首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 250 毫秒
1.
为了保护育种家合法权益、规范种业市场、提高种子市场监管效率等,本研究拟建立一套普通菜豆品种SSR分子标记鉴定体系。首先,遴选12个产地不同、植物学形态差异较大的普通菜豆品种,通过聚丙烯酰胺凝胶电泳筛选出120对多态性高、条带清晰的SSR引物;然后,利用荧光毛细管电泳技术对筛选出的引物多态性在96个普通菜豆品种中进一步检测,最终获得在菜豆基因组上均匀分布、多态性高、峰型稳定的33对SSR核心引物。在此基础上,依据扩增片段长度和荧光标记颜色对核心引物进行分组,并设置参照品种以校正不同实验批次和平台之间的误差,建立了基于SSR标记的品种鉴定体系。同时,构建了包含申请品种、保护品种、主栽品种和地方品系在内的161个普通菜豆品种的指纹数据库。这套核心引物能够将其中的140个品种区分开,遗传相似系数平均值为0.33,表明这些品种遗传多样性较丰富;未区分开的21个品种在产地、父母本、植物学性状等方面极其相似,但能通过部分性状加以区分,表明该套核心引物在辅助近似品种筛选方面非常有效。本研究建立的基于SSR分子标记的普通菜豆品种鉴定体系将为其真实性鉴定及DUS测试近似品种辅助筛选提供有力支撑。  相似文献   

2.
为了解云南莲瓣兰(Cymbidium tortisepalum)的遗传多样性,利用SSR技术对32个莲瓣兰主栽品种进行遗传变异分析,并构建莲瓣兰栽培品种的指纹图谱。结果表明,筛选出的12对多态性高、稳定性好的引物共检测到95个等位基因,每对引物检测到4~18个等位基因,有效等位基因数(N E)为61.489,平均有效等位基因数(NA)为5.124,Shannon信息指数(I)和多态性信息含量(PIC)分别为0.806~2.624和0.789~0.953。12对引物中,以引物SSR03的等位基因数、NE、观测杂合度、I和PIC最高。32个品种在12对引物上都具有不同的特异性条带,可以彼此区别。从12对引物中筛选出3对核心引物SSR02、SSR03和SSR12构建了莲瓣兰主栽品种SSR分子指纹图谱,这3对核心引物组合即可鉴定32个莲瓣兰栽培品种。这为莲瓣兰的品种鉴定、遗传多样性分析和分子育种研究提供理论基础和技术支持。  相似文献   

3.
猕猴桃品种SSR分析的初步研究   总被引:13,自引:0,他引:13  
通过对16对高多态性的猕猴桃SSR引物筛选,选用了9对稳定、适用性好的引物对我国栽培的48个猕猴桃品种(品系)进行了初步研究,在9个多态性位点上共获得213个等位基因片段,其SSR指纹图谱可将供试品种完全区分开。遗传多样性分析和分辨力检测表明,我国猕猴桃栽培品种具有较高的遗传多样性,SSR标记在猕猴桃品种中有较高鉴定效率。中华/美味品种群拥有高比例的共同等位基因,反应出两者极近的亲缘关系。本研究为进一步建立我国猕猴桃栽培品种的分子指纹鉴定体系奠定了基础,为制定猕猴桃品种资源的有效保育和利用策略提供了科学依据,并对深入研究中华猕猴桃和美味猕猴桃间的系统关系提供了实验数据。  相似文献   

4.
核心引物对种质资源遗传多样性分析、品种鉴定、指纹图谱构建等研究具有重要价值。本研究以35个苦荞(Fagopyrum tataricum(L.) Gaertn)审定品种为材料,从91对苦荞EST-SSR引物中筛选出50对多态性引物。综合考虑引物多态性信息量(PIC)大小、鉴别力(DP),筛选出等位变异位点数在2~4,PIC值在0.60~0.78之间的6对引物(SSR9007、SSR6873、SSR7642、SSR2234、SSR6789、SSR68216)构建了供试品种的分子指纹图谱。遗传多样性聚类分析结果表明,供试品种的相似系数为0.50~0.99。当遗传相似系数为0.60时,可将供试品种分为4大类群,其中54.3%的供试品种被聚为一类,表明苦荞审定品种遗传组成差异较小,遗传基础狭窄。聚类结果表明各类群间没有明显的地域分布趋势,但能较好的反映供试品种间的亲缘关系。  相似文献   

5.
以太湖稻区和国内其他地区的39个香稻品种,以及籼型恢复系2个对照品种为研究材料,利用SSR分子标记进行DNA指纹图谱构建和遗传多样性分析。从40对国标中公布的水稻SSR引物中筛选出13对核心引物,在41个水稻品种中共检测到36个多态性片段。据此建立41个水稻品种的DNA指纹图谱,进行聚类分析,发现供试41个品种的遗传相似系数在0.58以上,而供试香稻品种的遗传相似系数在0.64以上,基本反映了不同品种间的亲缘关系。  相似文献   

6.
鉴定烟草种质资源SSR核心引物筛选和验证   总被引:2,自引:0,他引:2  
核心引物对遗传多样性分析、种质资源鉴定、品种纯度和真实性检测、指纹图谱构建等研究具有重要价值。本研究利用均匀分布于烟草24条染色体的278对SSR引物,对20份亲缘关系相对较远的烟草材料进行初步筛选,筛选出32对引物。随后再加上10份亲缘关系较近的材料(共30份)对引物进行复筛,最终确定14对为核心引物。将14对引物对39份烟草材料进行进行系谱分析、品种遗传多样性分析和农艺性状分析聚类,结果表明该套SSR核心引物适用于烟草种质资源鉴定和遗传多样性分析。  相似文献   

7.
SSR与SRAP标记在玉米品种鉴定中的比较研究   总被引:4,自引:0,他引:4  
利用SSR标记和SRAP标记对19个玉米品种及8份莱农15样品进行了分析,比较了2种标记的分辨能力及在亲缘关系和杂交种纯度鉴定中的表现.与SSR标记相比,SRAP标记用于玉米品种鉴定扩增住点数量更多,PIC值更高,具有更高的分辨率;在亲缘关系分析方面,SSR检测的遗传距离变幅更大,2种标记计算的遗传距离呈极显著正相关,分类结果基本一致;在杂交种纯度检测中,SRAP标记的期望位点在杂交种群体中检测率高于SSR标记相应位点,检测杂交种纯度结果更接近田问种植鉴定,因而准确度更高.SRAP在玉米品种鉴定中具有一定的优势,可作为SSR标记技术的有益补充,特别是在杂交种纯度鉴定中应用.  相似文献   

8.
以84份越橘种质为材料,从NCBI公共数据库下载22 402条越橘属(Vaccinium)EST序列,通过CAP3组装软件将EST序列拼接成11 541条unigene序列,其中2 076条unigene序列含有2 679个SSR位点。二核苷酸和三核苷酸重复是主要的SSR类型,约占SSR总数的96.01%。利用Primer Premier 5.0软件设计81对引物,其中55对引物在供试越橘种质中扩增出理想的PCR产物,55对引物均有多态性。聚类分析结果显示,在遗传相似系数为0.70时,可以将供试越橘种质分成两大类。越橘EST-SSR标记可以用于种质鉴定与遗传多样性分析。  相似文献   

9.
利用EST-SSR分子标记技术,对12份大白菜品种鉴定方法进行了研究。通过对GenBank数据库中公布的大白菜EST序列的分析,合成了30对核心EST-SSR引物,其中21对均可得到有效扩增,10对具有较高的多态性。为了更加高效的对大白菜品种进行鉴定,根据这10对多态性较高的引物对12份市售大白菜品种鉴定的结果及扩增条带的相互位置差异,研制了由多个引物对组成的2套复合EST-SSR标记,建立了多重SSR的反应体系及反应条件。筛选得到的2套标记组合,多态率分别为88.9%和97.0%,多态信息量均为0.910%,数据表明这2套复合标记技术可以表达大白菜品种间的多态性,高效准确的对12份大白菜品种进行鉴定。  相似文献   

10.
为了评价SSR分子标记在辣椒(Capsicum annuum L.)品种特异性、一致性、稳定性(DUS)测试中的应用潜力,采用聚丙烯酰胺凝胶电泳技术和毛细管电泳技术,对辣椒SSR引物进行筛选,采用入选的30对核心引物,构建130份不同来源品种的指纹图谱。30对引物共检测到等位基因163个,每对引物等位基因变幅为2~15,平均等位基因数为5.43,多态信息量(PIC)的变异范围为0.17~0.76,平均为0.43。聚类分析表明,该套引物可以将所有参试品种区分开来,遗传基础相近的品种优先聚在一起。130个品种的遗传距离为0.01~0.91。有20对品种遗传距离小于0.10,其中3对品种有1个位点的差异,采用差异位点数判断品种特异性更适合目前辣椒品种现状。采用10对引物对品种0313963-4进行了一致性检测,综合一致性比率R值为96.5%,低于DUS测试中对表型性状一致性的要求。因此SSR标记直接用于辣椒DUS判定还需进一步研究,但是可用于近似品种筛选。  相似文献   

11.
Rose (Rosa × hybrid L.) is one of the most important commercial ornamental crops cultivated worldwide for its beauty, fragrance and nutraceutical values. Characterization of rose germplasm provides precise information about the extent of diversity present among the cultivars. It also helps in cultivar identification, intellectual property right protection, variety improvement and genetic diversity conservation. In the present study, 109 Indian bred rose cultivars were characterized using 59 morphological and 48 SSR markers. Out of 48 SSRs used, 31 markers exhibited polymorphism and 96 alleles were identified with an average of 3.9 alleles per locus. Nei’s expected heterozygosity value of each locus ranged from 0.08 (with SSR ABRII/RPU32) to 0.78 (SSR Rh58). The similarity coefficient values ranged from 0.42 to 0.90 which indicated presence of moderated diversity among Indian cultivars. The neighbor-joining tree based on morphological data grouped the cultivars into two major clusters and several minor clusters based on their morphological resemblance. However, UPGMA dendrogram constructed using matching coefficient values grouped the cultivars into eight different clusters. Interpopulation analysis revealed higher genetic similarities between Hybrid Tea and Floribunda cultivars. An analysis for presence of population sub-structure grouped the Indian cultivars into eight different genetic groups. Analysis of molecular variance revealed apportioning of 97.59% of the variation to within subgroup diversity and 3.07% to between the cultivar groups. We have demonstrated here successful utilization of robust SSR to distinguish cultivars and assess genetic diversity among Indian bred rose cultivars. The information provided here is useful for cultivar identification and protection, cultivar improvement and genetic diversity conservation.  相似文献   

12.
We used eight informative microsatellite markers for fingerprinting and evaluation of genetic similarity among 15 Tunisian olive (Olea europaea L.) cultivars and two feral unknown trees named Soulela 1 and Soulela 2. Thirty-one alleles were revealed, and the number of alleles per SSR varied from 2 (UDO12) to 6 (GAPU71A). Cluster analysis grouped cultivars into three main clusters. The two unknown varieties could not be reliably classified into any of these cultivar groups. SSR analysis indicated the presence of three erroneous denominations of cultivars. We resolved two synonymy cases (Zalmati and Chemlali; Rkhami and Chetoui) and one case of homonymy (Chemlali Tataouine). Genetic analyses of DNA extracted from leaves, oils, and embryos of the two unknown cultivars and the two major Tunisian olive cultivars (Chemlali and Chetoui) were also studied. We conclude that the reliable identification of these two feral cultivars needs to be addressed by a larger set of markers.  相似文献   

13.
Molecular techniques play a critical role in studies of phylogeny and, thus, have been applied to understand the distribution and extent of genetic variation within and between species. In the present study, a genetic analysis was undertaken using molecular markers (9 ISSR and 13 SSR) on 60 ginger cultivars from different regions of the eastern coast of India (Odisha). The data obtained with 22 polymorphic markers revealed moderate to high diversity in the collection. Both ISSR and SSR markers were efficient in distinguishing all the 60 ginger cultivars. A total of 42 and 160 polymorphic bands were observed with ISSR and SSR markers, respectively. However, SSR markers were observed to be better at displaying average polymorphism (63.29%) than ISSR markers (55%). Analysis of molecular variance results showed that 52 and 66% of the variation occurred among different ginger populations, whereas 48 and 34% of the variation was found within populations, respectively, using ISSR and SSR markers, indicating that ginger cultivars display significant genetic diversity at the population level. Principal coordinates analysis and the dendrogram constructed out of combined data of both markers showed grouping of ginger accessions to their respective area of collection, indicating geographical closeness due to genetic similarity irrespective of the relationship that exists at the morphological level.  相似文献   

14.
Because of its wide geographical adaptation and importance in human nutrition, wheat is one of the most important crops in the world. However, wheat yield has reduced due to drought stress posing threat to sustainability and world food security in agricultural production. The first stage of drought tolerant variety breeding occurs on the molecular and biochemical characterization and classification of wheat genotypes. The aim of the present study is characterization of widely grown bread wheat cultivars and breeding lines for drought tolerance so as to be adapted to different regions in Turkey. The genotypes were screened with molecular markers for the presence of QTLs mapped to different chromosomes. Results of the molecular studies identified and detected 15 polymorphic SSR markers which gave the clearest PCR bands among the control genotypes. At the end of the research, bread wheat genotypes which were classified for tolerance or sensitivity to drought and the genetic similarity within control varieties were determined by molecular markers. According to SSR based dendrogram, two main groups were obtained for drought tolerance. At end of the molecular screening with SSR primers, genetic similarity coefficients were obtained that ranged from 0.14 to 0.71. The ones numbered 8 and 11 were the closest genotypes to drought tolerant cultivar Gerek 79 and the furthest genotypes from this cultivar were number 16 and to drought sensitive cultivar Sultan 95. The genotypes as drought tolerance due to their SSR markers scores are expected to provide useful information for drought related molecular breeding studies.  相似文献   

15.
Seventy-seven olive accessions corresponding to 25 cultivars from the Extremadura region of Spain were studied using four microsatellite or SSR markers in order to fingerprint them, and evaluate genetic similarity and relationships between local and introduced olive cultivars. The number of alleles per locus ranged from 4 to 8, with a mean of 6.25 alleles per primer pair (a total of 25 alleles). The observed heterozygosity ranged from 0.58 to 0.95, while the expected heterozygosity varied between 0.68 and 0.83. The polymorphism information content values ranged from 0.63 to 0.79. The mean polymorphism information content value of 0.70 for the SSR loci provided sufficient discriminating ability to evaluate the genetic diversity among the cultivars. The SSR data allowed unequivocal identification of all the cultivars; a combination of three SSR markers was sufficient to discriminate all 25 olive cultivars. A dendrogram was prepared, using the unweighted pair-group method with arithmetic mean clustering algorithm; it depicted the pattern of relationships between the cultivars. Most of the local cultivars grouped according to their geographic origin. No clear clustering trends were observed when the morphological traits of fruit endocarps or fruit use of cultivars were employed as analysis criteria. We conclude that there is a high level of variability among local olive cultivars from the Extremadura region at both the morphological and molecular levels; these data should be useful for identifying and distinguishing local germplasm.  相似文献   

16.
Red rod is an economically important disease of sugarcane caused by the fungus Colletotrichum falcatum. We used a simple sequence repeat (SSR)-based marker system to identify and analyze genetic relationships of red rot resistant and susceptible sugarcane cultivars grown in Pakistan. Twenty-one highly polymorphic SSR markers were used for DNA fingerprinting and genetic diversity analysis of 20 sugarcane cultivars. These SSR markers were found to be highly robust; we identified 144 alleles, with 3-11 alleles per marker and a mean of 6.8. Three SSR markers were able to identify all 20 cultivars. DNAMAN(?)-generated homology tree was used to analyze genetic diversity among these cultivars; all cultivars shared 58% or more similarity. We correlated polymorphism information content and resolving power values with marker effectiveness in the process of sugarcane cultivar identification. We concluded that a small number of SSR-derived DNA markers will allow breeders to identify red rot resistant and susceptible cultivars.  相似文献   

17.
SSR标记鉴定浙江省主要无性系茶树品种的研究   总被引:4,自引:0,他引:4  
为促进浙江省茶树育种的发展,利用SSR引物对浙江省茶树育成品种的遗传多样性进行了研究,筛选出可用于鉴别浙江省茶树品种的核心鉴定引物和标准品种,并进一步应用于未知茶苗身份鉴定。首先,利用35对SSR引物研究了36个茶树育成品种,并进行聚类分析;然后,根据电泳谱带和基因型筛选出核心鉴定引物和标准品种;最后,对4株未知茶苗进行了身份鉴定。结果表明:共有34对引物表现出多态性,各品种基本按遗传背景聚类,重复样本间遗传距离介于0~0.094;有10对引物确定为核心鉴定引物,8个品种为标准品种;4株未知身份茶苗中,NH-01属于乌牛早品种,另外3株并非浙江现有品种。本研究认为,核心鉴定引物在两个浙江育成品种间差异引物对≥2时,应判定为不同品种;差异引物对≤1时,应判定为相同品种或极相似品种,必要时应引入其余24对引物计算遗传距离进一步验证,遗传距离>0.140判定为不同品种,遗传距离≤0.140判定为同一品种。  相似文献   

18.
BACKGROUND AND AIMS: Aglaonema is an important ornamental foliage plant genus, but genetic relationships among its species and cultivars have not been reported. This study analysed genetic relatedness of 54 cultivars derived from nine species using amplified fragment length polymorphism (AFLP) markers. METHODS: Initially, 48 EcoRI + 2/MseI + 3 primer set combinations were screened, from which six primer sets that showed clear scoreable and highly polymorphic fragments were selected and used for AFLP reactions. AFLP fragments were scored and entered into a binary data matrix as discrete variables. Jaccard's coefficient of similarity was calculated for all pair-wise comparisons among the 54 cultivars, and a dendrogram was constructed by the unweighted pair-group method using the arithmetic average (UPGMA). KEY RESULTS: The number of AFLP fragments generated per primer set ranged from 59 to 112 with fragment sizes varying from 50 to 565 bp. A total of 449 AFLP fragments was detected, of which 314 were polymorphic (70 %). All cultivars were clearly differentiated by their AFLP fingerprints. The 54 cultivars were divided into seven clusters; cultivars within each cluster generally share similar morphological characteristics. Cluster I contains 35 cultivars, most of them are interspecific hybrids developed mainly from A. commutatum, A. crispum or A. nitidum. However, Jaccard's similarity coefficients among these hybrids are 0.84 or higher, suggesting that these popular hybrid cultivars are genetically much closer than previously thought. This genetic similarity may imply that A. nitidum and A. crispum are likely progenitors of A. commutatum. CONCLUSIONS: Results of this study demonstrate the efficiency and ease of using AFLP markers for investigating genetic relationships of ornamental foliage plants, a group usually propagated vegetatively. The AFLP markers developed will help future Aglaonema cultivar identification, germplasm conservation and new cultivar development.  相似文献   

19.
As a popular flowering species with many cultivars, Cymbidium ensifolium (L.) is commercially important in horticulture. However, so far little has been known about genetic diversity and conservation genetics of this species. Understanding of the genetic variation and relationships in cultivars of C.?ensifolium is a prerequisite for development of future germplasm conservation and cultivar improvement. Here we report assessment of genetic variations in C.?ensifolium cultivars using the DNA fingerprinting technique of inter-simple sequence repeats (ISSR). A total of 239 ISSR loci were identified and used for evaluation of genetic variation with a selection of 19 ISSR primers. Among these ISSR loci, 99.16% were polymorphic with wide genetic variation as shown by Nei??s gene diversity (H?=?0.2431) among 85 tested cultivars. ISSR fingerprinting profiles showed that each cultivar had its characteristic DNA pattern, indicating unequivocal cultivar identification at molecular level. Eighteen cultivar-specific ISSR markers were identified in seven cultivars. The cultivar Sijiwenhan was confirmed as hybrid by four ISSR primers. Several cultivars with same name but different geographical origins were distinguished based on their ISSR profiles. A dendrogram generated with ISSR markers could group 73 of 85 cultivars into four major clusters. Further analysis of ISSR variation revealed that about 69% of total genetic variation in this species is due to genetic divergence inside geographical groups. Our results suggest that both germplasm collection and in?situ conservation are important for future planning of C.?ensifolium species conservation.  相似文献   

20.
Simple sequence repeats (SSR) is one of the most suitable markers for variety identification as it has great discrimination power for varieties with limited genetic variation. Genetic characterization of commercial tomato varieties was investigated using 33 SSR markers and 22 morphological traits. Thirty three SSR primer pairs were screened for 63 tomato varieties. A total of 132 polymorphic amplified fragments were obtained by using 33 SSR markers. The average polymorphism information content (PIC) was 0.628 ranging from 0.210 to 0.880. One hundred thirty two SSR loci were used to calculate Jaccard's distance coefficients for UPGMA cluster analysis. A clustering group of varieties, based on the results of SSR analysis, were categorized into cherry and classic fruit type varieties. Almost all of the varieties were discriminated by SSR marker genotypes. The relationship between morphological and molecular data for 33 varieties out of 63 varieties was analyzed using Mantel matrix correspondence test. The correlation value between two methods was 0.644. However, SSR based dendrogram topology showed some similar form with morphological traits at the two main groups. Therefore, these markers may be used wide range of practical application in variety identification and pre-screening for distinctiveness test of tomato varieties.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号