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1.
中国白菜AFLP分子遗传图谱的构建   总被引:38,自引:6,他引:32  
以白菜高抗TuMV白心株系91 112和高感TuMV桔红心株系T12 91为亲本建立的小孢子DH系作为图谱构建群体,以AFLP标记来构建白菜连锁图谱。通过对64对AFLP引物组合的筛选,利用20对引物得到了263个AFLP多态性位点。经Mapmaker/EXP3.0软件处理,构建了1张含255个标记位点,10个连锁群,覆盖长度为883.7cM的连锁图。255个AFLP位点中偏离孟德尔遗传的比率(P<0.05)为15 0%和27 5%(P<0.01)。  相似文献   

2.
基于EST-SSR的木薯分子标记遗传连锁图谱的构建   总被引:3,自引:2,他引:1  
此实验以木薯推广品种‘KU50’为母本,‘SC124’为父本通过杂交得到包含240个单株的F1分离群体,利用300对EST-SSR引物,20对SSR和20对SRAP引物组合对亲本和部分群体株系进行多态性分子标记筛选,共获得具有多态性的引物110对。在此基础上,利用这110对多态性引物对该F1群体进行分子标记的多态性分析,共获得269个多态性标记。利用JoinMap 3.0软件对这269个多态性标记进行分组和遗传图谱构建,最后获得了一张包含140个标记的木薯分子遗传连锁图谱,其中EST-SSR标记111个,SSR标记22个,SRAP标记7个;共21个连锁群,其中连锁群1和3(LG1、LG3)上的标记位点最多(15个),LG21标记位点最少(2个)。此遗传连锁图谱的总长度为1314.775 cM,单个连锁群最长为132.904 cM(LG3),最短为0.431 cM(LG19),标记间平均长度9.391 cM。  相似文献   

3.
利用抗、染根肿病F_2群体构建大白菜AFLP遗传连锁图谱   总被引:5,自引:2,他引:3  
以易感染根肿病的大白菜(Brassica campestris ssp.pekinensis)自交系94SK和抗根肿病的CR Shinki DH系为亲本,通过杂交获得F1,并选择一株F1植株进行自交,构建了F2作图群体.利用扩增出与根肿病抗性基因CRb连锁标记的17对AFLP引物组合Pst+GNN/Mse+CNN构建大白菜遗传连锁图谱.这些AFLP引物组合共扩增出322个亲本间表现出多态性的AFLP标记.应用其中6个与CRb基因紧密连锁的AFLP标记转化成的SCAR标记和清晰可见的大于100 bp的211个AFLP标记构建了一张包含179个标记位点、10个连锁群、覆盖长度为576 cM,平均图距3.3 cM的遗传图谱.抗根肿病基因CRb定位在第一条连锁群9 cM的范围内.研究表明,利用Pst/Mse Ⅰ和EcoR Ⅰ/Mse Ⅰ引物组合以及其他分子标记类型构建遗传连锁图谱,并有效减少遗传图谱中聚集和间隙现象的产生提供了一定的科学依据.同时,该图谱的构建对在基因组范围内通过分子标记辅助选择选育大白菜根肿病抗性品种奠定了基础.  相似文献   

4.
本研究利用马尾松单株160粒种子的胚乳(大配子体)和235对微卫星(SSR)引物构建马尾松遗传图谱。经过筛选得到30对具有多态性的引物,产生97个分离位点,平均1.62位点/引物,偏分离率为11.34%。利用FsLinkageMap2.0软件对其进行连锁关系分析,74个标记分布在11个连锁群,有23个标记未连锁到任何连锁群上。该图谱覆盖的基因组总长度为927.91cM,最大连锁群图距为359.89cM,最小连锁群图距为20.44cM。平均每个连锁群的长度为84.36cM,标记间最大间距为28.2cM,最小间距为0,标记平均距离为12.54cM。估算的马尾松基因组大小为2541.21cM,基因组覆盖度为36.5%。利用马尾松大配子体构建该树种较饱和的遗传图谱,大约需要超过1250个标记,并应积极尝试AFLP和SRAP等标记;群体数目应超过200个;同时应开发适于半同胞群体的作图软件。  相似文献   

5.
ET-ISJ标记的开发及陆地棉遗传图谱构建   总被引:1,自引:0,他引:1  
根据植物结构基因外显子拼接位点的保守序列,设计扩增外显子的ET-ISJ (exon targeted intron-exon splice junction)标记引物。利用1 280对ET-ISJ引物组合,在陆地棉品种渝棉1号和T586中,筛选获得69对多态性引物组合,占引物组合的5.4%。用多态性ET-ISJ引物组合检测(渝棉1号×T586)F2:7重组近交系群体,得到70个位点。以70个ET-ISJ标记位点与523个SSR、59个IT-ISJ、29个SRAP和8个形态标记进行连锁分析,构建的遗传连锁图谱包括59个连锁群和673个位点(68个ET-ISJ、510个SSR、58个IT-ISJ、29个SRAP和8个形态标记)。连锁图覆盖3 216.7 cM,占棉花基因组的72.3%,标记间平均长度为4.8 cM。68个ET-ISJ标记分布于20条染色体。研究表明ET-ISJ标记多态性较高、稳定性好,可有效用于棉花与其他植物遗传连锁图谱构建。  相似文献   

6.
本研究应用金针菇(Flammulina filiformis)的两个菌株,黄色金针菇Y1701和白色金针菇W3082为作图亲本,采用分子标记以构建高密度的金针菇分子遗传连锁图谱。通过F1代产生的71个单孢为遗传连锁图谱作图群体,应用SRAP、ISSR和TRAP标记引物,利用PCR对得到的作图群体进行多态性分析,构建了一张拥有11个连锁群以及125个标记位点,总长度860.3 cM的遗传连锁图谱。连锁群平均长度为78.21 cM,最长的连锁群为132.9 c M,最短的连锁群为16.3 c M。多态性标记间最大遗传距离为38.4 cM,最小距离为0.5 cM,连锁图中出现了6个大于20 cM的间隙,标记密度6.88 cM,是迄今以来金针菇遗传连锁图谱相关研究中密度最高的。本研究所获得的高密度遗传连锁图谱有助于金针菇QTL定位,分子辅助育种和基因定位的研究。  相似文献   

7.
利用SSR荧光标记构建20个高粱品种指纹图谱   总被引:5,自引:0,他引:5  
为建立高粱种子纯度及真实性鉴定技术体系,构建高粱栽培品种DNA指纹图谱数据库是必要的。利用SSR荧光标记技术筛选出36对SSR荧光标记引物,构建我国高粱杂种优势利用以来中晚熟区主推的20个品种的SSR指纹图谱。36对SSR引物共扩增出235个等位基因,平均每个等位基因检测到多态性位点7个,多态性位点变化范围为2~12个。20个高粱品种36个SSR位点的遗传多样性指数和多态性信息量的变化范围分别为0.3490~0.8813和0.3144~0.8696,平均值分别为0.6976和0.6571。从36对SSR引物中筛选到多态性丰富的2对引物作为高粱品种鉴定的特征引物,2对SSR特征引物组合可区分所有供试品种。20个高粱品种的SSR指纹图谱互不相同,可以作为各品种特定的图谱,为品种鉴别提供依据。  相似文献   

8.
烟草SRAP和ISSR分子遗传连锁图谱构建   总被引:20,自引:1,他引:20  
采用烤烟品种台烟7号与白肋烟品种白肋21杂交,构建了187个单株的F2遗传作图群体,利用所筛选的68个能扩增出多态性条带的SRAP和ISSR引物,对F2作图群体进行PCR扩增和遗传连锁分析,初步构建了一张包含26个连锁群、112个(92个SRAP和20个ISSR)标记位点的烟草遗传连锁图谱。该图谱覆盖长度为1 560.2 cM,平均图距18.1 cM。有16个标记未进入连锁群。26个连锁群包含2~20标记不等,连锁群遗传距离0~291.0 cM。连锁群上有24.1%的标记出现偏分离,主要集中在LG1和LG4连锁群上,其余分散在不同连锁群。该图谱为烟草重要农艺性状的基因定位、以及分子标记辅助选择等研究奠定基础。  相似文献   

9.
本试验以散穗高粱和红壳苏丹草为亲本,以其杂种F2代的170个分离单株为作图群体,利用SSR分子标记技术和Join Map 3.0作图软件构建高丹草遗传连锁图谱,并在此基础上对分蘖数、株高、氢氰酸含量等8个相关性状进行QTL定位。结果表明:从120对SSR引物中共筛选出50对多态性引物,利用这些引物对作图群体各单株进行PCR扩增,共获得226个多态性标记,平均扩增标记为4.5个/引物。构建出一张由10个连锁群组成的高丹草SSR分子遗传图谱,含181个SSR标记,图谱总长803.13 cM。各连锁群长度在5.8~152.3 cM之间,标记间平均距离4.38 cM,图谱密度较高。在构建图谱的基础上,对高丹草8个相关性状进行QTL定位,共获得17个QTLs,其中控制茎粗的QTL 4个,控制叶宽的QTL 3个,控制叶片数、叶长、分蘖数和穗长的QTL各2个;控制株高和氢氰酸含量的QTL各1个。这些QTL位点分布于高丹草SSR遗传连锁图谱的其中8个连锁群上,其遗传贡献率的范围为12.5%~25.6%。本研究可为进一步开展高丹草重要性状基因的精细定位、图位克隆、功能分析,以及分子标记辅助育种提供理论指导。  相似文献   

10.
花生AFLP遗传图谱构建及青枯病抗性QTL分析   总被引:6,自引:0,他引:6  
青枯病抗性分子标记能为花生抗青枯病育种提供辅助选择技术,以抗青枯病品种远杂9102与感病品种Chico杂交构建的重组自交系群体(RIL)为材料,用66对具多态性的引物(EcoR I/MseI引物组合35对,MluI/MseI引物组合14对,PstI/MseI引物组合17对)对其进行扩增,共检测到324个多态性位点。应用JoinMap(3.0软件对这些多态性位点进行遗传连锁分析,构建了一张栽培种花生的AFLP遗传连锁图。该图谱包含98个AFLP标记,涉及20个连锁群,覆盖总距离285 cM,标记间平均图距为2.90 cM。结合RIL群体的青枯病抗性鉴定结果,利用分析软件QTLNetwork(2.0共检测到与青枯病抗性相关的3个QTL(qBWr1、qBWr2和qBWr3)。其中,qBWr1和qBWr2均位于第4连锁群,qBWr3位于第14连锁群。这3个QTL形成2对具有加性×加性上位性互作效应的QTL区段(qBWr1/qBWr3和qBWr2/qBWr3),贡献率分别为12.81%和16.56%,共解释青枯病抗性总变异的21.62%。  相似文献   

11.
一张含有315个SSR和40个AFLP标记的大豆分子遗传图的整合   总被引:6,自引:0,他引:6  
本研究是基于“锚定SSR标记”作图策略,利用2个F2群体,选用592对SSR引物,对宛煜嵩等利用重组自交系群体Jinf构建的含有227个SSR标记的图谱的基础上进行整合。整合后的大豆分子遗传图包含315个SSR标记和40个AFLP标记,总图距为1951.7cM,相邻标记间的平均图距为5.48cM。整合后的遗传连锁图归属20个连锁群对应于大豆20条染色体,连锁群长度范围从40.8cM到184.4cM,标记数范围从11到41个。整合后的图谱新增加了87个SSR标记,其中A2、C1、C2、D1b和G连锁群有较多的标记增加。整合后的大豆分子遗传图谱中的标记顺序比原图谱与“公共图谱”有更好的线性符合度。本文还进一步对两种类型的作图群体的配合和不同作图软件的选用等问题进行了比较和深入的讨论。  相似文献   

12.
苦荞SSR分子遗传图谱的构建及分析   总被引:4,自引:1,他引:3  
构建苦荞遗传连锁图谱,为今后有关苦荞基因组结构、重要农艺性状QTL定位、分子标记辅助育种和基因克隆等研究工作奠定基础。以栽培苦荞‘滇宁一号’和苦荞野生近缘种杂交产生的119份F4代分离材料为作图群体,利用SSR分子标记来构建苦荞的分子遗传连锁图谱。本研究构建的连锁图谱包含15个连锁群,由89个标记组成,其中偏分离的标记有22个,占24.7%,每条连锁群上的标记在2~16之间。连锁群长度在6.9~165.8 cM的范围,覆盖基因组860.2 cM,总平均长度9.7 cM。本研究构建了首张苦荞SSR遗传连锁图谱,为苦荞QTL定位、基因克隆、遗传选育等研究奠定了基础。  相似文献   

13.
SSR作为锚定标记构建白菜&#215;芜菁分子遗传图谱   总被引:3,自引:0,他引:3  
为了将已有的大白菜分子遗传图谱和已发表的A基因组参考图谱对应起来,本研究利用国际上发表的大白菜和甘蓝型油菜A基因组特异SSR标记作为锚定标记,重新构建了白菜×芜菁分子遗传图谱。利用双亲和F1对326个SSR标记进行了筛选,共获得86个多态性分子标记。在此基础上整合了已有的400个标记,最终构建了一张由10个连锁群组成,包含了347个标记的分子连锁图谱,图谱总长度为1008.7cM,标记间的平均图距为2.91cM。此图谱上包含了已在A基因组参考图谱上定位的56个SSR标记,分布于10个连锁群上,从而将各个连锁群与参考图谱的连锁群对应起来。每个连锁群上的标记数在25~58个之间,连锁群长度在60.6~177.0cM范围内,平均图距在1.33~4.92cM之间。该图谱为白菜重要性状的遗传定位奠定了良好基础。  相似文献   

14.
A few linkage maps of tea have been constructed using pseudo-testcross theory based on dominant marker systems. However, dominant markers are not suitable as landmark markers across a wide range of materials. Therefore, we developed co-dominant SSR markers from genomic DNA and ESTs and constructed a reference map using these co-dominant markers as landmarks. A population of 54 F1 clones derived from reciprocal crosses between ‘Sayamakaori’ and ‘Kana-Ck17’ was used for the linkage analysis. Maps of both parents were constructed from the F1 population that was taken for BC1 population. The order of most of the dominant markers in the parental maps was consistent. We constructed a core map by merging the linkage data for markers that detected polymorphisms in both parents. The core map contains 15 linkage groups, which corresponds to the basic chromosome number of tea. The total length of the core map is 1218 cM. Here, we present the reference map as a central core map sandwiched between the parental maps for each linkage group; the combined maps contain 441 SSRs, 7 CAPS, 2 STS and 674 RAPDs. This newly constructed linkage map can be used as a basic reference linkage map of tea.  相似文献   

15.
Y. Peng    K. F. Schertz    S. Cartinhour  G. E. HART 《Plant Breeding》1999,118(3):225-235
A restriction fragment length polymorphism (RFLP) linkage map of Sorghum bicolor (L.) Moench was constructed in a population of 137 F6-8 recombinant inbred lines using sorghum, maize, oat, barley and rice DNA clones. The map consists of 10 linkage groups (LGs) and 323 markers, 247 of which (76.5%) were ordered at a LOD score ≥ 3.0. The LGs comprise from 61 (LG A) to 13 markers (J), which range in length from 205 (A) to 55 cM (J) and have a combined total length of 1347 cM. Highly significant distorted segregation was detected at all of the 38 loci in a 103-cM segment of LG A, the allelic ratios in the segment ranging from approximately 3:1 (one end) to 19:1 (middle) to 2:1 (other end). Duplicated loci located in different LGs have been mapped with 55 of the 295 DNA probes used in the study (18.6%). The distribution of these loci does not provide support for the hypothesis that Sorghum bicolor (L.) Moench is of tetraploid origin. Comparison of the map with RFLP maps of maize, rice, and oat produced evidence for sorghum-maize LG rearrangements and homoeologies not reported previously, including evidence that: (1) a segment of maize 5L and a segment of 5S may be homoeologous to sorghum LGA; (2) maize LGs 4 and 6 are partly homoeologous to sorghum LGE; (3) the short arm of maize LG 2 is partly homoeologous to sorghum LGF; (4) maize LG 4 may be partly homoeologous to sorghum LG G; (5) maize LG 5 and sorghum LG G contain a larger amount of homoeologous genetic material than previously indicated; and (6) a short segment of maize LG 1 may be homoeologous to a short segment of sorghum LG I.  相似文献   

16.
Sweet potato is an important food crop with high starch content. It is a hexaploid species, for which the chromosomes have not yet been well characterized. In this study, we used 856 SRAP primer pairs to analyse the 240 individuals from a mapping population, which were derived from a hybrid F1 generation of ‘Luoxushu 8’ (female) and ‘Zhengshu 20’ (male). Genetic linkage maps of the two parents were constructed. In the female parent (‘Luoxushu 8’), the linkage map consisted of 1391 markers, and the length of the linkage map was estimated to be 10,188.4 cM with an average distance of 7.17 cM between markers. In the male parent (‘Zhengshu 20’), the final linkage map consisted of 1,112 markers, and the estimated length of the map was 9,165.17 cM with an average distance of 8.40 cM between markers. Our results provide a basis for the detailed characterization of sweet potato chromosome sequences and the development of related molecular markers.  相似文献   

17.
遗传图谱的构建及整合是开展花生分子育种研究的基础,利用多个作图群体整合遗传图谱是解决图谱标记密度低的有效途径。本研究采用基于锚定SSR标记的作图策略,构建3个F_2群体3张遗传连锁图,利用Join Map 3.0软件整合图谱,获得一张包含20个连锁群、792个位点、总遗传距离为2079.50 c M,标记间平均距离为2.63 c M的整合图谱,各连锁群标记数在20~66个之间,遗传距离在59.10~175.80 c M之间。将3个分离群体中检测到的与荚果及种子大小相关的QTL区段与整合连锁图的标记比较发现,各群体中检测到的位于各染色体上的QTL在整合图谱中都能出现,有些QTL标记区间在整合图谱中存在更多的标记,为今后利用这些标记进行精细定位奠定了基础。  相似文献   

18.
To generate a genetic linkage map of cassava ( Manihot esculenta Crantz), 58 F1 progenies from a cross between Rayong 90 (female) and Rayong 5 (male) were examined in amplification fragment length polymorphism (AFLP) and simple sequence repeat (SSR) analyses. A total of 469 polymorphic markers consisting of 378 AFLPs generated from 76 primer combinations and 91 SSRs were identified. These markers were analyzed using the joinmap ® 3.0 package program to construct a genetic linkage map. A total of 33 linkage groups of a common map were constructed from 119 AFLPs and 18 SSRs, spanning 1095 cM with an average of 7.99 cM between markers. The genetic linkage map generated in this study will be useful for genetic studies in cassava particularly for the identification of genetic markers linked to traits of interest, although the complex cassava genome suggests that maybe a long term objective.  相似文献   

19.
Sorghum is one of the most important cereal crops; it is used to produce feed, sugar, and biofuel. To investigate genetic tradeoffs between grain and stem sugar production, we evaluated plant height, Brix (the percentage of soluble solids in stalk juice), 100-grain weight and flowering time over 3 years in a recombinant inbred line (RIL) population consisting of 189 individuals derived from a cross between the sweet sorghum cultivar ‘Rio’ and grain sorghum ‘BTx623’. We constructed a genetic linkage map (total length, 1418.71 cM; average distance between markers, 11.26 cM), which consisted of 118 simple sequence repeat (SSR) and 8 insertion-deletion (INDEL) markers. A total of 14 QTLs were detected on chromosomes 1, 3, 6, 7, and 9, which included 6 QTLs for plant height; 4 for Brix; and 2 QTLs for each 100-grain weight and flowering time. Eight QTLs were detected at least in 2 years. These results will be useful for future QTL fine mapping and gene mining for these traits, and useful for the improvement of sorghum through molecular marker-assisted selection.  相似文献   

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