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1.
2.
The use of microsatellite markers for detection of genetic diversity in barley populations 总被引:41,自引:0,他引:41
D. Struss J. Plieske 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1998,97(1-2):308-315
A barley lambda-phage library was screened with (GA)n and (GT)n probes for developing microsatellite markers. The number of repeats ranged from 2 to 58 for GA and from 2 to 24 for GT. Fifteen
selected microsatellite markers were highly polymorphic for barley. These microsatellite markers were used to estimate the
genetic diversity among 163 barley genotypes chosen from the collection of the IPK Genebank, Germany. A total of 130 alleles
were detected by 15 barley microsatellite markers. The number of alleles per microsatellite marker varied from 5 to 15. On
average 8.6 alleles per locus were observed. Except for GMS004 all other barley microsatellite markers showed on average a
high value of gene diversity ranging from 0.64 to 0.88. The mean value of gene diversity in the wild forms and landraces was
0.74, and even among the cultivars the gene diversity ranged from 0.30 to 0.86 with a mean of 0.72. No significant differences
in polymorphism were detected by the GA and GT microsatellite markers. The estimated genetic distances revealed by the microsatellite
markers were, on average , 0.75 for the wild forms, 0.72 for landraces and 0.70 among cultivars. The microsatellite markers
were able to distinguish between different barley genotypes. The high degree of polymorphisms of microsatellite markers allows
a rapid and efficient identification of barley genotypes.
Received: 26 November 1997 / Accepted: 19 January 1998 相似文献
3.
An approach for developing codominant polymorphic markers (compound microsatellite (SSR) markers), with substantial time and
cost savings, is introduced in this paper. In this technique, fragments flanked by a compound SSR sequence at one end were
amplified from the constructed DNA library using compound SSR primer (AC)6(AG)5 or (TC)6(AC)5 and an adaptor primer for the suppression-PCR. A locus-specific primer was designed from the sequence flanking the compound
SSR. The primer pairs of the locus-specific and compound SSR primers were used as a compound SSR marker. Because only one
locus-specific primer was needed for design of each marker and only a common compound SSR primer was needed as the fluorescence-labeled
primer for analyzing all the compound SSR markers, this approach substantially reduced the cost of developing codominant markers
and analyzing their polymorphism. We have demonstrated this technique for Dendropanax trifidus and easily developed 11 codominant markers with high polymorphism for D. trifidus. Use of the technique for successful isolation of codominant compound SSR markers for several other plant species is currently
in progress. 相似文献
4.
The use of microsatellites for detecting DNA polymorphism, genotype identification and genetic diversity in wheat 总被引:35,自引:0,他引:35
M. Prasad R. K. Varshney J. K. Roy H. S. Balyan P. K. Gupta 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2000,100(3-4):584-592
A set of 20 wheat microsatellite markers was used with 55 elite wheat genotypes to examine their utility (1) in detecting
DNA polymorphism, (2)in the identifying genotypes and (3) in estimating genetic diversity among wheat genotypes. The 55 elite
genotypes of wheat used in this study originated in 29 countries representing six continents. A total of 155 alleles were
detected at 21 loci using the above microsatellite primer pairs (only 1 primer amplified 2 loci; all other primers amplified
1 locus each). Of the 20 primers amplifying 21 loci, 17 primers and their corresponding 18 loci were assigned to 13 different
chromosomes (6 chromosomes of the A genome, 5 chromosomes of the B genome and 2 chromosomes of the D genome). The number of
alleles per locus ranged from 1 to 13, with an average of 7.4 alleles per locus. The values of average polymorphic information
content (PIC) and the marker index (MI) for these markers were estimated to be 0.71 and 0.70, respectively. The (GT)n microsatellites were found to be the most polymorphic. The genetic similarity (GS) coefficient for all possible 1485 pairs
of genotypes ranged from 0.05 to 0.88 with an average of 0.23. The dendrogram, prepared on the basis of similarity matrix
using the UPGMA algorithm, delineated the above genotypes into two major clusters (I and II), each with two subclusters (Ia,
Ib and IIa, IIb). One of these subclusters (Ib) consisted of a solitary genotype (E3111) from Portugal, so that it was unique
and diverse with respect to all other genotypes belonging to cluster I and placed in subcluster Ia. Using a set of only 12
primer pairs, we were able to distinguish a maximum of 48 of the above 55 wheat genotypes. The results demonstrate the utility
of microsatellite markers for detecting polymorphism leading to genotype identification and for estimating genetic diversity.
Received: 15 May 1999 / Accepted: 27 July 1999 相似文献
5.
Conservation of microsatellite loci within the genus Vitis 总被引:7,自引:0,他引:7
G. Di Gaspero E. Peterlunger R. Testolin K. J. Edwards G. Cipriani 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2000,101(1-2):301-308
Eleven microsatellites isolated from grapevine (Vitis vinifera) were used to study the degree of conservation of these sequences across different Vitis species. Nine microsatellites were newly isolated, the remaining two (VVS2 and VVS5) came from the literature. A preliminary
assay on the conservation of priming sites was carried out on 14 non-V. vinifera species, including relevant taxa for breeding. Parthenocissus quinquefolia was added as representative of a related genus. Cross-species amplification was obtained in 94% of the 176 genotype×locus
tested combinations. Three microsatellite loci were then cloned and sequenced in ten species. The microsatellite repeat was
found present in all cases. The repeat region was often longer in V. vinifera than in the other species. Furthermore the non-source species showed interruptions in the repeat. In spite of these constraints,
which could reduce the polymorphism of microsatellites in non-source species, the results demonstrate the possibility of extending
the use of microsatellite markers to wild germplasm and inter-specific hybrids. Point mutations have been found in microsatellite
flanking regions and these variations have been used to investigate the genetic relationship among taxa. The Neighbor-joining
tree that was obtained on the basis of ten nucleotide variations, showed that there is not a clear cut difference between
American, Asian and European species and that the actual taxonomy which reflects the geographical distribution of species
must most likely be revised. Moreover, in general, nucleotide variations which occur in microsatellite flanking regions provide
new molecular tools for investigating the evolution of species.
Received: 24 October 1999 / Accepted: 11 November 1999 相似文献
6.
Development and characterization of microsatellite markers in Cucumis 总被引:21,自引:0,他引:21
Y. Danin-Poleg N. Reis G. Tzuri N. Katzir 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2001,102(1):61-72
This study provides a set of useful SSR markers and describes their development, characterization and application for diversity
studies.Sixty one Cucumis SSR markers were developed, most of them (46) from melon (Cucumis melo L.) genomic libraries. Forty of the markers (30 melon and 10 cucumber SSRs) were evaluated for length polymorphism in a sample
of 13 melon genotypes and 11 cucumber (Cucumis sativus L.) genotypes. PCR-amplification revealed up to six size alleles among the melon genotypes and up to five alleles among the
cucumber genotypes, with mean gene-diversity values of 0.52 and 0.28 for melon and cucumber, respectively. These differences
are in accordance with the known narrower genetic background of the cucumber. SSR data were applied to phylogenetic analysis
among the melon and cucumber genotypes. A clear distinction between the ’exotic’ groups and the sweet cultivated groups was
demonstrated in melon. In cucumber, separation between the two sub-species, C.sativus var. sativus and C.sativus var. hardwickii,was obtained. Conservation of SSR loci between melon and cucumber was proven by sequence comparisons.
Received: 17 April 2000 / Accepted: 16 May 2000 相似文献
7.
Merdinoglu Didier Butterlin Giséle Bevilacqua Lucie Chiquet Vincent Adam-Blondon Anne-Françoise Decroocq Stéphane 《Molecular breeding : new strategies in plant improvement》2005,15(4):349-366
Despite their numerous advantages, the use of microsatellites as genetic markers could be limited because of the low number of loci that can be simultaneously analysed per experiment. To increase the information per simple sequence repeat (SSR) assay in the grapevine, we developed a large set of new markers suitable for multiplexing and multi-loading. We produced microsatellite motif-enriched genomic libraries containing preferentially large size inserts which allowed us to design primers generating a wide range of allele sizes in a very standard and unique PCR condition. Three hundred and fifty clones were sequenced and 190 of them (54%) contained microsatellite motifs with suitable flanking regions for primer design. We developed 169 new SSR markers giving suitable signal with fluorescent-based DNA detection. The total number of alleles detected varied from 1 to 8 per locus with an average of 3.5 and the mean expected heterozygosity was 0.544 (range: 0 0.86). Sixty-eight loci (40%) were perfect types, 73 (43%) were imperfect and 28 (17%) were compound or imperfect-compound. The number of alleles generated by perfect and imperfect type loci was positively correlated to the length of the microsatellite motif. Forty-six multiplex sets based on 125 selected loci were developed. Considering their allele size range, up to four PCR multiplex were pooled together for multi-loading. The 169 SSR loci developed in this study represent a new and informative set of markers easy to combine for multiplexing and multi-loading according to the needs of any user and suitable for large scale genetic analyses in grapevine. 相似文献
8.
Fast and reliable genotype validation using microsatellite markers in Arabidopsis thaliana 总被引:7,自引:0,他引:7
P. S. Virk H. S. Pooni N. H. Syed M. J. Kearsey 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1999,98(3-4):462-464
In this paper we show how rogue genotypes in the parental stocks or contaminants among the crossed progeny of Arabidopsis thaliana can be readily identified and excluded from the breeding process using microsatellite markers derived from a small quantity of intact leaf tissue which has been alkali-treated. This method is fast and cost effective as it does not require DNA extraction, is highly reliable, and is less damaging to small plants where only limited quantities of plant tissue are available. Furthermore, a large number of samples can be processed in 1 day, facilitating the identification process prior to selfing or crossing the plants. In addition, the procedure could potentially be automated since no centrifugation is required. Received: 2 April 1998 / Accepted: 31 May 1998 相似文献
9.
B. Sosinski M. Gannavarapu L. D. Hager L. E. Beck G.J. King C. D. Ryder S. Rajapakse W. V. Baird R. E. Ballard A. G. Abbott 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2000,101(3):421-428
Microsatellites have emerged as an important system of molecular markers. We evaluated the potential of microsatellites for
use in genetic studies of peach [Prunus persica (L.) Batsch]. Microsatellite loci in peach were identified by screening a pUC8 genomic library, a λZAPII leaf cDNA library,
as well as through database searches. Primer sequences for the microsatellite loci were tested from the related Rosaceae species
apple (Malus×domestica) and sour cherry (Prunus cerasus L.). The genomic library was screened for CT, CA and AGG repeats, while the cDNA library was screened for (CT)n- and (CA)n-containing clones. Estimates of microsatellite frequencies were determined from the genomic library screening, and indicate
that CT repeats occur every 100 kb, CA repeats every 420 kb, and AGG repeats every 700 kb in the peach genome. Microsatellite-
containing clones were sequenced, and specific PCR primers were designed to amplify the microsatellite- containing regions
from genomic DNA. The level of microsatellite polymorphism was evaluated among 28 scion peach cultivars which displayed one
to four alleles per primer pair. Five microsatellites were found to segregate in intraspecific peach-mapping crosses. In addition,
these microsatellite markers were tested for their utility in cross-species amplification for use in comparative mapping both
within the Rosaceae, and with the un- related species Arabidopsis thaliana L.
Received: 18 June 1999 / Accepted: 6 December 1999 相似文献
10.
Genetic characterization of Latin-American Creole cattle using microsatellite markers 总被引:1,自引:0,他引:1
Delgado JV Martínez AM Acosta A Alvarez LA Armstrong E Camacho E Cañón J Cortés O Dunner S Landi V Marques JR Martín-Burriel I Martínez OR Martínez RD Melucci L Muñoz JE Penedo MC Postiglioni A Quiróz J Rodellar C Sponenberg P Uffo O Ulloa-Arvizu R Vega-Pla JL Villalobos A Zambrano D Zaragoza P Gama LT Ginja C 《Animal genetics》2012,43(1):2-10
Genetic diversity in and relationships among 26 Creole cattle breeds from 10 American countries were assessed using 19 microsatellites. Heterozygosities, F-statistics estimates, genetic distances, multivariate analyses and assignment tests were performed. The levels of within-breed diversity detected in Creole cattle were considerable and higher than those previously reported for European breeds, but similar to those found in other Latin American breeds. Differences among breeds accounted for 8.4% of the total genetic variability. Most breeds clustered separately when the number of pre-defined populations was 21 (the most probable K value), with the exception of some closely related breeds that shared the same cluster and others that were admixed. Despite the high genetic diversity detected, significant inbreeding was also observed within some breeds, and heterozygote excess was detected in others. These results indicate that Creoles represent important reservoirs of cattle genetic diversity and that appropriate conservation measures should be implemented for these native breeds in order to minimize inbreeding and uncontrolled crossbreeding. 相似文献
11.
Thick-skinned melon called Hami melon is the most widely cultivated and exported type of melon in China, and mainly grown in Xinjiang province. Here the genetic variation of 64 melon genotypes including 43 Xinjiang Hami melon accessions was analyzed using 36 simple sequence repeat (SSR) markers yielding 145 alleles. The polymorphic information content of SSR markers ranged from 0.09 to 0.83 (average 0.45). Based on the SSR markers, the melon accessions were clustered into 2 major groups (thick and thin-skinned melons). In addition, the sub-cluster analysis based on SSR markers partitioned different botanical groups, even separating similar agronomic trait groups (Xinjiang landraces var. ameri and var. inodorus). SSR analysis showed that 4 SSR markers (CMBR150, CMCTT144, CMBR84 and CMBR12) produced polymorphic bands of different sizes between these two botanical groups. Those four molecular markers might be related to melon fruit maturing time. A considerably low level of genetic diversity was detected in Xinjiang melon accessions. Genetic distances indicated the relatively narrower genetic base but specific taxonomic status of Xinjiang landraces compared with foreign reference accessions. 相似文献
12.
New DNA markers for penguins 总被引:1,自引:0,他引:1
13.
DNA amplification fingerprinting (DAF) using a high primer-to-template ratio and single, very short arbitrary primers, was used to generate amplified fragment length polymorphic markers (AFLP) in soybean (Glycine max (L.) Merr.). The inheritance of AFLPs was studied using a cross between the ancestral Glycine soja PI468.397 and Glycine max (L.) Merr. line nts382, F1 and F2 progeny. The amplification reaction was carried out with soybean genomic DNA and 8 base long oligounucleotide primers. Silver-stained 5% polyacrylamide gels containing 7 M urea detected from 11 to 28 DAF products with primers of varying GC content (ranging from 50 to 100% GC). Depending on their intensity, AFLPs were classified into three classes. DAF profiles were reproducible for different DNA extractions and gels. Forty AFLPs were detected by 26 primers when comparing G. soja and G. max. Most AFLPs were inherited as dominant Mendelian markers in F1 and F2 populations. However, abnormal inheritance occured with about 25% of polymorphisms. One marker was inherited as a maternal marker, presumably originating from organelle DNA while another showed apparent paternal inheritance. To confirm the nuclear origin and utility of dominant Mendelian markers, three DAF polymorphisms were mapped using a F11 mapping population of recombinant inbred lines from soybean cultivars Minsoy × Noir 1. The study showed that DAF-generated polymorphic markers occur frequently and reliably, that they are inherited as Mendelian dominant loci and that they can be used in genome mapping. 相似文献
14.
Some probabilistic results on simple sequence repeats (SSRs) in DNA sequences are derived and used to quantify the nonrandomness of SSRs as an index of nonrandomness. The applicability of the index of nonrandomness is illustrated using several examples from the literature on selected human diseased genes. 相似文献
15.
Amplification of DNA markers from evolutionarily diverse genomes using single primers of simple-sequence repeats 总被引:34,自引:0,他引:34
M. Gupta Y.-S. Chyi J. Romero-Severson J. L. Owen 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1994,89(7-8):998-1006
The abundance and scattered distribution of simple-sequence repeats (SSR) in eukaryotic genomes prompted us to explore the use of SSR-based oligonucleotide primers in single primer amplification reactions. In a pilot experiment, 23 primers were used across a panel of evolutionarily diverse eukaryotic genomes, including grapes, lettuce, tomato, pine, maize, salmon, chicken, Holstein cows and humans. The primers were 16–20 bases in length and represented SSRs of di-, tri-, tetra-, and pentanucleotide repeats. The results showed that tetranucleotide repeat primers were most effective in amplifying polymorphic patterns. Of 11 such primers tested, 70% produced polymorphic patterns from the DNA of one or more species. Primers representing a combination of two tetranucleotide repeats, or compound microsatellites, were equally effective. The polymorphisms contained in such fingerprints were able to identify individuals of vertebrate species as well as lines or varieties of plants. Inheritance of the polymorphic bands was studied in a maize recombinant inbred population, DE811 x B73. Thirty-two polymorphic bands, derived from two amplification patterns, were mapped as dominant markers on an existing RFLP map of the same population. The bands were distributed across nine of the ten chromosomes. 相似文献
16.
17.
Development and incorporation of microsatellite markers into the linkage map of sugar beet (Beta vulgaris spp.) 总被引:1,自引:0,他引:1
S. J. Rae C. Aldam I. Dominguez M. Hoebrechts S. R. Barnes K. J. Edwards 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2000,100(8):1240-1248
A set of informative simple sequence repeat markers has been identified for use in the marker-assisted breeding of Beta vulgaris. Highly enriched small insert genomic libraries were constructed, consisting of 1536 clones (with inserts of between 250–900
bp). Screening the clones with CA, CT, CAA, CATA and GATA nucleotide-repeat probes revealed positive hybridisation to over
50% of the clones. Of these 340 were sequenced. Primer pairs were designed for sequences flanking the repeats and, of these,
57 pairs revealed length polymorphism with 12 Beta accessions. Heterozygosity levels of the SSR loci ranged from 0.069 to 0.809. Heterozygosity levels were found to be similar
to those detected employing RFLP probes with the same accessions. Phenetic analysis using the markers, indicated relationships
in accordance with known pedigrees. Twenty three of the SSR markers were polymorphic in one or both of two F2 mapping populations, and were placed relative to a framework of RFLP probes. The markers are distributed over all nine linkage
groups of sugar beet.
Received: 14 July 1999 / Accepted: 27 October 1999 相似文献
18.
Development of multiplex sets of simple sequence repeat DNA markers covering the soybean genome 总被引:1,自引:0,他引:1
Narvel James M. Chu Wen-Chy Fehr Walter R. Cregan Perry B. Shoemaker Randy C. 《Molecular breeding : new strategies in plant improvement》2000,6(2):175-183
Multiplexing involves the analysis of several markers in a single gel lane that is based on the allele size range of marker loci. Multiplex SSR marker analysis is conducted with primers that are labeled with one of three dyes. The development of an SSR multiplex system requires estimates of the allele size range of markers to strategize primer labeling and for grouping markers into multiplex sets. A method is presented that describes the development of multiplex sets of SSR markers in soybean (Glycine max (L.) Merr.) by the selective placement of primer sites and by the analysis of diverse germplasm. Primer sites were placed at specific distances from the SSR to adjust the allele size range of marker loci. The analysis of pooled DNA samples comprising diverse soybean genotypes provided robust estimates of the allele size range of marker loci that enabled the development of multiplex sets. Eleven multiplex sets comprising 74 SSR markers distributed across the 20 linkage groups of soybean were developed. Multiplex sets constructed from the analysis of diverse soybean germplasm should have a wide range of genotyping applications. The procedures used in this study were systematic and rapid and should be applicable for multiplex development in any species with SSR marker technology. 相似文献
19.
Development of microsatellite markers and characterization of simple sequence length polymorphism (SSLP) in rice (Oryza sativa L.) 总被引:26,自引:0,他引:26
Microsatellite markers containing simple sequence repeats (SSR) are a valuable tool for genetic analysis. Our objective is to augment the existing RFLP map of rice with simple sequence length polymorphisms (SSLP). In this study, we describe 20 new microsatellite markers that have been assigned to positions along the rice chromosomes, characterized for their allelic diversity in cultivated and wild rice, and tested for amplification in distantly related species. Our results indicate that the genomic distribution of microsatellites in rice appears to be random, with no obvious bias for, or clustering in particular regions, that mapping results are identical in intersubspecific and interspecific populations, and that amplification in wild relatives ofOryza sativa is reliable in species most closely related to cultivated rice but becomes less successful as the genetic distance increases. Sequence analysis of SSLP alleles in three relatedindica varieties demonstrated the clustering of complex arrays of SSR motifs in a single 300-bp region with independent variation in each. Two microsatellite markers amplified multiple loci that were mapped onto independent rice chromosomes, suggesting the presence of duplicated regions within the rice genome. The availability of increasing numbers of mapped SSLP markers can be expected to increase the power and resolution of genome analysis in rice. 相似文献
20.
Divergence and allelomorphic relationship of a soybean virus resistance gene based on tightly linked DNA microsatellite and RFLP markers 总被引:10,自引:0,他引:10
Y. G. Yu M. A. Saghai Maroof G. R. Buss 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1996,92(1):64-69
The use of genetically diverse resistance sources is important in breeding for durable disease resistance. Detection and evaluation of resistance genes by conventional inheritance experiments, however, often require laborious screening and genetic testing. In the present study, a marker-assisted screening for resistance sources was initiated in soybean [Glycine max (L.) Merr] using one DNA microsatellite and two RFLP markers tightly linked to a soybean mosaic virus (SMV) resistance gene (Rsv1). The three marker loci were used to screen 67 diverse soybean cultivars, breeding lines, and plant introductions. Five variants were found at the microsatellite locus (HSP176L), and the two RFLP loci (pA186 and pK644a) near Rsv1 show a remarkably higher level of restriction polymorphism than Rsv1-independent RFLP loci. Several specific variants at the three marker loci were found to be correlated with virus resistance, among which HSP176L-2 can be detected by PCR, thus may be useful for germplasm screening. The grouping of the 67 accessions according to their multilocus marker variants agrees with the available pedigree information. When all, or most, of the cultivars within a given group with the same Rsv1-linked marker variant are resistant, their SMV resistance is most likely conferred by Rsv1. These putatively Rsv1-carrying groups contain a total of 38 SMV-resistant lines including six differential cultivars that are known to carry Rsv1. The remaining seven resistant accessions (Columbia, Holladay, Peking, Virginia, FFR-471, PI 507403, and PI 556949) do not carry resistance marker variants, and at least some of them could be sources of resistance genes independent of Rsv1. 相似文献