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1.
利用SRAP和SSR各23对引物对20个中国主要黑芝麻品种进行了遗传多样性分析。结果显示,23对SRAP引物共扩增出DNA带672条,其中多态性带152条,比率为22.62%,平均每对引物扩增总带数和多态性条带分别为29.22条和6.61条。23对SSR多态性引物共扩增出DNA带92条,每对引物扩增出3~6条,平均4.00条;每对引物扩增出多态性带1~5条,平均3.09条,多态性带比率平均为77.17%。20个黑芝麻品种间的遗传相似系数为0.8547~0.9804,遗传距离为0.0159~0.0921,遗传多样性匮乏,遗传基础狭窄。聚类结果表明,来自主产区江西的11个品种明显聚在一起,且江西黑芝麻品种的遗传相似系数高于其他省份品种,遗传距离低于其他省份品种,与其他省份品种的差异均达到极显著水平。加强资源引进和利用是拓宽中国黑芝麻品种遗传基础的迫切要求。  相似文献   

2.
加工番茄种质资源的SSR分析   总被引:1,自引:0,他引:1  
为探明加工番茄种质资源间的亲缘关系,利用SSR标记对20份加工番茄品种及育种材料进行了多样性分析。结果表明:从49对SSR引物中筛选出12对扩增稳定、条带清晰且多态性丰富的引物进行分析,共获得43个位点,多态性位点为37个,多态位点比率86%;供试材料间的遗传相似系数介于0.419~1.000之间,说明加工番茄种质资源间存在一定的遗传差异;通过UPGMA法聚类分析,将20份材料分为3大类群,其中亲缘关系较远的不同类群间及亚类间的种质资源可作为杂交育种的亲本。  相似文献   

3.
SSR标记分析国家北方花生区试品种的遗传多样性   总被引:5,自引:0,他引:5  
利用10对SSR引物对参加我国北方区域试验的27份花生品种进行PCR扩增分析,共扩增出57条带,其中45条呈现多态,多态性比率为78.95%.引物的多态性信息含量(PIC)变幅为0.417~0.857,平均值为0.688.27个品种间的遗传相似系数在0.311~0.962之间,平均为0.651.聚类分析结果表明,27个参试花生品种在遗传相似系数0.61处分为3个类群,同一类型的参试品种优先聚为一类,同一地区或同一育种单位提供的品种往往首先聚为一类.系谱分析表明亲本来源相近的品种优先聚在一起,利用农家品种和辐照诱变材料对于拓宽花生遗传基础发挥作用较明显.SSR分析结果基本上与系谱相吻合.  相似文献   

4.
利用SSR标记构建了27份中国无籽西瓜主栽品种的DNA指纹并进行了遗传多样性分析。24对多态性引物共扩增出66种基因型,基因型数2-5个不等,平均2.75个。平均多态性信息量(PIC)为0.37,变化范围为 0.19~0.66。有4个品种具有特征谱带。27个品种遗传相似系数变化范围为 0.7045~1.0,平均0.8683。组合24对引物,除无法区分‘郑抗无籽1号’与‘雪峰花皮无籽’,其余品种均能一一区分开。采用类平均法进行聚类分析,在相似系数0.83处,可将27个品种分为3大类。  相似文献   

5.
海南部分荔枝种质资源亲缘关系的SSR分析   总被引:4,自引:1,他引:3  
利用SSR标记对22份荔枝材料进行了亲缘关系分析,从32对引物中筛选出22对多态性引物用于荔枝SSR扩增,共扩增到52条带,其中多态性条带49条,多态性百分率为94.23%。多态性条带经POPGENE32软件统计分析表明,22个位点的平均有效等位基因频率(Ne)、平均基因杂合度(H)、平均Shannon遗传多样性指数(Hi′)分别为1.364 3、0.296 0、0.417 0。通过NTSYS聚类结果显示,在相似系数为0.51处,供试材料被聚为两大类,第一类包括13份材料,又可分为两个亚类,第二类包括9份材料。  相似文献   

6.
利用ISSR技术对48份乌塌菜种质资源进行遗传多样性分析。从60条随机引物中筛选出稳定性强、条带清晰且多态性丰富的9条引物进行PCR扩增,共扩增出103条谱带,平均每个引物扩增出11.4条带,其中多态性带85条,多态性位点百分率为82.68%。不同乌塌菜种质间遗传相似系数变幅为0.59~0.97,说明ISSR标记能够揭示材料间较高的遗传多样性。利用UPGMA聚类分析,ISSR标记能将48份乌塌菜品种完全区分开,48份乌塌菜种质被划分为4个类群,聚类结果与叶片颜色相关,为乌塌菜品种资源的研究利用提供参考。  相似文献   

7.
红掌品种亲缘关系SRAP分析   总被引:1,自引:0,他引:1  
利用相关序列扩增多态性(SRAP)分子标记,从100对引物组合中筛选出 26对多态性高、条带清晰的SRAP引物,对33个红掌品种进行遗传多样性和亲缘关系分析。结果如下:(1)26对引物共扩增出366条条带,其中有314条多态性条带,多态性比率为85.79%。引物组合产生的条带数在9~23之间,平均每对引物组合扩增出14.1条和12.1条多态性条带。(2)根据SRAP扩增结果,利用UPGMA法进行聚类分析,33份材料的遗传相似系数在0.55~0.94之间,在遗传相似系数0.786处可将33个红掌品种分为5个类群。结果表明,供试品种遗传多样性丰富,本研究为品种鉴定和杂交育种提供了参考信息。  相似文献   

8.
利用22对SSR引物的扩增结果计算品种间的Jaccard相似系数,在此基础上用UP(GMA方法进行了聚类分析,检测了43个春小麦品种间在DNA水平上的遗传变异。22对引物共扩增出102条多态性带,平均每对引物可扩增出4.64条多态性带,具有较好的多态性。SSR水平上43个品种间遗传距离变异范围为0.2222~0.8393,平均遗传距离GD%=0.6055。43个品种聚为两大类,除佛手麦自成一类外,其余42个品种聚为第二大类。聚类结果真实地反映了品种间基因型差异。历史上地方品种间SSR水平上的遗传变异最大,育成品种遗传多样性水平总体上呈下降趋势,且低于地方品种和引进品种。1BL/1RS易位片段特异性引物Rye检测结果显示,共有7个品种含有1RS片段,结果需进一步证实和深入研究。  相似文献   

9.
苦荞地方种质资源的遗传多样性分析   总被引:6,自引:1,他引:5  
利用SSR分子标记技术对中国苦荞主产区陕西、云南、四川、西藏等地的82份苦荞地方种质的遗传多样性进行了分析,以揭示中国特有的作物种质--苦荞地方种质资源的遗传多样性,促进苦荞优良品种的选育.结果显示:(1)所用25个SSR引物中有13个引物在苦荞地方品种中具有多态性,且扩增条带的稳定性较好,共扩增出208条条带,其中多态性条带200条,占总数的96.2%;(2)聚类分析结果显示,82份苦荞材料的遗传相似系数(GS)分布于0.52~0.85之间,平均值为0.69,在GS值为0.722的水平上,82份材料被聚为10大类群.研究表明82份苦荞品种间遗传多样性明显,具有丰富的遗传基础.  相似文献   

10.
基于SSR标记的草莓品种亲缘关系分析   总被引:2,自引:0,他引:2  
摘要:用18对SSR引物对96份草莓栽培品种资源进行扩增。在18个SSR位点共获得184个条带,其中多态性条带为172个,多态性条带比率为93.5%,不同引物扩增的多态性条带数为6~19个,平均为9.56个。各位点PIC值在0.5726~0.8885之间,平均0.8057。NTSYS软件进行相似性系数计算,UPGMA法进行聚类分析结果显示,96份来源不同的草莓品种被混杂地聚在一起,草莓品种的亲缘关系与其来源并不存在明显的相关性,中国地方品种的聚类相对集中,中国地方品种与中国选育品种之间亲缘关系相对较远。欧美品种和日本品种的遗传基础要宽于中国选育品种和地方品种。  相似文献   

11.
ISSR and SSR markers were used to evaluate genetic diversity among 33 Cynodon dactylon accessions and 22 cultivars from four different countries in order to provide information on how to improve the utilization of bermudagrass germplasms. Eighty eight bands were amplified by nine SSR primer combinations and 236 bands were observed from 23 ISSR primers. The results showed that 97.7% of the SSR primers and 86.9% of the ISSR primers were polymorphic. The genetic similarity coefficients (GSC), gene diversity (He) and Shannon index (I) were 0.58–0.97, 0.27 and 0.41, respectively, for ISSR and 0.52–0.97, 0.29, and 0.43 for SSR. The UPGMA analysis clustered the 55 accessions (cultivars) into three groups. The cluster results produced by the ISSR data were close to the SSR data results. Analysis based on the combined ISSR and SSR data was more closely related to the geographical distribution of the tested germplasm.  相似文献   

12.
甘薯种质资源遗传稳定性及遗传多样性SSR分析   总被引:1,自引:0,他引:1  
应用SSR标记检测国家种质徐州甘薯试管苗库中离体保存5年和8年的24份种质资源及其对应的田间圃材料的遗传稳定性,同时对24份甘薯种质的遗传多样性进行分析.20对SSR引物分析表明,24份甘薯材料扩增得到了清晰的DNA条带30条,其中多态性条带2l条,多态性百分率为70%,全部品种在2种保存方式下谱带一致,说明2种保存方式的效果相同.应用NTSYS软件对材料进行遗传相似性和UPGMA聚类分析,24份甘薯种质资源遗传相似系数在0.57~0.93之间,平均为0.74.在0.72的相似系数上24份材料可以聚成三大类,表明我国的甘薯品种种质资源遗传多样性还是比较丰富的.该研究为甘薯种质资源长期离体保存及甘薯杂交育种提供了理论依据.  相似文献   

13.
观赏南瓜及葫芦种质资源遗传多样性分子评价   总被引:2,自引:0,他引:2  
利用RAPD和ISSR标记对28份观赏南瓜及葫芦种质资源进行遗传多样性分子评价。结果表明:12个RAPD引物和13个ISSR引物分别扩增出89条和93条清晰谱带,平均每个引物分别扩增出6.1条和6.2条多态性谱带,多态性比率分别为82%和86%。RAPD和ISSR标记检测供试材料的遗传相似性系数(GS)范围分别为0.31~0.99和0.33~0.99,ISSR(平均GS值0.68)检测多态性效果高于RAPD(平均GS值0.73)。利用UPGMA法基于RAPD与ISSR混合聚类,将28份观赏南瓜及葫芦种质分为3类,类群的划分与果实形状明显相关:第Ⅰ类群包括15份种质,为扁圆形、卵圆形、圆球形或圆筒状的早熟或晚熟果实;第Ⅱ类群包括11份种质,为汤匙形、梨形、扁球形或皇冠形的早中熟果实;第Ⅲ类群包括2份种质,为葫芦形的晚熟果实。  相似文献   

14.
DNA指纹图谱对新品种选育、种质资源保存和管理具有重要的意义。然而,利用SSR标记构建红麻DNA指纹图谱的研究仍十分有限。在本研究中,利用课题组开发并筛选出的131对SSR引物,分析不同来源的96份红麻种质资源,包括红麻品种审定的区试对照品种福红952。结果表明,131对引物共扩增出375条带,平均每对引物扩增出2.6条带。以遗传相似系数0.614为切割线时,可以分为2个类群,52个为类群P1,44个为类群P2;以遗传相似系数0.710做切割线,可分为5个亚群。利用这131对引物标记所得的数据成功绘制了一份85个品种独特的指纹图谱,其中福红952可被HcEMS238引物特异识别。其他11份因存在遗传相似性高的现象,未被识别。上述结果为红麻品种的真实性鉴定及遗传多样性分析提供依据。  相似文献   

15.
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   

16.
Genetic diversity among 45 Indian mustard (Brassica Juncea L.) genotypes comprising 37 germplasm collections, five advance breeding lines and three improved cultivars was investigated at the DNA level using the random amplified polymorphic DNA (RAPD) technique. Fifteen primers used generated a total of 92 RAPD fragments, of which 81 (88%) were polymorphic. Of these, 13 were unique to accession 'Pak85559'. Each primer produced four to nine amplified products with an average of 6.13 bands per primer. Based on pairwise comparisons of RAPD amplification products, Nei and Li's similarity coefficients were calculated to evaluate the relationships among the accessions. Pairwise similarity indices were higher among the oilseed accessions and cultivars showing narrow ranges of 0.77-0.99. An unweighted pair-group method with arithmetic averages cluster analysis based on these genetic similarities placed most of the collections and oilseed cultivars close to each other, showing a low level of polymorphism between the accessions used. However, the clusters formed by oilseed collections and cultivars were comparatively distinct from that of advanced breeding lines. Genetically, all of the accessions were classified into a few major groups and a number of individual accessions. Advanced breeding lines were relatively divergent from the rest of the accessions and formed independent clusters. Clustering of the accessions did not show any pattern of association between the RAPD markers and the collection sites. A low level of genetic variability of oilseed mustard was attributed to the selection for similar traits and horticultural uses. Perhaps close parentage of these accessions further contributed towards their little diversity. The study demonstrated that RAPD is a simple and fast technique to compare the genetic relationship and pattern of variation among the gene pool of this crop.  相似文献   

17.
Twenty accessions of the sparsely cultivated diploid Musa cultivars Matti (AA) and Rasakadali (AB) were subjected to random amplified polymorphic DNA (RAPD) assay. A total of 14 random primers were used for the estimation of interand intracultivar variations. Out of 86 bands generated, 64 were polymorphic (74.4 % polymorphism). The cluster analysis grouped the cultivars into two major clusters: cluster I with 10 accessions of Matti and 2 of Rasakadali and cluster II comprising the remaining 8 accessions of Rasakadali. The coefficient of genetic similarity (GS) was from 0.73 to 0.99, suggesting low level of intercultivar variation. The accessions of Rasakadali with mean GS of 0.89 were genetically more diverse than those of Matti (GS = 0.93).  相似文献   

18.
Genetic diversity and relationship of Lycoris species were investigated using SCoT marker analysis. Of 57 SCoT primers screened, 23 SCoT primers were identified to be high polymorphism. A total of 154 DNA bands with size varied from 0.2 kb to 2.5 kb were amplified, and 131 (82.5%) of them were polymorphic. The average number of polymorphic DNA band per primer was 5.7. Based on Nei's similarity coefficients and genetic distances, total of 43 accessions from 14 species of the genus Lycoris tested were clustered into four groups. Group I consisting of 17 accessions was further divided into two subgroup (Ia and Ib). Subgroup Ia included four species with red flower and 22 (2n) chromosomes. Subgroup Ib contained Lycoris haywardii and Lycoris albiflora which were natural hybrids with oyster white flower. Group II consisted of three species with yellow flower and 16 (2n) chromosomes. Group III was composed of Lycoris Squamigera, Lycoris incarnata and all of hybrids whose flower color was variegated. Group IV only has one species (Lycoris sprengeri) whose petal was a mixture of pink and blue. Notably, the polymorphism generated by SCoT was associated with flower color and chromosome number in this genus plants. The present data provide high-valued information for the management of germplasm, genetic improvement, and conservation of the genetic resources of Lycoris species, important horticulture and medical plants.  相似文献   

19.
用19个RAPD引物和12个ISSR引物对14份野牛橡胶树种质和我国的37份栽培品种进行了遗传多样性分析。RAPD引物共产生132条带,多态性带占88.6%,相似系数变化范围在0.432—0.947。ISSR引物其产生101条带,多态性带占87.1%,相似系数为0.505—0.941。平均基因杂合度分析表明野生种质比栽培品种具有较高的遗传多样性。根据UPGMA法对51份材料进行聚类分析,结果表明,ISSR分析中所有材料可分为2类:第一类为野生种质,第二类为栽培品种:而RAPD分析中野牛种质和栽培品种不能被分为明显的两人类。虽然ISSR和RAPD的聚类分析结果存在差异,但对两种方法进行的相关分析表明,他们之间仍存在极显著相关性,相关系数为0.574。品种PR107、热研217等一些栽培品种可以通过特异带在51份供试材料中被区分开。这些结果可以对橡胶树的育种上作起到一定的指导作用,同时RAPD和ISSR技术也是进行橡胶树品种鉴定和遗传多样性研究的有效手段。  相似文献   

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