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1.
桂花品种资源的遗传多样性分析   总被引:2,自引:0,他引:2  
根据桂花(Osmanthus fragrans)品种的形态特征,结合AFLP分子标记,对部分桂花栽培品种进行了遗传多样性分析。结果表明,桂花品种之间存在着较为丰富的遗传多样性,AFLP分子标记检测到的多态性条带占总扩增条带的57.46%。根据桂花品种的主要性状特征,利用数值分类法对其进行分类,并用UPGMA法对AFLP结果进行聚类分析,结果均显示桂林地区的桂花品种存在明显的区域性,花色可以作为重要的分类标准,同时对桂花品种的分类系统进行了探讨。  相似文献   

2.
基于AFLP分子标记的桂花品种核心种质的构建   总被引:1,自引:0,他引:1  
用100个桂花品种荧光AFLP分子标记信息构建核心种质。利用获得的指纹信息,运用UPGMA聚类取样法,采用Kimura 2-parameter遗传距离,多次聚类随机抽样。结果表明:(1)8对引物共获得514条带,平均每对引物获得64条带。(2)从100个桂花品种中筛选了30个样本的核心种质。(3)比较核心种质和全部种质的Shan-non-Wiener指数(H′)和Simpson指数(D),t检验值均说明核心种质的遗传多样性指数与全部种质遗传多样性没有明显差异,表明所构建的核心样品能够很好地保留原始100个桂花品种的遗传多样性。  相似文献   

3.
目的:分析云南芋头种质资源遗传多样性。方法:应用扩增片段长度多态性(AFLP)指纹技术,用3对AFLP引物对采集自云南省的9份芋头栽培品种及1份野生品种进行研究,分离AFLP多态性条带。结果:共分离到60个AFLP多态性条带,AFLP多态位点百分率为96.77%,云南芋头种质资源在DNA分子水平上表现出丰富的遗传多样性。聚类分析将10份芋头品种分为2组,遗传距离为0.101~0.908。结论:AFLP指纹技术是筛选品种间差异基因的有效方法,研究结果为云南省芋头品种鉴定、遗传相关性分析、特殊功能基因的分离等工作提供了一定的理论基础。  相似文献   

4.
探讨2种分子标记技术在沉香属药用植物遗传多样性研究中的应用。用ISSR和AFLP分子标记分析了海南、云南、广东、广西等地17份沉香属植物的遗传多样性。14个ISSR引物、8对AFLP引物分别检测到119、919个位点,多态位点百分率分别为73.95%、86.94%。由于AFLP标记具有较高的多态性位点检测效率,AFLP标记分析的遗传多样性参数高于ISSR。虽然基于Nei’s遗传距离的聚类分析结果存在着一定的差异,但用Mantel检测对两种方法检测的遗传一致度进行相关性分析表明,它们之间存在着明显的相关性(r=0.7705,P=0.0003)。ISSR标记与AFLP标记均能应用于沉香属植物的遗传多样性研究。两种标记的研究结果均揭示出沉香属植物具有较高的遗传多样水平。  相似文献   

5.
遗传多样性是生物学研究中的一个重要领域,研究鸡的遗传多样性,不仅能加强生物多样性的保护。同时对起源进化、分类鉴定及遗传育种等都有重要的意义。本文对目前DNA水平鸡的遗传多样性的研究方法和研究进展进行了详细的阐述。重点介绍了DNA分子标记的特征;概括了在鸡遗传多样性分子标记的方法,包括微卫星分子标记(SSR)、扩增片段长度多态性(AFLP)、随机扩增多态性标记(RAPD)、限制性片段长度多态性标记(RFLP)和单核苷酸多态性标记(SNP)。本文综述了最近有关鸡DNA水平的遗传多样性的研究方法在系统学、遗传结构、生物地理等研究中的应用情况;提出在研究鸡遗传多样性时,可根据研究的目的,选择合适的方法。  相似文献   

6.
51个春兰(Cymbidium goeringii)品种的AFLP遗传多样性分析   总被引:1,自引:0,他引:1  
为了揭示春兰品种的遗传多样性和亲缘关系,为春兰种质资源的有效利用和开发提供依据,采用AFLP技术对51个春兰品种进行了遗传多样性分析,经筛选得到了8对条带清晰、多态性高的引物,共扩增出1315条DNA片段,其中多态性条带为1217条,平均1对引物扩增条带164条,多态性带152条,多态性位点频率为92.5%,表明春兰品种具有丰富的遗传多态性。49个品种含有特有带。51个品种间遗传相似系数变化范围为0.501~0.716,聚类分析表明,51个春兰品种共分为5个类群,来自同一地区的品种并没有聚在一起,表明春兰品种的遗传背景混乱。AFLP分子标记技术能有效地分析春兰品种的遗传多样性和亲缘关系。  相似文献   

7.
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   

8.
中国兰花资源分子标记鉴定研究进展   总被引:2,自引:0,他引:2  
系统阐述了RAPD、SSR、RFLP、AFLP和其它几类分子标记在中国兰花种质资源鉴定及遗传多样性研究中的应用进展。同时指出,应用分子标记研究兰属植物的遗传多样性对兰属的科学分类及新品种选育等具有指导意义,并提出展望。  相似文献   

9.
怒江干热河谷杧果种质资源的表型和AFLP遗传多样性分析   总被引:1,自引:0,他引:1  
利用表型和AFLP标记,对怒江干热河谷57份杧果种质进行遗传多样性分析。表型性状分析结果表明:8个表型性状在不同的种质间表现出较大的差异,变异系数变化范围为16.98%~61.50%,多样性指数(H’)平均为3.975,其中单果重变异较大。AFLP分析结果显示:57份种质共产生1098条带,其中多态性条带为1032条,多态性比率为94.0%,相似系数在0.55~0.82之间。AFLP聚类分析结果及主成分分析结果均表明种质间具有复杂的遗传关系,且怒江干热河谷杧果种质的亲缘关系与地理分布没有明显的相关性。表型性状聚类和AFLP分子标记聚类分析的结果相对一致,均能较准确地将优势类群聚在一起,且表明57份杧果种质具有较丰富的遗传多样性。  相似文献   

10.
用AFLP分子标记探讨吴茱萸的遗传多样性   总被引:1,自引:0,他引:1  
用AFLP标记分析研究吴茱萸与其变种石虎和疏毛吴茱萸之间的遗传多样性.采用AFLP技术,从18对引物中筛选出3对引物.对19株不同地域的3种吴茱萸AFLP指纹图谱进行了分析,计算不同品种间的遗传距离和构建吴茱萸的聚类分析树状图.3对引物共扩增出93条带,其中57条(61.3%)呈多态性,吴茱萸种质内遗传距离为0.059~0.765;在相似系数0.48的水平上.19份吴莱萸材料可以大致分为2个类群.吴茱萸不同品种问遗传距离差异较大,遗传分类在一定程度上与传统的分类方法是一致的,这暗示遗传变异与地域分布有相关性.  相似文献   

11.
? Premise of the study: Microsatellite markers were developed for a traditional fragrant flowering tree of China, Osmanthus fragrans, to investigate the genetic diversity of its wild populations and to facilitate the classification and identification of O. fragrans cultivars. ? Methods and Results: Using the fast isolation by AFLP of sequences containing repeats (FIASCO) protocol, 29 primer sets were identified in two wild populations. All primer pairs displayed polymorphism. The number of alleles per locus ranged from two to eight, with a mean of 3.9. The expected and observed heterozygosities ranged from 0.125 to 0.932 and from 0.083 to 0.917, respectively. The transferability of the 29 primer pairs was tested on O. serrulatus, O. delavayi, and O. yunnanensis (three individuals for each species). Eighteen (62.1%), 16 (55.2%), and 21 (72.4%) of them were successfully amplified in O. serrulatus, O. delavayi, and O. yunnanensis, respectively. ? Conclusions: These markers will facilitate further studies on the population genetics of O. fragrans and the classification and identification of O. fragrans cultivars.  相似文献   

12.
Data on genetic similarity among crop cultivars is of vital importance for the plant breeder. The objectives of this study were to group pepper (Capsicum annuum L.) genotypes into clusters according to their distances as estimated by morphological traits and amplified fragment length polymorphism (AFLP) markers and to assess the relationships between the two. Thirty-nine pepper genotypes obtained from different countries were grown in the greenhouse at University of the Free State, South Africa, during 2001 and 2002 in a randomized complete block design with three replications. A total of 20 different morphological traits were measured and six AFLP primer pairs were used to estimate pairwise genetic distances. Both datasets showed high genetic distances among the different genotypes, indicating high genetic diversity among them. The mean genetic distance among Ethiopian pungent elongated-fruit genotypes, was lower than that between them and the introduced ones. Morphological and AFLP distance estimations generally clustered together genotypes with similar fruit sizes. Significant, positive correlation was observed between morphological and AFLP diversity estimations. The narrow genetic basis among the Ethiopian pungent elongated-fruit cultivars suggests that the pepper breeding program of Ethiopia should focus on enriching its germplasm through local collection and introductions from other parts of the world.  相似文献   

13.
A new image of plantain diversity assessed by SSR,AFLP and MSAP markers   总被引:7,自引:0,他引:7  
Using both SSR and AFLP markers, the genetic diversity of 30 plantains constituting a representative sample of the phenotypic diversity was assessed. The results confirmed a very narrow genetic base of this cultivar group. SSR and AFLP data support the hypothesis that these cultivars may have arisen from vegetative multiplication of a single seed. MSAP were used to survey cytosine methylation status at CCGG sites in order to obtain an alternative source of diversity data. A higher degree of polymorphism was revealed allowing the classification of the samples into three clusters. No correlation was observed between the phenotypic classification and methylation diversity. Implications for breeding programs are discussed.  相似文献   

14.
用SSR和AFLP技术分析花生抗青枯病种质遗传多样性的比较   总被引:10,自引:0,他引:10  
由Ralstonia solanacearum E.F.Smith引起的青枯病是若干亚洲和非洲国家花生生产的重要限制因子,利用抗病品种是防治这一病害最好的措施。虽然一大批抗青枯病花生种质资源材料已被鉴定出来,但对其遗传多样性没有足够的研究,限制了在育种中的有效利用。本研究以31份对青枯病具有不同抗性的栽培种花生种质为材料,通过简单序列重复(SSR)和扩增片段长度多态性(AFLP)技术分析了它们的遗传多样性。通过78对SSR引物和126对AFLP引物的鉴定,筛选出能显示抗青枯病种质多态性的SSR引物29对和AFLP引物32对。所选用的29对多态性SSR引物共扩增91条多态性带,平均每对引物扩增3.14条多态性带;32对多态性AFLP引物共扩增72条多态性带,平均扩增2.25条多态性带。在所筛选引物中,4对SSR引物(14H06,7G02,3A8,16C6)和1对AFLP引物(P1M62)检测花生多态性的效果优于其他引物。SSR分析获得的31个花生种质的遗传距离为0.12-0.94,平均为0.53,而AFLP分析获得的遗传距离为0.06~0.57,平均为0.25,基于SSR分析的遗传距离大于基于AFLP分析的遗传距离,疏枝亚种组的遗传分化相对大于密枝亚种组。基于两种分析方法所获得的聚类结果基本一致,但SSR数据聚类结果与栽培种花生的形态分类系统更为吻合。根据分析结果,对构建青枯病抗性遗传图谱群体的核心亲本和抗性育种策略提出了建议。  相似文献   

15.
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   

16.
Banana is one of the most important subtropical crops. The genetic system, however, is relatively unknown and is complicated by specific interhybridization, heterozygosity, and polyploidy, which are common in most clones. These factors make identification of closely related banana cultivars difficult, particularly when sterile. Amplified fragment length polymorphism (AFLP) analysis using eight primer combinations was carried out on 16 banana cultivars. Results showed that AFLP could be used to distinguish the different cultivars by their unique banding patterns. Unique AFLP molecular markers were detected for 12 banana cultivars, which can be used to develop specific probes for identification purposes. The cluster analysis also revealed the need for a link between genotype studies using molecular techniques and the current system of classification of Musa cultivars based purely on morphological traits.  相似文献   

17.
We assessed the genetic diversity in Japanese indigenous common buckwheat (Fagopyrum esculentum) cultivars using amplified fragment length polymorphism (AFLP) and simple sequence repeat (SSR) markers and investigated the relationships between the genetic diversity and agronomic traits. The average expected intracultivar hetero zygosity was 0.303 for AFLP and 0.819 for SSR. The differentiations among agroecotypes, among cultivars within an agroecotype, and among cultivars were small (0.002, 0.024, and 0.026 for SSR and 0.013, 0.013, and 0.026 for AFLP, respectively) but statistically significant from zero except for the SSR differentiation among agroecotypes. In principal coordinates analysis, cultivars within the same agroecotype tended to cluster, indicating that agroecotypes well reflected the genetic relationships among cultivars. In AFLP, the differentiation among the agroecotypes was more distinct than in SSR, and genetic distance showed a moderate correlation with the difference in quantitative traits, indicating that AFLP can resolve the relationships among cultivars with better resolution than SSR. By contrast, SSR may be more sensitive to demographic changes. Four of the five SSR markers showed a significant positive correlation (Kendall's tau = 0.382-0.607) between allelic richness and variation in flowering timing, indicating that cumulative bottleneck events have occurred during the population history, with a decline in the variation of photosensitivity of flowering.  相似文献   

18.
Banana is one of the most important subtropical crops. The genetic system, however, is relatively unknown and is complicated by specific interhybridization, heterozygosity, and polyploidy, which are common in most clones. These factors make identification of closely related banana cultivars difficult, particularly when sterile. Amplified fragment length polymorphism (AFLP) analysis using eight primer combinations was carried out on 16 banana cultivars. Results showed that AFLP could be used to distinguish the different cultivars by their unique banding patterns. Unique AFLP molecular markers were detected for 12 banana cultivars, which can be used to develop specific probes for identification purposes. The cluster analysis also revealed the need for a link between genotype studies using molecular techniques and the current system of classification of Musa cultivars based purely on morphological traits.  相似文献   

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