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1.
油莎豆SRAP指纹图谱构建及遗传多样性分析   总被引:3,自引:0,他引:3  
利用SRAP分子标记构建了14份不同地理来源、表型具有差异的油莎豆品系的分子指纹图谱并进行遗传多样性分析。结果表明100对引物中共有多态性引物42对,扩增出多态性带328条,平均每对引物7.8条。28对引物在12个品系上具有特征谱带,除品系4和14外,均可用1对引物进行鉴定;采用引物组合法仅用Me2/Em6和Me8/Em11这2对引物就可将14份材料区分开,并利用这2对引物构建了上述品系的数字指纹图谱。UPGMA聚类分析表明,所有参试材料间的遗传距离在0.12~0.75之间,平均为0.42,表明我国不同地理来源的油莎豆品系遗传差异较大,具有较为丰富的遗传多样性。  相似文献   

2.
虎杖种质资源的分子标记研究   总被引:2,自引:0,他引:2  
本文应用RAPD、ISSR和SRAP标记对26份虎杖种质资源遗传多样性进行检测.在22个引物中有17个引物(77.3%)扩增产物具多态性,多态性水平相对较高.22个引物共得到98条扩增DNA片段,其中90.8%具有多态性.每个多态性引物平均可扩增出5.24个多态性片段.聚类分析表明,利用BAPD、ISSR和SRAP技术相结合可将全部供试材料区分开,26份材料在Gs值0.54水平上全部聚为一类,以所有材料间的平均遗传相似遗传系数0.71为阈值,将其分为11类.虎杖种质资源在分子水平上确实存在较大遗传差异,RAPD、ISSR和SRAP标记可作为构建虎杖DNA指纹图谱的有效工具.  相似文献   

3.
为分析品种遗传多样性和遗传距离并构建品种聚类图和指纹图谱,该研究从DNA模板浓度、引物浓度、退火温度和循环次数等方面优化了叶子花ISSR-PCR反应体系和反应程序,利用11个ISSR引物对131个叶子花品种进行PCR扩增,扩增产物经琼脂糖凝胶电泳检测。结果表明:优化的ISSR-PCR反应体系中DNA模板浓度为0.5 ng·μL-1,引物浓度为0.5μmol·L-1,引物UBC813、UBC814、UBC815、UBC823、UBC824、UBC835、UBC840、UBC841、UBC843、UBC844和UBC876的最佳退火温度分别为52.3、55.9、54.3、54.3、53.6、56.2、56.2、51.9、54.4、54、50℃,循环次数为32。用11个ISSR引物对131个叶子花品种扩增出161条带,其中多态性条带156条,多态性比率为96.89%。单个引物的等位基因数、有效等位基因数、Nei’s基因多样性指数和Shannon’s信息指数分别为1.86~2.00、1.33~1.68、0.21~0.39和0.34~0.57,平均值分别为1.969、1.478、0.294和0.447。引物UBC841的鉴别率最高(80.92%),可有效鉴别106个品种,与引物UBC876结合可将131个叶子花品种完全鉴别开,建立了各品种的指纹图谱。叶子花品种的遗传距离范围为0.00~0.60,平均值为0.365,遗传多样性较低,在遗传距离0.58处,131个品种分为6大类群,聚类分析显示同一个种的品种大多聚在一类,但同一个种仍有品种未聚在一类或亚类、也有多个种的品种聚在一类。该研究较为准确地揭示了叶子花种质资源的遗传多样性,建立的指纹图谱为叶子花品种登记、知识产权保护以及品种鉴定提供了可靠技术和有效手段。  相似文献   

4.
采用ISSR标记方法分析了62个朱顶红(Hippeastrum spp.)品种(包含60个引自荷兰的品种和2个苏州本地品种)的遗传多样性,并采用UPGMA法对62个朱顶红品种进行聚类分析.在此基础上,通过特异性条带的比较及筛选,采用黑白方格示意图法构建了供试品种的ISSR指纹图谱.扩增结果显示:用11条引物从62个朱顶红品种的基因组DNA中共扩增出118条带,其中多态性条带109条,多态性条带百分率达92.4%,有5条引物扩增条带的多态性条带百分率达100.0%.62个品种间的遗传相似系数变幅较大,为0.371 4~0.842 9,表明各品种间存在丰富的遗传变异和遗传多样性.聚类分析结果显示:在遗传相似系数0.63处62个品种被分为7组,多数形态相似的品种被聚在一起;其中形态相似的白色单瓣品种间遗传相似系数较高(约0.8),大多聚在一起,表明它们同源性较高;而2个苏州本地品种间遗传相似系数最高(0.842 9),表明它们可能具有同一来源.品种‘小红星’在引物UBC873扩增图谱的450 bp处有1条特异性条带,而品种‘精灵’在引物UBC835扩增图谱的3 000 bp处有1条特异缺失条带,这2条特异性条带可分别用于品种‘小红星’和‘精灵’的鉴定.基于引物UBC835和UBC873的ISSR扩增条带组合构建了供试的62个朱顶红品种的ISSR指纹图谱,采用这一指纹图谱可对供试的所有朱顶红品种进行鉴定.  相似文献   

5.
唐利华  肖扬  边银丙 《菌物系统》2008,27(2):243-251
采用ISSR标记技术对来自全国的黑木耳34个主要栽培菌株进行DNA指纹分析,初步构建其标准化DNA指纹图谱;在ISSR指纹分析基础上进行聚类分析,并将黑木耳两个栽培菌株173和186中扩增获得的ISSR特异性DNA带转化为可以直接用于菌株快速鉴定的SCAR标记。研究表明,我国黑木耳栽培菌株遗传背景差异不大,存在同物异名现象,而采用ISSR指纹及其SCAR标记鉴定黑木耳栽培菌株具有重要意义。  相似文献   

6.
中国黑木耳主要栽培菌株ISSR指纹分析及SCAR标记   总被引:4,自引:1,他引:3  
唐利华  肖扬  边银丙 《菌物学报》2008,27(2):243-251
采用ISSR标记技术对来自全国的黑木耳34个主要栽培菌株进行DNA指纹分析,初步构建其标准化DNA指纹图谱;在ISSR指纹分析基础上进行聚类分析,并将黑木耳两个栽培菌株173和186中扩增获得的ISSR特异性DNA带转化为可以直接用于菌株快速鉴定的SCAR标记.研究表明,我国黑木耳栽培菌株遗传背景差异不大,存在同物异名现象,而采用ISSR指纹及其SCAR标记鉴定黑木耳栽培菌株具有重要意义.  相似文献   

7.
采用ISSR标记技术对来自全国的黑木耳34个主要栽培菌株进行DNA指纹分析,初步构建其标准化DNA 指纹图谱;在ISSR指纹分析基础上进行聚类分析,并将黑木耳两个栽培菌株173和186中扩增获得的ISSR特异性DNA带转化为可以直接用于菌株快速鉴定的SCAR标记。研究表明,我国黑木耳栽培菌株遗传背景差异不大,存在同物异名现象,而采用ISSR指纹及其SCAR标记鉴定黑木耳栽培菌株具有重要意义。  相似文献   

8.
李媛媛  隋玉龙  牛淑力  吴波  宋慧 《菌物研究》2013,11(3):182-185,189
应用序列特异性扩增区域(SCAR)标记技术分析50株黑木耳栽培菌株的遗传多样性。在SRAP标记分析过程中发现1条1 200 bp的特异性条带,经回收克隆测序转为SCAR标记。根据序列设计出1对特异性引物,经PCR可以扩增出1 000 bp大小的片段,说明成功构建出了"黑931"的指纹图谱。  相似文献   

9.
甘薯SRAP指纹图谱构建及遗传多样性分析   总被引:1,自引:0,他引:1  
[目的]利用分子标记SRAP技术,构建22个甘薯品种的DNA指纹图谱并进行遗传多样性分析。[方法]从49对SRAP引物中筛选了11对引物进行PCR扩增。[结果]共扩增出98条带,多态性条带74条,多态性比率为75.5%,平均每对引物扩增8.91条带。利用引物Me2-em3和Me3-em7,构建了22个甘薯品种的指纹图谱。聚类结果显示,在阈值为15.5时可将22个甘薯品种被分为7类。[结论]地理来源相同的甘薯品种和具有同一亲本的甘薯品种聚在了一起。  相似文献   

10.
构建高密度遗传连锁图谱是冰草抗性、品质、产量等重要性状QTL精细定位及标记辅助育种研究的基础。该试验以四倍体杂交冰草F2群体的202个分离单株及其亲本为材料,利用SRAP分子标记技术和Join Map 4.0作图软件对冰草的遗传连锁图谱进行了构建。结果表明:(1)共筛选出22对多态性好、标记位点清晰稳定的SRAP适宜引物,对冰草杂种F2分离单株的基因组DNA进行PCR扩增,共获得510个SRAP多态性标记位点,其比率占88.2%。(2)偏分离分析表明,偏分离标记比率仅为14.12%,符合遗传作图的要求。(3)成功构建了冰草的SRAP分子标记遗传连锁图谱,该图谱有14个连锁群、510个标记,连锁群间长度范围86.4~179.0cM,覆盖基因组总长度1 912.9cM,标记间平均间距3.75cM,为高密度遗传图谱。  相似文献   

11.
SRAP、ISSR技术的优化及在甘蓝类植物种子鉴别中的应用   总被引:10,自引:0,他引:10  
将SRAP与ISSR 2种分子标记技术应用于8种甘蓝类植物(Brassica oleracea L.)的种子鉴别中。先以甘蓝(Brassica oleracea var. capitata)基因组DNA为模板,通过对SRAP、ISSR反应体系中各影响因素的逐一筛选,优化了甘蓝类植物SRAP、ISSR反应体系。进而采用30个SRAP引物组合和15个ISSR引物对白甘蓝、皱叶甘蓝、红甘蓝、羽衣甘蓝、花椰菜、青花菜、抱子甘蓝、球茎甘蓝的基因组DNA进行了PCR扩增,结果表明:M3E5与M4E5两个SRAP引物组合可以在8种甘蓝类植物之间显示较高的多态性;844和888两个ISSR引物也可在8种甘蓝类植物之间产生很好的多态,特别是844引物单独应用即可区分所有材料。  相似文献   

12.
番茄耐低温相关基因的SRAP标记筛选   总被引:1,自引:0,他引:1  
以番茄耐低温和不耐低温基因组DNA为材料进行SRAP分析,共筛选了225对SRAP引物,其中27对引物在两池之间表现差异,经测序只有Me2Em5扩增出与番茄耐低温相关的差异性片段,大小约为273bp,该片段仅在耐低温植株中稳定扩增。经Blast分析比对,该片段与已报道的PEG和低温诱导后在沙冬青幼苗中表达基因的cDNA片段同源。根据差异片段序列设计特异引物,将M2E5—273标记成功转化为更稳定的SCAR标记。  相似文献   

13.
松花型花椰菜主要品种鉴定的分子标记分析   总被引:3,自引:0,他引:3  
利用RAPD、ISSR和SRAP 3种分子标记对我国南方地区松花型花椰菜主栽品种进行鉴定,分析了品种间的遗传多样性。3种标记共产生370条扩增带,238条为多态性条带,其多态率为64.32%。其中只有SRAP标记的引物m e1/em1可将20个品种全部鉴别。遗传相似系数分析表明,松花型花椰菜品种之间的亲缘关系较近,遗传背景比较狭窄。聚类分析表明品种间的亲缘关系与熟性、地理分布相关。研究表明,分子标记能有效地应用于花椰菜品种鉴定,且综合多种分子标记分析品种间的遗传多样性将更加准确可靠。  相似文献   

14.
Hao Q  Liu ZA  Shu QY  Zhang R  De Rick J  Wang LS 《Hereditas》2008,145(1):38-47
Plants of Paeonia are valuable for their ornamental and medicinal values. Genetic relations and hybrids identification among different sections of Paeonia were studied using sequence related amplified polymorphism (SRAP) markers. A total of 29 cultivars including 2 intersectional hybrids, 13 sect. Moutan and 14 from sect. Paeonia were used. A total of 197 bands were produced using 24 primer combinations, among which 187 bands showed polymorphism. From the bands amplified, we can identify the peony cultivars using unique SRAP markers and specific primer combinations. Fourteen peony cultivars were distinguished among each other by using totally 35 SRAP markers, which were generated by 16 primer pairs. Two specific primer pairs of Me8/Em8 and Me8/Em1 can be used to identify cultivars from different sections. The mean genetic similarity coefficient (GS), the gene diversity (GD), and the Shannon's information index of peony cultivars were 0.45, 0.19 and 0.32, respectively. Both UPGMA (unweighted pair-group method of arithmetic average) dendrogram and PCA (principle component analysis) analysis showed clear genetic relationships among the 29 peony cultivars, and within section and its intersectional hybrids. The above results are valuable for estimating and analyzing genetic background of Paeonia, parent selection in crossing breeding programs, molecular marker assisted selection (MAS) breeding for further germplasm innovation programs.  相似文献   

15.
Pleurotus pulmonarius is one of the most widely cultivated and popular edible fungi in the genus Pleurotus. Three molecular markers were used to analyze the genetic diversity of 15 Chinese P. pulmonarius cultivars. In total, 21 random amplified polymorphic DNA (RAPD), 20 inter-simple sequence repeat (ISSR), and 20 sequence-related amplified polymorphism (SRAP) primers or primer pairs were selected for generating data based on their clear banding profiles produced. With the use of these RAPD, ISSR, and SRAP primers or primer pairs, a total of 361 RAPD, 283 ISSR, and 131 SRAP fragments were detected, of which 287 (79.5 %) RAPD, 211 (74.6 %) ISSR, and 98 (74.8 %) SRAP fragments were polymorphic. Unweighted Pair-Group Method with Arithmetic Mean (UPGMA) trees of these three methods were structured similarly, grouping the 15 tested strains into four clades. Subsequently, visual DNA fingerprinting and cluster analysis were performed to evaluate the resolving power of the combined RAPD, ISSR, and SRAP markers in the differentiation among these strains. The results of this study demonstrated that each method above could efficiently differentiate P. pulmonarius cultivars and could thus be considered an efficient tool for surveying genetic diversity of P. pulmonarius.  相似文献   

16.
采用ISSR标记对中华猕猴桃(Actinidia chinensis Planch.)、美味猕猴桃〔A.chinensis var.deliciosa(A.Chev.)A.Chev.〕、软枣猕猴桃〔A.arguta(Sieb.et Zucc.)Planch.ex Miq.〕和毛花猕猴桃(A.eriantha Benth.)的32个样本进行了遗传多样性分析,并以ISSR标记为基础构建了DNA指纹图谱.结果表明:筛选的10个多态性高且条带清晰的引物共扩增出200个条带(位点),其中,多态性位点195个,多态性位点百分率(PPL)达97.50%;各引物的多态性信息含量(PIC)以及供试样本的观测等位基因数(Na)、有效等位基因数(Ne)、Nei's基因多样性指数(H)和Shannon's多样性指数(I)的总均值分别为0.9080、1.9800、1.3569、0.2255和0.3613,4个猕猴桃种间的遗传分化系数(Gst)为0.4146,基因流(Nm)为0.7059,且32个样本间的Na、Ne、H和I值差异极显著(P<0.001).供试32个样本间的遗传相似系数(GS)为0.5650~0.9650,平均值为0.7164;基于GS值进行UPGMA聚类分析,在GS值为0.76处将32个样本分为4组,基本对应供试的4个猕猴桃种类,其中,第Ⅰ组的大多数样本属于美味猕猴桃品种,第Ⅱ组的样本均属于中华猕猴桃品种,第Ⅲ组的样本属于毛花猕猴桃品种,第Ⅳ组的样本均属于软枣猕猴桃品种.分子方差分析结果表明:4个猕猴桃的种间变异占总变异的40.84%,种内变异占总变异的59.16%.研究结果表明:供试的猕猴桃品种间遗传分化程度较高,基因交流频率较低,且总遗传变异的近60%存在于种内,说明供试的猕猴桃品种具有较丰富的遗传多样性.另外,根据10个ISSR引物的扩增结果,筛选出引物UBC818、UBC824、UBC854和UBC895扩增的15个多态性位点构建的DNA指纹图谱可用于供试32个猕猴桃样本的鉴定.  相似文献   

17.
Forty landraces of guava were subjected to drought tolerance evaluation based on in vitro polyethylene glycol (PEG) treatment. Nodal stem segments with lateral buds were used as explant. Five concentrations (i.e. 0, 4, 6, 8 and 10 %) of PEG were tested, among which the optimum concentration for screening was determined as 8 %. Analysis of variance showed highly significant variation among the tested landraces, concentrations of PEG and the interaction between them in the percentage of response (%R), number of shoot per explant (NSE) and drought susceptibility index. The average percentage of reduction due to PEG treatment was 48.30 and 52.57 % for the %R and NSE, respectively. Heritability and genetic advance were increased due to drought stress for %R, while they were decreased for NSE, indicating that %R was more related to drought stress than NSE. The molecular analysis of the highest and lowest responsive landraces was performed using sequence related amplified polymorphism (SRAP) and inter-simple sequence repeats (ISSR). Both markers were effective in discriminating the tested landraces and completely separated them into two clusters related to %R under PEG. ISSR showed a higher percentage of polymorphism, polymorphic information content and diversity index compared with SRAP. However, SRAP was more effective than ISSR in showing a higher primer resolving power and a number of unique specific bands for drought tolerance and susceptibility. Drought in vitro evaluation method established here is effective, inexpensive and manageable in genotype screening for drought tolerance in guava and could be used in other woody plant species.  相似文献   

18.
DNA polymorphism among 34 Chinese Auricularia auricula cultivars was analyzed using inter-simple sequence repeat (ISSR) and sequence-related amplified polymorphism (SRAP) markers. Thirty ISSR primers amplified a total of 129 DNA fragments of which 125 (96.9%) were polymorphic, whereas 11 SRAP primer combinations amplified 154 fragments of which 148 (96.1%) were polymorphic. Both methods were highly effective in discriminating among the test strains. Phylogenetic trees constructed on the basis of ISSR, SRAP, and combined ISSR/SRAP analyses using the Unweighted Pair-group Method with Arithmetic Averages (UPGMA) method distributed the 34 strains into four or five major groups. Clustering analysis based on all the three data sets indicated a high level of genetic diversity among A. auricula, although the combined ISSR/SRAP data were more concordant with the main agronomic characters of strains and their geographical centers of cultivation. Our findings will facilitate future A. auricula breeding programs and the development of bioactive products from this commercially important medicinal mushroom.  相似文献   

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