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1.
利用79对SSR引物对黄淮麦区129份种质资源进行了分析。结果表明, 79对引物共检测到335个等位变异,每个引物检测到的等位变异数目2~8个,平均4.240个,变异最大的位点主要位于B组染色体上。79个SSR位点的遗传多态性信息含量在0.015~0.820之间,平均0.498。种质资源间的遗传相似系数在0.253~0.909之间,平均0.492。聚类分析把这些种质资源分为4大类和7个亚类。聚类结果与地域并不吻合,但能较好地反映出亲本的特性和其间的亲缘关系。关键词:黄淮麦区;小麦;种质资源;遗传多样性;SSR标记;聚类分析  相似文献   

2.
利用RAPD和SSR标记分析陆地棉种质资源的遗传多样性*   总被引:16,自引:0,他引:16  
遗传多样性的量化与分类是收集和利用种质资源的重要前提。利用随机扩增多态性(RAPD)和简单重复序列(SSR)两种分子标记对31份陆地棉(Gossypium hirsutum L.)种质资源进行了遗传多样性分析,其中14份材料最近从美国和伊朗引进。研究的目标是对这些陆地棉种质资源进行遗传聚类分析,为制定引进资源的利用策略提供参考。从有多态性的21个RAPD引物和18对SSR引物中共获得117个多态性位点。利用NTSYS-pc2.10统计分析软件,采用Jaccard′s相似系数UPGMA法进行聚类。结果表明,中国的17份材料部分聚为一类,国外的14份材料大部分聚为另一类,其它材料相间排列。分别对31份材料的相似系数与中国的17份材料的相似系数进行了比较分析,中国材料相对于新引进的国外材料的遗传多样性水平稍高,与国外材料之间的遗传差异较大。这说明扩大不同地区间种质资源的交流和引进种质资源可以丰富本地材料的遗传多样性。  相似文献   

3.
利用小麦SSR标记分析鸭茅种质资源的遗传多样性   总被引:2,自引:1,他引:1  
使用小麦(Triticum aestivum)SSR引物和扩增程序,以中国春小麦(T. aestivum)品种为对照,利用SSR标记对来自国内外的45份鸭茅(Dactylis glomerata L.)种质资源进行遗传多样性研究.结果表明,20对引物扩增出295个条带,多态性条带为187条,多态性条带比率为61.15%,鸭茅种质资源的遗传相似系数范围为0.7848~0.9513.聚类分析和主成分分析将供试材料分为6大类,聚类结果不仅能反映鸭茅生态适应性特征与其生长发育状况及生产性能相关,还显示出国产鸭茅品种遗传基础较为狭窄.研究表明将小麦SSR引物用于检测鸭茅遗传多样性行之有效.  相似文献   

4.
黄淮麦区部分小麦种质资源的遗传差异分析   总被引:10,自引:0,他引:10  
利用79对SSR引物对黄淮麦区129份种质资源进行了分析。结果表明,79对引物共检测到335个等位变异,每个引物检测到的等位变异数目2~8个,平均4.240个,变异最大的位点主要位于B组染色体上。79个SSR位点的遗传多态性信./010.015~0.820之间,平均0.498。种质资源间的遗传相似系数在0.253~0.909之间,平均0.492。聚类分析把这些种质45674大类和7个亚类。聚类结果与地域并不吻合,但能较好地反映出亲本的特性和其间的亲缘关系。  相似文献   

5.
山东省46个花生品种SSR指纹图谱构建与遗传多样性分析   总被引:2,自引:0,他引:2  
为从分子水平上快速鉴别花生品种和选配优良杂交组合,以山东省审定的46个花生品种为材料,利用微卫星(SSR)标记进行DNA指纹图谱的构建和遗传多样性分析。从788对SSR引物中筛选出50对多态性高、稳定性好、谱带清晰的引物,共检测到175个等位位点,其中122个为多态性位点,多态性比率达70.52%;每对SSR引物扩增出的等位位点数为2~7个,多态性信息量变化范围为0.6753~0.8412,平均为0.823。此外,利用14对引物可将46份材料完全区分开。聚类分析表明,在相似系数0.77处,所有供试材料聚为一类,在相似系数0.80处,仍有76%的材料聚在一起。利用SSR标记构建的指纹图谱可为花生种质资源管理及育种实践提供依据。  相似文献   

6.
为研究广西地方食用木薯材料的遗传多样性,以48份广西地方食用木薯为试验材料,分析其变异系数、遗传多样指数、聚类分析、多态性和遗传相似性系数。结果表明,收集的木薯材料的平均表型变异系数为37.9%,平均遗传多样性指数为0.807,其中主茎分叉角度的变异系数最大,为86.7%,块根内皮颜色的遗传多样性指数最大,为1.842。13对SSR引物共扩增出118个条带,其中多态性条带为106个,多态性比率为86.23%;分子标记聚类结果发现,遗传相似性系数在0.415~1.000之间;通过对比发现表型聚类和分子聚类结果不一致,其中表型聚类发现类群划分与地理来源之间没有关联,但与株型性状有一定的关联;在遗传相似系数为0.62时,SSR分子标记聚类为两类材料,第一类材料地理分布无规律,第二类材料大多分布在桂南。本研究结果表明,广西地方食用木薯资源遗传多样性具有一定的丰富度,可为创制优异食用木薯种质资源和新品种选育奠定基础。  相似文献   

7.
为确定不同青稞亲本材料间的遗传差异及连锁不平衡水平,以56个SSR分子标记对88份大麦进行多态性扫描。结果表明,88份材料中共检测出160个等位变异,平均每个标记2.857个,变幅为2~7。供试材料间的遗传相似系数为0.497~0.970,平均为0.761。基于多态性较好、基因多样性值较高的53个SSR标记分析结果,88份材料被分成2个类别。主坐标分析将青稞材料分成2类,分别包含39和47份材料,2份西藏品种ZDM5200和ZDM5457所属类别不明确。群体遗传结构分析将88份材料也分成2个亚群,分别包含40份和48份材料,与聚类分析和主坐标分析的结果较一致。1 378个SSR位点成对组合中,不论共线性组合还是非共线性组合,都存在一定程度的连锁不平衡(LD)。D'统计概率(P0.01)支持的LD成对位点179个,占全部位点组合的12.99%,D'平均值为0.56,较高水平的LD成对位点(D0.5)主要集中于除1H外的其余6个连锁群上。本研究结果为今后青稞杂交组合配置、有利基因发掘和标记辅助育种提供了理论依据。  相似文献   

8.
91份俄罗斯玉米自交系的遗传多样性分析   总被引:1,自引:0,他引:1  
为了有效提高俄罗斯玉米种质资源的利用效率,拓宽黑龙江省玉米自交系的遗传基础,利用SSR分子标记技术研究91份俄罗斯玉米自交系的遗传多样性,并对其进行聚类分析。结果表明,50个多态性SSR标记共检测到248个等位基因,平均4.96个;位点多态性信息指数(PIC)平均为0.67,表明俄罗斯玉米自交系的遗传多样性较为丰富。聚类分析(邻近法)结果将俄罗斯玉米自交系划分为8个类群,类群I占25.27%,兰卡斯特和瑞德群各占20.88%,旅大红骨和塘四平头分别占13.19%和9.89%;类群II、类群III和P群分别占4.40%、3.30%和2.20%。俄罗斯玉米自交系类群I种质资源较为丰富,可能与光温不敏感特性有关。在遗传多样性分析基础上,利用11个SSR标记构建了91份俄罗斯玉米自交系特异分子身份证,为黑龙江省玉米杂种优势利用及育种实践提供了科学依据。  相似文献   

9.
马铃薯遗传资源多样性的SRAP分析   总被引:4,自引:0,他引:4  
采用SRAP分子标记,对44份马铃薯品种的遗传多样性进行了分析。结果显示, 随机抽取27对SRAP引物,对基因组DNA进行特异扩增,其中23对引物扩增出多态性条带,共获得104个多态性条带, 多态性引物比率达85.2%, 平均每对引物产生4.5个多态性条带,表明SRAP标记具有较高的多态性比率。44份种质资源的SRAP标记遗传距离为0.147-0.741。当遗传距离D=0.67时,将44份种质资源分为四大类群,包括一个复合类群和三个独立类群。其中复合类群可进一步分为7个亚群。从而在DNA水平上证明了所研究马铃薯种质资源具有丰富的遗传多样性。  相似文献   

10.
尚小红  严华兵  曹升  肖亮  王艳  欧昆鹏 《核农学报》2019,33(7):1311-1317
为了解广西地方葛根种质资源之间的亲缘关系,本研究以SCoT分子标记对44份广西葛根种质资源的基因组DNA进行PCR扩增,并进行遗传多样性分析。结果表明,25条SCoT引物共扩增出223个条带,其中具有多态性的条带有194条,平均每条引物获得7.76个多态性条带,多态性比例为86.99%。聚类分析表明,44份葛根种质资源的遗传相似系数在0.587~0.982之间。在系数0.65处,44份葛根分为两大类,37号材料单独成为一类;在系数为0.74处,可聚为六类。综上所述,SCoT分子标记适用于葛根种质资源遗传多样性分析,本研究结果为广西葛根种质资源鉴定评价和新品种选育奠定了一定的理论基础。  相似文献   

11.
为探明山西芝麻种质资源的遗传特性,本研究利用30对简单重复序列标记(SSR)对71份山西芝麻种质资源进行遗传多样性分析及群体结构分析。结果表明,30对SSR标记共检测到144个等位基因位点,平均每个SSR标记4.800个等位基因;有效等位基因数在1.058~5.149之间,平均2.805个;Shannon指数变幅为0.128~1.813,平均为1.096;Nei's遗传多样性指数变幅为0.055~0.806,平均为0.558;多态性信息含量变幅为0.053~0.783,平均为0.515。基于SSR标记对参试材料进行聚类分析,遗传相似系数为0.21~0.67,在遗传相似系数0.27处将参试材料分为6个类群;基于SSR标记对参试材料进行群体结构分析,将参试材料划分为5个组群。综上所述,山西芝麻种质资源间遗传差异相对较高,具有丰富的遗传多样性,在今后芝麻种质资源创制利用中,加大山西芝麻种质资源的开发与利用,可为芝麻品种遗传改良和优异基因发掘奠定良好的基础。  相似文献   

12.
In the present study, analyses of SSR molecular markers were performed to investigate the genetic diversity of 133 tuber mustard cultivars. Eighty-one pairs of SSR primers from a total of 600 in Brassica produced stable amplified bands. In addition, 810 bands were detected among the cultivars, and 724 of those were polymorphic (89.38 %). The average number of bands per locus was 10.0 with a range from 5 to 16. Shannon’s information index for each SSR locus varied from 0.52 to 3.72, with an average of 2.74. The coefficients of genetic similarity in the SSR marker patterns among the 133 cultivars ranged from 0.77 to 0.91, with an average of 0.85. The cluster analysis showed that the cultivars could be classified into six clusters when the genetic similarity was 0.83, with 90.23 % of the cultivars included in Clusters 5 and 6. Principal component analysis was carried based on the SSR data. The results showed that the first three principal components could explain the genetic variation with 85.47, 0.67, and 0.61 %, and the 133 cultivars could be divided into six clusters according to the nearest phylogenetic relationship. It was indicated that the similarity was high and the genetic diversity was narrow among the 133 mustard tuber cultivars. 360 individuals from 24 cultivars were analyzed to reveal the genetic structure and genetic diversity within cultivars. A total of 925 alleles were detected in the 24 cultivars. Estimates of the mean number of alleles ‘A’, the effective allelic number ‘Ae’, the observed heterozygosity ‘Ho’, and expected heterozygosity ‘He’ were 6.0, 3.6, 0.64, and 0.37, respectively. An obvious genetic deviation from Hardy–Weinberg expectation was observed both among and within cultivars and a considerable genetic variation was revealed within rather than among cultivars. It is necessary to broaden the genetic basis of the breeding germplasm in tuber mustard. Based on their geographical distributions, the tuber mustard cultivars in this study can be divided into up-Yangtze river, mid-Yangtze river, and down-Yangtze river groups. Genetic diversity was highest in mid-Yangtze river group, followed by up-Yangtze river group, and then down-Yangtze river group. It was presumed that the origin center or genetic diversity center of tuber mustard was mid-Yangtze river, and the crop was transmitted along the Yangtze river in both directions.  相似文献   

13.
Brassica oleracea L. includes various types of important vegetables that show extremely diverse phenotypes. To elucidate the genetic diversity and relationships among commercial cultivars derived by different companies throughout the world, we characterized the diversity and genetic structure of 91 commercial B. oleracea cultivars belonging to six varietal groups, including cabbage, broccoli, cauliflower, kohlrabi, kale and kai-lan. We used 69 polymorphic microsatellite markers showing a total of 359 alleles with an average number of 5.20 alleles per locus. Polymorphism information content (PIC) values ranged from 0.06 to 0.73, with an average of 0.40. Among the six varietal groups, kohlrabi cultivars exhibited the highest heterozygosity level, whereas kale cultivars showed the lowest. Based on genetic similarity values, an UPGMA clustering dendrogram and a two-dimensional scale diagram (PCoA) were generated to analyze genetic diversity. The cultivars were clearly separated into six different clusters with a tendency to cluster into varietal groups. Model-based structure analysis revealed six genetic groups, in which cabbage cultivars were divided into two subgroups that were differentiated by their head shape, whereas cauliflower and kai-lan cultivars clustered together into a single group. Furthermore, we identified 18 SSR markers showing 27 unique alleles specific to only one cultivar that can be used to discriminate 22 cultivars from the others. Our phylogenetic and population structure analysis presents new insights into the genetic structure and relationships among 91 B. oleracea cultivars and provides valuable information for breeding of B. oleracea species. In addition, we demonstrate the utility of SSR markers as a powerful tool for discriminating between the cultivars. The SSR markers described herein will also be helpful for Distinctness, Uniformity and Stability (DUS) test of new cultivars.  相似文献   

14.
基于SSR标记的梨资源遗传多样性分析   总被引:5,自引:1,他引:4  
本研究利用SSR标记技术对56份梨资源进行了遗传多样性分析。利用筛选出的6对SSR引物共扩增40条谱带,其中多态性位点38个,多态性位点比例为95%,每对引物产生有效等位基因6.3个。各位点期望杂合度H值在0.0354~0.491,平均为0.1964;有效等位基因Ne值在1.0367~1.9648,平均值为1.2958;香农指数I值平均值为0.3256,说明了供试梨材料的遗传多样性较低。利用SSR标记可将44个栽培品种区分开,但无法区分芽变和原种。根据SSR标记揭示的多态性,采用NTSYS-pc软件,以UPGMA法进行聚类分析,结果显示所检测的56份梨材料在相似系数0.71处可分为4组,其中中国的白梨、秋子梨和砂梨相互交错在一起,没有独自各自成组。  相似文献   

15.
根据本实验室已获得的荔枝果皮cDNA文库EST序列,通过SSRIT在线检索,从3391条EST序列中,发现305条含有SSR,占整个文库EST的8.99%。利用SSR-ESTs序列共设计100对EST-SSR引物,其中62对在荔枝上有扩增产物,50对有扩增多态性,即具有一定的通用性。接着从96份荔枝种质中选取12个品种的基因组DNA,开展核心引物筛选,共筛选出多态性较好的EST-SSR分子标记30个;这30个EST-SSR分子标记在96份资源共扩出284条带,不同引物的扩增条带在3~18条之间,平均9.47条,其中有282条为多态性带,多态率高达99.30%,每对引物的Nei's基因多样度范围为0.186~0.396,香农信息指数范围为0.318~0.558;此外,系统聚类分析结果表明,在相似系数0.5525处,可将96份荔枝种质资源分成了8大类群,该8大类群基本与其生态类型和植物学性状特征相符。在此基础上,还对荔枝的主栽品种和特殊种质进行鉴别,结果表明,该30个EST-SSR分子标记在不同品种间可产生较清晰可辨的多态性差异,为荔枝品种以及种质资源鉴别和鉴定的分子指纹的构建奠定了良好基础。  相似文献   

16.
Breeding progress in black raspberry (Rubus occidentalis L.) has been limited by a lack of genetic diversity in elite germplasm. Black raspberry cultivars have been noted for showing very few phenotypic differences and seedlings from crosses between cultivars for a lack of segregation for important traits. Despite these challenges, little molecular work has been done to explore genetic diversity and relationships in wild and cultivated black raspberry germplasm. Microsatellite, or simple sequence repeat (SSR), markers are highly polymorphic codominant markers useful for studying genetic diversity, population genetics, genetic fingerprinting and other applications. We examined genetic diversity in 148 wild and cultivated black raspberry accessions using 21 polymorphic SSR markers. Black raspberry cultivars clustered tightly and showed higher than expected heterozygosity while that of wild accessions was low. Relationships between wild black raspberry accessions were poorly resolved and regional clusters were mostly absent from our analysis. Our results indicated that wild black raspberry germplasm is a relatively untapped resource available for future breeding.  相似文献   

17.
我国部分冬小麦新品种(系)SSR标记遗传差异的研究   总被引:31,自引:0,他引:31  
本研究利用53对SSR引物对全田1999-2000年北方冬麦区及黄淮冬麦区观察圃中选出的48个新品种(系)进行遗传差异研究,共检测出58个SSR位点上的367个等位变异,平均每个位点有6.33个等位变异,其中B组每个位点的等位变异最多,这表明B基因组化更快,分化更大。48个品种(系)在全基因组及A、B、D基因组聚类结果表明这些品种的相似系数聚类的范围较小,为0.75-0.98。全基因组聚类结果与品种的系谱来源及育成地区相吻合。研究结果表明我国冬小麦品种的种质基础相对较狭窄。加强不同来源种质的利用和特异亲本类型的培育对我国冬小麦遗传改良非常重要,利用5个多态性高的SSR标记就可以将这48个小麦新品种(系)区分开,每个品种(系)都有各自独特的指纹图谱。  相似文献   

18.
Genetic diversity is an area of concern for sustaining crop yield. Information on genetic relatedness/diversity among Gossypium arboreum L. cultivars/genotypes is scanty. We have used random amplified polymorphic DNA (RAPD) analysis to assess the genetic divergence/relationship among 30 genotypes/cultivars of G. arboreum. Of 45 primers surveyed, 63% were polymorphic. Out of the total number of loci amplified, 36% were polymorphic. The calculated genetic similarity between the cultivars/genotypes was in the range of 47.05–98.73%. Two genotypes, HK-244 and Entry-17, were the most distantly related. The average genetic relatedness among all the genotypes was 80.46%. However, most of the cultivated varieties showed a close genetic relationship, indicating a narrow genetic base in comparison to the non-cultivated germplasm. The calculated coefficients were used to construct a dendrogram using the unweighted pair group of arithmetic means (UPGMA) algorithm, which grouped the genotypes/cultivars into two major and three smaller clusters. The study is the first comprehensive analysis of the genetic diversity of G. arboreum germplasm and identifies cultivars that will be useful in extending the genetic diversity of cultivated varieties and future genome mapping projects.  相似文献   

19.
SSR标记的彩色马铃薯遗传多样性分析及指纹图谱构建   总被引:1,自引:0,他引:1  
彩色马铃薯(指块茎的皮或肉为红、蓝、紫、橙色等)近年来日益为育种工作者所关注,很多彩色马铃薯品种(系)从形态学上难以鉴定是否为同一基因型,给育种工作带来诸多不便。本研究利用SSR标记对50份彩色马铃薯(Solanum tuberosumL.)材料进行了遗传多样性分析及指纹图谱构建。研究筛选出56对马铃薯SSR引物,对50份材料的基因组DNA进行PCR扩增,共检测出236个等位位点,其中多态性位点230个,多态性比率达97.46%。分析显示,基因型间遗传相似性系数在0.50~1.00之间。UPGMA聚类分析表明,在相似系数0.63处可将全部材料分为3大类。利用5对核心引物构建了50份供试材料的指纹图谱,并证明其属于44个基因型的,为彩色马铃薯资源鉴定和利用提供了依据。  相似文献   

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