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1.
RAPD and RFLP markers tightly linked to the locus controlling carnation (Dianthus caryophyllus) flower type 总被引:6,自引:0,他引:6
G. Scovel H. Ben-Meir M. Ovadis H. Itzhaki A. Vainstein 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1998,96(1):117-122
Flower doubleness as a breeding characteristic is of major importance in carnation (Dianthus caryophyllus), one of the major cut-flowers sold worldwide, since flower architecture is of the utmost value in ornamentals. Based on
the number of petals per flower, carnations are grouped into “single”, “semi-double” and “double” flower types. The first
have five petals and are easily distinguishable, but of no economic value to the carnation industry. Flowers of standard and
spray varieties, which constitute the largest market share, are usually of the double and semi-double type, respectively.
These flower types are not easily distinguishable due to phenotypic overlaps caused by environmental conditions. To study
the inheritance of this trait, several progeny segregating for flower type were prepared. Based on the number of single-flower
type fullsibs among the offspring, we found that this phenotype is expressed only in plants homozygous for the recessive allele
and that a dominant mutation in this allele causes an increase in petal number. Using random decamer primers, we identified
a random amplified polymorphic DNA (RAPD) marker which is tightly linked to this recessive allele. The RAPD marker was cloned
and used to generate a restriction fragment length polymorphic (RFLP) marker. This RFLP marker could discriminate with 100%
accuracy between the semi-double and double- flower phenotypes in carnations of both Mediterranean and American groups. The
advantages of RFLP over RAPD markers and their applicability to markerassisted selection in carnation are discussed.
Received: 11 August 1997 / Accepted: 22 August 1997 相似文献
2.
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
3.
Strains of Xanthomonas axonopodis pv. manihotis (Xam) were characterized for pathogenicity and for DNA polymorphism using different PCR-based techniques. Using amplified restriction fragment length polymorphism (AFLP), strains were distinguished from each other and also from other Xanthomonas strains. Cluster analysis showed a high correlation between DNA polymorphism and pathogenicity. Four Xam strains were further analyzed using three PCR-based techniques, AFLP, AFLP-pthB and RAPD-pthB. Various primer combinations were used including primers specific to a Xam pathogenicity gene (pthB) along with RAPD or AFLP primers. The AFLP primer combinations EcoRI+T/MseI+A and EcoRI+T/MseI+T were the most efficient to discriminate among pathogenic and nonpathogenic Xam strains. Polymorphic bands were excised from the gel, amplified and cloned. Sequences analysis showed significant homology with bacterial pathogenicity island, genes involved in pathogenic fitness and regulators of virulence. Three cloned AFLP fragments were used as probes in DNA blot experiments and two of them showed significant polymorphism. 相似文献
4.
Random amplified polymorphic DNA (RAPD) identification of genetic variation in three species ofPorphyra (Bangiales,Rhodophyta) 总被引:1,自引:0,他引:1
The random amplified polymorphic DNA (RAPD) technique was used to characterize three species ofPorphyra from the western North Atlantic and adjacent Gulf of Mexico. Twenty 10-mer primers were screened for DNA amplification usingPorphyra template DNA. Nine of these oligonucleotide primers, all (G+C)-rich, were positive or band-producing, but yielded poor or variable band resolution. Subsequent use of the universal 20-mer M 13 primer resulted in both clear band resolution with a minimum of secondary bands and a high degree of reproducibility. Amplification products for DNA from six regional isolates ofPorphyra carolinensis Coll et Cox,P. leucosticta Thuret in Le Jolis andP. rosengurttii Coll et Cox were compared to each other and toBangia atropurpurea (Roth) C. Agardh. Results provide evidence of both genetically hetero- and homogeneous populations. Use of the RAPD method with the M 13 primer yields amplification products which can be used to fingerprint specific genotypes. This procedure could be used to discriminate between hetero- and homokaryotic fusion products from previously characterized donor strains. 相似文献
5.
G.-L. Wang J.-M. Dong A. H. Paterson 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1995,91(6-7):1153-1161
Cotton is unusual among major crop plants in that two cross-fertile species are widely cultivated for a common economic product, fiber. Both historical evidence and classical genetic studies suggest that many improved forms of Gossypium barbadense (Sea Island, Egyptian, and Pima cottons) may include chromatin derived from G. hirsutum. Using 106 restriction fragment length polymorphism (RFLP) loci well distributed across the cotton genome, we revealed the amount and genomic distribution of G. hirsutum chromatin in 54 G. barbadense collections from around the world. The average G. barbadense collection was comprised of 8.9% alleles apparently derived from G. hirsutum. Pima cultivars (7.3 %) had fewer G. hirsutum alleles than Sea Island (9.0%) or Egyptian (9.6%) cultivars. G. hirsutum alleles were not randomly distributed, as 57.5% of the total introgression observed was accounted for by five specific chromosomal regions that span less than 10% of the genome. The average length of an introgressed chromosome segment was 12.9 cM. Overlap of introgressed chromatin in different breeding programs hints that retention of these G. hirsutum chromosomal segments may impart a selective advantage to G. barbadense genotypes. Although cluster analysis generally grouped germ plasm from common classes and/or breeding programs together, no 2 genotypes were identical — thus differences in the length and repertoire of introgressed chromosome segments also permit DNA fingerprinting of G. barbadense cultivars. 相似文献
6.
Sobir T. Ohmori M. Murata F. Motoyoshi 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2000,101(1-2):64-69
The Tm-2 gene and its alleles conferring tomato mosaic virus resistance in tomato originate from Lycopersicon peruvianum, a wild relative of tomato. DNA fragments of several RAPD markers tightly linked with the Tm-2 locus in tomato were successfully cloned and sequenced. Subsequently, the 24-mer oligonucleotide primer pairs of the SCAR
markers corresponding to the RAPD markers were designed based on the 5’-endmost sequences. A fragment of the same size as
that of a SCAR marker was amplified in the ToMV-susceptible tomato line with no Tm-2, but the digests of the PCR fragments by AccI exhibited polymorphism in fragment length between the two lines. We chose three SCAR markers and three RAPD markers tightly
linked with the Tm-2 locus, and examined whether the same-sized fragments corresponding to these markers were also present in three other lines
carrying Tm-2a or one of the other Tm-2 alleles. The fragments corresponding to the three SCAR markers were present in all of the three lines, but the other markers
(three RAPDs ) were absent in one or two lines, suggesting that the three SCAR markers are closer to Tm-2 than the other markers. Comparison of the nucleotide sequences of these fragments revealed that they are all homologous to
the corresponding SCAR markers.
Received: 8 November 1999 / Accepted: 15 November 1999 相似文献
7.
Use of DNA markers to study bird migration 总被引:2,自引:2,他引:0
Michael Wink 《Journal of Ornithology》2006,147(2):234-244
The molecular methods that are presently being used for studying phylogenetics, phylogeography and population genetics can
also be applied to study bird migration. They are powerful and can supplement the information obtained from ringing, telemetry,
morphometrics, ringing, radar tracking and isotope analysis. This short review describes the principles, scopes and limitations
DNA methods and DNA markers that are relevant for migration research, such as DNA sequences, short tandem repeats (microsatellites),
single nucleotide polymorphisms, amplified fragment length polymorphism, inter simple sequence repeats and molecular sexing. 相似文献
8.
大豆疫霉菌一个DNA指纹分析重复序列探针的鉴定 总被引:1,自引:0,他引:1
【目的】大豆疫霉菌指纹分析的建立和黑龙江与新疆大豆疫霉菌群体的群体遗传分析。【方法】利用生物信息学方法寻找大豆疫霉菌(Phytophthora sojae)的中度重复序列,并对黑龙江和新疆大豆疫霉菌进行DNA指纹分析。【结果】分析得到一个中度重复序列,定名为PS1227。Southern blot分析表明PS1227在大豆疫霉菌基因组中约有34条可辨的介于1.5-23kb之间的杂交条带,其中21个杂交条带在49个供试菌系中表现多态性。单游动孢子分析表明PS1227指纹特征在病菌无性生殖阶段表现稳定。利用PS1227标记,本实验发现采自黑龙江HP4002、SY6和GJ0105菌系分别与新疆的DW303、71228和71222菌系具有完全相同的指纹特征。【结论】获得一个可用于大豆疫霉菌流行学和群体生物学研究的指纹分析序列PS1227,在分子水平证实了新疆大豆疫霉菌可能由黑龙江传入。 相似文献
9.
Jian Wei Sun Min De Jin Chun Jiang Zhou Qing Kai Yang Man Li Weng Lin De Duan Pu Xu Jia Hai Ma Bin Wang 《Plant Molecular Biology Reporter》2005,23(3):251-262
Twenty-sevenPorphyra lines from 5 classes, including lines widely used in China, wild lines, and lines introduced to China from abroad in recent
years, were screened by means of amplified fragment length polymorphism (AFLP) with 24 primer pairs. From the generated AFLP
products, 13 bands that showed stable and repeatable AFLP patterns amplified by primer pairs M-CGA/E-AA and M-CGA/E-TA were
scored and used to develop the DNA fingerprints of the 27Porphyra lines. Moreover, the DNA fingerprinting patterns were converted into computer language expressed with digitals 1 and 0, which
represented the presence (numbered as 1) or absence (numbered as 0) of the corresponding band. On the basis of these results,
computerized AFLP DNA fingerprints were constructed in which each of the 27Porphyra lines has its unique AFLP fingerprinting pattern and can be easily distinguished from others. Software called PGI-AFLP (Porphyra germ-plasm identification-AFLP) was designed for identification of the 27Porphyra lines. In addition, 21 specific AFLP markers from 15Porphyra lines were identified; 6 AFLP markers from 4Porphyra lines were sequenced, and 2 of them were successfully converted into SCAR (sequence characterized amplification region) markers.
The developed AFLP DNA fingerprinting and specific molecular markers provide useful ways for the identification, classification,
and resource protection of thePorphyra lines. 相似文献
10.
T. Ohmori M. Murata F. Motoyoshi 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1995,90(3-4):307-311
Tm-2 and Tm-2a are genes conferring resistance to tomato mosaic virus in Lycopersicon esculentum. They are allelic and originated from different lines of L. peruvianum, a wild relative of tomato. In this study, random amplified polymorphic DNA (RAPD) markers linked to these genes were screened in nearly isogenic lines (NILs). To detect RAPDs differentiating NILs, 220 different 10-base oligonucleotide primers were examined by the polymerase chain reaction (PCR), and 43 of them generated 53 consistent polymorphic fragments among the NILs. Out of these 53 fragments, 13 were arbitrarily chosen and examined in respect of whether they were linked to the netted virescent (nv) gene, since nv is tightly linked to the Tm-2 locus and its phenotype is more easily distinguishable. As a result, all 13 markers were shown to be linked to nv, and hence to the Tm-2 locus. Among them, two fragments specific to the NIL carrying Tm-2 three specific to the NIL carrying Tm-2a, and four specific to both of these NILs were closely linked to nv. 相似文献
11.
Identification of a codominant amplified polymorphic DNA marker linked to the verticillium wilt resistance gene in tomato 总被引:3,自引:0,他引:3
L. M. Kawchuk D. R. Lynch J. Hachey P. S. Bains F. Kulcsar 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1994,89(6):661-664
Resistance to verticillium wilt, a vascular disease causing yield losses in many crops, is conferred in tomato by a single dominant allele, Ve. A population segregating for the Ve allele was generated using near-isogenic tomato lines. Analysis of the parental tomato DNA using the polymerase chain reaction and 400 random primers, each 10 deoxyribonucleotides in length, produced 1,880 amplified DNA fragments. Of the four polymorphisms observed between the resistant and susceptible parental genotypes, only one was linked to the Ve gene. No recombination was observed between this DNA marker and the Ve locus, indicating that the linkage is less than 3.5±2.7 cM. The marker detected both the susceptible and resistant alleles, producing amplified DNA fragments of approximately 1,300 and 1,350 bp, respectively. The sequence of the primer, determined from cloned amplified products, was 5 CTCACATGCA 3 instead of the expected 5 CTCACATGCC 3. The marker will be of value to tomato breeding programs because of the tight linkage, Codominant nature, and analytical procedure utilized. 相似文献
12.
Huaan Yang Jianbo Jian Xuan Li Daniel Renshaw Jonathan Clements Mark W. Sweetingham Cong Tan Chengdao Li 《BMC genomics》2015,16(1)
Background
Molecular marker-assisted breeding provides an efficient tool to develop improved crop varieties. A major challenge for the broad application of markers in marker-assisted selection is that the marker phenotypes must match plant phenotypes in a wide range of breeding germplasm. In this study, we used the legume crop species Lupinus angustifolius (lupin) to demonstrate the utility of whole genome sequencing and re-sequencing on the development of diagnostic markers for molecular plant breeding.Results
Nine lupin cultivars released in Australia from 1973 to 2007 were subjected to whole genome re-sequencing. The re-sequencing data together with the reference genome sequence data were used in marker development, which revealed 180,596 to 795,735 SNP markers from pairwise comparisons among the cultivars. A total of 207,887 markers were anchored on the lupin genetic linkage map. Marker mining obtained an average of 387 SNP markers and 87 InDel markers for each of the 24 genome sequence assembly scaffolds bearing markers linked to 11 genes of agronomic interest. Using the R gene PhtjR conferring resistance to phomopsis stem blight disease as a test case, we discovered 17 candidate diagnostic markers by genotyping and selecting markers on a genetic linkage map. A further 243 candidate diagnostic markers were discovered by marker mining on a scaffold bearing non-diagnostic markers linked to the PhtjR gene. Nine out from the ten tested candidate diagnostic markers were confirmed as truly diagnostic on a broad range of commercial cultivars. Markers developed using these strategies meet the requirements for broad application in molecular plant breeding.Conclusions
We demonstrated that low-cost genome sequencing and re-sequencing data were sufficient and very effective in the development of diagnostic markers for marker-assisted selection. The strategies used in this study may be applied to any trait or plant species. Whole genome sequencing and re-sequencing provides a powerful tool to overcome current limitations in molecular plant breeding, which will enable plant breeders to precisely pyramid favourable genes to develop super crop varieties to meet future food demands.Electronic supplementary material
The online version of this article (doi:10.1186/s12864-015-1878-5) contains supplementary material, which is available to authorized users. 相似文献13.
Assignment of DNA markers to Nicotiana sylvestris chromosomes using monosomic alien addition lines 总被引:1,自引:0,他引:1
D. F. Suen C. K. Wang R. F. Lin Y. Y. Kao F. M. Lee C. C. Chen 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1997,94(3-4):331-337
A sesquidiploid hybrid (PPS, 2n=32) between Nicotiana plumbaginifolia (PP, 2n=20) and N. sylvestris (SS, 2n=24) was backcrossed to N. plumbaginifolia to produce monosomic alien addition lines. A total of 89 2n=21 plants, each containing two sets of N. plumbaginifolia chromosomes and a single N. sylvestris chromosome, were obtained in the BC1 and BC2 generations. These plants were classified into 12 groups based on morphological characteristics. The N. sylvestris chromosomes in these plants were identified by RFLP and karyotype analyses. Among the 84 probes tested, 20 could not detect
N. sylvestris-specific DNA bands, and the remaining 64 were assigned to 9 normal and 6 aberrant synteny groups. The 9 normal synteny groups
corresponded to chromosomes 2, 4, 5, 6, 7, 8, 9, 10 and 12, respectively. Four aberrant synteny groups were the result of
chromosome translocations, and 2 were deletions.
Received: 10 April 1996 / Accepted: 5 July 1996 相似文献
14.
三例小麦细胞质雄性不育系线粒体DNA的扩增片段长度多态性分析 总被引:1,自引:0,他引:1
细胞质雄性不育是小麦杂种优势利用的重要途径,为了鉴定3例小麦雄性不育系的细胞质类型,对其线粒体DNA(mtDNA)进行扩增片段长度多态性(Amplified fragment length polymorphism,AFLP)分析。文中利用差速离心法和不连续蔗糖密度梯度超速离心法提取纯化小麦线粒体。结果表明:通过该提取方法获得的mtDNA,其质量和纯度能够满足PCR反应和遗传学分析。在64对选扩引物中,筛选到了4对特异性引物,其中引物E1/M7在ms(Kots)-90-110不育系扩增出3条特异条带;引物E4/M2在ms(Ven)-90-110不育系扩增出2条特异条带;引物E7/M6在ms(S)-90-110不育系中扩增出2条特异条带;引物E6/M4在ms(Kots)-90-110不育系中扩增出2条特异条带。这些特异引物可以用来作为鉴定具有粘果山羊草Aegilops kotschyi、偏凸山羊草Ae.ventricosa、斯卑尔脱小麦Triticum spelta 3类不育细胞质型小麦雄性不育系的细胞质分子标记,为研究小麦细胞质雄性不育机理奠定了分子基础。 相似文献
15.
T. Komatsuda S. Kawasaki I. Nakamura F. Takaiwa F. Taguchi-Shiobara S. Oka 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1997,95(4):637-642
Recombinant backcross lines of barley were produced from a cross between Kanto Nakate Gold (KNG; two-rowed) and Azumamugi
(AZ; six-rowed) after backcrosses of F1 plants with AZ as the recurrent parent. Each of these lines had an introgressed segment from chromosome 2 of KNG. Two recombinant
backcross lines, L1 and M3-13, were used for an initial screening of polymorphism. After screening a total of 888 oligonucleotides
as arbitrary primers, we identified eight random amplified polymorphic DNAs (RAPDs) between backcross lines and AZ. Among
the RAPD fragments, CMNA-38700 was linked to the v locus with a recombination frequency of zero, while OPJ-09850 and OPP-02700 were linked to the v locus at a map distance of 1.4 cM. Thus, the three RAPD markers were clustered around the v locus since the lengths of introgressed chromosomal segments in the L1 and M3-13 lines were no less than 38 cM. The other
five RAPD fragments that we identified were not linked to the v locus.
Received: 14 January 1997 / Accepted: 14 February 1997 相似文献
16.
Development of STS markers closely linked to the Ppd-H1 photoperiod response gene of barley (Hordeum vulgare L.) 总被引:3,自引:0,他引:3
L. Decousset S. Griffiths R. P. Dunford N. Pratchett D. A. Laurie 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2000,101(8):1202-1206
A BC2 population of 353 plants segregating for the Ppd-H1 photoperiod response gene was developed from a cross between the winter barley ’Igri’ and the spring barley ’Triumph.’ Bulk
segregant analysis identified six AFLP markers closely linked to the Ppd–H1 gene and three strongly amplified AFLP bands that mapped 0.8-cM distal, 0.6-cM proximal and 2.3-cm proximal to Ppd-H1 were cloned and sequenced. Southern-blot analysis showed that the cloned fragments were single-copy sequences in ’Igri’,
the variety from which they were derived. Two of the sequences were absent from ’Triumph’ while the third detected a single-copy
sequence. The cloned fragments were used to design specific sequence tagged site (STS) primer pairs to assist in the construction
of a high-resolution map of the Ppd-H1 region.
Received: 22 March 2000 / Accepted: 10 April 2000 相似文献
17.
We developed a rapid and sensitive identification method for the halotolerant yeast Debaryomyces hansenii, based on the hybridization of species-specific sequences. These sequences were first identified in a survey of D. hansenii strains by random amplification of polymorphic DNA (RAPD) as giving conserved bands in all isolates tested. Two such conserved RAPD products, termed F01pro and M18pro, were cloned from the type strain CBS 767. The specificity of these probes was assessed by hybridizing them to DNA from various species of yeasts commonly found in cheese. F01pro and M18pro hybridized to the DNA of all D. hansenii var. hansenii tested, but not to DNA of other yeast species including the closely related strain of D. hansenii var. fabryii CBS 789. Hybridization patterns of F01pro and M18pro on digested genomic DNA of D. hansenii indicated that the sequences were repeated in the genome of all D. hansenii var. hansenii tested, and gave distinct polymorphic patterns. The single F01pro probe generated 11 different profiles for 24 strains by restriction fragment length polymorphism, using one restriction enzyme. F01pro represents a new type of repeated element found in fungi, useful for both identification and typing of D. hansenii and, together with M18pro, simplifies the study of this species in complex flora. 相似文献
18.
Comparison of the genetic diversity of common wild rice (Oryza rufipogon Griff.) and cultivated rice (O. sativa L.) using RFLP markers 总被引:12,自引:0,他引:12
C. Q. Sun X. K. Wang Z. C. Li A. Yoshimura N. Iwata 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2001,102(1):157-162
Forty fourth single-copy RFLP markers were used to evaluate the genetic diversity of 122 accessions of common wild rice (CWR,
Oryza rufipogon Griff.) and 75 entries of cultivated rice (Oryza sativa L. ) from more than ten Asian countries. A comparison of the parameters showing genetic diversity, including the percentage
of polymorphic loci (P), the average number of alleles per locus (A), the number of genotypes (Ng), the average heterozygosity (Ho) and the average genetic multiplicity (Hs) of CWR and indica and japonica subspecies of cultivated rice from different countries and regions, indicated that CWR from China possesses the highest genetic
diversity, followed by CWR from South Asia and Southeast Asia. The genetic diversity of CWR from India is the second highest.
Although the average gene diversity (Hs)of the South Asian CWR is higher than that of the Southeast Asian CWR, its percentage of polymorphic loci (P), number of alleles (Na) and number of genotypes (Ng) are all smaller. It was also found that the genetic diversity of cultivated rice is obviously lower than that of CWR. At
the 44 loci investigated, the number of polymorphic loci of cultivated rice is only 3/4 that of CWR, while the number of alleles,
60%, and the number of genotypes is about 1/2 that of CWR. Of the two subspecies studied, the genetic diversity of indica is higher than that of japonica. The average heterozygosity of the Chinese CWR is the highest among all the entries studied. The average heterozygosity of
CWR is about two-times that of cultivated rice. It is suggested that during the course of evolution from wild rice to cultivated
rice, many alleles were lost through natural and human selection, leading to the lower heterozygosity and genetic diversity
of the cultivated rice.
Received: 19 May 1999 / Accepted: 26 April 2000 相似文献
19.
X. Shan T. K. Blake L. E. Talbert 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1999,98(6-7):1072-1078
Conversion of amplified fragment length polymorphisms (AFLPs) to sequence-specific PCR primers would be useful for many genetic-linkage
applications. We examined 21 wheat nullitetrasomic stocks and five wheat-barley addition lines using 12 and 14 AFLP primer
combinations, respectively. On average, 36.8% of the scored AFLP fragments in the wheat nullitetrasomic stocks and 22.3% in
the wheat-barley addition lines could be mapped to specific chromosomes, providing approximately 461 chromosome-specific AFLP
markers in the wheat nullitetrasomic stocks and 174 in the wheat-barley addition lines. Ten AFLP fragments specific to barley
chromosomes and 16 AFLP fragments specific to wheat 3BS and 4BS chromosome arms were isolated from the polyacrylamide gels,
re-amplified, cloned and sequenced. Primer sets were designed from these sequences. Amplification of wheat and barley genomic
DNA using the barley derived primers revealed that three primer sets amplified DNA from the expected chromosome, five amplified
fragments from all barley chromosomes but not from wheat, one amplified a similar-sized fragment from multiple barley chromosomes
and from wheat, and one gave no amplification. Amplification of wheat genomic DNA using the wheat-derived primer sets revealed
that three primer sets amplified a fragment from the expected chromosome, 11 primer sets amplified a similar-sized fragment
from multiple chromosomes, and two gave no amplification. These experiments indicate that polymorphisms identified by AFLP
are often not transferable to more sequence-specific PCR applications.
Received: 30 June 1998 / Accepted: 26 October 1998 相似文献
20.
Molecular characterization of RAPD and SCAR markers linked to the Tm-1 locus in tomato 总被引:9,自引:0,他引:9
T. Ohmori M. Murata F. Motoyoshi 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1996,92(2):151-156
We have cloned and sequenced six RAPD fragments tightly linked to the Tm-1 gene which confers tomato mosaic virus (ToMV) resistance in tomato. The terminal ten bases in each of these clones exactly matched the sequence of the primer for amplifying the corresponding RAPD marker, except for one in which the 5-endmost two nucleotides were different from those of the primer. These RAPD clones did not cross-hybridize with each other, suggesting that they were derived from different loci. From Southern-hybridization experiments, five out of the six RAPD clones were estimated to be derived from middle- or high-repetitive sequences, but not from any parts of the ribosomal RNA genes (rDNA), which are known to be tightly linked with the Tm-1 locus. The remaining clone appeared to be derived from a DNA family consisting of a few copies. These six RAPD fragments were converted to sequence characterized amplified region (SCAR) markers, each of which was detectable using a pair of primers having the same sequence as that at either end of the corresponding RAPD clone. All pairs of SCAR primers amplified distinct single bands whose sizes were the same as those of the RAPD clones. In four cases, the SCAR markers were present in the line with Tm-1 but absent in the line without it, as were the corresponding RAPD markers. In the two other cases, the products of the same size were amplified in both lines. When these SCAR products were digested with different restriction endonucleases which recognize 4-bp sequences, however, polymorphisms in fragment length were found between the two lines. These co-dominant markers are useful for differentiating heterozygotes from both types of homozygote. 相似文献