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1.
采用ISSR分子标记技术对14个蝴蝶兰品种进行品种间遗传关系的研究。利用14个筛选的引物共扩增出179条带,其中多态性条带147条,多态性条带比率(PPB)为82%。品种之间的遗传相似系数范围在0.734—0.936间,说明部分蝴蝶兰品种间存在显著的遗传分化。14个引物组合可区分所有14个品种,并且检测到20条品种特异性条带,这些品种特异条带可用来鉴定供试蝴蝶兰中的10个品种。因此,ISSR分子标记能有效地进行蝴蝶兰品种鉴定。UPGMA聚类分析表明,14个品种可聚为2类,聚类情况与花色特征比较一致,但与花色的划分结果不完全相同,这可能是由于品种间杂交引起的。本文也论讨了ISSR分析结果对蝴蝶兰育种的指导意义。  相似文献   

2.
取30个枣树品种进行ISSR分子标记分析,其扩增条带分别进行琼脂糖和聚丙烯酰胺凝胶电泳检测,以期获得不同产地品种之间的遗传多态性。从100条选择扩增的ISSR引物中筛选出17条扩增清晰、重复性和稳定性好的引物,选取其中8条扩增条带多态性强的引物进行遗传聚类分析。结果表明:(1)1%琼脂糖凝胶电泳和5%聚丙烯酰胺凝胶电泳检测扩增总条带数分别为72和127条,其中多态性条带分别为51条和113条,多态性条带比率(PPB)分别为70.8%和88.9%。(2)基于UPGMA软件对30个品种的遗传差异性分析表明,8个ISSR引物可以将枣树品种之间遗传差异明显区分开来。两种电泳检测方法相比较,聚丙烯酰胺凝胶电泳检测可获得较为精细的枣树品种间遗传图谱。其遗传相似系数范围在0.56~1.00之间,以0.62为最低遗传相似系数,可将30个枣树品种分成3个大类,6个亚类,为进一步研究枣树品种间分类、起源进化关系和分子辅助育种奠定基础。  相似文献   

3.
8个禾本科草坪草品种遗传多样性的RAPD分析   总被引:2,自引:0,他引:2  
利用RAPD技术,对禾本科4属4种8个品种的草坪草进行遗传多样性分析。15个有效引物用于PCR扩增,共获得RAPD谱带144条带,多态性带占63.2%。8个草坪草品种间的遗传距离在0.0857~0.2928之间,脱壳狗牙根与普通狗牙根间的遗传距离最小,交战2号与爱神特之间的遗传距离最大。用UPGMA和邻接法进行聚类分析,得到2个拓扑结构基本一致的树系图。同一种不同品种间的亲缘关系最近;不同属种间的遗传距离加大,同族不同属的草坪草基本构成一支;4个暖季型草坪草品种构成一个单系类群,但属于冷季型草种的黑麦草(爱神特)单独构成一支,并未与同族的其它3个冷季型草坪草品种(高羊茅)聚在一起。本研究不支持将黑麦草属与羊茅属放在同一族内的分类处理,并建议将高羊茅划分为过渡类型的草坪草。  相似文献   

4.
贵州省八个种群角倍蚜ISSR遗传多样性   总被引:5,自引:1,他引:4  
基于ISSR分子标记技术对采自贵州省8个种群共139个角倍蚜样本进行遗传多样性及其与环境因子的相关性分析。筛选的12条引物共扩增出多态性条带133条,没有种群特异带出现,平均每个引物扩增的多态带数为11条,Popgene软件分析显示,总群体多态性条带比率为100%,尽管不是特意选择变异高的引物。种群间遗传相似系数变异范围介于0.899~0.955,遗传距离介于0.046~0.106,说明角倍蚜不同种群之间的遗传分化不大。聚类分析显示,8个种群共形成2个大的聚类簇,各种群之间没有明显的地域性分布规律,但遗传多样性与3月温度和3月降水量呈负相关。  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.
番茄栽培品种SSR标记和形态标记的遗传多样性分析   总被引:3,自引:0,他引:3  
比较了SSR标记和形态标记在研究番茄栽培品种遗传多样性上的应用。用7对SSR引物检测了11个番茄栽培品种的遗传多样性,共得到53条带,每一个位点上扩增出2-9条带,平均为6条;品种间遗传相似系数在0.39-0.84之间,平均遗传相似系数为0.60。根据11个形态学性状表型值计算的遗传相似系数在0.27-0.72之间,平均遗传相似系数0.58。用UPGMA进行聚类分析,SSR标记和形态标记都可依果肉颜色和果实大小将供试材料分组,即黄色和红色果肉,樱桃小番茄和大、中果形的混合型;两种方法对番茄栽培品种遗传多样性的评价相近。  相似文献   

7.
采用RAPD分子标记方法分析11个花椒品种的遗传多样性,以及遗传多样性与环境因素的相关性。从60条随机引物中筛选出10条引物,共扩增出67条带,平均每个引物扩增出6.7条,其中56条具有多态性,多态比例为84%。根据品种间的遗传距离构建的聚类分析树状图,11个花椒品种的相似系数在0.08-0.92之间,可分为2个类群,这种分类与花椒的叶的外形分类结果一致。不同地域种植的同一品种材料遗传距离较大,显示花椒的遗传多样性与地域分布有关系。  相似文献   

8.
14个蝴蝶兰品种遗传关系的ISSR分析   总被引:3,自引:0,他引:3  
采用ISSR分子标记技术对14个蝴蝶兰品种进行品种间遗传关系的研究。利用14个筛选的引物共扩增出179条带,其中多态性条带147条,多态性条带比率(PPB)为82%。品种之间的遗传相似系数范围在0.734~0.936间,说明部分蝴蝶兰品种间存在显著的遗传分化。14个引物组合可区分所有14个品种,并且检测到20条品种特异性条带,这些品种特异条带可用来鉴定供试蝴蝶兰中的10个品种。因此,ISSR分子标记能有效地进行蝴蝶兰品种鉴定。UPGMA聚类分析表明,14个品种可聚为2类,聚类情况与花色特征比较一致,但与花色的划分结果不完全相同,这可能是由于品种间杂交引起的。本文也论讨了ISSR分析结果对蝴蝶兰育种的指导意义。  相似文献   

9.
43个福建省茶树品种指纹图谱构建及遗传多样性分析   总被引:2,自引:2,他引:0  
为了解福建省茶树品种的遗传多样性,从38对SSR引物中筛选出扩增条带清晰,多态性较好的引物23对,对43个茶树品种的遗传多样性进行了分析,并选取扩增条带少、多态性较高的7对SSR引物构建茶树品种指纹图谱。聚类结果表明,43个茶树品种可聚成10个类群,遗传距离最远的品种是‘八仙茶’,距离最近的品种是‘福鼎大毫茶’与‘九龙大白茶’;福建省选育的乌龙茶品种比绿茶品种的遗传多样性丰富;同时来源于共同亲本的品种表现出较高的相似系数,聚为一类;来源地相同的品种也因有较高的相似系数而聚为一类;地理距离越远的品种,遗传距离也越大。这为茶叶生产选种和茶树遗传改良提供参考依据。  相似文献   

10.
甘薯品种的SRAP遗传多样性分析   总被引:9,自引:1,他引:8  
利用分子标记SRAP技术,对36个甘薯品种进行了DNA多态性分析。选取6对引物扩增甘薯基因组DNA,共获得112条带,其中110条为多态性条带,平均每对引物提供18个标记信息。由UPMGA方法得到的聚类分析结果表明了36个品种间的遗传关系。相似系数在0.62~0.92之间,品种间有较高的遗传相似性;在聚类树中,亚洲品种和美洲品种之间没有明显的遗传分化,表明甘薯品种间没有明显的地理差异;近缘野生种与育成品种聚在一起,没有明显的遗传分化,这意味着它们之间有较高的遗传相似度;中国育成品种聚在一起,表明它们之间的遗传相似度很高。  相似文献   

11.
早熟禾品种间遗传多样性分析   总被引:4,自引:0,他引:4  
宁婷婷  张再君  金诚赞  朱英国 《遗传》2005,27(4):605-610
草地早熟禾(Poa pratensis L.)是一种重要的冷季型草坪草,抗逆性强,适应性广,株型低矮,绿色期长,并且在良好的管理条件下,特别适合用作运动场草坪。近几年来在我国的园林绿化和建植运动场中得到了广泛的应用,现在已经引进的品种多达上百种。选用28个随机引物对15个草地早熟禾品种和1个加拿大早熟禾品种进行RAPD分析,25个引物共扩增出218条带,多态条带比率为89.91%。并且对每个品种的几项坪用特性进行了观察。聚类分析结果表明草地早熟禾品种之间的遗传多样性较低, 相似性集中在60.76%~98.52%。加拿大早熟禾的一个品种单成一支,与其他草地早熟禾的品种相似性较低。品种之间的聚类关系与表型特征呈现不完全相关性。  相似文献   

12.
Genetic relationships were evaluated among nine cultivars ofBrassica campestris by employing random amplification of polymorphic DNA (RAPD) and amplified fragment length polymorphism (AFLP) markers. RAPDs generated a total of 125 bands using 13 decamer primers (an average of 9.6 bands per assay) of which nearly 80% were polymorphic. The per cent polymorphism ranged from 60–100%. AFLP, on the other hand generated a total of 319 markers, an average of 64 bands per assay. Of these, 213 were polymorphic in nature (66.8%). AFLP methodology detected polymorphism more efficiently than RAPD approach due to a greater number of loci assayed per reaction. Cultivar-specific bands were identified, for some cultivars using RAPD, and for most cultivars with AFLP. Genetic similarity matrix, based on Jaccard’s index detected coefficients ranging from 0.42 to 0.73 for RAPD, and from 0.48 to 0.925 for AFLPs indicating a wide genetic base. Cluster analyses using data generated by both RAPD and AFLP markers, clearly separated the yellow seeded, self-compatible cultivars from the brown seeded, self-incompatible cultivars although AFLP markers were able to group the cultivars more accurately. The higher genetic variation detected by AFLP in comparison to RAPD was also reflected in the topography of the phenetic dendrograms obtained. These results have been discussed in light of other studies and the relative efficiency of the marker systems for germplasm evaluation.  相似文献   

13.
利用随机扩增多态性DNA(RAPD)方法,对13个花椰花品种的基因组DNA进行多态性分析。选用20个10bp随机引物,共扩增出175条DNA片段,其中多态性片段118例,占67.4%,结果表明,花椰花品种间具有丰富的遗传多样性。依据扩增结果进行遗传相似系数分析,构建聚类分析树状图。初步探讨了各品种间的遗传变异关系及RAPD技术在花椰花种质资源分类鉴定和育种工作中的应用前景。  相似文献   

14.
The genetic diversity among ten Indian cultivars of cowpea was analyzed using 18 sets of RAPD markers. A total of 181 bands with an average of 15 bands per primer were obtained. Out of 181 bands, 148 showed polymorphism (81.7%). The variation in genetic diversity among these cultivars ranged from 0.1742 to 0.4054. Cluster analysis based on Jaccard’s similarity coefficient using UPGMA with high bootstrap values revealed two distinct clusters I and II comprised of two and seven cultivars, respectively. Cluster II was further differentiated into various subclusters. Cultivar IC-9883 was found to be unique based on its altogether distinct position in the dendrogram and two-dimensional space projections.  相似文献   

15.
Turkey is very rich in local grape varieties. The solution to the problem of identifying local cultivars, which is considered an important deficiency for the region, will only be possible when they can be defined with molecular markers. Forty-nine local grapevine cultivars from ?anl?urfa (Turkey) were characterized with RAPD markers. Twenty-five decamer primers selected from 60 primers were used in this analysis. A total of 171 bands were obtained with the 25 primers, of which 112 were polymorphic; the level of DNA polymorphism was 65.49% in these local cultivars. Among the selected primers, OPA-18, OPO-07 and P-123 gave the maximum number of polymorphic bands (seven). Genetic relationships among these cultivars were determined with a similarity index and using a dendogram. Among the grape cultivars, the lowest similarity ratio (0.578) was observed among the Külahi-K?z?lbanki cultivars and the highest similarity ratio (0.908) was observed for the ?ilorut-D?külgen combination. The high similarity ratio among the grape cultivars of ?anl?urfa Province was also reflected in the dendogram. In general, no relationships were encountered between the genetic identification of the cultivars and their ampelographic properties.  相似文献   

16.
In the present study, two polymerase chain reaction (PCR)-based methods namely, randomly amplified polymophic DNA (RAPD) and amplification fragment length polymorphism (AFLP) were employed to assess genetic variations, which may appeared, in tissue culture-derived date palm (Phoenix dactylifera) offshoots. Analysis of RAPD banding patterns generated by PCR amplification using 37 random primers gave no evidences for somaclonal variations and the percentage of polymorphic bands in a total of 259 scored bands was zero. Meanwhile, analysis of AFLP banding patterns generated using 13 primer combinations pointed to minor genetic variations in the AFLP banding patterns. The percentage of genetic variations (polymorphism) in tissue culture-derived date palm offshoots belonging to cultivars Sakkoty, Gandila and Bertamoda was 2.6, 0.79 and 1 %, respectively, as revealed by AFLP analysis. The low percentage of genetic variations confirms the genetic stability of tissue culture-derived dry date palm cultivars.  相似文献   

17.
Genetic variation of nine upland and four lowland rice cultivars (Oryza sativa L.) was investigated at the DNA level using the randomly amplified polymorphic DNA (RAPD) method via the polymerase chain reaction (PCR). Forty-two random primers were used to amplify DNA segments and 260 PCR products were obtained. The results of agarosegel electrophoretic analysis of these PCR products indicated that 208 (80%) were polymorphic. All 42 primers used in this experiment were amplified and typically generated one-to-four major bands. Only two primers showed no polymorphisms. In general, a higher level of polymorphism was found between japonica and indica subspecies while fewer polymorphisms were found between upland and lowland cultivars within the indica subspecies. A dendrogram that shows the genetic distances of 13 rice cultivars was constructed based on their DNA polymorphisms. Classification of rice cultivars based on the results from the RAPD analysis was identical to the previous classification based on isozyme analysis. This study demonstrated that RAPD analysis is a useful tool in determining the genetic relationships among rice cultivars.  相似文献   

18.
RAPD (random amplified polymorphic DNA) polymorphism was studied in 23 malting and non-malting spring barley cultivars included in the official list of Polish cultivated varieties. Twenty-four 10-mer primers were tested in each cultivar, giving altogether 149 amplification products, 45% of which were polymorphic. The number of polymorphic bands revealed by one primer ranged from 1 to 6, with an average of 2.8. Genetic distance for all pairs of compared varieties was estimated and a dendrogram was constructed using unweighted pair group method of arithmetic means. The genetic distance between cultivars ranged from 0.11 for cvs. Apex and Bryl to 0.62 for cvs. Orthega and Madonna. Of the seven malting cultivars only two (Brenda and Stratus) formed one group at D = 0.25. The genetic distance between cvs. Brenda and Scarlett, especially recommended for brewery, was equal to 0.34. The detected polymorphism appeared to be sufficient for assessing genetic distances between cultivars, but on the basis of this polymorphism groups of malting and non-malting cultivars were not clearly distinguished.  相似文献   

19.
AFLP and RAPDmarkers were employed in sixteen diploid cotton (Gossypium sp) cultivars for genetic diversity estimation and cultivar identification. Polymorphism information content (PIC) and percent polymorphism were found to be more for AFLP markers as compared to RAPD markers. Average Jaccard’s genetic similarity index was found to be almost similar using either AFLP or RAPD markers. All the cultivars could be distinguished from one another using AFLP markers and also by the combined RAPD profiles. Cultivar identification indicators like resolving power, marker index and probability of chance identity of two cultivars suggested the usefulness of AFLP markers over the RAPD markers. AFLP and RAPD analyses revealed limited genetic diversity in the studied cultivars. Cluster analysis of both RAPD and AFLP data produced two clusters, one containing cultivars of G. herbaceum and another containing cultivars of G. arboreum species. Highly positive correlation between cophenetic matrices using RAPD and AFLP markers was observed. AFLP markers were found to be more efficient for genetic diversity estimation, polymorphism detection and cultivar identification.  相似文献   

20.
利用RAPD标记分析大麦种质资源的遗传多样性   总被引:10,自引:4,他引:6  
利用RAPD标记对19份西藏近缘野生大麦材料、33份我国不同省市的地方品种以及8份国外引进大麦品种共60份大麦种质资源的遗传多样性进行检测.结果表明材料间遗传差异明显.32个RAPD引物中,有25个引物(占78.13%)可扩增出清晰且具多态性的条带,另外7个引物能扩增出1~3条清晰但无多态性的条带.每个引物可扩增出1~8条多态性带,平均为3.72条.32个引物共产生119条DNA片段,其中87条具有多态性,多态性比率(PPB)为73.11%,平均多态信息量(PIC)为0.434;每个位点平均有效等位基因数(Ne)为2.304;材料间遗传相似系数GS变化范围为0.757~0.981,平均值为0.871.19份来源于西藏的近缘野生大麦材料间GS值变幅为0.818~0.969,平均为0.892;33份我国栽培大麦地方品种间的GS值变化范围为0.783~0.981,平均为0.879;8份分别来自8个国家的栽培大麦品种间的GS值变幅为0.820~0.956,平均为0.882.根据RAPD标记分析的结果,对60份大麦种质资源进行聚类分析,在平均GS值0.871水平上60份大麦材料可聚为5类,聚类结果能在一定程度上反应材料的地理分布关系,但某些相同地理来源的材料也较分散地分布在整个聚类树中.本研究从分子水平上进一步证明了我国栽培大麦丰富的遗传多样性,是世界栽培大麦的遗传多样性中心之一.  相似文献   

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