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1.
在玉米单交种育种中,鉴定高产杂交种和具有优良特性的自交系是一个重要的问题。研究以17个优良玉米自交系为亲本,按照双列杂交配组合,利用RAPD技术分析17个自交系的多态性以及RAPD标记与9个重要农艺性状(包括产量)的关系。基于RAPD标记计算的相似系数聚类将17个自交系分为5个类群,经分析与系谱关系基本一致。杂交种性状及其特殊配合力与亲本间的遗传距离是高度相关的,与聚类前比较,聚类后平均遗传距离与  相似文献   

2.
南斯拉夫玉米自交系改良我国优良杂交种的遗传潜势研究   总被引:3,自引:0,他引:3  
李玉玲  王畅 《遗传》2005,27(4):611-616
以9个引进南斯拉夫玉米自交系为母本、11个分属于不同优势类群的8个优良杂交种的亲本自交系为父本,组配107个杂交组合,采用Dudley方法分析了利用南斯拉夫自交系改良我国优良杂交种产量的遗传潜势、利用方法及改良的主要穗粒性状。结果表明,引进自交系具有较高的间接利用价值,9801、9802、9803、9805、9807、9808、9809可以分别通过改良不同亲本自交系的不同穗粒性状提高各杂交种的产量水平。具体改良效果还有待通过进一步的育种实践予以印证。  相似文献   

3.
武耀廷  张天真  殷剑美 《遗传学报》2001,28(11):1040-1050
利用RAPD,ISSR和SSR3种分子标记方法和2年田间实验对国内外36个陆地棉栽培品种的遗传多样性进行了研究,以3种分子标记在36个品种之间扩增的282条多态性位点所赋值的0,1数据,采用Nei和Li的方法,计算的品种成对相似系数从0.5745到0.9291,其品种平均数从0.6547到0.7524,又以2年品种表现的性状平均数经正态标准化后,采用欧氏距离计算了成对品种的遗传距离。分别以相似系数和传距离矩阵,采用类平均法进行聚类分析,其聚类结果把供试品种大致分为国外品种,新疆品种,早熟类型品种和我国的中熟棉品种等几个类群,类内进一步分组表明,分子标记确定的传关系基本上与品种系谱的种质系统一致,但并不能按系谱或种植生态区域简单地归属,尽管分子标记数据计算的相似系数矩阵和表现型计算的遗传距离矩阵存在极显著的相关关系(r=-0.335),但以遗传距离进行聚类分析的类内分组的组间特征不明显,分子标记是检测类内品种间遗传差异的有效方法,研究结果为棉花育种亲本选配提供了理论依据。  相似文献   

4.
辣椒31个优良自交系的亲本类群分析   总被引:2,自引:0,他引:2  
任羽  张银东  尹俊梅  王得元 《遗传》2008,30(2):237-237―245
以包含我国重要尖椒品种的亲本材料在内的31份优良自交系为材料, 利用SRAP标记和基因型值分析技术开展了辣椒自交系间遗传差异的分析与类群划分研究。结果表明: 在30个引物组合中, 27个引物组合可以 在自交系间扩增出多态性条带, 共扩增出310个多态性条带, 平均每个引物组合产生11.5个多态性条带, 显示出SRAP技术具有较强的分析效率; 基于SRAP标记和Yule相似系数对这些自交系进行的聚类分析中, 可以基本区分辣椒的2个变种(C. annuum var. grossum和C. annuum var. longum), 而且可以反映出自交系间的亲缘及系谱关系; 在相似系数为0.67处, 可将这31个自交系分为4个类群; 基于基因型值和标准Euclidean距离对这些自交系进行的聚类分析可成功地将辣椒的两个变种完全区分; 在遗传距离约4.5处, 可将这31个自交系分为4个类群; 自交系间基于SRAP标记与基因型值的遗传距离存在一定的相关性。  相似文献   

5.
苜蓿种质资源的分子遗传多样性分析对于种质资源保存和育种利用具有重要指导意义。本研究选用群体标记法对来自甘肃省的16个苜蓿品种的DNA进行RAPD扩增,旨在研究其遗传多样性,并在此基础上筛选品种特异性引物用于进一步的品种鉴定。依据16个苜蓿品种间的Roger’s遗传距离进行UPGMA聚类分析结果显示,品种间亲缘关系与其选育背景紧密相关,供试的16个品种被划为4个类群,其中,匍匐型品种Jindera与其他直立型品种差异显著,自成1个类群,引进品种和甘肃省内具有国外种质来源的育成品种被划为同1类群,而甘肃地方品种聚为2个类群。10个RAPD引物中有4个引物OPE4、OPE5、OPE6和OPE7分别检测到5个品种甘农3号、甘杂27、Jindera、陇东和Algonuin的特异性条带,可进一步用于开发设计特异性引物进行品种鉴定工作。以上结果进一步证实,利用RAPD标记研究苜蓿系谱发育关系和选择杂交亲本应采用群体标记法。  相似文献   

6.
酯酶同工酶及RAPD技术在香菇杂种优势研究中的应用   总被引:1,自引:0,他引:1  
采用酯酶同工酶及RAPD技术对香菇3个亲本双核体(苏香、野生46#、野生80#)及其10个单核体、以及它们的10个杂交后代进行了遗传差异和亲缘关系的研究,同时针对亲本单核体酯酶同工酶标记和RAPD标记遗传距离、以及杂交子和亲本单核体RAPD标记遗传距离与香菇产量超亲优势进行了相关性分析。结果表明,酯酶同工酶和RAPD技术都可进行香菇杂种优势群的划分研究,但RAPD标记检测的多态性要远远高于酯酶同工酶标记。相关分析结果表明,亲本单核体酯酶同工酶标记遗传距离与香菇产量超亲优势无相关性,而RAPD标记遗传距离与其存在极显著正相关;杂交子和以苏香为来源的单核体亲本之间RAPD标记遗传距离与香菇产量超亲优势也存在极显著正相关,而杂交子和以野生46#、野生80#为来源的单核体亲本之间RAPD标记遗传距离与其相关不显著。  相似文献   

7.
采用酯酶同工酶及RAPD技术对香菇3个亲本双核体(苏香、野生46#、野生80#)及其10个单核体、以及它们的10个杂交后代进行了遗传差异和亲缘关系的研究,同时针对亲本单核体酯酶同工酶标记和RAPD标记遗传距离、以及杂交子和亲本单核体RAPD标记遗传距离与香菇产量超亲优势进行了相关性分析。结果表明,酯酶同工酶和RAPD技术都可进行香菇杂种优势群的划分研究,但RAPD标记检测的多态性要远远高于酯酶同工酶标记。相关分析结果表明,亲本单核体酯酶同工酶标记遗传距离与香菇产量超亲优势无相关性,而RAPD标记遗传距离与其存在极显著正相关;杂交子和以苏香为来源的单核体亲本之间RAPD标记遗传距离与香菇产量超亲优势也存在极显著正相关,而杂交子和以野生46#、野生80#为来源的单核体亲本之间RAPD标记遗传距离与其相关不显著。  相似文献   

8.
8个合成群体改良玉米杂交种郑单958的育种潜力分析   总被引:1,自引:0,他引:1  
玉米群体含有有利等位基因, 可作为改良杂交种的优异种质。针对持续改良我国主要玉米杂交种郑单958产量性状和商品品质的需求, 文章以8个合成群体为供体, 郑单958亲本自交系为受体, 组配16个测交组合。2009和2010年分别在北京顺义和河南新乡测量产量和籽粒容重。4个遗传参数评价显示, 合成群体可以作为新的有利等位基因供体改良杂交种性状, 其中WBMC-4和陕综3号两个群体具有同时改良杂交种产量和籽粒容重的潜力, 可分别用于改良亲本自交系郑58和昌7-2, 以及拓宽我国主要玉米类群PA和四平头的种质基础。  相似文献   

9.
酯酶同工酶及RAPD技术在香菇杂种优势研究中的应用   总被引:5,自引:0,他引:5  
采用酯酶同工酶及RAPD技术对香菇3个亲本双核体(苏香、野生46^#、野生80^#)及其10个单核体、以及它们的10个杂交后代进行了遗传差异和亲缘关系的研究,同时针对亲本单核体酯酶同工酶标记和RAPD标记遗传距离、以及杂交子和亲本单核体RAPD标记遗传距离与香菇产量超亲优势进行了相关性分析。结果表明,酯酶同工酶和RAPD技术都可进行香菇杂种优势群的划分研究,但RAPD标记检测的多态性要远远高于酯酶同工酶标记。相关分析结果表明,亲本单核体酯酶同工酶标记遗传距离与香菇产量超亲优势无相关性,而RAPD标记遗传距离与其存在极显著正相关;杂交子和以苏香为来源的单核体亲本之间RAPD标记遗传距离与香菇产量超亲优势也存在极显著正相关,而杂交子和以野生46^#、野生80^#为来源的单核体亲本之间RAPD标记遗传距离与其相关不显著。  相似文献   

10.
甘薯(Ipomoea batatas(L.)Lam.)作为世界上一种重要的粮食、饲料、工业原料及新型能源作物,从有性生殖F1选择优良实生系进行选择育种一直是甘薯育种的重要方式。为了优化甘薯杂交育种方法,合理选配杂交组合,提高育种效率,本试验利用SSR标记研究了甘薯杂交群体基于SSR标记及13个农艺性状的遗传多样性,得到了群体内的聚类图,并且筛选出了甘薯的高产株系。群体SSR标记的聚类分析结果显示,群体材料与各亲本遗传距离比较远,被聚为3类,而亲本单独聚在另外一类。13个农艺性状的聚类将亲本与部分群体材料聚在了一起,且将群体材料和亲本材料作为一个整体时,其遗传距离的变异高达30%以上,远远高于SSR标记所获得的遗传变异系数。  相似文献   

11.
 The challenge to maize breeders is to identify inbred lines that produce highly heterotic hybrids. In the present study we surveyed genetic divergence among 13 inbred lines of maize using DNA markers and assessed the relationship between genetic distance and hybrid performance in a diallel set of crosses between them. The parental lines were assayed for DNA polymorphism using 135 restriction fragment length polymorphisms (RFLPs) and 209 amplified-fragment polymorphisms (AFLPs). Considerable variation among inbreds was detected with RFLP and AFLP markers. Moreover AFLPs detect polymorphisms more efficiently in comparison to RFLPs, due to the larger number of loci assayed in a single PCR reaction. Genetic distances (GDs), calculated from RFLP and AFLP data, were greater among lines belonging to different heterotic groups compared to those calculated from lines of the same heterotic group. Cluster analysis based on GDs revealed associations among lines which agree with expectations based on pedigree information. The GD values of the 78 F1 crosses were partioned into general (GGD) and specific (SGD) components. Correlations of GD with F1 performance for grain yield were positive but too small to be of predictive value. The correlations of SGDs, particularly those based on AFLP data, with specific combining-ability effects for yield may have a practical utility in predicting hybrid performance. Received: 15 August 1997 / Accepted: 19 September 1997  相似文献   

12.
Liu K  Goodman M  Muse S  Smith JS  Buckler E  Doebley J 《Genetics》2003,165(4):2117-2128
Two hundred and sixty maize inbred lines, representative of the genetic diversity among essentially all public lines of importance to temperate breeding and many important tropical and subtropical lines, were assayed for polymorphism at 94 microsatellite loci. The 2039 alleles identified served as raw data for estimating genetic structure and diversity. A model-based clustering analysis placed the inbred lines in five clusters that correspond to major breeding groups plus a set of lines showing evidence of mixed origins. A "phylogenetic" tree was constructed to further assess the genetic structure of maize inbreds, showing good agreement with the pedigree information and the cluster analysis. Tropical and subtropical inbreds possess a greater number of alleles and greater gene diversity than their temperate counterparts. The temperate Stiff Stalk lines are on average the most divergent from all other inbred groups. Comparison of diversity in equivalent samples of inbreds and open-pollinated landraces revealed that maize inbreds capture <80% of the alleles in the landraces, suggesting that landraces can provide additional genetic diversity for maize breeding. The contributions of four different segments of the landrace gene pool to each inbred group's gene pool were estimated using a novel likelihood-based model. The estimates are largely consistent with known histories of the inbreds and indicate that tropical highland germplasm is poorly represented in maize inbreds. Core sets of inbreds that capture maximal allelic richness were defined. These or similar core sets can be used for a variety of genetic applications in maize.  相似文献   

13.
 We have constructed a genetic linkage map within the cultivated gene pool of cowpea (2n=2x=22) from an F8 recombinant inbred population (94 individuals) derived from a cross between the inbreds IT84S-2049 and 524B. These breeding lines, developed in Nigeria and California, show contrasting reactions against several pests and diseases and differ in several morphological traits. Parental lines were screened with 332 random RAPD decamers, 74 RFLP probes (bean, cowpea and mung bean genomic DNA clones), and 17 AFLP primer combinations. RAPD primers were twice as efficient as AFLP primers and RFLP probes in detecting polymorphisms in this cross. The map consists of 181 loci, comprising 133 RAPDs, 19 RFLPs, 25 AFLPs, three morphological/classical markers, and a biochemical marker (dehydrin). These markers identified 12 linkage groups spanning 972 cM with an average distance of 6.4 cM between markers. Linkage groups ranged from 3 to 257 cM in length and included from 2 to 41 markers, respectively. A gene for earliness was mapped on linkage group 2. Seed weight showed a significant association with a RAPD marker on linkage group 5. This map should facilitate the identification of markers that “tag” genes for pest and disease resistance and other traits in the cultivated gene pool of cowpea. Received: 16 September 1996 / Accepted: 25 April 1997  相似文献   

14.
Knowledge of genetic diversity (GD) and relationships among maize inbred lines is indispensable in a breeding program. Our objectives were to (1) investigate the level of genetic diversity among maize inbred lines and (2) assess their genetic structures by applying simple sequence repeat (SSR) markers. Fifty-six highland and mid-altitude maize inbred lines obtained from CIMMYT programs in Ethiopia and Zimbabwe were genotyped using 27 SSR loci. All of the genotypes studied could unequivocally be distinguished with the combination of the SSRs used. In total, 104 SSR alleles were identified, with a mean of 3.85 alleles per locus. The average polymorphism information content (PIC) was 0.58. GD expressed as Euclidean distance, varied from 0.28 to 0.73 with an average of 0.59. Cluster analysis using unweighted pair group method with arithmetic average (UPGMA) suggested five groups among the inbred lines. Most of the inbred lines adapted to the highlands and the mid-altitudes were positioned in different clusters with a few discrepancies. The pattern of groupings of the inbred lines was mostly consistent with available pedigree information. The variability detected using SSR markers could potentially contribute towards effective utilization of the inbred lines for the exploitation of heterosis and formation of genetically diverse source populations in Ethiopian maize improvement programs.  相似文献   

15.
Genetic distances (GDs) based on molecular markers are important parameters for identifying essentially derived varieties (EDVs). In this context information about the variability of molecular markers within maize inbred lines is essential. Our objectives were to (1) determine the variation in the size of simple sequence repeat (SSR) fragments among different accessions of maize inbreds and doubled haploid (DH) lines, (2) attribute the observed variation to genetic and marker system-specific sources, and (3) investigate the effect of SSR fragment size differences within maize lines on the GD between maize lines and their consequences for the identification of essentially derived varieties. Two to five accessions from nine inbred lines and five DH lines were taken from different sources or drawn as independent samples from the same seed lot. Each accession was genotyped with 100 SSR markers that evenly covered the whole maize genome. In total, 437 SSR fragments were identified, with a mean of 4.4 alleles per locus. The average polymorphic information content (PIC) was 0.58. GD estimates between two accessions of the same genotype ranged from 0.00 to 0.12 with an average of 0.029 for inbred lines and 0.001 for DH lines. An average of 11.1 SSRs was polymorphic between accessions of the same inbred line due to non-amplification (8.1 SSRs), heterogeneity (4.0 SSRs) or unknown alleles (2.6 SSRs). In contrast to lab errors, heterogeneity contributed considerably to the observed variation for GD. In order to decrease the probability to be suited for infringing an EDV threshold by chance, we recommend to increase the level of homogeneity of inbred lines before applying for plant variety protection.  相似文献   

16.
Summary Changes that may have occurred over the past 50 years of hybrid breeding in maize (Zea maize L.) with respect to heterosis for yield and heterozygosity at the molecular level are of interest to both maize breeders and quantitative geneticists. The objectives of this study were twofold: The first, to compare two diallels produced from six older maize inbreds released in the 1950's and earlier and six newer inbreds released during the 1970's with respect to (a) genetic variation for restriction fragment length polymorphisms (RFLPs) and (b) the size of heterosis and epistatic effects, and the second, to evaluate the usefulness of RFLP-based genetic distance measures in predicting heterosis and performance of single-cross hybrids. Five generations (parents, F1; F2, and backcrosses) from the 15 crosses in each diallel were evaluated for grain yield and yield components in four Iowa environments. Genetic effects were estimated from generation means by ordinary diallel analyses and by the Eberhart-Gardner model. Newer lines showed significantly greater yield for inbred generations than did older lines but smaller heterosis estimates. In most cases, estimates of additive x additive epistatic effects for yield and yield components were significantly positive for both groups of lines. RFLP analyses of inbred lines included two restriction enzymes and 82 genomic DNA clones distributed over the maize genome. Eighty-one clones revealed polymorphisms with at least one enzyme. In each set, about three different RFLP variants were typically found per RFLP locus. Genetic distances between inbred lines were estimated from RFLP data as Rogers' distance (RD), which was subdivided into general (GRD) and specific (SRD) Rogers' distances within each diallel. The mean and range of RDs were similar for the older and newer lines, suggesting that the level of heterozygosity at the molecular level had not changed. GRD explained about 50% of the variation among RD values in both sets. Cluster analyses, based on modified Rogers' distances, revealed associations among lines that were generally consistent with expectations based on known pedigree and on previous research. Correlations of RD and SRD with f1 performance, specific combining ability, and heterosis for yield and yield components, were generally positive, but too small to be of predictive value. In agreement with previous studies, our results suggest that RFLPs can be used to investigate relationships among maize inbreds, but that they are of limited usefulness for predicting the heterotic performance of single crosses between unrelated lines.Joint contribution from Cereal and Soybean Research Unit, USDA, Agricultural Research Service and Journal Paper no. J-13929 of the Iowa Agric and Home Economics Exp Stn, Ames, IA 50011. Projects no. 2818 and 2778A.E.M. is presently at the Iowa State University on leave from University of Hohenheim, D-7000 Stuttgart 70, Federal Republic of Germany  相似文献   

17.
以代表我国玉米6个主要杂种优势群旅大红骨、Lancaster、Reid、苏湾、墨白和塘四平头的标准测验种丹340、自330、7922、苏37、449、黄早四和适应我国喀斯特高海拔山区的玉米骨干自交系为材料,利用RAPD标记对其进行遗传多样性和杂种优势群划分.从90个随机引物中筛选出21个多态性好的引物扩增材料,共产生146条谱带,其中124条谱带有多态性,占86.3%,说明喀斯特高海拔山区的玉米骨干自交系具有较丰富的遗传多样性.通过UPGMA聚类分析,以遗传相似系数为0.632,可将我国喀斯特高海拔山区玉米种质资源的16个骨干自交系划分为5个类群.  相似文献   

18.
 RAPD markers and agronomic traits were used to determine the genetic relationships among 32 breeding lines of melon belonging to seven varietal types. Most of the breeding lines were Galia and Piel de Sapo genotypes, which are currently being used in breeding programmes to develop new hybrid combinations. A total of 115 polymorphic reliable bands from 43 primers and 24 agronomic traits were scored for genetic distance calculations and cluster analysis. A high concordance between RAPDs and agronomic traits was observed when genetic relationships among lines were assessed. In addition, RAPD data were highly correlated with the pedigree information already known for the lines and revealed the existence of two clusters for each varietal type that comprised the lines sharing similar agronomic features. These groupings were consistent with the development of breeding programmes trying to generate two separate sets of parental lines for hybrid production. Nevertheless, the performance of certain hybrids indicated that RAPDs were more suitable markers than agronomic traits in predicting genetic distance among the breeding lines analysed. The employment of RAPDs as molecular markers both in germplasm management and improvement, as well as in the selection of parental lines for the development of new hybrid combinations, is discussed. Received: 25 July 1997 / Accepted: 6 October 1997  相似文献   

19.
Molecular marker diversity among current and historical maize inbreds   总被引:25,自引:0,他引:25  
Advanced-cycle pedigree breeding has caused maize (Zea mays L.) inbreds to become more-elite but more-narrow genetically. Our objectives were to evaluate the genetic distance among current and historical maize inbreds, and to estimate how much genetic diversity has been lost among current inbreds. We selected eight maize inbreds (B14, B37, B73, B84, Mo17, C103, Oh43 and H99) that largely represented the genetic background of current elite inbreds in the U.S. seed industry. A total of 32 other inbreds represented historical inbreds that were once important in maize breeding. Cluster analysis of the inbreds, using data for 83 SSR marker loci, agreed well with pedigree information. Inbreds from Iowa Stiff Stalk Synthetic (BSSS), Reid Yellow Dent, and Lancaster clustered into separate groups with only few exceptions. The average number of alleles per locus was 4.9 among all 40 inbreds and 3.2 among the eight current inbreds. The reduction in the number of alleles per locus was not solely due to sample size. The average genetic distance (D ij ) was 0.65 among the eight current inbreds, 0.67 among the 32 historical inbreds, and 0.67 among all 40 inbreds. These differences were statistically insignificant. We conclude that genetic diversity among current inbreds has been reduced at the gene level but not at the population level. Hybrid breeding in maize maintained, rather than decreased, genetic diversity, at least during the initial subdivision of inbreds into BSSS and non-BSSS heterotic groups. We speculate, however, that exploiting other germplasm sources is necessary for sustaining long-term breeding progress in maize. Received: 21 August 2000 / Accepted: 5 January 2001  相似文献   

20.
基于荧光SSR标记的玉米自交系遗传结构解析   总被引:3,自引:0,他引:3  
利用多重SSR-PCR荧光标记检测技术,对本单位自育和引进的259份玉米自交系进行遗传多样性和亲缘关系分析,并以11个归属于不同杂种优势群的代表自交系为参照进行群体结构分析。结果显示,50对SSR引物共检测到214个等位基因变异,基因多态性指数的平均值为0.50,每个SSR标记的多态性信息量(PIC)平均值为0.44。用UPGMA方法将270份自交系划分成3大类群,进一步进行数值化杂种优势群分析,以明确所用种质资源的杂优类群利用方向,为玉米自交系的有效利用和品种的选育提供依据。  相似文献   

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