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1.
用 PCR技术从产于我国的 3种野生稻和亚洲栽培稻的 2个亚种中特异地扩增和测序了 r DNA的第一转录间隔区。普通野生稻 (Oryza rufipogon)、药用野生稻 (O.officinalis)、疣粒野生稻 (O.granu-lata)和栽培稻的两个亚种 (O.sativa ssp.indica,O.sativa ssp.japonica)的 ITS1序列为 1 93bp、1 94bp、2 1 8bp、1 94bp和 1 94bp,它们的 G/ C含量为 69.3%~ 72 .7% ,序列中位点趋异率为 1 .5%~ 1 0 .6%。序列的相似性比较和简约性分支分析的结果表明 ,普通野生稻与栽培稻的两个亚种之间的亲缘关系最为密切 ;药用野生稻与普通野生稻和与栽培稻的两个亚种的相似性都为 82 % ,说明它与 AA基因组有一定的亲缘关系 ;疣粒野生稻与普通野生稻、药用野生稻和栽培稻两个亚种的亲缘关系相对较远 ,它在稻属中可能是一个系统地位较独特的类群。以 ITS1序列构建的 3种野生稻和 2个栽培稻亚种的系统发育关系与前人用同工酶、叶绿体 DNA、线粒体 DNA和核 DNA资料重建的稻属的系统发育关系基本一致  相似文献   

2.
采用核糖体DNA内转录间隔区(nrDNA ITS)序列比较分析了甘薯及其近缘野生种的遗传多样性及系统进化关系,首次报道了栽培种甘薯‘徐薯18’(Ipomoea batatas‘Xushu18’)及其近缘野生种I.triloba(DOM),I.cordatotriloba(MEX),I.nil(PER),I.nil(JPN),I.hederacea Jacq.(USA),I.hederacea Jacq.(HK)和种间杂交种67-1(I.batatas‘Xushu18’×I.hederacea Jacq.)及回交种(67-1×I.batatas‘Xushu18’)的nrDNA ITS序列。序列分析表明,栽培种甘薯及其近缘野生种nrDNA ITS序列长度为570~600bp。其中,ITS1序列为185~209 bp,GC含量为53.11%~61.83%;ITS2序列为214~226 bp,GC含量为61.21%~72.89%;5.8S序列均为165 bp,GC含量为54.55%~55.76%。此外,栽培种甘薯及其近缘野生种ITS序列信息位点均集中在ITS1和ITS2区;与其他甘薯属植物相比,I.wrightii ITS2的末端缺失了6~8个碱基。系统进化分析表明,栽培种甘薯‘徐薯18’(I.batatas‘Xushu18’)和野生种I.triloba、I.cordatotriloba、I.lacunosa、I.trifida的亲缘关系较近,与I.wrightii、I.pes-tigridis、I.grandifolia、I.nil、I.hederacea Jacq.、I.purpurea的亲缘关系较远;杂交后代与栽培种甘薯‘徐薯18’(I.batatas‘Xushu18’)亲缘关系较近,与野生种父本I.hederacea Jacq.的亲缘关系较远。  相似文献   

3.
以柿属植物(Diospyros spp.)中与柿近缘的8种共30个基因型为试材,进行核糖体DNA(nrDNA)内转录间隔区(ITS)和叶绿体DNA ndhA序列变异分析,并通过软件计算两个序列及合并后的进化模型,依据进化模型采用ML法(maximum likelihood method)分析进化关系。为进一步弄清柿属植物种间亲缘关系和供试柿(Diospyros kaki Thunb.)种内分子差异提供了理论依据。结果表明:(1)ndhA序列长度变异范围在1 492~1 511,14个信息位点;ITS序列长度变异范围在660~761,56个信息位点。ITS、ndhA和ndhA+ITS(ndhA和ITS合并)最适碱基进化模型分别为(TrN+I+G)、(F81+I)和(GTR+I+G)。综合ITS和ndhA序列分析表明:柿与油柿和云南野毛柿亲缘关系最近,与美洲柿和乌柿最远。(2)21份柿品种材料的ITS长度均为730,包括4个变异位点,据此4个变异位点对供试柿种内21个品种进行聚类分析。研究认为,ndhA和ITS能较清楚解释了柿与其近缘种间的亲缘关系,并通过柿品种ITS的差异位点分析鉴别出栽培柿种内的差异。  相似文献   

4.
针对目前亚洲栽培稻起源地和进化途径学说众多、分歧巨大的现状,本研究选择原产中国的98份亚洲栽培稻和125份普通野生稻为材料,对叶绿体中atpA序列、rps16内含子序列、trnP-rpl33间隔区、trnG-trnfM序列、trnT-trnL间隔区序列的五段高突变序列进行测序,利用生物信息学方法进行比对分析,绘制Network网络图,构建系统发育树。结果表明,普通野生稻的Indel和SNP数目均比亚洲栽培稻多,序列多样性丰富;基于单倍型的Network网络图和系统发育树可将所有参试材料归为3个类群,类群I主要为粳稻与普通野生稻,类群II主要为籼稻,类群III主要为普通野生稻,而类群II和类群III亲缘关系较近,提示粳、籼两个亚种可能由偏粳、偏籼的普通野生稻分别进化而来,支持二次起源学说;所有与亚洲栽培稻亲缘关系较近的普通野生稻均来源于华南地区,支持华南地区为我国亚洲栽培稻起源中心的论点。  相似文献   

5.
对分布于青海境内的中国沙棘、肋果沙棘和西藏沙棘的ITS区进行扩增和序列分析,并以胡颓子科胡颓子属沙枣为外类群,对胡颓子科沙棘属15种植物的ITS序列进行聚类分析, 探讨沙棘属各植物的亲缘关系.结果表明: 3种沙棘属植物的ITS区长度为600~605 bp,其中,ITS-1区为201~203 bp,5.8S为166~167 bp,ITS-2区为232~236 bp.核苷酸分析显示,3种沙棘属植物的ITS区存在丰富的变异位点.聚类分析表明,棱果沙棘种的2个亚种——棱果沙棘和理塘沙棘为2个不同种,江孜沙棘与柳叶沙棘之间的亲缘关系较近,而与中国沙棘亲缘关系较远;沙棘种下9个亚种间的聚类结果与形态学分类差异较大.
  相似文献   

6.
海南黎族聚居区山栏稻的起源演化研究   总被引:2,自引:0,他引:2  
以14份海南黎族聚居区的山栏稻为研究材料、以原产于中国的69份亚洲栽培稻和110份普通野生稻为对照组,分别对核中SSⅡ基因、ITS基因和Ehd1基因、叶绿体中ndhC-trnV基因以及线粒体中cox3基因等5段序列进行测序,分析基因序列多样性和单倍型,并揭示海南黎族聚居区山栏稻的起源地和驯化过程。结果表明,黎族聚居区山栏稻的基因多样性低于亚洲栽培稻,而亚洲栽培稻的基因多样性低于普通野生稻;85%左右的山栏稻为偏粳型;山栏稻与广东和湖南的普通野生稻亲缘关系较近,而与海南的普通野生稻的亲缘关系较远,推测黎族的山栏稻可能起源于广东和湖南的普通野生稻。  相似文献   

7.
栽培稻与其野生近缘种的可交配性研究   总被引:4,自引:0,他引:4  
通过人工授粉方法研究栽培稻与二倍体和四倍体野生稻之间的可交配性.以栽培稻为对照,用光学显微镜观察不同野生稻花粉在同一栽培种柱头上的萌发生长情况.结果表明,在栽培稻柱头上普通野生稻(AA)花粉萌发最好,与对照萌发情况相近.药用野生稻(CC)萌发差,表现为柱头上花粉附着量少,开始萌发时间迟,萌发量少,花粉管扭曲、缠绕、伸长慢等.四倍体野生稻未观察到有萌发现象.说明普通野生稻与栽培稻亲缘关系近,可交配性好;药用野生稻与栽培稻可交配性差;四倍体野生稻与栽培稻可交配性极差.由此推断,转基因水稻与普通野生稻通过花粉途径发生基因漂移的可能性很大,而与药用野生稻和其他基因组野生稻发生基因漂移的可能性很小.  相似文献   

8.
对4种紫蘑菇的rDNA ITS区段进行克隆测序和序列特征比较分析,并与GenBank检索获得的相似性最高菌株的ITS序列一起计算遗传距离并构建系统发育树,旨在探索紫蘑菇的分子鉴定方法及亲缘关系.结果显示,CM-1、CM-2、CM-3及CM-4四种紫蘑菇均属于丝膜菌(Cortinarius),分别与C.rufoolivaceus、C.coerulescens、C.humolens和C.calochrous序列进行比对后,均显示了较高的遗传相似性.贺兰山紫蘑菇隶属于丝膜菌属(Cortinarius).  相似文献   

9.
新疆石竹属野生种核糖体DNA的ITS序列与亲缘关系   总被引:16,自引:1,他引:15  
新疆是我国石竹属植物分布和分化中心,种质资源丰富。通过采用PCR直接测序法,对新疆石竹属(Dianthus)植物野生种共8个种及外类群(Lychnis coronata Thunb)rDNA的ITS区(包括ITS-1,5.8S,rDNA和ITS-2)进行序列测定。研究结果说明,新疆石生属植物的ITS序列总长度为617-621bp,长度变异较小,仅相差4bp,种间序列同源性很高,达97.6%-99.8%,外类群的序列同源性为80%左右。ITS区序列在石竹属内是相当保守的,石竹属物种间序列变异位点基本上是转移多于颠换,且转移率较高,转换/颠换率为1.0-3.0。系统地位和亲缘关系分析表明分布于中国的石竹属植物3个组即齿瓣组(sect.Barbulatum Williams)和石竹组(sect.Dianthus),遂瓣组(sect.Fimbriatum Williams)的亲缘关系较远,而sect.Dianthus与sect.Fimbriatum Williams的亲缘关系较近。ITS系统发育树揭示了石竹组起源早于遂瓣组和齿瓣组,其结果与传统形态学论述存在很大差异。  相似文献   

10.
通过对稻属(Oryza L.)及其近缘属等18个禾本科植物单拷贝核基因TPI序列进行扩增和测序,分析其系统进化关系及序列差异,并设计鉴定疣粒野生稻(O.granulata)特异的分子标记.序列分析表明,栽培稻间TPI基因序列碱基变异少,野生稻相对变异丰富,其中疣粒野生稻变异尤为明显,根据疣粒野生稻的TPI基因序列特异位点设计引物,利用这一分子标记对疣粒野生稻进行准确鉴定.  相似文献   

11.
In the genus Oryza, interspecific hybrids are useful bridges for transferring the desired genes from wild species to cultivated rice (Oryza sativa L.). In the present study, hybrids between O. sativa (AA genome) and three Chinese wild rices, namely O. rufipogon (AA genome), O. officinalis (CC genome), and O. meyeriana (GG genome), were produced. Agricultural traits of the F1 hybrids surveyed were intermediate between their parents and appreciably resembled wild rice parents. Except for the O. sativa × O. rufipogon hybrid, the other F1 hybrids were completely sterile. Genomic in situ hybridization (GISH) was used for hybrid verification. Wild rice genomic DNAs were used as probes and cultivated rice DNA was used as a block. With the exception of O. rufipogon chromosomes, this method distinguished the other two wild rice and cultivated rice chromosomes at the stage of mitotic metaphase with different blocking ratios. The results suggest that a more distant phylogenetic relationship exists between O. meyeriana and O. sativa and that O. rufipogon and O. sativa share a high degree of sequence homology. The average mitotic chromosome length of O. officinalis and O. meyeriana was 1.25- and 1.51-fold that of O. sativa, respectively. 4',6'-Diamidino- 2-phenylindole staining showed that the chromosomes of O. officinalis and O. meyeriana harbored more heterochromatin, suggesting that the C and G genomes were amplified with repetitive sequences compared with the A genome. Although chromocenters formed by chromatin compaction were detected with wild rice-specific signals corresponding to the C and G genomes in discrete domains of the F1 hybrid interphase nuclei, the size and number of O. meyeriana chromocenters were bigger and greater than those of O. officinalis. The present results provide an important understanding of the genomic relationships and a tool for the transfer of useful genes from three native wild rice species in China to cultivars.  相似文献   

12.
he first internal transcribed spacer (ITS1) of nuclear ribosomal DNA of three wild rice species and two subspecies of cultivated rice, which are distributed in China, was amplified using PCR technique and sequenced with automated fluorescent sequencing. The sequences of ITS1 ranged from 193 bp to 218 bp in size and G/C content varied from 69.3%to 72.7%. In pairwise comparison among the five taxa, sequence site divergence ranged from 1.5 % to 10.6%. Phylogenetic analysis of ITS1 sequences using Wagner parsimony generated a single well-resolved tree, which revealed that Oryza rufipogon was much more closely related to cultivated rice species than to the other two wild species. Oryza granulata was less closely related to either cultivated rice species or the other two wild species, and might be a unique and isolated taxon in the genus Oryza. The phylogenetic relationships of the three wild rice species and two cultivated rice subspecies inferred from ITS1 sequences is highly concordant with those based on the molecular evidence from isozyme, chloroplast DNA (cpDNA), mitochondrial DNA (mtDNA) and nuclear DNA (nDNA) of the genus Oryza.  相似文献   

13.
用栽培稻(Oryza sativa L.)遗传图第四连锁群中与抗褐稻虱基因Bph3紧密连锁的RFLP标记RZ69及筛选出来的BAC克隆38J9作探针,对药用野生稻(O.officinalis Well ex Watt)和栽培稻荧光原位杂交,供试标记RZ69及38J9均被定位于药用野生稻和栽培稻第4染色体的短臂上,药用野生稻杂交信号的百分距分别为22.12±3.44和20.00±5.40,而栽培稻均为0.在栽培稻中,信号检出率相应地为6.29%和56.10%,在药用野生稻中则为6.14%和50.00%.BAC克隆和RFLP标记探针杂交信号的百分距十分接近,说明在栽培稻和野生稻中RFLP标记RZ69都在同一BAC克隆的大插入片段中.由此推知,药用野生稻与抗性基因Bph3的同源顺序就在第4染色体信号出现的相应位置.在未封阻的情况下,药用野生稻的BAC杂交在多条染色体上具有信号,这表明它和栽培稻的Cot-1 DNA重复顺序也在一定程度上具有同源性.药用野生稻第4染色体是根据栽培稻与药用野生稻的比较遗传图选用与Gm-6连锁的RG214通过FISH确定的.讨论了栽培稻BAC克隆对药用野生稻比较原位杂交物理作图的可行性问题.  相似文献   

14.
山茱萸不同栽培品种的 rDNA ITS 序列分析   总被引:1,自引:0,他引:1  
为测定山茱萸(Cornus officinalis Sieb.et.Zucc.)核糖体DNA的ITS序列,对山茱萸不同栽培品种进行了ITS序列分析。通过实验筛选出一对引物,进行PCR扩增,对扩增产物提取纯化,双脱氧链终止法DNA测序。然后,利用DNAssist Version 2.0软件加手工校正确定ITS1-5.8S-ITS2序列,并进行ITS序列分析。获得了山茱萸的ITS1-5.8S-ITS2完全序列,ITS1为253bp,5.8S为156bp,ITS2为273bp,总共682bp。7种果型的山茱萸其5.8S基因序列显示高度的一致性,圆柱形果型、长梨形果型、椭圆形果型和纺锤形果型的ITS区序列完全一致,短圆柱形果型在ITS1区3′端及ITS2区5′端各有1个变异位点;短梨形果型在ITS1区5′端有3个变异位点;长圆柱形果型在ITS1区有5个变异位点。结果表明,ITS序列在山茱萸种内比较保守,有的栽培品种之间有较小的差异,此研究为中药山茱萸分子鉴定提供了科学依据。  相似文献   

15.
Li G  Hu W  Qin R  Jin H  Tan G  Zhu L  He G 《Genetica》2008,134(2):169-180
Wild rice is a valuable resource for the genetic improvement of cultivated rice (Oryza sativa L., AA genome). Molecular markers are important tools for monitoring gene introgression from wild rice into cultivated rice. In this study, Simple sequence repeat (SSR) markers were used to analyze interspecific hybrids of O. sativa-O. officinalis (CC genome), the backcrossing progenies and the parent plants. Results showed that most of the SSR primers (335 out of 396, 84.6%) developed in cultivated rice successfully amplified products from DNA samples of wild rice O. officinalis. The polymorphism ratio of SSR bands between O. sativa and O. officinalis was as high as 93.9%, indicating differences between the two species with respect to SSRs. When the SSR markers were applied in the interspecific hybrids, only a portion of SSR primers amplified O. officinalis-specific bands in the F(1) hybrid (52.5%), BC(1) (52.5%), and MAALs (37.0%); a number of the bands disappeared. Of the 124 SSR loci that detected officinalis-specific bands in MAAL plants, 96 (77.4%) showed synteny between the A and C-genomes, and 20 (16.1%) showed duplication in the C-genome. Sequencing analysis revealed that indels, substitution and duplication contribute to the diversity of SSR loci between the genomes of O. sativa and O. officinalis.  相似文献   

16.
包颖  葛颂 《植物分类学报》2003,41(6):497-508
稻属药稻复合体Oryza officinalis complex中有5个二倍体物种,涉及B、C和E3个染色体组,分布在亚洲、非洲和大洋洲。其中,O.australiensis是稻属中惟一含E染色体组的物种;O.punctata则是惟一含B染色体组的物种。虽然O.officinalis、O.rhizomatis和O.eichingeri都含C染色体组,但由于它们间断分布在亚洲和非洲,可能在稻属异源多倍体成种中发挥了不同作用。染色体组B、C和E之间,以及上述二倍体物种之间的系统发育关系及其在稻属多倍体物种形成  相似文献   

17.
Three wild rice species and six cultivated rice varieties were evaluated to determine their mechanisms of resistance toNilaparvata lugens (Stal.). Wild rice species,Oryza officinalis, O. punctata, andO. latifolia and cultivated rices Rathu Heenati (Bph 3), Babawee (bph 4), ARC 10 550 (bph 5), Swarnalata (Bph 6), Ptb 33 (bph 2+Bph 3) and the susceptible Taichung Native (TN 1) (no resistance gene) were included in the study. In a free choice seedbox screening test, wild rice species maintained their high level of resistance through the 48 h exposure toN. lugens nymphs while plant damage ratings of cultivated rice varieties increased with time. Wild rices were non preferred and significantly more individuals settled on susceptible TN 1 followed by cultivated rices. The quantity of food ingested and assimilated byN. lugens on wild rices was less than on cultivated resistant varieties.N. lugens caged on resistant wild rices had slow nymphal development, reduced longevity, low fecundity, and low egg hatchability as compared toN. lugens on cultivated resistant varieties.  相似文献   

18.
云南野生稻叶茎根组织结构特性的比较研究   总被引:1,自引:0,他引:1  
采用徒手切片法对云南3种野生稻和栽培稻的叶片、茎秆及根的组织结构进行比较研究,以明确野生稻的内部结构,为进一步揭示其结构与云南野生稻的生长势旺盛、营养吸收能力强、抗某些病虫害能力强的关系奠定基础。结果表明,(1)云南野生稻与栽培稻叶片主脉、茎秆及根的组织结构差异显著,其中景洪疣粒野生稻、景洪药用野生稻与栽培稻的差异最明显。(2)在叶主脉结构中,景洪疣粒野生稻无气腔结构,维管束数量少、面积小;景洪药用野生稻、3个普通野生稻材料存在多个维管束和气腔结构,维管束、束内导管直径及气腔面积较栽培稻大,而栽培稻中的气腔均为2个。(3)在茎秆结构方面,景洪疣粒野生稻茎秆最小,维管束数量最少,其茎壁内的维管束排列方式与栽培稻不同;景洪药用野生稻和普通野生稻茎秆及茎壁较栽培稻粗厚,维管束数量也较栽培稻多,普通野生稻的茎壁中有通气组织。(4)在根的组织结构中,3种野生稻的导管数量较多,导管直径及中柱面积较栽培稻大,外皮层出现了具有凯氏带功能的凯氏点等。  相似文献   

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