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1.
食用菌SSR序列开发策略研究进展   总被引:2,自引:0,他引:2  
SSR序列开发策略主要有3大类:传统的基因文库筛选法、GenBank筛选法和富集文库筛选法。文中在对传统的基因文库筛选法、GenBank筛选法的优缺点及在食用菌SSR分子标记的开发应用进行综述的基础上,重点综述了富集文库筛选法,即基于RAPD技术的SSR开发策略、SSR兼并引物法、序列标签法构建SSR富集文库、vectorette PCR染色体步移法分离SSR位点、Suppression PCR染色体步移法分离SSR位点、引物延伸法构建SSR富集文库以及SSR杂交捕获法构建SSR富集文库的具体设计原理和步骤,并提出食用菌中SSR分子标识的开发现状和展望。  相似文献   

2.
微卫星位点获取方法的研究进展   总被引:2,自引:0,他引:2  
微卫星标记(simple sequence repeat,SSR)是进行分子遗传学研究的一种有效手段,并以其多态性高、信息含量大、保守性等特点成为最受人们欢迎的分子标记之一.但微卫星标记具有种族特异性,必须采用特异引物进行PCR检测,因而存在引物开发的问题.本文就筛选基因组文库法、微卫星富集法、数据库查找法、近缘物种筛选法、TOMMI法和FI-ASCO法等具有代表性的微卫星标记开发策略进行了综述,旨在为分子生态学研究过程中微卫星位点筛选方法的选择提供参考.  相似文献   

3.
基于PCR的SSR标记分离方法综述   总被引:1,自引:0,他引:1  
SSR分子标记是目前应用最广泛的第二代共显性分子遗传标记。SSR标记具有物种特异性,要应用该方法需要提前开发相应物种的特异SSR标记,而获得微卫星标记的经典方法是通过构建基因组片段文库和特殊标记SSR探针杂交法获取,这些方法经济成本相对较高且耗时耗力。近年来,该领域的研究中积累了很多研究成果和技术改进,发展起来几种基于PCR简便易操作且节约成本的SSR标记分离方法,例如基于RAPD的微卫星分离方法、基于ISSR抑制PCR扩增法、序列标签微卫星分析法、选择性扩增微卫星分析法以及荧光ISSR-PCR分离微卫星和微卫星扩增文库法等。本文主要对这些方法逐一进行综述,旨在为各个物种SSR标记的开发提供参考。  相似文献   

4.
花生微卫星标记的研究进展   总被引:3,自引:0,他引:3  
近年来花生微卫星标记的开发取得了一定的进展,初步揭示了花生在DNA水平上的遗传多样性。花生微卫星标记的开发途径主要包括通过构建小片段基因组文库开发基因组SSR标记,根据花生EST序列开发EST-SSR标记,根据豆科植物序列信息和SSR标记开发花生SSR标记,将SSR标记与其它分子标记结合开发新的DNA标记,以及基于SSR核心序列开发ISSR标记。花生微卫星标记主要应用于遗传多样性研究、遗传图谱与品种指纹图谱构建以及分子标记辅助育种等领域。本文综述了花生SSR标记开发研究的进展及应用。  相似文献   

5.
近年来花生微卫星标记的开发取得了一定的进展, 初步揭示了花生在DNA水平上的遗传多样性。花生微卫星标记的开发途径主要包括通过构建小片段基因组文库开发基因组SSR标记, 根据花生EST序列开发EST-SSR标记, 根据豆科植物序 列信息和SSR标记开发花生SSR标记, 将SSR标记与其它分子标记结合开发新的DNA标记, 以及基于SSR核心序列开发ISSR标记。花生微卫星标记主要应用于遗传多样性研究、遗传图谱与品种指纹图谱构建以及分子标记辅助育种等领域。本文综述了花生SSR标记开发研究的进展及应用。  相似文献   

6.
SSR标记具有操作简便、共显性和重复性好等特点。该文总结了通过生物信息学技术、磁珠富集法及二代测序技术开发牡丹(Paeonia suffruticosa) SSR标记引物的方法, 并根据现有研究结果解析了牡丹基因组中SSR位点频率及分布, 详细阐述了SSR标记在牡丹种质资源的遗传多样性、亲缘关系和遗传关系等方面的应用概况, 旨在为今后牡丹SSR标记的研究与应用提供参考。  相似文献   

7.
微卫星序列(SSR)具有多态性高、共显性遗传等特点,是一种极具价值的分子遗传标记。采用磁珠富集法从高山绣线菊基因组DNA中分离和筛选SSR标记。高山绣线菊基因组经限制性内切酶Mse I酶切后与接头连接,并与生物素标记SSR探针(AC)15和(AG)15杂交,然后通过链霉亲和素磁珠富集、洗脱、PCR扩增、克隆,完成微卫星文库构建。利用载体通用引物和探针序列引物进行PCR扩增,筛选重组克隆并测序,获得112条序列。随机挑选其中60条序列设计的引物,经初期筛选获得多态性引物16对。用所得16对引物对4个居群92个个体的蒙古绣线菊和高山绣线菊进行PCR扩增。统计分析PCR产物的毛细管电泳结果,发现4个居群的平均等位基因数、平均期望杂合度及平均观测杂合度都比较高。64个数据系列(4个居群×16个位点)中的26个显著偏离HardyWeinberg平衡,推测可能由于无效等位基因的存在所引起。分析显示研究开发的16对多态性SSR引物可以用于后续遗传多样性、物种进化与亲缘关系等方面研究,丰富了绣线菊遗传多样性研究的分子标记。  相似文献   

8.
SSR分子标记在烟草研究中的应用进展   总被引:1,自引:0,他引:1  
SSR分子标记技术作为最常用的分子标记技术之一,该标记技术重复性好,结果可靠,近年来在烟草遗传育种中展示了广阔的应用前景,是应用潜力较大的分子标记技术。介绍了SSR分子标记的原理及其分布特征,对其在烟草基因定位及分子标记辅助选择、种质资源研究、遗传图谱构建及种子纯度及真伪鉴定研究中的应用等方面进行了综述,并探讨了SSR分子标记技术在烟草遗传育种中的应用前景,以期为烟草SSR分子标记技术的研究提供参考。  相似文献   

9.
SSR分子标记在梨种质资源研究中的应用   总被引:1,自引:0,他引:1  
SSR(simple sequence repeat)标记,又称微卫星标记,具有多态性高、重复性好、共显性、检测简单等优点,在果树树种的多样性、品种和亲缘关系鉴定等方面得到了广泛应用。就近年来SSR分子标记在梨种质资源研究上的应用,综述了SSR分子标记的筛选与开发研究、种质资源的分类与多样性研究、品种鉴别与亲子鉴定研究以及重要性状的SSR标记与定位研究进展,并对存在问题进行分析和展望,旨在为相关研究工作提供参考。  相似文献   

10.
棉花BAC文库快速筛选法   总被引:1,自引:0,他引:1  
目的:构建棉花细菌人工染色体(Bacterial Artificial Chromosome,BAC)文库的快速筛选法,以期从BAC文库中大量、快速、高效筛选出特定BAC克隆,为从事基因组测序、分离和分析特定基因、构建物理图谱及基因图位克隆等生物学技术研究奠定基础。方法:构建了整板、行、列的三维混合池,以菌液PCR为基础,从BAC文库中筛选出含有特定DNA片段的BAC单克隆。结果:从BAC文库的3 456个克隆中,共筛选出16个阳性单克隆,涉及13条染色体、11个SSR标记。结论:该文构建的棉花BAC文库筛选体系,筛选快速、准确,适合从BAC文库中大量筛选BAC单克隆。结合当前的多种BAC文库筛选方法进行探讨,根据不同的实验目的选择更合适的筛选方法和操作步骤。  相似文献   

11.
Wild germplasm of domesticated crops is a source of genetic variation little utilized in breeding programs. Interspecific crosses can potentially uncover novel gene combinations that can be important for quantitative trait analysis. The combined use of wide crosses and genetic maps of chromosomal regions associated with quantitative traits can be used to broaden the genetic basis of rice breeding programs. Oryza glumaepatula is a diploid (AA genome) wild rice species native from South and Central America. A genetic map was constructed with 162 PCR-based markers (155 microsatellite and 7 STS markers) using a backcross population derived from the cross O. glumaepatula, accession RS-16 from the Brazilian Amazon Region x O. sativa BG-90-2, an elite rice inbred line. The map included 47 new SSR markers developed from an O. glumaepatula genomic library enriched for AG/TC sequences. All SSR markers were able to amplify the O. sativa genome, indicating a high degree of SSR flanking region conservation between O. glumaepatula and O. sativa species. The map covered 1500.4 cM, with an average of one marker every 10 cM. Despite some chromosomes being more densely mapped, the overall coverage was similar to other maps developed for rice. The advantage to construct a SSR-based map is to permit the combination of the speed of the PCR reaction, and the codominant nature of the SSR marker, facilitating the QTL analysis and marker assisted selection for rice breeding programs.  相似文献   

12.
开发SSR引物方法之研究动态   总被引:46,自引:2,他引:44  
李明芳  郑学勤 《遗传》2004,26(5):769-776
SSR标记是一种基于DNA长度多态性的分子标记技术,是进行群体遗传结构分析、构建遗传连锁图谱非常有效的工具。由于SSR标记是特异引物标记,必须在知道某个物种DNA序列的前提下,才能设计引物进行PCR扩增,故而存在一个引物开发的问题。从SSR标记的发展历程来看,开发SSR引物的方法有经典的构建与筛选基因组文库的方法、微卫星富集法、省略筛库法和数据库搜索法等四种。本文综述了这四种方法的操作流程及其在实际应用中的优缺点,并对近年来SSR引物在相近的物种间转移使用的情况作了介绍. Abstract: SSRs is one of molecular markers technology based on DNA length polymorphism and an efficient tool for population genetic studies and primary genetic linkage maps construction. Because of a special primer marker, It’s necessary to know a species DNA sequence in order to design primers for PCR testing. That is to say, there is a problem of SSR primer development. For the progress of SSR marker technology, the methods of developing SSR primer could be divided into four kinds: traditional constructing and screening genome library procedure, the SSR richment procedure, avoiding screening genome library procedure and database search procedure. This paper reviewed these four methods’operation processes and their advantages and disadvantages. In addition, transferability of SSR primers in closely related species were introduced in recent years.  相似文献   

13.
An integrated SSR and RFLP linkage map of Sorghum bicolor (L.) Moench.   总被引:5,自引:0,他引:5  
We report the development, testing, and use (for genetic mapping) of a large number of polymerase chain reaction (PCR) primer sets that amplify DNA simple sequence repeat (SSR) loci of Sorghum bicolor (L.) Moench. Most of the primer sets were developed from clones isolated from two sorghum bacterial artificial chromosome (BAC) libraries and three enriched sorghum genomic-DNA (gDNA) libraries. A few were developed from sorghum DNA sequences present in public databases. The libraries were probed with radiolabeled di- and trinucleotide oligomers, the BAC libraries with four and six oligomers, respectively, and the enriched gDNA libraries with four and three oligomers, respectively. Both types of libraries were markedly enriched for SSRs relative to a size-fractionated gDNA library studied earlier. However, only 2% of the sequenced clones obtained from the size-fractionated gDNA library lacked a SSR, whereas 13% and 17% of the sequenced clones obtained from the BAC and enriched gDNA libraries, respectively, lacked a SSR. Primer sets were produced for 313 SSR loci. Two-hundred sixty-six (85%) of the loci were amplified and 165 (53%) of the loci were found to be polymorphic in a population composed of 18 diverse sorghum lines. (AG/TC)n and (AC/TG)n repeats comprised 91% of the dinucleotide SSRs and 52% of all of the SSRs at the polymorphic loci, whereas four types of repeats comprised 66% of the trinucleotide SSRs at the loci. Primer sequences are reported for the 165 polymorphic loci and for eight monomorphic loci that have a high degree of homology to genes. Also reported are the genetic map locations of 113 novel SSR loci (including four SSR-containing gene loci) and a linkage map composed of 147 SSR loci and 323 RFLP (restriction fragment length polymorphism) loci. The number of SSR loci per linkage group ranges from 8 to 30. The SSR loci are distributed relatively evenly throughout approximately 75% of the 1406-cM linkage map, but segments of five linkage groups comprising about 25% of the map either lack or contain few SSR loci. Mapping of SSR loci isolated from BAC clones located to these segments is likely to be the most efficient method for placing SSR loci in the segments.  相似文献   

14.
珍稀濒危树种毛红椿微卫星DNA分离及SSR反应体系优化   总被引:11,自引:0,他引:11  
本研究以江西宜丰种源毛红椿为材料,成功提取其基因组DNA。利用改良的链亲和素磁珠法亲和捕捉出毛红椿基因组微卫星DNA片断,并构建了富含微卫星的基因组文库。从构建的基因组文库中随机挑选了63个单克隆进行测序,其中50个单克隆成功测序,含有微卫星的单克隆有18个,并根据测序结果设计并合成SSR引物18对。利用所合成的引物优化SSR反应体系,对影响SSR反应的各个因子进行了探讨。确定了模板DNA浓度最适浓度为30ng;dNTP的最适浓度为0.3mmol·L-1;0.3μmol·L-1是引物在反应体系中的最合适浓度。建立了重复性好、稳定性好的SSR反应体系,为下一步进行毛红椿群体遗传结构和遗传变异研究提供了技术支持。  相似文献   

15.
利用FIASCO磁珠富集法,开发和筛选青藏高原特有珍贵植物西川红景天(Rhodiola alsia)多态性微卫星标记。结果表明:用(AG)15和(AC)15两种微卫星标记探针构建富集文库,共获得阳性克隆约2500个;从中随机挑取1200检测,发现具有多态性的阳性克隆达400个;随机挑取200多态性的阳性克隆进行测序,从中获得105个SSR位点,用在线软件primer3-2.3.4成功设计得SSR引物105对;其中45对可以成功扩增,而13对所扩增的片段在相距较远的4个自然居群的24个个体中显示较高的遗传多态性。用4个居群的80个个体检测这13对引物发现,平均等位基因数(A)约为9.192,观测杂合度(Ho)和期望杂合度(He)均值分别约为0.712和0.734,如此高的多态性已经满足后期研究的需要;数个位点在某些居群中显著偏离哈迪温伯格平衡(P0.01),这可能是实际研究的居群并不能达到哈迪—温伯格定律所假设的无限大等理想状态所致。结合此前基于表达序列标签(Expressed Sequence Tag,EST)序列开发的SSR多态性位点,该研究结果为今后利用SSR位点开展西川红景天的居群遗传结构分析和其他研究提供了一组有效工具。  相似文献   

16.
A bacterial artificial chromosome (BAC) library was constructed for Gossyplum hirsutum acc. TM-1, a genetic and genomic standard line for Upland cotton. The library consists of 147 456 clones with an average insert size of 122.8 kb ranging from 97 to 240 kb. About 96.0% of the clones have inserts over 100 kb. Therefore, this library represents theoretically 7.4 haploid genome equivalents based on an AD genome size of 2 425 Mb. Clones were stored in 384 384- well plates and arrayed into multiplex pools for rapid and reliable library screening. BAC screening was carded out by four-round polymerase chain reactions using 23 simple sequence repeats (SSR) markers, three sequence-related amplified polymorphism markers and one pair of pdmere for a gene associated with fiber development to test the quality of the library. Correspondingly, in total 92 positive BAC clones were Identified with an average four positive clones per SSR marker, ranging from one to eight hits. Additionally, since these SSR markers have been localized to chromosome 12 (A12) and 26 (D12) according to the genetic map, these BAC clonee are expected to serve as seeds for the physical mapping of these two homologous chromosomes, sequentially map-based cloning of quantitative trait loci or genes associated with Important agronomic traits.  相似文献   

17.
Limited availability of validated, polymorphic microsatellite markers in mung bean (Vigna radiata), an important food legume of India, has been a major hurdle towards its improvement and higher yield. The present study was undertaken in order to develop a new set of microsatellite markers and utilize them for the analysis of genetic diversity within mung bean accessions from India. A GA/CT enriched library was constructed from V. radiata which resulted in 1,250 putative recombinant clones of which 850 were sequenced. SSR motifs were identified and their flanking sequences were utilized to design 328 SSR primer pairs. Of these, 48 SSR markers were employed for assessing genetic diversity among 76 mung bean accessions from various geographical locations in India. Two hundred and thirty four alleles with an average of 4.85 alleles per locus were detected at 48 loci. The polymorphic information content (PIC) per locus varied from 0.1 to 0.88 (average: 0.49 per locus). The observed and expected heterozygosities ranged from 0.40 to 0.95 and 0.40 to 0.81 respectively. Based on Jaccard’s similarity matrix, a dendrogram was constructed using the unweighted pair-group method with arithmetic averages (UPGMA) analysis which revealed that one accession from Bundi, Rajasthan was clustered out separately while remaining accessions were grouped into two major clusters. The markers generated in this study will help in expanding the repertoire of the available SSR markers thereby facilitating analysis of genetic diversity, molecular mapping and ultimately broadening the scope for genetic improvement of this legume.  相似文献   

18.
基于SSR标记的贵州薏苡种质资源遗传多样性?分析   总被引:1,自引:0,他引:1  
利用SSR标记研究了22份薏苡种质的遗传多样性,用11对扩增带型稳定的SSR引物从供试材料中检测出105个等位基因变异,每对引物检测等位基因4~20个,平均9.55个。SSR引物的PIC介于0.3048~0.9238,平均多态性信息量为0.8255。利用UPGMA聚类分系法将供试自交系划分为4类,该划分结果与根据地理来源、种质系谱的分类结果基本一致。SSR分子标记辅助的种质改良是薏苡品种改良的重要途径。  相似文献   

19.
Simple sequence repeat map of the sunflower genome   总被引:11,自引:0,他引:11  
Several independent molecular genetic linkage maps of varying density and completeness have been constructed for cultivated sunflower ( Helianthus annuus L.). Because of the dearth of sequence and probe-specific DNA markers in the public domain, the various genetic maps of sunflower have not been integrated and a single reference map has not emerged. Moreover, comparisons between maps have been confounded by multiple linkage group nomenclatures and the lack of common DNA markers. The goal of the present research was to construct a dense molecular genetic linkage map for sunflower using simple sequence repeat (SSR) markers. First, 879 SSR markers were developed by identifying 1,093 unique SSR sequences in the DNA sequences of 2,033 clones isolated from genomic DNA libraries enriched for (AC)(n) or (AG)(n) and screening 1,000 SSR primer pairs; 579 of the newly developed SSR markers (65.9% of the total) were polymorphic among four elite inbred lines (RHA280, RHA801, PHA and PHB). The genetic map was constructed using 94 RHA280 x RHA801 F(7) recombinant inbred lines (RILs) and 408 polymorphic SSR markers (462 SSR marker loci segregated in the mapping population). Of the latter, 459 coalesced into 17 linkage groups presumably corresponding to the 17 chromosomes in the haploid sunflower genome ( x = 17). The map was 1,368.3-cM long and had a mean density of 3.1 cM per locus. The SSR markers described herein supply a critical mass of DNA markers for constructing genetic maps of sunflower and create the basis for unifying and cross-referencing the multitude of genetic maps developed for wild and cultivated sunflowers.  相似文献   

20.
Microsatellites (SSRs) are widely used in cereal research, and their use in marker assisted breeding has increased the speed and efficiency of germplasm improvement. Central to the application of SSRs for many purposes are methodologies enabling the low-cost acquisition of large quantities of genetic information for gene and genotype identification. In this study, multiplex-ready PCR was evaluated in barley and bread wheat as an approach for rapid and more automated SSR genotyping on a fluorescence-based DNA fragment analyzer. Multiplex-ready PCR is a method that allows SSR genotyping to be performed using a standardized protocol. The method enables flexible fluorescence labeling of SSRs, generates a relatively constant amount of PCR product for each marker, and has a high amenability to multiplex PCR (the simultaneous amplification of several SSRs in the same reaction). A high (92%) compatibility of published SSRs with multiplex-ready PCR is demonstrated, and the usefulness of the method for large scale genotyping is shown by its application for whole genome marker assisted breeding in barley. A database of more than 2,800 barley and wheat SSRs, and a suite of bio-informatic tools were developed to support the deployment of multiplex-ready PCR for various genetic applications, and are accessible at . Multiplex-ready PCR is broadly applicable to cereal genomics research and marker assisted breeding, and should be transferable to similar analyses of any animal or plant species.  相似文献   

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