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1.
对鹅观草属、披碱草属、猬草属和仲彬草属4属23个物种进行了RAMP分析。结果表明属间变异极大,多态性极高。31个引物组合产生的286条DNA扩增片段均具有多态性。聚类分析显示鹅观草属、披碱草属、猬草属和仲彬草属物种各自聚为一类;Roegneria alashanica、R.elytrigioides和R.magnticaespes聚类在一起;猬草属的模式种Hystrix patula与披碱草属物种聚类在一起,而Hystrix duthiei和H.longearistata单独聚为一类;形态相似、染色体组相同、地理分布一致的物种聚类在一起。本研究结果基本上同形态学和细胞学研究结果相吻合,将鹅观草属、披碱草属和仲彬草属作为属分类等级处理比较恰当,而猬草属的系统地位有待进一步确认。RAMP标记可作为评价多年生小麦族物种遗传多样性和亲缘关系的一种分子标记技术。  相似文献   

2.
应用ISSR标记研究仲彬草属植物的遗传变异   总被引:3,自引:1,他引:2  
张利  周永红  丁春邦  杨瑞武  刘世贵   《广西植物》2006,26(4):375-380,394
利用ISSR标记对仲彬草属14个种和1个变种共32份材料进行了研究。结果表明:仲彬草属材料间ISSR标记多态性较高,变异较大。12个引物共扩增出593条带,其中535条(90.2%)具有多态性,每个引物可扩增出11~80条多态性带,平均44.6条。ISSR标记遗传相似系数在种间变化范围为0.430~0.866,平均值为0.620。从聚类分析得知,ISSR标记能将32份仲彬草属材料完全分开,32份材料聚为4类。同种不同居群的材料分别聚在一起,亲缘关系较近,同时,在分子水平上种内不同居群间也存在分化;种间存在明显的遗传差异;形态相似、地理分布一致的物种倾向于聚类在一起,有一定的亲缘关系。因此,ISSR分子标记能有效地评价仲彬草属物种的亲缘关系。  相似文献   

3.
张颖  周永红  张利  张海琴  杨瑞武  丁春邦 《遗传》2006,28(4):449-457
对鹅观草属、披碱草属、猬草属和仲彬草属23个物种和1份外类群共24份材料进行了细胞质基因组PCR-RFLP分析。3个叶绿体和3个线粒体通用引物扩增出的片段,用15种限制性内切酶对其进行酶切。在47种引物/酶组合中,获得329条DNA片段,其中304条具有多态性,占92.4%。结果表明鹅观草属、披碱草属、猬草属和仲彬草属材料存在属间和种间多态性,遗传相似系数较高。聚类分析显示仲彬草属单独聚为一类,鹅观草属R. grandisR. aristiglumisR. elytrigioidesR. alashanicaR. magnicaespes聚为一类,R. caucasicaR. ciliarisR. amurensisR. japonensis聚在一起,5个披碱草属材料、3个猬草属材料和1个鹅观草属物种R. kamoji聚为一类。这些结果与前人对其进行的RAPD和RAMP分析的结果基本一致。仲彬草属作为属分类等级处理是恰当的,对于鹅观草属、披碱草属和猬草属的系统地位和一些物种的分类处理,有待进一步研究。  相似文献   

4.
应用RAMP分子标记研究红花资源遗传多样性   总被引:7,自引:0,他引:7  
采用RAMP(Random amplified microsatellite polymorphism)对原产于42个国家的84份红花材料进行遗传多样性分析。结果表明,被测材料间RAMP标记多态性较高。16个引物组合所产生的122条DNA扩增片段中,有118条具有多态性,PPB为96.7%。PIC的变化范围为0.580~0.978,平均值0.874。每个引物可扩增出4~11个DNA片段,平均获得7.6个DNA片断,其中7.4个具有多态性,遗传相似系数(GS)的变化范围0.338~0.907,平均值为0.665。基于GS的聚类结果可以将所有84份材料完全分开,并划分为6类,聚类结果与材料的地理分布有一定关系,来源于亚洲和美洲的材料多样性相对比较丰富,所有来自中国的材料被聚为一大类。据此认为,红花种质资源在分子水平上确实存在较大遗传差异,RAMP分子标记是评价红花资源遗传多样性的有效方法。  相似文献   

5.
利用序列相关扩增多态性(SRAP)标记对中国半夏属植物5个种的亲缘关系进行了研究.38个引物组合在半夏属植物的5个种中共扩增出752条清晰的谱带,其中628条谱带具有多态性,多态性比率为83.51%,显示出较高的多态性比率;各物种间的遗传相似系数在0.6513~0.7312之间,聚类分析和主坐标分析结果表明,5种半夏属植物被聚为两大类:掌叶半夏单独聚为一类(Ⅱ),而其它4个种聚为一类(Ⅰ).第Ⅰ类可再分为A和B两个亚类:A亚类包括半夏和石蜘蛛;B亚类包括盾叶半夏和滴水珠.滴水珠和盾叶半夏的亲缘关系最近,其次是半夏和石蜘蛛,而掌叶半夏和其它4个种的亲缘关系都较远,这说明掌叶半夏与半夏属其它种呈姐妹群关系.本研究结果对我国半夏属植物资源的开发利用与保护具有重要意义.  相似文献   

6.
利用随机扩增多态性DNA(RAPD)技术对小麦族披碱草属、鹅观草属和猬草属3个属的模式种进行了基因组DNA多态性分析。42个引物产物的290条谱带中,257条(88.62%)表现出多态性,说明披碱草属、鹅观草属和猬草属3个属的模式种间具有丰富的遗传多样性。利用290个RAPD标记,计算材料间Nei氏遗传相似性系和遗传距离,在NTSYS程序中利用UPGMA进行聚类。结果表明,Elymus sibiricus种不同居群间的遗传差异较小,遗传距离在0.097-0.180之间。E.sibiricus,Roegneria caucasica和Hystrix patula的种间遗传差异明显,遗传距离在0.458-0.605之间。H.patula与E.sibiricus的亲缘关系较近。R.caucasica与E.sibiricus的亲缘关系较远。  相似文献   

7.
利用RAPD分子标记评价仲彬草属的种间关系   总被引:16,自引:0,他引:16  
利用随机扩增多态性DNA(RAPD)技术分析了14种仲彬草属Kengyilia植物的种间关系。对34个OPRON公司十聚体随机引物进行多态性筛选,20个(58.8%)能产生多态性。14个引物产生的112个DNA片断,用于计算种间Jaccard遗传相似性系数分析,在NTSYS程序中利用UPGMA构建系统发育树状图。分析结果表明:(1)14个Kengyilia物种存在较大的遗传多样性;(2)青藏高原的物种与新疆的物种 的RAPD变异极大;(3)形态相似、地理分布一致的物种有一定的亲缘关系,聚类在一起;(4)RAPD结果与形态学和细胞学等分析结果一致。RAPD分析方法将为Kengyilia系统分类提供DNA水平上丰富的资料。  相似文献   

8.
用RAPD分子标记探讨鹅观草属的种间关系   总被引:17,自引:0,他引:17  
通过34个10碱基随机引物对鹅观草属(RoegneriaC.Koch)26个物种进行PCR扩增,28个引物能产生多态带。在NTSYS程序中,对16个引物扩增的186条扩增产物,计算Jaccard遗传相似系数,建立UPGMA聚类图。结果表明:(1)物种间遗传差异明显,具有丰富的遗传多样性;(2)StY和StYH基因组的物种存在着一定的遗传差异,并各有一定程度的分化,这种分化是与地理位置相联系的。相距越远,物种相似程度越低;(3)形态差异较小,基因组同源,地理分布一致的物种聚类在一起,表现出较密切的亲缘关系;(4)无芒类群的R.alashanicaKeng和R.magnicaespes(D.F.Cui)L.B.Cai与其余分析的24个Roegneria物种存在着极大的遗传差异;(5)分布于西亚的R.caucasicaC.Koch.与分布于东亚和中亚的物种存在着较大的RAPD变异,亲缘关系较远;(6)在对R.ciliaris(Trin)Nevski和R.japonensis(Honda)Keng、R.tenuispicaJ.L.YangetY.H.Zhou和R.pendulinaNevski、R.tsukushiensis(Honda)Ohwi和R.kamojiOhwi等的分类处理上,基本上与形态学和细胞学的研究结果一致。对RAPD标记在Roegneria系统分类研究中的应用进行了讨论。  相似文献   

9.
基于SRAP标记的大花蕙兰种质资源遗传多样性分析   总被引:1,自引:0,他引:1  
采用SRAP技术分析了来源于不同国家和地区的42个大花蕙兰品种及4个国兰原生种之间的遗传亲缘关系。34对引物组合中筛选出29对带型稳定、多态性较好的引物组合,共扩增出398条谱带,其中387条为多态带,多态性比率97.2%,平均每个引物组合扩增多态性带13.3条。46份种质之间的相似系数变化范围为0.60~0.99,平均为0.76。基于29个SRAP标记的扩增结果,利用NTSYS 2.10e软件计算Dice遗传相似系数,并建立UPGMA聚类图,结果表明:在遗传相似系数0.69处将供试材料分为4类,较好地揭示了大花蕙兰品种及国兰原生种间的遗传多样性与亲缘关系,可为大花蕙兰种质资源利用及杂交育种中亲本选择提供科学依据。  相似文献   

10.
辣椒种质遗传多样性的RAPD和ISSR及其表型数据分析   总被引:16,自引:3,他引:13  
用RAPDI、SSR分子标记及28个表型性状数据对辣椒属5个栽培种的13份材料进行了分析,结果表明:23条RAPD引物共扩增出209条带,平均每个引物扩增出9.09条,多态性位点比率为83.73%;16条ISSR引物共扩增出94条带,平均每个引物扩增出5.88条,多态性位点比率为79.79%.与RAPD相比,ISSR标记检测到的有效等位基因数(Ne)及Shannon多样性指数(I)、遗传离散度(Ht)和遗传分化系数(Gst)等遗传多样性参数都较大,多态性位点比例在亲缘关系较近的一年生辣椒(Capsicum annuum)种内较高,说明ISSR有更高的多态性检测效率,并且适合亲缘关系较近的种群间遗传多样性分析.基于RAPDI、SSR的聚类与基于表型数据的聚类之间存在极显著正相关,且都能将C.annuum与其它栽培种区分开来.  相似文献   

11.
Twelve species, including three Hystrix species, five Leymus species, Hordeum bogdanii, Pseudoroegneria spicata, Psathyrostachys huashanica, and Roegneria ciliaris, were used for expressed sequence tag-polymerase chain reaction (EST-PCR) assay. A total of 125 products were amplified by 72 sets of EST-PCR markers developed in barley, among which 106 (84.8%) products were found to be polymorphic. Each EST-PCR marker produced 0–6 polymorphic bands, with an average of 1.47. The relationship between H. duthiei s...  相似文献   

12.
The DNA genetic diversity of 40 accessions of genus Leymus was analyzed by random amplified polymorphic DNA (RAPD) markers. A total of 352 products were amplified by 34 10-mer arbitrary primers, among which 337 products (95.74 %) were found to be polymorphic. 5–14 polymorphic bands were amplified by each polymorphic primer, with an average of 9.91 bands. The data of 352 RAPD bands were used to generate Jaccard’s similarity coefficients and to construct a dendrogram by means of UPGMA. Great genetic diversity in genus Leymus was observed, the genetic diversity among the different species more abundant than that of the different accessions, and the different accessions in a species or the species from the same areas were clustered together.  相似文献   

13.
To assess the relationships among 26 species in Roegneria C. Koch, 34 random decamer primers were screened for RAPD fragments. 28 primers produced polymorphic RAPD products. Data from 16 primers were used for RAPD assay. By NTSYS-pc program, Jaccard' s genetic similarity coefficients were generated and dendrogram was constructed using UPGMA. It is concluded as follows: (1) Distinct genetic differences and extensive genetic diversity were present among the species. (2) There were some genetic differences between StY and StYH genomes, and StY and StYH had a certain degree of differentiations respectively which were related to geographic regions, the farther the geographic distribution between species, the less the similarity to each other. (3) When different accessions in a species, such as species with similar morphological characters, homologous genomes and similar geographic distribution, were clustered together respectively, it suggusted that they had closer relationships. (4) The awnless species R. alashanica Keng and R. magnicaespes (D. F. Cui) L. B. Cai, in Roegneria, were separated from the other species analysed in this study, indicating that these two species had intensive genetic differences from the others. (5) R. caucasica C. Koch, a species from Western Asia, was quite different from the other species contained StY genomes in Roegneria from Eastern Asia and Central Asia. (6) The results were in consistance with that of the analysis of morphology and chromosome pairing in the taxonomic treatments for R. ciliaris (Trin) Nevski and R. japonensis (Honda) Keng, R. tenuispica J. L. Yang et Y. H. Zhou and R. pendulina Nevski, and R. tsukushiensis (Honda) Ohwi and R. kamoji Ohwi. The present study discussed the usefulness of RAPD markers in the systematic study of Roegneria.  相似文献   

14.
To investigate the genetic diversity and phylogenetic relationships between polyploid Leymus and related diploid species of the Triticeae tribe, inter-simple sequence repeats (ISSR) markers was used to analyze 41 Leymus accessions representing 22 species and 2 subspecies, together with Pseudoroegneria stipifolia (St), Psathyrostachys fragilis (Ns), Australopyrum retrofractum (W), Hordeum bogdanii, H. chilense (H) and Lophopyrum elongatum (Ee). A total of 376 clear and reproducible DNA fragments were amplified by 29 ISSR primers, among which 368 (97.87%) fragments were found to be polymorphic. 8–18 polymorphic bands were amplified by each polymorphic primer, with an average of 12.69 bands. The data of 376 ISSR bands were used to generate Nei’s similarity coefficients and to construct a dendrogram by means of UPGMA. The similarity coefficients data suggested great genetic diversity in genus Leymus and related diploid Triticeae species, the genetic diversity among the different species more abundant than that of the different accessions. The dendrogram and principal coordinate analysis showed explicit interspecific relationships and demonstrated close phylogenetic relationships between Leymus species and Psathyrostachys.  相似文献   

15.
Random amplified polymorphic DNA (RAPD) and amplified fragment length polymorphism (AFLP) markers were used to assess the genetic diversity in 31 species of mangroves and mangrove associates. Four AFLP primer combinations resulted in the amplification of 840 bands with an average of 210 bands per primer combination and 11 RAPD primers yielded 319 bands with an average of 29 bands per primer. The percentage of polymorphism detected was too high indicating the high degree of genetic variability in mangrove taxa both at inter- and intra-generic levels. In the dendrogram, species belonging to a particular family/ genus, taxa inhabiting similar habitats or having similar adaptations tended to be together. There were exceptions too; as many unrelated species of mangroves form clusters. The intrafamilial classification and inter-relationships of genera in the family Rhizophoraceae could be confirmed by molecular analysis. Both the markers RAPD and AFLP were found equally informative and useful for a better understanding of the genetic variability and genome relationships among mangroves and their associated species.  相似文献   

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