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1.
采用SSR技术对黄淮麦区以1B/1R类品种为抗源育成的38个小麦品种进行聚类分析。39个SSR引物共扩增出186条谱带,其中143务为多态性条带,占76.9%。每个引物可扩增出1~9条多态性条带,平均3.7条。位点多态性信息含量PIC变幅为0.320-0.857,平均为0.634。聚类分析表明,在遗传距离GD值0.32水平上38个小麦品种可聚成六大类。品种间遗传距离GD变幅为0.10769~0.48571。SSR标记揭示出这38个具有黑麦血缘的小麦品种遗传变异较小,遗传基础比较狭窄。  相似文献   

2.
为了揭示河北省绿子叶黑豆种质资源的遗传多样性,为其研究利用提供理论根据,以46份原产河北省的绿子叶黑豆种质资源为试验材料,对其基于表型性状及ISSR标记鉴定结果进行了聚类分析,结果表明:7个ISSR引物共检测出60个等位变异,平均每个位点有8.6个等位变异,变幅为5~17个;ISSR引物的多态性信息量PIC变幅为0.721~0.927,平均0.820;利用表型性状和ISSR标记数据进行品种间遗传多样性分析,遗传相似系数变化范围分别为0.07~0.53和0.43~1.00,平均为0.284和0.704,遗传相似性变幅较大,河北省不同绿子叶黑豆品种间存在着丰富的遗传多样性。聚类结果显示,类群与品种来源地有关。  相似文献   

3.
利用SRAP和ISSR分子标记,研究了14份耐盐茄子种质资源的遗传多样性,结果表明,2种标记均能揭示材料间较高的遗传多样性,其中ISSR标记多态性略高于SRAP标记。在SRAP分析中,每对引物组合可扩增出8-15条DNA片段,平均为12.12条:26对SRAP引物组合共扩增出315条DNA片段,其中263条具有多态性,多态性比率为83.49%;材料间遗传相似系数变化范围为0.212~0.923,平均值为0.755。在ISSR分析中,每个引物可获得5~16条DNA片段,平均为10.87条;15个ISSR引物共扩增出163条DNA片段,其中141条具有多态性,多态性比率为86.50%;材料间遗传相似系数变幅为0.333-0.957,平均值为0.736。聚类分析表明,2种标记都能将供试材料完全区分开来,聚类结果具有一定的相似性,但也存在明显差异。Mantel相关分析表明,SRAP分析与ISSR分析的相关性达到极显著性水平(r=0.904,P〈0.01)。  相似文献   

4.
30个粳稻品种SSR标记遗传多样性分析   总被引:12,自引:2,他引:10  
选用分布于水稻12条染色体上的64对SSR引物,对江苏省育成以及日本引进的粳稻品种共30份材料进行遗传多样性分析。结果表明,有50对SSR引物在30个品种间表现为多态性。共检测到140个等位基因,每对引物的等位基因数变幅为2~5个,平均为2.8个。有效等位基因为94.336个,平均为1.887。每个SSR位点的多态性信息量(PIC)变化范围为0.064~0.752,平均为0.410。30个品种间的遗传相似系数变幅为0.386~0.956之间,平均值为0.719,且81.4%的供试品种其遗传相似系数在0.600~0.800之间,亲缘关系较近;以遗传相似系数为原始数据,按UPGMA方法将30个品种划分为3大类群,结合系谱分析结果表明,江苏省育成的水稻品种遗传多样性不够丰富,多数品种间的亲缘关系较近,欲进一步提高江苏省水稻产量还需拓宽亲本选择范围,扩大遗传背景。  相似文献   

5.
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   

6.
47份水稻品种资源的ISSR遗传多样性分析   总被引:6,自引:0,他引:6  
为研究广东省惠州市种植的常规水稻品种的遗传多样性,本实验利用ISSR标记对47份水稻品种资源进行遗传多样性检测.从49条引物中筛选出5条重复性好,条带清晰的引物进行PCR扩增,共扩增出53条带,每个引物可以扩增出9~13条带,平均为10.6条,其中47条具有多态性,比率为88.7%.不同水稻品种间遗传相似系数变幅为0.319~0.936,平均达0.691,说明ISSR标记能够揭示材料间较高的遗传多样性.通过聚类,从分子水平对水稻品种资源的遗传关系进行分析,并对47份水稻品种资源进行分类,ISSR标记能将47份水稻品种完全区分开,为水稻品种资源的研究利用提供参考.  相似文献   

7.
24个菊芋品种(系)遗传多样性的ISSR标记分析   总被引:2,自引:0,他引:2  
利用ISSR分子标记技术研究了来源于国内外不同区域的24个菊芋(Helianthus tuberosus Linn.)品种(系)的遗传多样性,并结合块茎特征采用聚类分析法探讨了它们的遗传关系。结果表明:用16条ISSR引物从24个品种(系)的基因组DNA共扩增出242条带,包含228条多态性条带,多态性条带百分率达94.2%,其中7条引物的多态性条带百分率达100.0%。各品种(系)间的遗传距离为0.19~1.01,遗传距离平均值为0.45。聚类分析结果显示:在遗传相似系数0.68处可将24个品种(系)划分为5类,第1类仅包含‘青芋1号’(‘Qingyu No.1’),第Ⅱ类仅包含W12,第Ⅲ类包含W30、W42、‘青芋2号’(‘Qingyu No.2’)、W09、W18、W26和WSl,第Ⅳ类包含W06和W84,第V类包含‘青芋3号’(‘Qingyu No.3’)、w23、W36、W43、W54、W75、WS0、W62、W64、W79、S150、S138和W66;多数块茎特征相似的品种(系)被聚在一起,但也有部分块茎特征不同的品种(系)被聚在同一类中;部分品种(系)的聚类分析结果与其形态分类结果及地理分布不一致。研究结果表明:供试的菊芋品种(系)具有较高的遗传多样性,存在着较为频繁的基因交流;基于ISSR标记分析能较准确地揭示出菊芋品种(系)间的遗传多样性。  相似文献   

8.
利用79对多态性较高的SSR引物,对河北省1997-2007年间审定的冬小麦品种及国家小麦区试抗旱对照品种晋麦47和洛旱2号,共计87个冬小麦品种进行遗传多样性分析。79对SSR引物共检测出175个等位变异位点,每对引物可产生1~6条等位变异位点,平均2.215条。标记位点多态性信息含量(PIC)变幅为0.824~0.998,平均为0.941;有效等位基因数(Ne)变幅为1.644~20.333,平均4.708;香农指数(H’)变幅为0.148~1.102,平均为0.544,说明河北省冬小麦品种SSR遗传多样性较低。品种间遗传相似系数(GS)变幅为0.184~0.899,平均为0.418,其中河农826与石家庄8号间的遗传相似性最高,GS高达0.899,71-3与藁优9618间的遗传相似性最低,GS为0.184。不同育种单位培育的小麦品种平均遗传相似系数存在较大差异。UPGMA遗传相似性聚类表明,石家庄市小麦新品种新技术研究所培育的小麦品种与其他单位品种存在较大的遗传差异。  相似文献   

9.
河北省大豆推广品种遗传多样性分析   总被引:7,自引:2,他引:5  
利用主要农艺性状以及SSR和AFLP2种分子标记,对河北省41个大豆推广品种进行遗传多样性分析,以便为种质资源利用和创新提供依据。农艺性状聚类结果将41个材料划分为3个类群和2个特殊品种,聚类结果与材料系谱来源相差悬殊,不能反映材料间亲缘关系。SSR和AFLP数据聚类结果将41个材料划分为4个SAG(SSR and AFLP—basedgroups)分子类群。30对SSR引物共检测出135个等位变异,平均每个位点上有4.47个等位变异,SSR的遗传多样性指数(Simpson)分布范围为0.0928~0.7800,平均值为0、6442。10对AFLP引物共扩增出93个多态性标记,平均每对引物9.3个多态性标记。品种间的遗传相似系数(GS)变化范围为0.5877~0.9868,平均值变化范围为0.6732~0.7653,总体平均值为0.7237,遗传相似系数较高,说明材料间遗传变异较小。  相似文献   

10.
我国陆地棉基础种质遗传多样性的SSR分子标记分析   总被引:19,自引:1,他引:18  
陈光  杜雄明 《遗传学报》2006,33(8):733-745
利用398对BNL、JESPR、TMB等SSR引物,对不同亲本来源、不同选育时期、不同种植生态区的43份陆地棉基础种质进行了遗传多样性的SSR分子标记分析。扩增产物用8%的非变性聚丙烯酰胺凝胶检测,银染观察并照相。遗传多样性带型分析按位点多态信息量(PIC),Shannon-weaver多样性指数(H^+)等方法,利用NTSYSpc2.1软件计算品种间的遗传相似系数(Jaccard系数),并用类平均法(UPGMA)进行聚类。结果表明所选择多态性引物分布在棉花基因组的第3、4、5、8、9、10、16、18、20、23号等染色体上,36对多态性引物在基础种质中扩增等位基因130个,其中多态性等位基因占80%,每个引物扩增等位基因2~8个,平均3.6个,PIC为0.278~0.865,平均0.62,基因型多样性(H^+)为0.451~2.039,平均1.102,基础种质问SSR遗传相似系数平均为0.610,变幅为0.409~0.865,这说明所选基础种质基因组水平的多样性较丰富,变化范围大、代表性强。按品种不同选育时期来讲,第一、二、三期基础种质的SSR分子标记平均遗传相似系数分别是0.587、0.630、0.630,说明现代基础种质比早期基础种质在基因组水平的差异呈下降的趋势,可能是由于育种者偏重于使用优质高产性状的亲本品种,致使我国棉花的育种基础逐渐变窄。不同棉区基础种质SSR标记性状差异大,北部特早熟棉区基础种质间的SSR标记的多样性大于黄河、长江棉区,主要原因是长江、黄河棉区的育种过分强调高产、优质品种选育,品种间的差异变小;基础种质中的国内品种SSR相似系数(0.624)比引进品种(0.85)高,说明国内品种在遗传多样性上目前还没有超越国外品种。总之,我国棉花现代基础种质比早期基础种质的遗传多样性呈下降的趋势,黄河、长江主产棉区基础种质的遗传多样性还没有超过国外基础种质,品种间的遗传背景较为狭窄,还必须采用多种途径丰富我国棉花种质资源的遗传多样性。  相似文献   

11.
Olea europaea L. is one of the most economically important crops in the Mediterranean area, and known for having large genetic variability. In order to assess the genetic diversity, DNA from 41 olive cultivars, present in the protected denomination of origin (PDO) region of Trás-os-Montes, was screened using inter simple sequence repeat (ISSR) and microsatellite (SSR) markers. Eleven ISSR primers amplified 135 reproducible bands of which 108 were polymorphic. The percentage of polymorphic bands detected by ISSR was 79%. The highest number of polymorphic bands was obtained by the use of primers UBC807 (15) and UBC809 (16). A total of 67 alleles were detected by six SSR primers, with an average of 11 alleles per primer. The number of alleles per locus ranged from five (ssrOeUaDCA05) to 15 (ssrOeUaDCA03). The observed heterozygosity ranged from 0.219 (ssrOeUaDCA05) to 0.900 (ssrOeUaDCA04), while the expected heterozygosity varied between 0.426 (ssrOeUaDCA05) and 0.887 (ssrOeUaDCA03). The polymorphism information content (PIC) values ranged from 0.392 (ssrOeUaDCA05) to 0.863 (ssrOeUaDCA03). The collection of primers selected gave a reasonable number of amplification products for the genetic diversity analysis. Based on the results, the genetic diversity among 41 olive cultivars is discussed. This study reveals the great importance of guaranteeing the differentiation of olive cultivars and their application for certification purposes.  相似文献   

12.
利用小麦SRAP标记对22个河南省小麦品种进行了遗传多样性分析,10对引物组合扩增获得169个条带,其中70个条带具有多态性,多态条带百分率为41.42%,每对引物平均产生7个多态性条带。22个供试材料的带型按照条带的有,无分别记录为1,0后,采用Nei 72方法计算不同品种的遗传距离,利用NTSYS软件进行非加权成组法(UPGMA)进行了聚类分析。结果表明SRAP标记技术能较真实地反映小麦品种间的亲缘关系,可以用于小麦品种遗传多样性的研究。  相似文献   

13.
利用SRAP标记分析河南小麦栽培品种的遗传多样性   总被引:8,自引:3,他引:5  
利用小麦SRAP标记对22个河南省小麦品种进行了遗传多样性分析,10对引物组合扩增获得169个条带,其中70个条带具有多态性,多态条带百分率为41.42%,每对引物平均产生7个多态性条带。22个供试材料的带型按照条带的有、无分别记录为1、0后,采用Nei72方法计算不同品种的遗传距离,利用NTSYS软件进行非加权组法(UPGMA)聚类分析。结果表明SRAP标记技术能较真实地反映小麦品种间的亲缘关系,可以用于小麦品种遗传多样性研究。  相似文献   

14.
Phenotypic characters and ISSR markers in forty nine potato onion cultivars (Allium cepa L. var. aggregatum G. Don) were investigated. Twenty three phenotypic characters, including sprouting time, plant height, spherical index, and yield, were investigated. Cluster analysis separated forty nine cultivars into five groups (D = 0.52). 143 polymorphic amplified bands, with an average of 8.41 polymorphic bands per primer, were obtained from seventeen ISSR primers. The number of polymorphic bands detected with each primer ranged from 6 to 12, with an average of 8.82. The percentage of polymorphisms was 93.5%. Genetic similarity varied from 0.4969 to 0.8616, the average value of the effective number of alleles, Nei's genetic diversity and Shannon's information index was 1.4716, 0.3072 and 0.4590, respectively. Forty nine varieties were classified into six groups according to the ISSR (D = 0.72). These results showed that two methods combined were accuracy for characterization of the genetic diversity and identification of potato onion cultivars.  相似文献   

15.
Retrotransposon-based markers, such as the inter-retrotransposon-amplified polymorphism (IRAP) and the retrotransposon microsatellite-amplified polymorphism (REMAP) are highly informative, multilocus, and reveal insertional polymorphisms among plant individuals. These markers have been used for evolutionary studies, genetic diversity assessment, DNA fingerprinting, genetic mapping linkage, and for the detection of genetic rearrangements induced by polyploidization. In this study, we used IRAP and REMAP markers to assess the genetic diversity among 51 old Portuguese durum wheat cultivars belonging to 27 botanical varieties and to define their genetic relationships. Five IRAP and four REMAP primer combinations were used. IRAP markers revealed 66.3% of polymorphism and an average of 18.4 bands per primer combination which ranged in size from 450 to 3,100?bp. The REMAP technique allowed the detection of 86.36% of inter-cultivar polymorphism and an average of 11 bands per primer combination. The molecular weight of the REMAP bands ranged from 250 to 2,750?bp. The durum wheat cultivars analyzed here belong to 27 botanical varieties of the subspecies Triticum turgidum subsp. turgidum L. [syn. T. turgidum] and Triticum turgidum L. subsp. durum [syn. T. durum] (Desf.) Husn.. Our results showed that the genetic variability assessed by both the IRAP and REMAP markers did not allow the clustering of the durum wheat cultivars according to their taxonomical criteria (subspecies or botanical variety) or homonymy. Nonetheless, these markers were useful for the assessment of genetic diversity at the individual level, for the definition of genetic relationships among cultivars, and for estimation of the genetic structure of the Old collection under analysis. The achieved data could be valuable for future experiments of DNA fingerprinting, genetic improvement, and germplasm conservation in wheat.  相似文献   

16.
利用ISSR分子标记技术对59份玉米自交系和1份大刍草材料进行遗传多样性分析.21对ISSR引物共扩增出475条不同位置的带,平均22.6条;多态性带469条,平均22.3条,百分率高达98.7%;不同引物的多态性信息指数(PIC)在0.84~0.94之间.60份材料的遗传相似系数在0.23~0.48之间.经聚类分析,可将这些材料分成两大组,共9个亚组,并且在一定程度上与血缘和系谱是一致的,也存在一些例外.结果表明,ISSR标记尽管可以用于进行遗传多样性分析,但并不是最好的分子标记类型.综合考虑不同的分子标记类型的优缺点,认为ISSR标记在遗传研究较少的作物上应用潜力较大.  相似文献   

17.
Fluorescence microsatellite markers were employed to reveal genetic diversity of 340 wheat accessions consisting of 229 landraces and 111 modern varieties from the Northwest Spring Wheat Region in China. The 340 accessions were chosen as candidate core collections for wheat germplasm in this region. A core collection representing the genetic diversity of these accessions was identified based on a cluster dendrogram of 78 SSR loci. A total of 967 alleles were detected with a mean of 13.6 alleles (5–32) per locus. Mean PIC was 0.64, ranged from 0.05 to 0.91. All loci were distributed relatively evenly in the A, B and D wheat genomes. Mean genetic richness of A, B and D genomes for both landraces and modern varieties was B > A > D. However, mean genetic diversity indices of landraces changed to B > D > A. As a whole, genetic diversity of the landraces was considerably higher than that of the modern varieties. The big difference of genetic diversity indices in the three genomes suggested that breeding has exerted greater selection pressure in the D than the A or B genomes in this region. Changes of allelic proportions represented in the proposed core collection at different sampling scales suggested that the sampling percentage of the core collection in the Northwest Spring Wheat Region should be greater than 4% of the base collection to ensure that more than 70% of the variation is represented by the core collection. Electronic supplementary material Electronic supplementary material is available for this article at and accessible for authorised users.  相似文献   

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