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1.
小麦EST-SSRs的通用性研究   总被引:12,自引:1,他引:11  
小麦EST—SSRs是一种从小麦ESTs序列中开发的新型SSR标记。根据小麦ESTs设计的597对EST—SSRs引物在小麦、玉米、水稻和大豆中的有效扩增比率分别为80%、65.8%、62.1%和58.1%。其中,255对EST—SSRs引物(42.7%)在四种作物中都能获得预期产物。序列相似性比较发现,255个通用EST—SSRs标记所对应的基因80%功能已知,其中30%与蛋白质定位相关,其余70%参与细胞代谢、转录调控、细胞发育、防御体系及其他所涉及的生理生化过程。由于不同物种间基因保守性,本研究发掘的EST—SSRs引物对于小麦功能基因组和比较基因组研究都有重要意义。  相似文献   

2.
黄淮麦区小麦品种(系)的ISSR位点遗传多样性分析   总被引:28,自引:6,他引:22  
选用11个ISSR引物,对黄淮麦区96个小麦推广品种(系)进行遗传多样性分析。共检测到96个多态性位点,每个引物多态性位点数平均为8.7个,变幅为3~23个;ISSR引物的多态性信息含量PIC变幅为0.601~0.941,平均0.791,表明ISSR具有较强的品种间区分能力,是研究小麦种质资源遗传多样性的有效分子标记技术之一。96个品种(系)间,Nei’s遗传相似系数变化范围为0.53~0.91,平均为0.60,品种间遗传相似性变幅较大,表明黄淮麦区不同小麦品种(系)间存在着不同程度的遗传多样性差异。根据品种间遗传相似系数聚类,96份材料被聚成8大类群,共14个亚类,类群与系谱和原产地无关。  相似文献   

3.
中国桑树选育品种ISSR指纹图谱的构建及遗传多样性分析   总被引:11,自引:1,他引:10  
利用ISSR标记构建了24个选育桑品种的指纹图谱,用3种独立的方法(特殊的标记;特异的谱带类型;不同引物提供的谱带类型组合)可以有效地鉴别桑树选育品种,证明ISSR标记在桑树品种的鉴别方面是一个有效的工具和方法。17个ISSR引物共扩增出80条带,40条带具有多态性,占50.0%。24份选育桑树品种间平均遗传相似系数、Nei’S基因多样性(gene diversity)和Shannon’S信息指数分别为0.8731,0.1210和0.1942。桑树选育品种间的遗传多样性较低,说明中国选育桑品种间遗传距离较小,亲缘关系较近,。遗传基础较狭窄。UPGMA法聚类和PCA分析都清楚地显示了24个桑树选育品种的亲缘关系,聚类结果与桑树品种的系谱基本一致。  相似文献   

4.
基于SSR标记的宁夏水稻遗传多样性分析   总被引:2,自引:0,他引:2  
选择自上世纪80年代以来的59份宁夏水稻种质,利用分布于12条染色体的82对SSR引物进行遗传多样性和遗传相似性分析。共检测到339个等位基因,品种间不同位点等位基因数目2~19个,平均4.13个。Nei基因多样性指数变幅为0.0333~0.9164,平均为0.4394。按种质释放或审定年代,55份水稻分为3组分析,随着年代的增加,等位基因数和遗传多样性指数均呈增大趋势,且3群体间等位基因数和多样性指数差异均达极显著水平(P<0.001)。UPGMA聚类分析表明,参试59份水稻种质在遗传相似系数0.78水平上聚为5大类,其中第Ⅰ类为1份香稻种质;第Ⅱ、Ⅳ类均为3份种质;第Ⅲ类有5份种质,与吉林水稻相似;绝大多数品种被聚为第Ⅴ类,占参试材料数的79.7%。对比宁夏水稻选育品种系谱,大多数种质具有宁夏骨干亲本红旗12、京引39、东方红2号、京引59等的血缘,种质间亲缘关系较近。虽然近年来宁夏水稻的遗传多样性有增加的趋势,但遗传基础狭窄,参试种质的相似系数在0.75以上,最高达0.97。应继续加大力度引进和创新亲本材料,拓宽宁夏水稻的遗传基础。  相似文献   

5.
河北区试小麦品种(系)DNA指纹图谱构建及遗传差异分析   总被引:2,自引:0,他引:2  
采用42个SSR标记为2009-2013年河北省区域试验的70份小麦品种(系)构建DNA指纹图谱,进行遗传差异分析,为小麦品种改良和种质资源创新提供参考。结果表明,42个SSR标记在70份品种(系)中共检测到303个等位变异,单个SSR位点的平均等位变异为7.21个,PIC值平均0.69;基因多样性平均0.73,遗传相似系数变化范围为0.05-1.00,平均0.28;表明参加河北省区域试验的品种(系)间存在不同程度的遗传差异。聚类分析把70份品种(系)划分为4大类,6个亚类,表明同一育种单位或地区品种(系)遗传背景相近,应该加大外来小麦种质资源的引进和利用力度。  相似文献   

6.
利用 NCBI 上提供的8 188 条蝴蝶兰 EST 序列开发 EST-SSR 引物,用来分析市场上较常见的 16 个蝴蝶兰栽培品种的遗传多样性。结果成功开发出了 9 对多态性引物,这 9 对引物在 16 个蝴蝶兰品种上共检测出 45 个等位基因,每对引物可检测等位基因2 ~ 12 个,平均为 5 个;SSR 引物多态性信息量 (PIC) 变化范围为 0.527 ~ 0.981,平均为 0.755;16 个蝴蝶兰品种间的遗传相似系数在 0.550 ~ 0.875 之间,平均值为 0.728,表明供试品种间的亲缘关系较近。UPGMA 聚类分析结果表明,在遗传相似系数为 0.73 处可将 16 个蝴蝶兰品种分为四大类,第Ⅰ类包括满天红、巨宝红玫瑰等 10 个品种,第Ⅱ类包括夕阳红、富乐夕阳、昌新皇后和新原美人 4 个品种,第Ⅲ类包括萨拉黄金 1 个品种,第Ⅳ类包括台湾阿妈 1 个品种,聚类结果与花色特征比较一致。该研究结果对蝴蝶兰品种选育有一定参考价值。  相似文献   

7.
根据已发表的麦族植物体Psy基因序列的保守区设计引物PsyO2,克隆小麦Psy基因(片段)。结果表明,PsyO2引物的扩增产物出现2种带型:196bp和233bp,序列分析表明两条特异条带涵盖了小麦Psy基因第2外显子全部序列,相差的37bp为Psy基因第2内含子中的一段插入序列,可反映不同黄色素含量(YPC),属小麦风,,基因的等位变异。验证试验表明,248份小麦微核心种质中有153份材料(占样品数的65.7%)扩增出196bp条带,群体内YPC均值7.314mg kg^-1,属高YPC范畴;另有95份材料(占样品总数的38.3%)扩增出233bp条带,群体内YPE均值为5.207mg kg^-1,属低YPC范畴,方差分析表明二者YPC差异达1%极显著水平差异,说明上述37bp的插入序列是导致小麦品种间YPC产生差异的原因之一,因此该引物扩增的Psy基因对小麦YPC具有显著影响,引物PsyO2是对小麦YPC进行分子鉴定的重要标记。  相似文献   

8.
梨砧木种质资源的SSR遗传多样性分析   总被引:1,自引:0,他引:1  
用9对SSR特异性引物对74份梨砧木种质资源进行遗传多样性分析,结果表明:9对SSR引物扩增得到57个等位基因,平均6.33个,可以区分除K11、K12、杜梨-13和杜梨-15以外的70份梨资源样本。聚类分析结果显示,74份样本的相似系数的变化范围为0.41~1.00,表现出较高的遗传多样性。供试品种在相似系数0.67处被分为7大类群,与品种的系谱来源和地理分布基本吻合。  相似文献   

9.
为解决DUS测试中特异性测试近似品种筛选难的问题,本研究基于2256份DUS测试小麦已知品种构建DNA指纹数据库。首先利用81对SSR引物对96份小麦品种进行遗传相似度分析。结果表明,81对SSR引物扩增出84个位点,共检测到731个等位变异,每个位点的等位变异数在3~18之间,多态性信息指数(PIC)变化范围为0.29~0.89。选取42个SSR标记构建了2256份小麦品种DNA指纹数据库,共获得148493个数据,除引物barc14、xgwm341之外,其他引物数据缺失率在5%以内。对176份小麦品种进行DNA指纹数据采集和特异性测试,结果表明不具有特异性的申请品种与其最近似品种的遗传相似度都在90%以上;本研究基于42对SSR荧光标记引物构建了我国小麦DUS测试已知品种的DNA指纹数据库,确定近似品种筛选的遗传相似度阈值为80%,建议将与申请品种遗传相似度高于80%的已知品种作为近似品种进行田间种植和特异性评价。  相似文献   

10.
宁夏杂草稻的遗传多样性及其亲缘关系分析   总被引:1,自引:0,他引:1  
以宁夏杂草稻、选育品种、地方品种共143份水稻种质为试验材料,进行主要农艺性状的的表型鉴定评价,并利用24对SSR引物进行不同类型水稻种质的遗传多样性比较、遗传相似性和聚类分析。表型评价表明,宁夏杂草稻表现为矮秆和早熟,表型变异范围较大;多数杂草稻种皮呈红色,颖壳呈秆黄色,均落粒。SSR标记分析结果,共检测到141个等位基因,每个位点等位基因数目变异在3~11个,平均为5.8333个;Nei's基因多样性指数变幅为0.2241~0.8065,平均为0.5219。杂草稻种质的等位基因数、有效等位基因数、Shannon指数均高于选育品种和地方品种。在不同来源杂草稻群体中,来自吴忠和永宁东河的杂草稻Nei's基因多样性指数最高,分别为0.4912和0.4814,而来自青铜峡的杂草稻Nei's基因多样性指数最低,为0.2802。相似性分析表明,杂草稻与地方品种高度相似,相似系数高达0.9585,而杂草稻与选育品种的相似性较低,其相似系数为0.4584;选育品种与地方品种的相似系数只有0.3560。聚类分析表明,参试材料分为3个类群,其中选育品种单独聚类于第Ⅰ类群,其遗传背景明显区别于杂草稻和地方品种;第Ⅱ类包括大部分杂草稻和地方品种,不同来源杂草稻及地方品种间分布比较均匀;第Ⅲ类是由小部分杂草稻和地方品种组成。宁夏杂草稻的分布没有明显的区域性,宁夏杂草稻与地方品种高度融合且遗传相似性很高。  相似文献   

11.
A set of 41 wheat microsatellite markers (WMS), giving 42 polymorphic loci (two loci on each chromosome), was used to describe genetic diversity in a sample of 559 French bread wheat accessions (landraces and registered varieties) cultivated between 1800 and 2000. A total of 609 alleles were detected. Allele number per locus ranged from 3 to 28, with a mean allele number of 14.5. On the average, about 72% of the total number of alleles were observed with a frequency of less than 5% and were considered to be rare alleles. WMS markers used showed different levels of gene diversity: the highest PIC value occurred in the B genome (0.686) compared to 0.641 and 0.659 for the A and D genomes, respectively. When comparing landraces with registered varieties gathered in seven temporal groups, a cluster analysis based on an F st matrix provided a clear separation of landraces from the seven variety groups, while a shift was observed between varieties registered before and after 1970. There was a decrease of about 25% in allelic richness between landraces and varieties. In contrast, when considering only registered varieties, changes in diversity related to temporal trends appeared more qualitative than quantitative, except at the end of the 1960s, when a bottleneck might have occurred. New varieties appear to be increasingly similar to each other in relation to allelic composition, while differences between landraces are more and more pronounced over time. Finally, considering a sub-sample of 193 varieties representative of breeding material selected during the twentieth century by the six most important plant breeding companies, few differences in diversity were observed between the different breeding programmes. The observed structure of diversity in French bread wheat collections is discussed in terms of consequences, both for plant breeders and for managers of crop genetic resources.Communicated by H.H. Geiger  相似文献   

12.
13.
Genetic variation present in 64 durum wheat accessions was investigated by using three sources of microsatellite (SSR) markers: EST-derived SSRs (EST-SSRs) and two sources of SSRs isolated from total genomic DNA. Out of 245 SSR primer pairs screened, 22 EST-SSRs and 20 genomic-derived SSRs were polymorphic and used for genotyping. The EST-SSR primers produced high quality markers, but had the lowest level of polymorphism (25%) compared to the other two sources of genomic SSR markers (53%). The 42 SSR markers detected 189 polymorphic alleles with an average number of 4.5 alleles per locus. The coefficient of similarity ranged from 0.28 to 0.70 and the estimates of similarity varied when different sources of SSR markers were used to genotype the accessions. This study showed that EST-derived SSR markers developed in bread wheat are polymorphic in durum wheat when assaying loci of the A and B genomes. A minumum of ten EST-SSRs generated a very low probability of identity (0.36×10−12) indicating that these SSRs have a very high discriminatory power. EST-SSR markers directly sample variation in transcribed regions of the genome, which may enhance their value in marker-assisted selection, comparative genetic analysis and for exploiting wheat genetic resources by providing a more-direct estimate of functional diversity. Received: 19 December 2000 / Accepted: 17 April 2001  相似文献   

14.
Analysis of genetic diversity changes in existing gene pools of cultivated crops is important for understanding the impact of plant breeding on crop genetic diversity and developing effective indicators for genetic diversity of cultivated plants. The objective of this study was to assess genetic diversity changes in 75 Canadian hard red wheat (Triticum aestivum L.) cultivars released from 1845 to 2004 using 31 simple sequence repeats (SSRs) markers. A total of 267 SSR alleles were detected, and their allelic frequencies ranged from 0.01 to 0.97, with an average of 0.14. Significant allelic reduction was observed at only four SSR loci for the cultivars released from 1970 onwards. However, 51 alleles (about 19%) present in pre-1910 cultivars were undetected in cultivars released after 1990 and were spread over 27 SSR loci. The proportion of SSR variation accounted for by six breeding periods was 12.5%, by four ancestral families, 16.5%, and by eight breeding programs, 8.4%. The average genetic diversity measured by three different band-sharing methods did not change significantly among cultivars released from different breeding periods, breeding programs, and ancestral families. However, genetic shift was obvious in the cultivars released over the six breeding periods, reflecting well the various breeding efforts over years. These results clearly show the allelic reduction and genetic shift in the Canadian hard red spring wheat germplasm released over time. Consequently, more effort needs to be made to broaden the wheat breeding base and conserve wheat germplasm.  相似文献   

15.
Haplotype diversity of preharvest sprouting QTLs in wheat.   总被引:3,自引:0,他引:3  
Preharvest sprouting (PHS) is one of the most important factors affecting wheat production worldwide in environments characterized by rainfall and high humidity at harvest. In such environments, the incorporation of seed dormancy of a limited duration is required to minimize losses associated with PHS. A global collection of 28 PHS-resistant and -susceptible wheat germplasm was characterized with microsatellite markers flanking the genomic regions associated with PHS-resistance quantitative trait loci (QTLs), particularly on chromosomes 3D and 4A. The genetic diversity analysis revealed 380 alleles at 54 microsatellite loci, with an average of 7.0 alleles per locus, among the 28 wheat genotypes. Gower's genetic similarity values among all possible pairs of genotypes varied from 0.44 to 0.97, indicating that there is considerable diversity in the PHS germplasm evaluated. Cluster and principal coordinates analysis of genetic similarity estimates differentiated the genotypes into groups, according to their source of PHS resistance. Three major SSR haplotypes were observed on chromosome 4AL, designated RL4137-type allele, Aus1408-type allele, and synthetic-hexaploid-type allele. The RL4137-type allele was prevalent in Canadian cultivars, mostly in cluster 6, followed by the Aus1408-type and its derivatives in clusters 4 and 5. The Syn36 and Syn37 alleles on chromosome 4AL were rare. On chromosome 3DL, the SSRs haplotypes derived from Syn36 and Syn37 were also rare, and proved unique to the Aegilops tauschii - derived synthetic hexaploids. They are therefore likely carrying resistance genes different from those previously reported. Based on genetic relationships, PHS resistance might be improved by selecting parental genotypes from different clusters.  相似文献   

16.
SSRs derived from EST were molecular markers belonging to the transcribed region of the genome. Therefore, any polymorphism detected using EST-SSRs might reflect the better relationship among species or varieties. Using wheat EST-SSR markers, 60 durum wheat (Triticum durum L.) accessions from seven countries were investigated. Twenty-five primer pairs could amplify successfully in the 60 durum wheat accessions, of which tri-nucleotide repeats were the dominant type, and revealed 26 loci on all seven wheat homologous chromosome groups. A total of 87 eSSR alleles were detected, and the number of alleles detected by a single pair of primers ranged from 1 to 11, with an average of 3.3 alleles per locus. Higher numbers of alleles and PIC were identified on the B genome than those on the A genome.  相似文献   

17.
In recent years, Jerusalem artichoke has received widespread attention as a novel source of sugar, biofuel, and animal feed. Currently, only few gDNA-SSRs derived from sunflower were verified in the Jerusalem artichoke; therefore, it is particularly important to develop SSR primer markers that belonged to Jerusalem artichoke resources. Using EST data to develop EST-SSR markers is simple and effective. In order to understand the general characteristics of SSR markers in Jerusalem artichoke EST sequences and accelerate the use of SSR markers in Jerusalem artichoke research. This study used 40,370 sequenced unigene fragments and MISA software to identify SSR loci. The 48 pairs of EST-SSR primers assessed for the identification of 45 varieties of Jerusalem artichoke. Cluster, genetic diversity parameters and AMOVA analysis was conducted using the genetic similarity coefficient, revealing genetic differences between 48 genetic material. A total of 1204 SSR loci were identified with 13 different types of repeats, distributed among 1020 EST sequences, of which trinucleotide repeats were the most common, accounting for 38.21% of the total SSR loci. Among the 44 repeat motifs, AG/CT, AAG/CTT, and ATC/ATG motifs had the highest frequencies, accounting for 22.45, 14.71, and 7.84% of all motifs, respectively. From these sequences, 48 pairs of EST-SSR primers were designed, and 22 primer pairs for loci with high polymorphism were selected to analyze the genetic diversity of 45 Jerusalem artichoke germplasm sources. The results indicated that the variation range of the effective number of alleles for 22 primers ranged between 1.7502 and 4.5660. The Shannon’s information index ranged between 0.6200 and 1.6423. The variation range of PIC ranged between 0.3121 and 0.6662 with an average of 0.5184. Cluster analysis was conducted using the genetic similarity coefficient, revealing significant genetic differences between Asian and European genetic material. Cluster analysis revealed a relationship between the genotypes and geographic origins of the Jerusalem artichoke. The results of AMOVA as well as the genetic identity and genetic distance in the Jerusalem artichoke population showed that there presented certain genetic heterogeneity in Jerusalem artichoke genetic structure of 45 samples from seven different geographic populations. The Jerusalem artichoke EST-SSR marker system established in this study provides an effective molecular marker system for future research focused on Jerusalem artichoke genetic diversity and the breeding of new varieties.  相似文献   

18.
EST derived SSR markers for comparative mapping in wheat and rice   总被引:18,自引:0,他引:18  
Structural and functional relationships between the genomes of hexaploid wheat (Triticum aestivum L.) (2n=6x=42) and rice (Oryza sativa L.) (2n=2x=24) were evaluated using linkage maps supplemented with simple sequence repeat (SSR) loci obtained from publicly available expressed sequence tags (ESTs). EST-SSR markers were developed using two main strategies to design primers for each gene: (1) primer design for multiple species based on supercluster analysis, and (2) species-specific primer design. Amplification was more consistent using the species-specific primer design for each gene. Forty-four percent of the primers designed specifically for wheat sequences were successful in amplifying DNA from both species. Existing genetic linkage maps were enhanced for the wheat and rice genomes using orthologous loci amplified with 58 EST-SSR markers obtained from both wheat and rice ESTs. The PCR-based anchor loci identified by these EST-SSR markers support previous patterns of conservation between wheat and rice genomes; however, there was a high frequency of interrupted colinearity. In addition, multiple loci amplified by these primers made the comparative analysis more difficult. Enhanced comparative maps of wheat and rice provide a useful tool for interpreting and transferring molecular, genetic, and breeding information between these two important species. These EST-SSR markers are particularly useful for constructing comparative framework maps for different species, because they amplify closely related genes to provide anchor points across species.Communicated by R. Hagemann  相似文献   

19.
20.
The use of expressed sequence tag-simple sequence repeat (EST-SSR) markers might reflect the better relationship among species or cultivars than markers previously used. The first set of 30 EST-SSR was developed in hop (Humulus lupulus L.). They represent 25 gene loci with total of 1268 EST sequences. They were used for characterization of 11 hop samples and cross-amplification in Humulus japonicus Sieb. et Zucc. The number of alleles per locus ranged from two to nine. The observed and expected heterozygosities ranged from 0.182 to 0.956 and from 0.233 to 0.775, respectively. We used EST-SSR markers for cluster analysis of hop genotypes. Dendrogram well matched with genealogical and geographical data for hop genotypes.  相似文献   

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