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1.
安徽和黑龙江省大豆疫霉群体遗传结构的SSR分析   总被引:1,自引:0,他引:1  
采用简单重复序列(SSR)的分析方法,对来自安徽和黑龙江省的大豆疫霉群体进行了遗传多样性分析。通过使用20对SSR引物对供试的83株大豆疫霉菌株进行PCR扩增,共得到109个SSR标记,全部为多态性标记,平均每对引物扩增出5.5条带。遗传变异与相似性分析表明,安徽群体具有更高的遗传变异度,安徽群体与黑龙江群体间遗传相似性较低;聚类分析显示,供试菌株在80%的相似性水平上可被区分为7个类群,且安徽群体分布于更多的聚类组中;Shannon-Wiener多样性指数也表明安徽群体的遗传多样性较黑龙江群体丰富。综合分析表明,本研究的结果不支持关于安徽的大豆疫霉可能来源于黑龙江的推测。  相似文献   

2.
云南黑籽南瓜种质遗传多样性的RAPD和ISSR分析   总被引:5,自引:0,他引:5  
摘要: 采用RAPD和ISSR分子标记技术对来源于云南省6个地州13份的黑籽南瓜种质进行遗传多样性分析。结果表明:6个RAPD和6个ISSR引物分别扩增出43条和41条带,多态性比率分别为90.70%和51.21%;RAPD和ISSR标记检测供试材的遗传相似性系数(Gs)范围,分别为0.340-0.895和0.162-0.941,ISSR(平均GS值0.698)检测多态性效果高于RAPD(平均GS值0.481)。RAPD标记聚类分析将供试种质分为3个类群5组;ISSR标记聚类分析将供试种质分为4个类群6组,RAPD和ISSR标记的遗传相似性系数呈显著相关(r=0.536)。基于UPGMA聚类结果,可为黑籽南瓜的引种栽培或品种改良提供参考。  相似文献   

3.
33株尖孢镰刀菌遗传多样性的ISSR分析   总被引:3,自引:0,他引:3  
为明确尖孢镰刀菌种内各菌株间的遗传差异与亲缘关系,采用ISSR分子标记技术对33株地理来源不同的尖孢镰刀菌进行了遗传多样性分析.结果表明:利用筛选出的11条引物扩增出105条条带,其中多态性条带91条,多态性位点比例为86.7%;遗传相似性与聚类分析结果供试菌株间的遗传相似系数为0.606 ~0.962,平均0.756,当遗传相似系数为0.962时,供试的33株菌可被全部区分开.表明,尖孢镰刀菌基因组在SSR区域具有丰富的多态性.寄主来源相同的供试菌株间的遗传相似性与其地理来源有一定的相关性.  相似文献   

4.
利用RAPD与ISSR分子标记检测手段,分析了哈茨木霉T2-16肽类代谢产物处理豇豆土著根瘤菌,对其遗传性状的影响,同时,比较了RAPD和ISSR两种不同分子标记在检测根瘤菌种间的遗传相似性以及遗传变异性的分辨力.实验中,从100条引物中筛选到具有多态性的ISSR引物5条,从80条引物中筛选到具有多态性的RAPD引物6条,用5条ISSR引物扩增出54条带,多态性条带比率为75.93 %;6条RAPD引物扩增出61条带,多态性条带比率为68.85 %.两种分子标记均能揭示出处理前后根瘤菌间的遗传差异,但ISSR标记比RAPD标记可检测到更大的遗传变异.根据两种标记的结果,对供试的根瘤菌进行聚类分析,结果表明,土著根瘤菌经木霉肽类代谢产物处理后,与出发菌株相比,表现出一定程度的遗传分化和遗传差异性.  相似文献   

5.
安徽野生香菇遗传多样性及杂种优势的ISSR分析   总被引:8,自引:0,他引:8  
王子迎  王书通 《菌物学报》2006,25(2):211-216
采用简单序列重复区间扩增多态性(Inter–simplesequencerepeat,ISSR)技术,利用13个引物对26个安徽野生香菇Lentinulaedodes菌株和6个香菇栽培品种进行了遗传多样性分析,构建了遗传相关聚类图,并根据ISSR分析选择遗传距离远近不同的亲本进行组合杂交,评价了其杂种优势。在78个ISSR标记中,多态性标记为61个,占78.2%。聚类分析显示,当以相异距离0.23为阈值,32个菌株被划为5个ISSR遗传组,多数菌株之间遗传相似性较低。这表明供试菌株在DNA水平上存在比较显著的遗传变异,具有较丰富的遗传多样性。杂种优势的检测表明亲本间遗传距离较大的组合其杂种优势也较强。  相似文献   

6.
亚欧美栗疫病菌群体的遗传多样性   总被引:4,自引:0,他引:4  
从 12 0个随机引物中筛选出条带清晰、主带明显、重复性好的 9个引物 ,对来自不同地域和寄主的 7个群体的 14 2个栗疫病菌菌株进行 RAPD分析。 9个引物共扩增出条带 12 4条 ,其中多态性条带 111条 ,多态性比率为 89.5 2 %。利用 Popgen3.2软件对供试群体进行遗传多样性分析和 UPGMA聚类。结果表明 ,中国地区 4个群体间的遗传相似性较大 ,与美国、意大利和日本群体间的相似性较小 ;美国和意大利群体间的遗传相似性较大 ,且它们与日本群体间的相似性大于与中国群体间的相似性。病原菌群体的遗传变异率为 0 .2 35 1,其中在地区水平上 ,82 .34%由群体内的变异引起 ,17.6 6 %由群体间的差异引起 ,群体间的基因流动值为 2 .3311;而在寄主水平上 ,则 79.4 2 %由群体内的变异引起 ,2 0 .5 8%由群体间的差异引起 ,群体间的基因流动值为 1.92 97  相似文献   

7.
二色胡枝子遗传多样性ISSR分析   总被引:6,自引:3,他引:6  
利用ISSR分子标记技术对二色胡枝子的遗传多样性进行分析,16个ISSR引物共扩增出229条带,多态性条带209条,多态性比率为91%,居群的平均多态性位点比率为68.24%,胡枝子总遗传多样性Ht为0.392,Shannon指数为0.576,群体间基因分化系数Gst的变动范围非常大,平均值为0.2434,居群间基因流Nm为1.052。种群内的基因多样性占总群体的75.66%,种群间占24.34%,表明二色胡枝子种群具有丰富的遗传多样性,在育种上具有很大的遗传潜力。根据居群间遗传相似系数聚类,14个居群被聚成3大类群,且居群的遗传多样性参数与其地理、生态因子相关均不显著,遗传多样性无明显的地域性分布格局。  相似文献   

8.
采用随机扩增多态性DNA(RAPD)技术,利用13个引物对75个中国大豆疫霉菌分离物和11个美国分离物进行PCR扩增。在78个RAPD标记中,多态性标记为68个,占87.2%。RAPD指纹聚类分析表明,当以相异距离0.3为阈值,86个分离物被划为12个RAPD遗传组,其中J组有54个分离物,占总数的62.8%,包括44个中国分离物和10个美国分离物。在中国大豆疫霉菌群体内,多数分离物之间遗传相似性较低,在DNA水平上存在显著的遗传变异,具有较丰富的遗传多样性。RAPD分组结果未表明大豆疫霉菌DNA多态性特征与病原菌毒力基因构成之间和分离物地理来源之间存在相关性,证明中国不同地区的大豆疫霉菌群体在与大豆品种的互作中发生了广泛的遗传变异,具有DNA遗传进化方向和毒力基因演变的多样性。美国大豆疫霉菌分离物间遗传距离较近,而中国分离物在总体上与美国分离物的遗传距离较远,表明中国大豆疫霉菌具有比较独特的遗传背景。  相似文献   

9.
利用ISSR分子标记技术对36份节瓜自交系进行遗传多样性分析。从100条ISSR引物中筛选出14条多态性明显、条带清晰、反应稳定的引物,对36份节瓜材料基因组DNA进行扩增,共扩增出76条清晰稳定的条带,其中多态性条带45条,多态性比例为59.21%。36份材料间遗传相似系数在0.57~0.96之间,表明材料间遗传多样性较为狭窄。聚类分析结果显示,以遗传相似系数0.76为阈值时,可将36份节瓜自交系材料聚为3类,分类结果与供试材料的地理来源较为吻合。基于聚类分析结果,可为今后节瓜的新品种选育、遗传改良以及分子遗传连锁图谱构建的杂交亲本选择提供科学依据。  相似文献   

10.
采用随机扩增多态性DNA(RAPD)技术,利用13个引物对75个中国大豆疫霉菌分离物和11个美国分离物进行PCR扩增。在78个RAPD标记中,多态性标记为68个,占87.2%。RAPD指纹聚类分析表明,当以相异距离0.3为阈值,86个分离物被划为12个RAPD遗传组,其中J组有54个分离物,占总数的62.8%,包括44个中国分离物和10个美国分离物。在中国大豆疫霉菌群体内,多数分离物之间遗传相似性较低,在DNA水平上存在显著的遗传变异,具有较丰富的遗传多样性。RAPD分组结果未表明大豆疫霉菌DNA多态性特征与病原菌毒力基因构成之间和分离物地理来源之间存在相关性,证明中国不同地区的大豆疫霉菌群体在与大豆品种的互作中发生了广泛的遗传变异,具有DNA遗传进化方向和毒力基因演变的多样性。美国大豆疫霉菌分离物间遗传距离较近,而中国分离物在总体上与美国分离物的遗传距离较远,表明中国大豆疫霉菌具有比较独特的遗传背景。  相似文献   

11.
The grass carp (Ctenopharyngodon idella), a freshwater species native to China, have been introduced in more than 100 countries. In this paper, inter simple sequence repeat (ISSR) markers were used to evaluate genetic variation within and among grass carp populations sampled from its native (China) and colonized habitats (USA, Hungary, and Japan). Twenty-two ISSR primers were used to generate 207 bands, of which 82 (39.61 %) were polymorphic. The highest genetic diversity was observed in the Yangtze River population, whereas the lowest diversity was found in the Tone River population (Japan). Compared with colonized populations, the native populations possess approximately twice as much genetic diversity. The AMOVA analysis showed a relatively high level of genetic variation within populations. Significant genetic differences were revealed both among the native populations and between pooled native and colonized populations.  相似文献   

12.
Pomegranate (Punica granatum L.), in the monogeneric family Punicaceae, is found in Iran, Afghanistan, India and Mediterranean countries. Iran is considered to be its primary centre of origin. In India, pomegranate occurs naturally only in the Western Himalayan regions of Jammu and Kashmir, Himachal Pradesh and Uttarakhand States. However, there is no information about genetic variation in wild pomegranate at population level. In this paper, we describe genetic diversity across natural populations of Indian pomegranate based on inter‐simple sequence repeat (ISSR) markers. Forty‐nine accessions representing eight populations from two regions were analysed using ISSR. Seventeen ISSR primers resulted in 268 polymorphic bands, with 87.01% polymorphism throughout the accessions. Pair‐wise population genetic distances ranged from 0.05 to 0.45, with a mean of 0.25 between populations. amova and Nei’s genetic diversity analyses revealed higher genetic variation within populations than among populations. A higher genetic differentiation (GST) was observed between the spatially distant populations, indicating a low level of genetic exchange (Nm) among these populations. However, clustering of populations was not in accordance with their geographical affiliations in the tree. The results indicate that the ISSR method is sufficiently informative and powerful to assess genetic variability in pomegranate, and that patterns of genetic variability observed among populations of wild pomegranate from the Western Himalaya differ. Estimation of genetic variation reported here provides a significant insight for in situ conservation and exploitation of genetic resources for this economically important species as potential breeding material.  相似文献   

13.
Genetic variation within and between five populations of Oryza granulata from two regions of China was investigated using RAPD (random amplified polymorphic DNA) and ISSR (inter-simple sequence repeat amplification) markers. Twenty RAPD primers used in this study amplified 199 reproducible bands with 61 (30.65%) polymorphic; and 12 ISSR primers amplified 113 bands with 52 (46.02%) polymorphic. Both RAPD and ISSR analyses revealed a low level of genetic diversity in wild populations of O. granulata. Furthermore, analysis of molecular variance (AMOVA) was used to apportion the variation within and between populations both within and between regions. As the RAPD markers revealed, 73.85% of the total genetic diversity resided between the two regions, whereas only 19.45% and 6.70% were present between populations within regions and within a population respectively. Similarly, it was shown by ISSR markers that a great amount of variation (49.26%) occurred between the two regions, with only 38.07% and 12.66% between populations within regions and within a population respectively. Both the results of a UPGMA cluster, based on Jaccard coefficients, and pairwise distance analysis agree with that of the AMOVA partition. This is the first report of the partitioning of genetic variability within and among populations of O. granulata at the DNA level, which is in general agreement with a recent study on the same species in China using allozyme analysis. Our results also indicated that the percentage of polymorphic bands (PPB) detected by ISSR is higher than that detected by RAPD. It seems that ISSR is superior to RAPD in terms of the polymorphism detected and the amplification reproducibility. Received: 29 March 2000 / Accepted: 15 May 2000  相似文献   

14.
为阐明小菜蛾Plutella xylostella不同地理种群的遗传多样性, 应用ISSR技术对我国小菜蛾8个地理种群的遗传多样性进行了研究分析。15条引物扩增出395条ISSR条带, 其中多态性条带占89.11%, 全部个体显示了各自独特的ISSR图谱。ISSR标记的遗传多样性分析结果表明: 小菜蛾无论在物种水平上(P=89.11%, H=0.2706, I=0.4286), 还是在种群水平上(P=88.80%, H=0.2759, I=0.4349)都表现出较高的遗传多样性。其中, 北京南口种群内遗传变异最大, 海南海口和甘肃兰州种群内遗传变异最小, 南方地区(云南、 湖北)小菜蛾种群遗传多样性明显高于北方地区(北京、 天津、 山东、 黑龙江、 甘肃)种群。据种群变异来源分析, 有5.66%的遗传变异来自种群间, 94.34%的变异来源于种群内(Nm=8.3399), 不同地理种群间没有明显的遗传分化。本文有关小菜蛾不同地理种群基因流动和遗传变异的研究为小菜蛾抗药性的控制及田间种群的综合防治提供了有价值的分子生物学依据。  相似文献   

15.
Nan P  Shi S  Peng S  Tian C  Zhong Y 《Annals of botany》2003,91(3):329-333
Genetic diversity was investigated in 60 individuals of Primula obconica from four natural populations (from Hubei, central China, and Sichuan, south-west China) and from cultivated material. Inter-simple sequence repeat (ISSR) techniques produced 249 polymorphic bands and identified 60 ISSR genotypes. Based on Shannon's index and Nei's genetic diversity, the genetic diversity detected in all natural populations of P. obconica was much higher than that in the cultivated plants, and that in the three Dalaoling (Hubei) populations was higher than that in the Wawushan (Sichuan) population. UPGMA cluster analysis showed that there was no distinct genetic differentiation between populations from the Mt Dalaoling area and the Mt Wawushan area. This study provides a population-level genetic profile of P. obconica, which was previously poorly known but which is important for Primula breeding and cultivation.  相似文献   

16.
中日5个岛屿山茶种群遗传多样性研究   总被引:1,自引:0,他引:1  
林立  倪穗  李纪元  陈越  应震 《广西植物》2012,32(3):298-303
运用ISSR分子标记法对中、日两国5个岛屿天然山茶种群共150个个体进行遗传多样性分析。结果表明:筛选出的20条引物扩增得到205条清晰条带,其中183条为多态性条带,多态位点百分比(PPB)为89.27%。经POPGENE软件分析,山茶种群平均多态位点百分比(PPB)为72.00%,Nei’s基因多样性指数(HE)为0.2743,Shannon信息多态性指数(H)为0.4023,种群水平遗传多样性较高。基因分化系数Gst=0.2033,表明遗传变异主要存在于种群内个体间。Mantel检验(r=0.7989,P<0.05)和UPGMA聚类表明岛屿地理隔离对山茶种群遗传分化具有重要影响。基于岛屿山茶种群遗传结构的分析,建议加强我国岛屿自然种群的就地保护力度。  相似文献   

17.
ABSTRACT. The genetic variation among 128 isolates of Monilinia fructicola (Fungi, Ascomycota, Helotiales) from China was analyzed using Inter‐Simple Sequence Repeat (ISSR) markers and compared with those of samples from California, USA and New Zealand. A total of 72 reproducible DNA fragments were scored, of which 87.5% (63/72) were polymorphic. The Nei's gene diversity and Shannon's diversity indices of three Chinese regional populations were very similar to that from California. However, several differences were observed among geographic populations of M. fructicola from both within China and between China and California. The analysis of molecular variance (AMOVA) of isolates from different geographic locations suggested that most of the observed genetic variation was found within populations. Results of this study are inconsistent with the hypothesis that the Chinese populations of M. fructicola were derived from a single or few recent migrants from other countries. Instead, our results suggest that M. fructicola has been in China long before its first official recording in 2003.  相似文献   

18.
Yu T  Han B  Tian Q  Liu A 《Genetika》2011,47(6):796-804
Genetic variation and clonal diversity of nine populations of Bromus ircutensis Kom. from the Otingdag sandy land were investigated using Inter Simple Sequence Repeat (ISSR) markers. A total of 102 bands were amplified by using II ISSR primers chosen for the study. Among those 99% were polymorphic indicating high level of genetic variation at the species level with a mean genetic diversity (H) of 0.292 and Shannon information index (1) of 0.450. Percentage of polymorphic loci (PPL) of nine populations was 76.48% on average, which provides more evidence of considerable genetic variation at the population level. AMOVA analysis revealed that total genetic variation was higher within populations (87.06%) than between populations (12.94%), which is mainly the result of the extensive gene flow (Nm = 1.682) among B. ircutensis populations. UPGMA cluster analysis divided the nine populations into two groups. There was significant or moderate negative correlations between genetic diversity parameters (PPL, H, 1) and longitude or latitude. Mantel test also showed a significant correlation between geographical distance and genetic distance (r = 0.681, p = 0.002). Our findings indicated that distribution of B. ircutensis populations was influenced by geographical and ecological factors. Clonal diversity was also high with 108 individuals identified by 11 ISSR primers being all of different genets. Our results provide a molecular basis for sustainable management and conservation ofB. ircutensis in the study area.  相似文献   

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