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121.
C.R. Riede    D.J. Fairbanks    W.R. Andersen    R.L. Kehrer    L.R. Robison 《Plant Breeding》1994,113(3):254-257
Random amplified polymorphic DNA (RAPD) analysis has proven to be an effective procedure for molecular marker applications in plant breeding, although non-specific amplification may limit its utility in some species. The objective of this study was to determine the effectiveness of restriction-endonuclease digestion of template DNA for elimination of non-specific amplification and generation of heritable RAPD markers. Restriction endonucleases digested wheat DNA to completion in amplification buffer, suggesting that the restriction endonuclease can be added directly to the reaction mixture prior to amplification. A 1-h 37°C step was programmed into the thermal cycler for restriction-endonuclease digestion which was followed immediately by amplification. Non-specific amplification was reduced and DNA marker patterns were altered in digested samples when compared to undigested samples. Genetic segregation of two polymorphic markers tested in F5 inbred progeny fit expected 1:1 ratios. These results suggest that heritable DNA markers may be generated with reduction in non-specific amplification when restriction-endonuclease digestion of template DNA is conducted as part of the RAPD procedure.  相似文献   
122.
Molecular mapping of powdery mildew resistance genes in wheat: A review   总被引:40,自引:3,他引:40  
Powdery mildew, caused by Blumeria graminis f. sp. tritici (syn. Erysiphe graminis f. sp. tritici), is one of the most important diseases of common wheat (Triticum aestivum L.) worldwide. Molecular mapping and cloning of genes for resistance to powdery mildew in hexaploid wheat will facilitate the study of molecular mechanisms underlying resistance to powdery mildew diseases and help understand the structure and function of powdery mildew resistance genes, and permit marker-assisted selection in breeding programs. So far, 48 genes/alleles for resistance to powdery mildew at 32 loci have been identified and located on 16 different chromosomes, of which 21 resistance genes/alleles have been tagged by restriction fragment length polymorphisms (RFLPs), random-amplified polymorphic DNAs (RAPDs), amplified fragment length polymorphisms (AFLPs), sequence characterized amplified regions (SCARs), sequence-tagged sites (STS) or simple sequence repeats (SSRs). Several quantitative trait loci (QTLs) for adult plant resistance (APR) to powdery mildew have been associated with molecular markers. The detailed information on chromosomal location and molecular mapping of these genes has been reviewed. Isolation of powdery mildew resistance genes and development of valid molecular markers for pyramiding resistance genes in breeding programs is also discussed.  相似文献   
123.
棉花抗黄萎病基因的QTL定位   总被引:33,自引:14,他引:33  
以高感黄萎病的陆地棉品种"邯郸208"与高抗黄萎病海岛棉品种"Pima90"的136个F2单株为作图群体,构建了一个包括17个连锁群、标记间平均间距18.61cM、全长1842.8cM的陆海种间分子标记遗传连锁图,该图约覆盖棉花基因组的36.8%。单因子方差分析和复合区间作图检测到与黄萎病抗性相关的3个QTL,分别位于第四连锁群和第七连锁群上,分别解释表型变异方差的15.39%、54.11%和57.18%。初步认为海岛棉"Pima90"对陆地棉"邯郸208"的黄萎病抗性由两个主效QTL和一个微效QTL共同控制。  相似文献   
124.
从缙恢10/R21的杂种后代中发现了一个抽穗期稳定遗传的迟熟恢复系N91(110~114 d),以早熟不育系金23A(89~94 d)作为杂交和回交亲本,获得的F2和BC1F1群体抽穗期均表现双峰分布,χ2检测表明其抽穗期受一对主基因控制,暂命名为Hd(t)。在400多对SSR引物中筛选出5对在早熟基因池和迟熟基因池中表现差异的引物,进行单株验证,用回交群体进行基因定位,发现位于第7染色体长臂末端的SSR标记RM1364和RM3555与Hd(t)连锁,遗传距离分别为32.7 cM和22.5 cM。在目标区域进一步合成8对SSR引物,将Hd(t)基因定位在RM22143与第7染色体末端之间,与RM22143相距12.9 cM。该结果为Hd(t)基因的精细定位、分子标记辅助育种和基因克隆奠定了基础。  相似文献   
125.
Gonzalez-Hernandez  J.L.  Elias  E.M.  Kianian  S.F. 《Euphytica》2004,139(3):217-225
Grain protein concentration (GPC) is an important quality factor in durum wheat [Triticum turgidum (L.) var. durum]. Due to the strong environmental influence on GPC, molecular markers linked to quantitative trait loci (QTL) affecting GPC have the potential to be valuable in wheat breeding programs. Various quantitative traits in a population of 133 recombinant inbred chromosome lines were studied in replicated trials at three locations in North Dakota. Segregation for GPC, 1000-kernel weight, gluten strength, heading date, and plant height was observed. By relating phenotypic data to a linkage map obtained from the same population, three QTL affecting GPC, and one affecting yield were identified. The genotypic coefficients of determination for both traits were high.  相似文献   
126.
Summary An aspect of cereal science that is becoming increasingly important is comparative genetics. Establishment of the relationship between genomes within polyploids, between species within tribes and between species within families will allow not only the integration of genetic maps but also the knowledge acquired of each of the species. Using a set of homoeologous probes, workers found the relationship between the three wheat genomes to be precisely collinear, after taking a few major translocation events into account. Transfer of the wheat map to rye led to the elucidation of similar relationships between the three wheat genomes and that of rye. Genome collinearity, however, extends even beyond tribes. In a comparison of the genomes of wheat, rice and maize, it was shown that despite the separation of these genomes for possibly 50 million years, gene order was still highly conserved. This collinearity between genomes can be exploited in a number of ways.  相似文献   
127.
水稻F1花粉不育基因的精细定位及其遗传分化研究   总被引:2,自引:0,他引:2  
水稻籼粳亚种间杂种的不育性限制了亚种间的遗传交流和杂种优势利用。本研究通过发展位置特异性的微卫星标记将F1花粉不育基因S-6座位进行了精细定位;通过分析近等基因系中代换片段的遗传效应,鉴定出了F1花粉不育基因S-d座位,利用位置特异性的微卫星标记将S-d进行了定位;根据基因组的序列资料和利用较大的作图群体对S-6和S-d两个座位进行了物理作图;通过分子标记辅助选择培育了一批复等位基因近等基因系,对育性基因的遗传分化进行了研究。取得了如下主要结果:1、根据S-6座位初步定位的结果发展位置特异性的微卫星标记,将F1花粉不育基因座S-6进行了精细定位。结果表明多态性标记均与S-6座位紧密连锁,其中R830STS、PSM7、PSM8、PSM9、.PSM59和PSM60位于S-6座位一端,与S-6座位遗传距离分别为1.5cM、1.2cM、0.9cM、0.9cM、0.9cM和0.9cM,而PSM202、PSM206、PSM208、RMl3、R2213SSTS和RM413位于S-6座位的另一端,与S-6座位的遗传距离分别为0.9cM、2.1cM、3.8cM、4.1cM、4.4cM和5.3cM。2、根据S-6座位精细定位的结果,从IRGSP下载了S-6座位所在区域克隆的序列,将克隆的序列进行了拼接,同时将与S-6座位紧密连锁的分子标记与序列拼接图进行了电子整合。根据整合的结果发展位置特异性的微卫星标记和STS标记,利用500株的作图群体,最终将S-6座位界定在PSM8与PSM215之间182.2kb的范围,其中PSM214、T17、T18和T19与S-6座位完全连锁。3、通过对近等基因系E11-5中代换片段遗传效应的分析,在第1染色体的代换片段上鉴定出一个新的F1花粉不育基因座S-d。根据基因组的序列发展位置特异性的微卫星标记将S-d座位进行了定位。结果表明多态性标记均与S-d座位紧密连锁,其中PSM27、PSM24、.PSM26、PSM23、PSM31、PSM25、PSM37、PSM41、PSM42、PSM43、.PSM44、.PSMl2和PSMl3位于S-d座位的一端,与S-d座位的遗传距离分别为10.6cM、7.2cM、7.2cM、6.8cM、6.8cM、6.4cM、6.4cM、4.8cM、4.8cM、3.2cM、1.6cM、0.4cM和0.4cM,而RM84、RM86、RM323、RMl和RM283位于S-d座位的另一端,与S-d座位的遗传距离分别为3.8cM、4.6cM、6.7cM、7.5cM和8.7cM。4、根据S—d座位定位的结果,从IRGSP下载了S-d座位所在区域克隆的序列,将克隆的序列进行了拼接,同时将与S-d紧密连锁的分子标记与序列拼接图进行了电子整合。根据整合的结果发展位置特异性的微卫星标记和STS标记,利用2160株的作图群体,最终将S-d座位界定在67.8kb的范围内,其中PSM93和PSM74位于S-d座位的两侧且各与S-d仅有一个重组,而PSM95、PSM96、T1和T2与S-d座位完全连锁。RiceGAAS注释分析表明在此区段有17个ORF。,其中3个ORF可能与杂种不育性有关。BLAST分析表明此段序列籼粳之间的同源性较低,这也可能是杂种不育的一个原因。5、通过分子标记辅助选择,在F1花粉不育基因s-n、s-6、s-c和s-d座位各培育了一批复等位基因近等基因系,测交分析表明各不育基因座位上的不育基因不仅分化为相对的S^i和S^j,而且基因型类型相同的复等位基因的遗传分化也达到了显著差异的水平。携带有多个复等位基因的近等基因系的测交分析表明,复等位基因近等基因系的遗传效应为各基因座位遗传效应的累加,各基因的遗传效应相互独立,彼此间无相互作用。  相似文献   
128.
G. Y. Lu    G. S. Yang  T. D. Fu 《Plant Breeding》2004,123(3):262-265
Rs1046AB is a genic male sterile two‐type line in rapeseed that has great potential for hybrid seed production. The sterility of this line is conditioned by the interaction of two genes, i.e. the dominant genic male sterility gene (Ms) and the suppressor gene (Rf). The present study was undertaken to identify DNA markers for the Ms locus in a BC1 population developed from a cross between a male‐sterile plant in Rs1046AB and the fertile canola‐type cultivar ‘Samourai’. Bulked segregant analysis was performed using the amplified fragment length polymorphism (AFLP) methodology. From the survey of 480 AFLP primer combinations, five AFLP markers (P10M13350, P13M8400, P6M6410, E7M1230 and E3M15100) tightly linked to the target gene were identified. Two of them, E3M15100 and P6M6410, located the closest, at either side of Ms at a distance of 3.7 and 5.9 cM, respectively. The Ms locus was subsequently mapped on linkage group LG10 in the map developed in this laboratory, adding two additional markers weakly linked to it. This suite of markers will be valuable in designing a marker‐assisted genic male sterility three‐line breeding programme.  相似文献   
129.
利用272份全球籼稻微核心种质的重测序SNP基因型,对海南三亚、广东深圳、浙江杭州和湖北荆州4个地点收集到的垩白粒率和垩白度性状采用TASSEL软件进行全基因组关联分析,解析籼稻垩白的遗传基础和挖掘影响垩白粒率和垩白度的优异等位基因。结果表明,依据SNP数据,可将籼稻微核心种质分成3个亚群。4个地点分别检测到42个和44个与垩白粒率和垩白度显著关联的位点,位于全部12条染色体上。2个性状分别有21个和19个位点在2个以上环境下同时被检测到,这些位点中有12个位点同时影响垩白粒率和垩白度,11个位点附近都有已克隆的水稻品质相关基因。其中,第5染色体3.3~5.3 Mb区间在4个地点都被检测到与垩白粒率显著关联,以杭州点对垩白粒率的贡献最大,优异等位基因载体品种为IRGC121689;第12染色体的17.5~18.0 Mb区间在三亚和杭州都被检测到与垩白度显著关联,以三亚点的垩白度贡献最大,优异等位基因载体品种为IRGC122285。这些位点和品种资源可作水稻外观品质分子改良的重要基因和品种资源。  相似文献   
130.
The colour of plant organs is a useful trait in crop breeding. The pod colours of soybeans primarily include black, brown and tan types, which are controlled by two classical genetic loci, L1 and L2. Most wild soybeans have black pods, which reflect a possible role in adaptation to the natural environment. Here, an improved chromosome segment substitution line (CSSL) population SojaCSSLP3 was established to identify the L1 gene. The segment on the 19th chromosome represented by the SSR marker Satt313 was found to link with locus L1. The region was further delimited three times with increased SSR and InDel markers using a population derived from a heterozygous plant of CSSL124 from SojaCSSLP3. The L1 gene was finally located in a 184.43‐kb region between SSR_19p09 and Indel_19P7. Thirteen putative genes in this region were analysed with qRT‐PCR. The expression level of Glyma19 g27460, which is a member of the SANT superfamily with a MYB DNA‐binding domain, was significantly upregulated in black pods and was recognized to be the most likely candidate for the L1 gene.  相似文献   
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