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1.
青稞遗传多样性及其农艺性状与SSR标记的关联分析   总被引:2,自引:0,他引:2  
利用92个SSR标记对108份青稞亲本材料进行多态性扫描,分析其遗传多样性,旨在寻找与农艺性状相关联的分子标记,为青稞杂交组合的配制及分子标记辅助育种提供依据。挑选48个多态性标记进行群体遗传结构分析,在此基础上采用Tassel 2.1 GLM (general linear model)和MLM (mixed linear model)方法进行标记与农艺性状的关联分析。共检测出156个等位变异,每个位点2~6个等位变异。供试群体的Shannon指数为0.6727~1.1368,材料间遗传相似系数为0.2250~1.0000,平均0.7585。通过群体遗传结构分析将供试材料划分成4个亚群。以GLM分析,发现12个与株高、穗长、穗粒数和分蘖数相关联的标记,对表型变异的解释率分别为11.5%~17.6%、19.4%~45.4%、15.4%~22.1%和29.2%;以MLM分析,发现8个与株高、分蘖数和小穗数相关的标记,各标记对表型变异的解释率分别为31.7%~49.8%、28.1%~37.2%、22.7%~32.7%。关联标记分布在基因组全部6个连锁群上。  相似文献   

2.
棉花机械采收对品种的生育期、株型及对脱叶剂敏感度有较高的要求。本研究利用覆盖全基因组有多态性的214对SSR标记对118份含有一个或多个机采性状的种质资源的株高、始节高、始节位、第一果枝平均长度、生育期及脱叶率6个机采相关性状进行关联分析。利用Structure 2.3.1软件进行群体结构分析,并结合2年2点12个重复的田间表型数据,采用Tassel 5.0软件的混合线性模型MLM关联定位。结果检测到460个等位基因,涉及905个基因型,基因多样性指数平均为0.5151,PIC值平均为0.4587,基因多样性指数和PIC值都大于平均数的标记有99个,占总标记数的46.3%,说明该批SSR标记具有较多的等位变异数和较高的遗传多样性。群体结构分析将118份供试材料划分为4个亚群,结果显示各类群中材料与地理来源无对应关系。关联分析结果显示4种环境中,在显著条件下(P0.05),共检测到124个与6个机采相关性状相关的位点,对表型变异解释率范围为2.23%~14.15%;其中在极显著条件下(P0.01),共检测到20个与机采相关性状相关的位点,对表型变异解释率范围为4.84%~14.15%。基于本研究的结果,鉴定出典型的载体材料11份,分别为系7、金垦9号、Y11、豫棉18、AY-4、K2、朝阳棉2号、DZ22、中棉所43、C2和关农长早B14。以上发掘出的控制棉花适宜机采性状的优异等位基因及优异亲本资源,可为机采棉的分子辅助选择育种提供理论依据。  相似文献   

3.
Genetic diversity in 90 Indian soybean cultivars was assessed using 45 SSR markers distributed on 20 soybean chromosomes. Forty-five SSR markers generated 232 alleles with an average of five alleles/locus. The observed frequencies of the 232 alleles ranged from 0.01 to 0.94 with an average of 0.19. The polymorphic information content (PIC) value of the SSR markers varied from 0.10 to 0.83 with an average of 0.61 and about 71% markers have a PIC value of >0.5. In this study, 54 rare alleles including 19 genotype specific alleles were also identified. The observed hetrozygosity for SSR markers ranged from 0 to 0.11 with a mean of 0.10. Cluster analysis grouped the 90 soybean cultivars into three major clusters and principal coordinates analysis (PCoA) results were similar to those of the cluster analysis. A combination of eight SSR markers successfully differentiated all 90 soybean cultivars. The population structure analysis distributed the 90 soybean genotypes into two populations with mean alpha (α) value of 0.1873. In AMOVA analysis, proportion of variation within population was high (88%), whereas only 12% occurred among populations. In cluster and structure analyses, most of the genotypes with similar pedigree were grouped together. Soybean cultivars DS228, MACS-13, LSb-1, Hardee, Improved Pelican, and Pusa-24 were the six most genetically distinct cultivars identified. The study reported a moderate genetic diversity in Indian soybean cultivars and findings would be useful to the soybean breeders in selecting genetically distinct parents for a soybean improvement program.  相似文献   

4.
利用转录组数据开发SSR标记是一种经济高效的DNA分子标记开发策略。本研究利用高通量测序技术开发楸树(Catalpa bungei)EST-SSR标记,了解其在转录组序列中的分布类型,并利用41对多态性较好的引物对来自安徽(AH)、河南(HN)、湖北(HB)和山东(SD)的4个楸树居群的48个无性系的遗传多样性进行分析。结果表明:在大于1kb的14634条序列中,共鉴定出3999个SSR位点,580条序列包含2个及以上位点;单核苷酸重复(1957,48.94%)是最常见的SSR类型,其次是二核苷酸重复(1164,29.11%),三核苷酸重复(834,20.86%),四核苷酸重复(41,1.03%)和五核苷酸重复(3,0.08%);共扩增出243个等位基因,每个位点的等位基因数为3~13个,平均为4.85个,观测杂合度为0.14?1.00,平均为0.63,期望杂合度为0.42?0.84,平均为0.67,大部分位点偏离哈迪-温伯格平衡;AH和HN居群在有效等位基因数和期望杂合度的数值较高,表明其遗传多样性较丰富;分子方差分析(AMOVA)表明,遗传变异主要发生在居群内。本研究为楸树及同属其他树种种质资源鉴定、遗传多样性提供依据,且在指导楸树良种选育等方面具有重要的意义。  相似文献   

5.
为了解大麦亲本材料遗传特性和主要农艺性状特征,采用156份不同来源的大麦材料,在86个多态性SSR位点上检测遗传多样性,同时对7个农艺性状在两试验点作表型鉴定,利用GLM和MLM模型进行分子标记与表型性状的关联分析。结果共检测出392个等位变异,平均每个标记4.6个,PIC值变异范围为0.0612~0.8560。群体遗传结构分析将156份材料分为2个亚群。利用GLM模型分析结果表明,与株高、穗长、芒长、穗粒数和千粒重5个性状相关联的标记有18个,单个标记对表型变异的解释率为4.81%~20.75%;利用MLM模型分析,与株高、穗长、芒长、分蘖数、穗粒数和千粒重6个性状相关联的标记有14个,单个标记对表型变异的解释率范围为6.64%~31.55%。这些关联标记对后续研究有参考价值。  相似文献   

6.
Knowledge of genetic diversity in germplasm is essential for formulating effective germplasm collection, conservation, utilization strategies in and crop improvement programs. It also provides an opportunity to take corrective steps infusing new genes to avoid risks associated with a narrow genetic bases. Genetic diversity analysis of 119 lentil genotypes of including 83 germplasm and 36 exotic genotypes from International Center for Agricultural Research in the Dry Areas was studied using 27 primers of simple sequence repeat (SSR) marker. Molecular analysis of variance showed variations of 82% within and 18% of the among population variance was explained. Degree of polymorphism observed among the populations was 100%. A total 122 alleles were detected, with 2 to 7 alleles per locus, with a mean of 4.52 alleles per locus. The estimated gene diversity value for 27 loci was 0.64. The average Shannon’s information index value of 1.19 was obtained showed the existence of high genetic variation within the genotypes. The genetic similarity indices ranged from 0.21 to 1.00. The SSR markers showed an average polymorphic information content (PIC) value of 0.58. Cluster analysis grouped the genotypes into five major clusters as distinct genetic populations. Diversity analyses revealed the existence of a high level of genetic variation among genotypes. This molecular diversity information provides a basis for future germplasm collection, utilization, and conservation strategies in gene banks and introducing exotic germplasm to widen the genetic base of the current lentil breeding population.  相似文献   

7.
The NPGS-USDA core collection with 85 accessions of red clover, an important forage species, is little described. The goal of the present study was to evaluate the diversity of a set of accessions from the core collection at the morphological and molecular level in order to extract some valuable accessions for Brazilian red clover breeding programs. Twenty-one morphological traits, collected in field and greenhouse in South Brazil, and seven SSR markers were used to describe 57 accessions from the U.S. core collection and one population cultivated in Southern Brazil. Variation between accessions was large for most of the 21 morphological traits. A cluster analysis based on the morphological traits revealed five distinct clusters that separated the populations according to flowering earliness, as already described, but also according to persistency, growth habit and dry matter productivity. Over seven SSR loci, the number of alleles averaged 11.1 alleles per locus. Genetic diversity measured with SSR markers was high, with a mean expected heterozygosity of 0.86. An analysis of molecular variance revealed that the largest proportion of variation (83.6%) resided at the within population level. Although the molecular markers also separated accessions into five clusters, there was no coincidence between the composition of groups found with morphological and molecular data. Use of genetic diversity in breeding programs requires to use the most promising populations, to combine positive traits such as persistency and forage yield, and probably to use within population variation to detect valuable genotypes that could be used as parents of synthetic varieties.  相似文献   

8.
以101份南方花生区试品种为材料,利用形态学性状和SSR标记进行品种遗传多样性分析和特异性鉴定。结果表明, 29个形态学性状中有7个无多样性,其余22个的多样性指数为0.23~0.77,平均为0.43。在相似系数为0.76处,将供试品种划分为七大类群,同一育种单位的品种倾向于聚在一起。用40个SSR标记共检测出167个等位基因,单个标记检测的等位基因数2~6个,平均为4.18个。标记的多态性信息量(PIC)差异较大,最大为0.79,最小为0.26,平均为0.55。在相似系数为0.70处,供试品种可被划分为六大类群,同一省份育成的品种多聚为一类。Mantel检验发现品种间的形态学性状和SSR标记的相似系数矩阵相关性弱(r=0.36),SSR标记无法取代形态学性状单独用于花生品种特异性鉴定,但两者相结合能有效提高花生品种特异性鉴定的准确性。  相似文献   

9.
为揭示小麦自然群体干旱胁迫条件下旗叶叶绿素含量的变化, 筛选相关标记的优异等位变异, 以262份小麦种质资源组成的自然群体为材料, 分别种植在北京的2个试验地点, 均设雨养和灌溉处理, 于开花期和灌浆期检测旗叶叶绿素含量。以分布于21条染色体的169个SSR标记检测所有材料的基因型, 利用STRUCTURE 2.3.2软件分析群体结构, 用TASSEL软件的MLM (mixed linear model)方法对小麦自然群体的旗叶叶绿素含量进行关联分析。在此基础上, 将携带某等位变异的所有材料表型均值与携带无效等位基因(null allele)材料表型均值比较, 估计等位变异的表型效应, 鉴别优异等位变异。共检测到2048个等位变异, 每位点2~37个等位变异, 平均12个。每位点的标记多态性信息量(PIC)为0.008~0.936, 平均0.628。在22个标记位点共检测出40个(次)与旗叶叶绿素含量极显著的关联, 其中11个标记位点有2次以上的关联, Xwmc419-1B和Xgwm501-2B分别有3次关联。在Xcfa2123-7A、Xgwm232- 1D和Xgwm429-2B位点分别检测到效应值大于4.0的等位变异。  相似文献   

10.
陆地棉SSR标记遗传多样性及其与农艺性状的关联分析   总被引:6,自引:2,他引:4  
分析陆地棉栽培种遗传多样性,通过关联分析寻找与棉花农艺性状相关联的分子标记,为分子标记辅助选择育种和提高棉花育种效率奠定基础。本文采用74个Simple sequence repeat(SSR)标记对172份陆地棉栽培种的基因组变异进行扫描,使用NTSYS-pc 2.20进行聚类,分析该群体遗传多样性;利用Structure 2.3.4软件分析群体结构,在此基础上结合田间表型数据,采用Tassel 2.1的一般线性模型(General linear model,GLM)进行关联分析,定位与农艺性状相关的QTLs。74个标记共检测到148个多态性位点,涉及246个等位变异,变异范围2~7个,平均等位变异数为3.32;引物的多态性信息含量(PIC)为0.0281~0.3733,平均值为0.2370;遗传相似系数变异在0.2816~1,平均值为0.5369,平均遗传相似系数为0.5369,表明我国陆地棉遗传基础狭窄,尽管国外及西北内陆棉区部分材料具有较丰富的遗传变异。聚类分析将该群体划分为12个亚群,不同棉区的材料交叉分布,且聚类结果基本与系谱吻合。群体结构分析却将172份供试材料划分为3个亚群;通过关联分析,发现30个位点与铃重、衣分、黄萎病抗性显著相关(P0.05),各位点对表型变异贡献率为2.24%~5.27%。  相似文献   

11.
SSR标记以其数量丰富、多态性好、共显性遗传等优点在基础研究和育种工作中发挥了重要作用,但目前绿豆基因组中的SSR标记依然较少。本研究将磁珠富集法和测序技术相结合高通量检测绿豆基因组SSR位点,鉴定出3,275,355个SSR位点,开发了2742个SSR标记。选取其中157个SSR进行PCR验证,发现有90个(57.33%)标记在10份材料中表现出多态性。挑选40个条带清晰、多态性高、染色体上均匀分布的标记对90份绿豆资源进行遗传多样性分析,单个位点检测到的等位变异数为2~8个,平均为3.0个,有效等位基因数为1.31~4.21个,平均为2.16。Nei’s基因多样性指数在0.23~0.76之间,平均为0.51。多态性信息含量为0.22~0.72,平均为0.43。聚类分析将90份材料分为2个类群,包含4个组。第I组主要由北方资源组成,第Ⅱ组种质来源较为分散,第Ⅲ组主要由山东的资源构成,第Ⅳ组包含多数河北的种质资源。本研究开发的多态性SSR标记不仅可以用于绿豆种质资源的遗传多样性分析,也将在高密度遗传图谱构建、基因定位和分子标记辅助育种中发挥重要作用。  相似文献   

12.
玉米自交系遗传关系的SSR标记分析   总被引:8,自引:1,他引:7  
选用系谱明确的和系谱来源复杂的38个玉米自交系为材料,在玉米基因组上均匀选取62个SSR引物进行遗传关系分析:(ⅰ)分析SSR引物在这些自交系中的差异程度;(ⅱ)进行自交系的类群划分;(ⅲ) 明确SSR标记在不同来源类型玉米自交系的类群划分和遗传关系分析上的应用价值。62对SSR引物共检测到238个等位基因变异,平均每个位点的等位基因数4.08个,平均多态性信息量(PIC)0.612,平均标记索引系数(MI)2.58,三个指标对标记多态性的分析不完全一致。UPGMA聚类分析将38个玉米自交系分为瑞德、旅大红骨、塘四平头、兰卡斯特、P1、P2和热带素湾7个类群,划群结果与系谱基本吻合,同时对系谱来源复杂的自交系进行分析,明确了它们的归属。  相似文献   

13.
Sex-linked SSR markers in hemp   总被引:3,自引:0,他引:3  
J. Rode    K. In-Chol  B. Saal    H. Flachowsky    U. Kriese  W. E. Weber 《Plant Breeding》2005,124(2):167-170
Hemp is a dioecious plant with sex chromosomes X and Y, the male sex being heterogametic. The quality of the fibre depends on the sex type. The sex chromosomes can be characterized by molecular markers. In this report, sex‐linked simple sequence repeat (SSR) markers are described. One SSR marker was polymorphic in both the populations derived from single crosses, two other markers in but one of the two populations. Three alleles were detected for two SSR markers indicating polymorphism not only between X and Y, but also between different X chromosomes. In addition, several sex‐linked RAPD markers were detected in one population. Recombination within the sex chromosomes was observed for nearly all markers.  相似文献   

14.
Wild soybean, the progenitor of cultivated soybean, is an important gene pool for ongoing soybean breeding efforts. To identify yield-enhancing quantitative trait locus (QTL) or gene from wild soybean, 113 wild soybeans accessions were phenotyped for five yield-related traits and genotyped with 85 simple sequence repeat (SSR) markers to conduct association mapping. A total of 892 alleles were detected for the 85 SSR markers, with an average 10.49 alleles; the corresponding PIC values ranged from 0.07 to 0.92, with an average 0.73. The genetic diversity of each SSR marker ranged from 0.07 to 0.93, with an average 0.75. A total of 18 SSR markers were identified for the five traits. Two SSR markers, sct_010 and satt316, which are associated with the yield per plant were stably expressed over two years at two experimental locations. Our results suggested that association mapping can be an effective approach for identifying QTL from wild soybean.  相似文献   

15.
利用39对SSR引物对海南114份普通野生稻、146份疣粒野生稻和81份药用野生稻进行扩增,从多态位点比率、平均等位基因数、香农指数等多个指标比较了3种野生稻遗传多样性的差异。结果表明,普通野生稻的遗传多样性最高,疣粒野生稻次之;在所检测的53个位点中,药用野生稻和疣粒野生稻的多态位点数分别为普通野生稻的1/7和2/7,等位基因数分别为普通野生稻的37%和39%;平均每个位点的实际杂合度,以普通野生稻杂合度最高(60%),分别是疣粒野生稻和药用野生稻的4.6倍和6.6倍。Wright-统计量和聚类分析结果表明,普通野生稻群体的遗传多样性主要来自群间,当遗传一致度I等于0.53时,3个居群分别属于不同类群,因此建议将3个普通野生稻居群都纳入原生境保护点建设范围。同时,药用野生稻和疣粒野生稻无论居群间还是居群内遗传变异都很小,各居群个体间出现部分交叉,只有当I大于0.9时才分别聚为不同的类群,因此,在进行原生境保护时只需保护遗传多样性水平高的居群即可。  相似文献   

16.
Semi‐hybrids between genetically distant alfalfa (Medicago sativa subsp. sativa) populations may display heterosis whose extent is affected by the structure of genetic diversity across populations. This study aimed to assess the genetic diversity across three putative heterotic populations, one Italian, one Egyptian and one of semi‐erect germplasm from Eastern Europe, Canada and Spanish Mielga (EECM population). Each population was bred from ten parents after various selection cycles. Fifteen genotypes per population were characterized by 20 polymorphic SSR markers. The among‐population variance was over eightfold smaller than the average within‐population variance (2.05 vs. 17.24) and accounted for 10.6% of the total variation. GST = .090 across markers indicated modest population differentiation. Various diversity measures, multidimensional scaling, and cluster analysis of the genetic structure indicated that the Italian population was more distant from the EECM population than the Egyptian one. The EECM and Egyptian populations were the most distant geographically and genetically. EECM displayed widest intrapopulation variation, accordingly to its constitutive geographical diversity. In conclusion, this study indicates modest genetic differentiation between alfalfa populations even for geographically distant germplasm.  相似文献   

17.
A total of 448 samples in five natural populations of wild rice (Oryza rufipogon) were collected in Cambodia. They were examined using 12 SSR and two chloroplast markers to evaluate the degree of variation among populations and the genetic structure within populations. In the two annual populations, the number of plants with homozygous alleles at all 12 SSR loci were high (66.3% and 79.5%), suggesting that these plants propagate mainly through self-pollination. In the three perennial populations, no individuals had all homozygous genotypes, but redundant genotypes resulted from clonal propagation were observed. Percentages of the redundant genotypes were highly varied (3.6%, 29.2% and 86.0%). This may be due to the different stable levels of environmental conditions. As for chloroplast genome, most of the wild plants showed the same chloroplast types as most Indica-type cultivars have. However, plants with different chloroplast types were maintained, even in the same population. In tropical Asian countries, many wild rice populations were observed under similar ecological conditions examined in this study. Therefore, the present results concerning population structure will be important to further elucidate genetic features of wild rice, and will also give strong clues to utilize and conserve wild natural genetic resources.  相似文献   

18.
小豆遗传差异、群体结构和连锁不平衡水平的SSR分析   总被引:1,自引:0,他引:1  
利用57对小豆SSR标记和31对绿豆SSR标记,用5份日本材料作对照,对249份中国小豆种质进行遗传差异、群体结构和连锁不平衡(LD)分析。结果表明,共检测到630个等位变异,SSR位点等位变异数在2~17之间,遗传多样性指数范围为0.024~0.898,平均为0.574。15个不同地理来源群体间表现出显著的遗传多样性差异,其中中国云南最高,河北、天津最低。聚类分析将254份材料划分为3个类群,在一定程度上和地理生态环境相关。LD分析显示和其他作物相比,小豆LD衰减距离较短,最大衰减距离为5.8 cM (R2>0.1),基因组LD平均衰减距离小于1 cM (R2>0.1,P<0.001)。  相似文献   

19.
The genetic diversity of 65 accessions of sorghum [Sorghum bicolor (L.) Moench] collected from various farmers and germplasm lines from ICRISAT-Kenya were analyzed. Simple sequence repeats (SSR) markers were used in order to determine the extent and distribution of its genetic diversity. Twenty-nine (29) SSRs markers were polymorphic and a total of 192 alleles were detected which showed diversity. The number of alleles per primer ranged from 2 to 17, with an average of 6.62. The range of polymorphism information content (PIC) ranged from 0.03 to 0.86, with total average of 0.82. According to the results analyzed, estimates of the mean allelic pattern across the two populations was generated; expected heterozygosity (He; 0.45, 0.54), average observed alleles (Na; 3.40, 6.20), number of private allele (0.23, 3.03), and Shannon information index (I; 0.85, 1.13) for farmer and ICRISAT-Kenya germplasm, respectively. The expected heterozygosity (He) varied from 0 to 0.26 with an average of 0.05. The Neighbor-joining phenogram based on Nei’s genetic distance grouped the 65 accessions into three main groups. The analysis of molecular variance (AMOVA) revealed that 99% of the total genetic variation was within accessions in a population whereas the genetic variation among populations in accessions accounted for 1% of the total genetic variation. Genetic diversity in ICRISAT sorghum material compared to the farmer’s collection suggested little infiltration of improved germplasm to the farmers.  相似文献   

20.
The genetic relationship among 42 genotypes of finger millet collected from different geographical regions of southern India was investigated using random amplified polymorphic DNA (RAPD), inter simple sequence repeats (ISSR), and simple sequence repeats (SSR) markers. Ten RAPD primers produced 111 polymorphic bands. Five ISSR primers produced a total of 61 bands. Of these, 23 bands were polymorphic. The RAPD and ISSR fingerprints revealed 71.3 and 37.4% polymorphic banding patterns, respectively. Thirty-six SSR primers yielded 83 scorable alleles in which 62 were found to be polymorphic. Out of 36 SSR primers used, 14 primers (46.6%) produced polymorphic bands. The SSR primer UGEP7 produced a maximum number of six alleles. Mean polymorphic information content (PIC) of RAPD, ISSR and SSR were 0.44, 0.28, and 0.14, respectively. Molecular variances among the population were 2, 11, and 1% for RAPD, ISSR, and SSR markers, respectively. SSR produced 99% molecular variance within individuals. RAPD and ISSR markers produced a low level of molecular variance within individuals. The STRUCTURE (model-based program) analysis revealed that the 42 finger millet genotypes could be divided into a maximum of four subpopulations. Based on the Bayesian statistics, each RAPD and SSR marker produced three subpopulations (K=3), while ISSR marker showed four subpopulations (K=4). This study revealed that RAPD and SSR markers could narrow down the analysis of population structure and it may form the basis for finger millet breeding and improvement programs in the future.  相似文献   

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