than 40 m away from mother trees (average distance between neighbouring trees was 7.4 m). Thus, insect pollinators are efficient promoters of cross-fertilization in this orchard, with the result that the effective number of males mating with each female is large.  相似文献   

14.
Abstract. The mutualistic interaction of figs with their species-specific wasp pollinators and the role of figs as 'keystone' plant resources in tropical communities has received substantial attention from both plant and animal ecologists. Despite this focus on the reproductive biology of figs, the minute size of the wasps has effectively precluded our ability to monitor patterns of wasp dispersal and fig mating relationships in natural forest habitats. In this paper we use genetic markers and genealogy reconstruction techniques to examine the breeding structure of populations of four strangler fig species occurring in central Panama. The natural history of figs facilitates the genetic analysis of full-sib progeny arrays from which the genotypes of successful pollen donors can be reconstructed precisely. Paternity reconstruction in the four study species reveals that individual flowering trees may routinely receive pollen from numerous donors despite characteristically low densities of co-flowering individuals. These data indicate not only that breeding populations of these figs are larger than the minimum critical sizes predicted to be necessary to support populations of their species-specific pollinators, but are more extensive in size and area than has been described for any plant species yet examined. Further, the fig wasps are shown to be efficient agents of long-distance dispersal, routinely moving up to 10 km between flowering trees. In accord with the potential for substantial long-distance gene flow and large effective population sizes, ten of eleven species of Panamanian figs assayed were found to maintain exceptionally high levels of genetic variation within their populations. Combined with other reports of occasional long-distance dispersal, the results of this study suggest that fig wasps may be more effective at colonizing isolated fig populations than previously thought.  相似文献   

15.
Pollen dispersal was characterized within a population of the narrowly endemic perennial herb, Centaurea corymbosa, using exclusion-based and likelihood-based paternity analyses carried out on microsatellite data. Data were used to fit a model of pollen dispersal and to estimate the rates of pollen flow and mutation/genotyping error, by developing a new method. Selfing was rare (1.6%). Pollen dispersed isotropically around each flowering plant following a leptokurtic distribution, with 50% of mating pairs separated by less than 11 m, but 22% by more than 40 m. Estimates of pollen flow lacked precision (0-25%), partially because mutations and/or genotyping errors (0.03-1%) could also explain the occurrence of offspring without a compatible candidate father. However, the pollen pool that fertilized these offspring was little differentiated from the adults of the population whereas strongly differentiated from the other populations, suggesting that pollen flow rate among populations was low. Our results suggest that pollen dispersal is too extended to allow differentiation by local adaptation within a population. However, among populations, gene flow might be low enough for such processes to occur.  相似文献   

16.
Pollinator foraging patterns and the dynamics of pollen transport influence the quality and diversity of flowering plant mating opportunities. For species pollinated by grooming pollinators, such as bees, the amount of pollen carried between a donor flower and potential recipient flowers depends on how grooming influences pollen transfer. To investigate the relationship between grooming and pollen‐mediated gene dispersal, we studied bumblebee (Bombus fervidus) foraging behavior and resulting gene dispersal in linear arrays of Mimulus ringens. Each of the 14 plants in an array had a unique multilocus genotype, facilitating unambiguous assignment of paternity to 1050 progeny. Each plant was trimmed to a single flower so that pollinator movements could be linked directly to resulting gene dispersal patterns. Pollen‐mediated gene dispersal was very limited. More than 95% of the seeds sired by a donor flower were distributed over the first three recipient flowers in the visitation sequence. However, seeds were occasionally sired on flowers visited later in the pollinator's floral visitation sequence. Intensive grooming immediately following pollen removal from a donor flower significantly increased the decay rate of the donor flower's gene dispersal curve. These results suggest that the frequency and relative intensity of grooming can have significant effects on patterns of pollen‐mediated gene dispersal from individual pollen donors.  相似文献   

17.
DNA microsatellites provide plant ecologists with molecular markers precise enough to assign parentage to seeds and seedlings. This allows the exact distance and trajectory of successful pollen to be traced to characterize pollination patterns. Parentage assignment of established seedlings also allows researchers to accurately determine how far new recruits have traveled from their seed parent. This paper reviews the history and development of molecular parentage assignment in studies of native plants, as well as the limitations and constraints to this approach. This paper also reviews 53 articles published in the past 15 years that use parentage assignment to study pollination and seed dispersal in native plants. These parentage studies have overturned many common assumptions regarding pollen and seed dispersal patterns. They show that long-distance dispersal of pollen is common in both wind and animal dispersed systems, with average pollination distances commonly being hundreds of meters. The pollination neighborhood is often extremely large, and simple dispersal functions based on distance alone fail to make accurate predictions of pollination. Rather than hindering gene flow, fragmentation and isolation sometimes, and perhaps even commonly, results in increased pollination distances. Studies of seed dispersal using parentage assignment have also yielded some surprises. We now know that it may be erroneous to assume that seeds growing under the crown of a conspecific adult are growing beneath their mother, or that seed dispersal distances are more limited than pollen dispersal distances. Taken together, the studies to date demonstrate that both seed and pollen dispersal are quite complex phenomena influenced by many ecological processes.  相似文献   

18.
19.
In the face of widespread deforestation, the conservation of rainforest trees relies increasingly on their ability to maintain reproductive processes in fragmented landscapes. Here, we analysed nine microsatellite loci for 218 adults and 325 progeny of the tree Dipteryx panamensis in Costa Rica. Pollen dispersal distances, genetic diversity, genetic structure and spatial autocorrelation were determined for populations in four habitats: continuous forest, forest fragments, pastures adjacent to fragments and isolated pastures. We predicted longer but less frequent pollen movements among increasingly isolated trees. This pattern would lead to lower outcrossing rates for pasture trees, as well as lower genetic diversity and increased structure and spatial autocorrelation among their progeny. Results generally followed these expectations, with the shortest pollen dispersal among continuous forest trees (240 m), moderate distances for fragment (343 m) and adjacent pasture (317 m) populations, and distances of up to 2.3 km in isolated pastures (mean: 557 m). Variance around pollen dispersal estimates also increased with fragmentation, suggesting altered pollination conditions. Outcrossing rates were lower for pasture trees and we found greater spatial autocorrelation and genetic structure among their progeny, as well as a trend towards lower heterozygosity. Paternal reproductive dominance, the pollen contributions from individual fathers, did not vary among habitats, but we did document asymmetric pollen flow between pasture and adjacent fragment populations. We conclude that long-distance pollen dispersal helps maintain gene flow for D. panamensis in this fragmented landscape, but pasture and isolated pasture populations are still at risk of long-term genetic erosion.  相似文献   

20.
Parentage analysis is a cornerstone of molecular ecology that has delivered fundamental insights into behaviour, ecology and evolution. Microsatellite markers have long been the king of parentage, their hypervariable nature conferring sufficient power to correctly assign offspring to parents. However, microsatellite markers have seen a sharp decline in use with the rise of next‐generation sequencing technologies, especially in the study of population genetics and local adaptation. The time is ripe to review the current state of parentage analysis and see how it stands to be affected by the emergence of next‐generation sequencing approaches. We find that single nucleotide polymorphisms (SNPs), the typical next‐generation sequencing marker, remain underutilized in parentage analysis but are gaining momentum, with 58 SNP‐based parentage analyses published thus far. Many of these papers, particularly the earlier ones, compare the power of SNPs and microsatellites in a parentage context. In virtually every case, SNPs are at least as powerful as microsatellite markers. As few as 100–500 SNPs are sufficient to resolve parentage completely in most situations. We also provide an overview of the analytical programs that are commonly used and compatible with SNP data. As the next‐generation parentage enterprise grows, a reliance on likelihood and Bayesian approaches, as opposed to strict exclusion, will become increasingly important. We discuss some of the caveats surrounding the use of next‐generation sequencing data for parentage analysis and conclude that the future is bright for this important realm of molecular ecology.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号