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1.
Knowledge about the extent of genetic diversity/relatedness in mango germplasm is vital for developing coherent strategies for future gains in productivity. The genetic diversity/relatedness among mango cultivars/genotypes developed in Pakistan has not been investigated previously. We have assessed the genetic diversity among 25 mango genotypes/cultivars using randomly amplified polymorphic DNA (RAPD). Sixty random ten-mer primers were surveyed, out of which 45 yielded amplicons in all the genotypes. Genetic similarity between genotypes/cultivars was in the range of 64–89% with an average of 74%. Similarly, the genetic relatedness among all variants derived from a mango cultivar Chaunsa was in the range of 81.18–88.63%. These coefficients were utilized to construct a dendrogram using the unweighted pair group of arithmetic means (UPGMA). The genotypes were grouped into three (A, B, C) clusters. Generally, genotypes originating from Pakistan were grouped in cluster ‘A’ while cluster ‘B’ primarily composed of southern India as well as Florida cultivars. Kensington Pride was the most distantly related genotype which grouped with Maya and Yakta, forming a distinct cluster ‘C’.  相似文献   

2.
The ‘Genome database for Rosaceae (GDR)’ provides a large collection of expressed sequence tags (ESTs) harboring simple sequence repeats (SSRs) from several Rosaceae genera, including Rosa (rose). Primer pairs flanking SSR were designed for 312 unique Rosa ESTs based on GDR database. Eight rose (Rosa hybrida L.) genotypes were tested for PCR amplification, and 287 (92%) of the primer pairs generated allele-specific PCR bands that were readily scored. From 183 (63.7%) primer pairs that evidenced polymorphic alleles among the eight rose cultivars, 20 pairs evidencing EST sequence homology to known gene functions and high levels of polymorphism were selected and utilized for DNA fingerprinting and genetic diversity assessments of 47 rose hybrids. A total of 202 polymorphic bands were scored and generated unique fingerprints for each rose hybrid. The Nei–Li genetic similarity coefficients among 1081 pair-wise comparisons of 47 cultivars exhibited a broad range of genetic variations from 0.30 (‘Grand King’ and ‘Carnival’) to 0.99 (‘First Red’ and ‘Red Champ’). UPGMA cluster analysis divided 47 hybrids into five major groups and two sub-groups. The cross-species transferability of 273 EST-SSR primer pairs was evaluated using four genotypes of the strawberry, a genus member of the Rosaceae family. PCRs on the DNA samples of strawberry were successful for 165 primer pairs; among these, 123 pairs amplified 243 polymorphic bands. As surrogates of the marker transfer, the phenetic relationship among the four strawberry genotypes was evaluated. Genetic similarity coefficients varied from 0.78 (‘Maehyang’ and ‘Janghyee’) to 0.64 (‘Janghyee’ and ‘Pragana’). The results of cluster analysis showed that the three octaploid strawberry cultivars were quite similar, whereas the diploid ‘Pragana’ was related distantly at the genomic DNA level. The EST-SSR markers developed in the present study can be efficiently utilized for genetic diversity studies in Rosaceae.  相似文献   

3.
Floral morphology, random amplified polymorphic DNA (RAPD), and amplified fragment length polymorphism (AFLP) were used to characterize and verify genetic diversity within a white sapote cultivar collection and to develop molecular markers for germplasm identification. On the basis of floral morphology, the cultivars were classified into three types: type I included 23 cultivars with large ovaries and small anthers; type II included 13 cultivars with small ovaries and large anthers; and type III included one cultivar, named ‘Maltby’, with a large ovary and large anthers. DNA was isolated from 39 cultivars of white sapote and subjected to RAPD and AFLP analysis using 24 and 7 primers, respectively. One hundred and sixty-eight RAPD and 286 AFLP bands were used to assess genetic characterization among white sapote. Sixty percent of the RAPD and 77% of the AFLP amplification products were polymorphic among accessions. RAPD or AFLP markers differentiated all white sapote cultivars effectively. Moreover, each flower type was characterized as specially associated with two RAPD bands. UPGMA dendrograms based on RAPD and AFLP data, showed the majority of the cultivars from flower type I and flower type II clustering together. Finally 101 RAPD markers and 220 AFLP markers were used to construct a neighbor-joining dendrogram. This showed that the 37 cultivars could be classified into six distinct clusters, between which the similarity coefficient was as low as 0.00–0.55, even though the cultivars were morphologically very similar. The remaining two cultivars namely ‘Smathers’ and ‘Maltby’ were found genetically very distant from the other cultivars in RAPD, AFLP or combined RAPD and AFLP based dendrograms. The results suggested that the level of genetic variation among white sapote cultivars is diverse and the morphological and molecular data may lead to representation of the cultivar relationships as well as flower type discrimination.  相似文献   

4.
Three DNA molecular marker systems, RAPD, ISSR and SSR, were used to test seed genetic purity of two commercial hybrid tomato (Lycopersicon esculentum L.) cultivars ‘Hezuo 903’ and ‘Sufen No. 8’. Genomic DNA from the two F1 hybrid cultivars and their corresponding parental lines was screened with 218 RAPD decamer primers, 54 ISSR primers and 49 SSR primers. Among the 321 primers, 4 primers for ‘Hezuo 903’ and 3 for ‘Sufen No. 8’, which could produce both female and male parent-specific markers, were selected for testing the genetic purity. A total of 210 hybrid individuals of each cultivar were analyzed using the identified primers. The combined results of the marker analysis showed that eight of the 210 F1 plants in ‘Hezuo 903’ and 13 of 210 in ‘Sufen No. 8’ were false hybrids, and the overall genetic purity of the two F1 hybrid seed lots was 96.2 and 93.8%, respectively. This study showed that RAPD and SSR markers could provide a practical and efficient tool in quality control of the tomato commercial hybrid seeds.  相似文献   

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6.
Fruit traits and molecular markers (RAPD) were used to survey genetic similarities and inheritance pattern of offspring, derived from self- and open pollination of pomegranate cv. Malase-Tourshe-Saveh (MTS) as well as progenies derived from cross between ‘MTS’ and ‘Narm-Daneh’ (ND) a soft-seed cultivar in the present study. Clustering based on fruit traits, divided the accessions firstly into two major groups, sweets and sour or sweet–sours. Members of sub-clusters were different in fruit characters, and seed softness also was affecting the grouping of individuals. Offspring of ‘MTS’ × ’ND’ showed somehow seed softness with varying degrees compared to other individuals. In RAPD analysis, by using 26 polymorphic primers, 325 fragments were produced from 39 individuals, among which 70 reproducible, polymorphic bands were scored for data analysis. NTsys and Bootstrap software were used for RAPD data analysis and respective dendrogram depicted by Jaccard's similarity coefficients using UPGMA method. The similarity coefficients were ranging from 0.2 to 0.94 and the lowest was obtained between pollen parent (ND cv.) and a genotype from open pollination of MTS cultivar. The highest similarity coefficient (0.94) was observed between two offspring both from self-pollination of MTS cultivar. In corresponding dendrogram, pollen parent was separated from other genotypes and laid individually in a sub-cluster, while the mother plant clustered with its progenies. In addition, some marker–trait associations were observed, especially for seed softness.  相似文献   

7.
The pedigrees of most rabbiteye blueberry (Vaccinium virgatum) cultivars can be traced back to four wild selections, ‘Ethel’, ‘Clara’, ‘Myers’, and ‘Black Giant’; thus, they result from a very narrow germplasm base and are highly related. Until now randomly amplified polymorphic DNA (RAPD) has been the only type of molecular marker used in rabbiteye blueberry. Here we have tested whether a type of sequence-tagged site (STS) marker which utilizes specific ∼20-mer primers from expressed sequence tags (ESTs) of highbush blueberry (V. corymbosum), called EST-PCR markers, are useful for genetic fingerprinting and relationship studies in rabbiteye blueberry. Of 44 EST-PCR primer pairs, from an assortment of genes expressed in flower buds of cold acclimated and non-acclimated plants, and shown to amplify polymorphic fragments among a collection of highbush genotypes, 40 (91%) resulted in successful amplification, and 33 of those (83%) amplified polymorphic fragments among the rabbiteye genotypes. The average number of scorable bands per primer pair was two. A dendrogram constructed from genetic similarity values, based on the EST-PCR marker data, tended to group siblings and parent/progeny together, generally agreeing with pedigree information. A group of 20 markers from five EST-PCR primer pairs distinguished all the genotypes in this study. These markers are as easy to generate and as affordable as RAPDs, but are based on actual gene sequences, and should have general utility for DNA fingerprinting, genetic diversity, and mapping studies.  相似文献   

8.
不同山楂品种亲缘关系的RAPD分析   总被引:3,自引:0,他引:3  
为探讨山楂品种间的亲缘关系,采用RAPD技术对20个不同品种的山楂材料进行了基因组DNA多态性分析。从120个引物中筛选出15个10bp的随机引物对所选山楂品种的DNA样品进行PCR扩增,共得到216条谱带,177条表现多态性,多态性比率达81.9%,其中包含27条特异性谱带,揭示了山楂植物丰富的遗传多样性。且利用NTSYS软件和UPGMA法对扩增结果进行了品种间相似系数的计算及聚类分析,结果表明相似系数在0.71~0.87,实生楂与其他山楂品种亲缘关系较远。  相似文献   

9.
Banana (Musa spp.) is one of the most important crops in the world. In this study, 216 banana accessions, 184 from the National Banana Germplasm Collection of China (NBGCC) and 32 from the International Network for the Improvement of Banana and Plantain (INIBAP), were used to determine the genome composition of banana plants in these collections and to estimate their genetic diversity. The genome composition was examined using PCR-RFLP markers. The molecular data for all but one accession (ITC 1231) from INIBAP were in agreement with the initial records based on phenotypic characteristics. Microsatellite (SSR) markers were used to investigate the genetic variability and relationships among these banana accessions. Ten of the 47 primer pairs tested consistently produced reproducible and discrete fragments. We identified a total of 92 alleles, ranging from 5 to 15 per locus. The genetic similarity between the accessions ranged between 0.1 and 1, when estimated using Jaccard's coefficient. The UPGMA method based on genetic similarities, grouped the NBGCC accessions according to those containing the ‘A’ and ‘B’ genomes. However, this analysis could not separate all the accessions, especially the somatic mutations, using the primers in this study. These data indicated that limited genetic variation exists within these accessions and the collections of NBGCC should include a much wider range of banana plant material.  相似文献   

10.
A collection of 70 olive samples, originating from diverse areas in central-southern Italy (Abruzzo, Apulia, Calabria, and Umbria) and corresponding to 3 major cultivars denominations (‘Carolea’, ‘Coratina’ and ‘Frantoio’), was genotyped at 10 microsatellite loci. In total, 44 alleles with a mean number of 4.4 alleles per locus were detected. The molecular analysis, allowed the study to show a clear genetic diversity between the three cultivars ‘Carolea’, ‘Coratina’ and ‘Frantoio’ and to state that ‘Carolea’ is a polyclonal cultivar, while ‘Coratina’ and ‘Frantoio’, are probably monoclonal ones. The analysis of intra-varietal polymorphism, through the SSR analysis, proved to be very useful both for varietal identification and for intra-varietal ones. Our work shows that the current designations of olive cultivars fall short of describing the genetic variability among economically important plant material. A thorough investigation of the existing variability will prove of major importance for both management and economic production of olive trees.  相似文献   

11.
Bud sports have been widely exploited for creating novel cultivars in vegetatively propagated plants. However, bud sports of tree peony have rarely occurred nor been applied to breeding. We used sequence related amplified polymorphism (SRAP) markers to characterize two tree peony groups with bud sports. ‘Er Qiao’ and ‘Luo Yang Hong’ formed group I and are derived from Chinese cultivars, while ‘Shima-nishiki’ and ‘Taiyō’ formed group II and are related to Japanese cultivars. The DNA samples were evaluated with 25 different primer pairs. This resulted in a total of 149 different amplicons in Group I, of which 80.5% were polymorphic. Group II generated a total of 57 amplicons, of which 63.2% were polymorphic. The two groups shared 43 amplicons. The genetic similarity among the cultivars ranged from 0.33 to 0.60. The two bud sports groups were apparently separated on the unweighted pair-group method with arithmetic averages cluster analysis tree. The results demonstrated that this marker system appeared effective in detecting molecular differences between original parents and their bud sports in tree peony. This study provides a technical base for characterizing plants with bud sports, which are valuable genetic resources for further breeding.  相似文献   

12.
In order to study the extensively genetic diversities of more than 700 cultivars of Chinese jujube, it is necessary to utilize various informative DNA markers. SSR markers are highly polymorphic, co-dominant, locus-specific markers widely used in genetic studies, but less used in Chinese jujube because of no specific primers available. In this study, we used the approach of selectively amplified microsatellite (SAM) to develop SSR markers for Chinese jujube and its related species. Three cultivars (Dongzao, Dalilongzao and Jinsixiaozao) were selected to perform the approach of SAM with CT repeats. There were totally 25 primers obtained, of which we selected 16 primers available to detect the polymorphism in populations of 24 Chinese jujube cultivars, two wild jujube varieties and two Indian jujube cultivars. Based on these primers, genetic relationships of the 28 samples were constructed in a dendrogram according to the UPGMA cluster analysis. The samples were clustered into three main groups, including Chinese jujube, wild jujube and Indian jujube as expected. The 16 sequence-specific SSR primers could efficiently distinguish all the 24 cultivars of Chinese jujube, except for two cultivars, Jinsixiaozao and its ‘stoneless’ mutant, Wuhexiaozao. As a result, SAM was a very efficient method in targeted developing sequence-specific SSR primers in Chinese jujube. Furthermore, SAMs could also be used as high polymorphic molecular markers independently. The further study would focus on developing other oligonucleotide repeat types and applying more SSRs available in the genetic research of Chinese jujube.  相似文献   

13.
核用银杏品种遗传关系的AFLP分析   总被引:1,自引:0,他引:1  
采用AFLP技术对34份核用银杏品种进行遗传多样性和亲缘关系分析。结果表明:8对AFLP引物组合共扩增出1 337条谱带,多态带百分率为99.63%;品种间的遗传相似系数在0.2915 ~ 0.6812之间,平均值为0.4911;在相似系数为0.50时供试品种可分为4大类;依据AFLP结果建立了核用银杏品种指纹图谱。核用银杏4个类型的Nei’s遗传多样性指数范围为0.1392 ~ 0.2014,总体为0.2112,Shannon’s信息指数范围为0.2138 ~ 0.3165,总体为0.3417;4个类型品种间的遗传分化系数为0.0871,基因流为5.4230。结合特异位点、相似系数、聚类结果等筛选出8份核用银杏优质品种。  相似文献   

14.
利用RAPD技术评估金针菇种质资源   总被引:11,自引:1,他引:10  
本文利用20个10核苷酸的随机引物对来源不同而具有代表性的16个金针菇菌株进行了RAPD分析研究。结果表明:所测试的20个随机引物中有6个引物的扩增产物DNA片断表现出明显的多态性,对所有供测试的金针菇菌株总共扩增出84条具重复性的DNA片断;同时也显示供试的16个金针菇菌株两两间的遗传相似性变化较大(相似系数从0.0592到0.8000)。另外,采用系统聚类法中的类平均法,对供试的16个菌株两两间的相似系数进行聚类,可将它们分为四大类,各大类的类间和类内菌株的遗传变异程度较大,其中以Ⅳ类内各菌株间的最高(平均相似系数为0.4353),Ⅰ类和Ⅱ类间各菌株间的最低(平均相似系数为0.6812)。但是,从整个被测试的16个金针菇菌株来看,它们之间的遗传变异并不丰富(总平均相似系数为0.5292)。同时,将RAPD技术应用于不同菌株间遗传差异的研究,具有反应迅速、不受外界环境条件影响、能从DNA分子水平上揭示菌株间的遗传差异等优点。因此,RAPD分析技术是一种快速准确评估食用菌种质资源的有效方法。  相似文献   

15.
In this work we report the cloning and identification of S-RNase alleles responsible for gametophytic self-incompatibility (GSI) of ‘Rocha’ pear and of 13 other European pear cultivars that might be used as its pollinators. Partial sequences of S-RNase alleles were amplified by PCR with specific primers hybridising in conserved regions of previously identified S-RNase alleles of Pyrus communis, cloned and sequenced and the S-genotype of eight pear cultivars was fully determined. Three cultivars (‘General Léclerc’ (SqSl), ‘Tosca’ (SbSl) and ‘Alexandrine Douillard’ (SbSk)) shared no S-alleles with ‘Rocha’ (SaSe) and shall be totally compatible with this cultivar. None of the cultivars analysed showed an identical amplification pattern to the one observed in ‘Rocha’, so the other cultivars shall be at least semi-compatible. One new allele was identified in P. communis cv. ‘Beurré d’Avril’ (designated as St). The determination of both S-RNase alleles of cvs ‘Rocha’, ‘Beurré Precoce Morettini’ (SeSk) and ‘Tosca’ and the identification of one S-RNase allele in cvs ‘Carapinheira’ (Sb), ‘Amêndoa’ (Se), ‘Pérola’ (Sk) and ‘Beurré d’Avril’ (St) are important contributions for the effort recently developed worldwide to establish groups of sexual compatibility among European pears.  相似文献   

16.
In Israel four European pear cultivars are grown: ‘Spadona’ is the main cultivar and ‘Coscia’, ‘Gentile’ and ‘Spadochina’ are its pollinators. However, molecular S-genotyping revealed that ‘Spadona’ is semi-compatible with its three pollinators. This explains, at least in part, the relatively low pear yield in Israel. The Syrian pear (Pyrus syriaca) grows wild in Israel and blooms intensively, overlapping the blooming of the cultivated European pears. Cross-fertilization between Syrian pear and ‘Spadona’ was shown to be efficient suggesting that Syrian pear might be a potent pollinator for ‘Spadona’. Twenty-six Syrian pear seedlings, from different sites in north-east Israel were S-genotyped identifying 11 that are fully compatible with the four European pear varieties cultivated in Israel. By this screening, 24 different S-RNases were cloned; ten of them are new, whereas the other fourteen had been identified previously. In addition, seedlings of two wild pear species were also S-genotyped. Two seedlings from Pyrus betulifolia and one from Pyrus korshinskii were found to be genetically compatible with the four European pear cultivars. From these seedlings four S-RNases were cloned, two are new, one had been cloned previously and one was identical to an S-RNase allele cloned from Syrian pear in this work.  相似文献   

17.
18.
The objectives of this study were to investigate genetic variation and relationships between Indonesia-, Australian- and European-based cultivars and to evaluate variation within Indonesia cultivars as all cultivars are open-pollinated. Eight cauliflower cultivars collected from three production regions in Indonesia and four F1 hybrids cultivars grown in Australia were evaluated using RAPD and ISSR markers. DNA polymorphisms generated from 10 polymorphic RAPD primers were used to construct a dendogram using the unweighted pair-group method with arithmetic averages (UPGMA) and to generate a fingerprinting key. ISSR marker analysis using 14 primers were attempted but DNA polymorphisms could not be clearly identified. The RAPD technique indicated that variation occurred both within and between Indonesian cultivars. Comparison between Indonesian-, Australian- and European-based cultivars showed that Indonesian cultivars have unique genotypes and would be good sources of genes for future crop improvement.  相似文献   

19.
20.
In this study RAPD markers were used to determine the diversity level among 24 Iranian pomegranate genotypes. One hundred decamer random primers were used for PCR reactions, among which 16 showed reliable polymorphic patterns. These primers produced 178 bands, of which 102 were polymorphic. Cluster analysis of the genotypes was performed based on data from polymorphic RAPD bands, using Jaccard's similarity coefficient and UPGMA clustering method. The highest and lowest similarities detected between genotypes were 0.89 and 0.29, respectively. At a similarity of 60%, the genotypes were divided into four sub-clusters. Cophenetic correlation coefficient between similarity matrix and cophenetic matrix of dendrogram was relatively high (r = 0.9) showing the goodness of fit of the dendrogram. RAPD markers showed to be a useful tool for studying the genetic diversity of pomegranate.  相似文献   

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