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1.
Iris japonica×Iris confusa种间杂种的细胞遗传学研究   总被引:6,自引:0,他引:6  
对Irisjaponica、I confusa和它们的人工种间杂种花粉母细胞减数分裂中期Ⅰ染色体配对行为、形态学和繁育特征进行了分析 ,结果表明 :(1)I japonica和I confusa的形态差异较小 ,杂种F1形态介于亲本之间 ;(2 )人工杂交比较容易 ,杂种种子能正常发育 ;杂种F1体细胞染色体数为 2n =30 ,减数分裂中期I染色体配对频率很高 ,为 13 9个二价体 ,构型为0 95Ⅰ + 5 95Ⅱ (棒形 ) + 7 95Ⅱ (环形 ) + 0 0 5Ⅲ + 0 2 7Ⅳ ,表明它们有相似的染色体组 ,亲缘关系很近 ;(3)杂种中有少量的三价体和四价体存在 ,可能是亲本染色体间发生了结构重排或是部分同源染色体配对 ;(4)杂种中大多数细胞存在 2个单价体 ,有的高达 8个单价体 ;花粉育性为 5 0 5 1% ,不能正常结实 ,表明I japonica和I confusa间存在生殖隔离 ,是独立的生物学物种 ;(5 )杂种F1减数分裂前期可观察到细胞融合 ,这可能是造成I japonica和I confusa不同居群出现多倍体和非整倍体的重要原因。  相似文献   

2.
卢宝荣  Bj 《生物多样性》2004,12(2):213-226
在同倍体(homoploid)植物杂交-分化的物种形成(speciation)过程中,杂交后代与亲本之间的有效生殖隔离是新物种形成的关键。杂种与亲本在时间、空间、生态环境和基因水平上的隔离,保证了杂种后代的分化和稳定,并逐渐形成新物种。为了研究披碱草属(Elymus)含StY基因组四倍体物种的系统演化关系,本文对来自亚洲不同地理分布区的26种披碱草属植物进行了大规模的种间杂交和杂种F1减数分裂染色体配对行为的分析。结果表明各物种之间有不同程度的杂交亲合力,杂交结实率在各杂交组合之间有较大的变异(在4.8%-100%之间);但各物种之间的杂种F1完全不育。证明各物种之间形成了明显的生殖隔离。种间杂种F1减数分裂中期-I染色体配对分析的结果进一步表明,StY基因组随各披碱草属物种地理分布的不同而有不同程度的分化。来自同一分布区(如东亚或西亚分布区之内)物种的StY基因组分化程度较低,但来自不同分布区(如东亚和西亚)物种之间相同的StY基因组具有显著的分化。表明地理隔离对含StY基因组物种的分化起到了十分重要的作用。通过对种间和种内杂种F1的减数分裂异常现象和染色体配对频率变化规律的分析,作者认为细胞学水平的变化,如基因组同源性的分化和染色体结构的变异等都在杂种后代与亲本之间产生生殖隔离并逐渐形成新物种的进化过程中起到了积极的作用。  相似文献   

3.
将澳大利亚披碱草(Elymus scabervar.scaber,2n=6x=42,StYW)和华山新麦草(Psathyrostachys huas-hanica,2n=2x=14,Ns)进行属间杂交,成功获得杂种F1。分析亲本及其杂种F1的形态特征、繁育特性及花粉母细胞减数分裂染色体配对行为发现:杂种F1形态特征介于父母本之间,分蘖数等农艺性状超过双亲;花粉完全不育,结实率为0。亲本减数分裂染色体配对正常,但杂种F1花粉母细胞在减数分裂中期I染色体几乎没有配对,其构型为:27.31Ⅰ 0.01Ⅱ(环) 0.32Ⅱ(棒) 0.01Ⅲ,C值仅为0.01。以上结果表明:澳大利亚披碱草的StYW染色体组与华山新麦草的Ns染色体组间无同源性,它们之间的亲缘关系甚远。  相似文献   

4.
为探讨大鹅观草(Roegneria grandis,2n=4x=28)的染色体组组成,为其正确的分类处理提供细胞学依据。该研究通过人工远缘杂交,成功获得3株大鹅观草与蛇河披碱草(Elymus wawawaiensis,2n=4x=28)属间杂种F1植株。杂种植株形态介于两亲本之间,不育。亲本及杂种经I2-IK溶液染色后进行花粉育性检测,结果显示Roegneria grandis和Elymus wawawaiensis的花粉可育,育性高达94.6%和90.5%;杂种F1不育。花粉母细胞减数分裂中期I染色体配对结果显示,亲本花粉母细胞配对正常,均形成14个二价体,以环状二价体为主,Roegneria grandis有频率很低(0.04/细胞)的单价体出现;杂种F1平均每个花粉母细胞形成6.46个二价体,变化范围为5~8;在观察的83个花粉母细胞中,有35.2%的花粉母细胞形成了7个二价体,形成6个二价体的细胞占42.59%,较少细胞形成8个二价体;平均每个细胞形成14.66个单价体,变化范围为10~18;平均每细胞观察到0.14个三价体;杂种花粉母细胞染色体构型为14.66 I+6.46 II+0.14 III;平均每细胞交叉数为9.83,C值为0.35。结果表明:(1)R.grandis与Elymus wawawaiensis有一组染色体组同源的St染色体组,另外一组染色体组不是St或者H染色体组,Roegneria grandis的染色体组组成不是St Stg;(2)较低频率的三价体(平均0.14个/细胞),可能是由于R.grandis的St和Y染色体组间具有一定的同源性,也可能是染色体易位等原因导致,对于Y染色体组的起源还需深入地研究;(3)在不同地理来源的披碱草属和鹅观草属物种中St染色体组同源性不同,R.grandis与来自于北美的Elymus lanceolatus与E.wawawaiensis的St染色体组较与分布于亚洲的E.sibiricus和E.caninus的St染色体组同源性反而更高,其原因还需要进一步地研究。  相似文献   

5.
加拿大披碱草与野大麦 2个四倍体多年生禾草杂交产生的属间杂种F1为三倍体 (2n =3x =2 1) ,丢失了与亲本染色体基数相同的 7条染色体。为查明该杂种F1的染色体构成 ,应用基因组分子原位杂交方法 ,将父本(♂ )野大麦基因组 (H1H1H2 H2 )DNA用荧光生物素标记作为探针 ,以母本 (♀ )加拿大披碱草基因组 (SSHCHC)DNA作为封组 ,对杂种F1根尖细胞有丝分裂中期的染色体DNA进行原位杂交。结果表明 :三倍体杂种F12 1条染色体中 ,有 14条出现偏黄色荧光信号 ,来自父本 (♂ )野大麦H1H2 基因组有 7条出现橙红色荧光信号 ,来自母本 (♀ )加拿大披碱草S基因组、加拿大披碱草HC 基因组的 7条染色体丢失。  相似文献   

6.
以甜瓜属种间杂种F1(2n=19,华南型黄瓜"二早子"×Cucumis hystrix)为试材,对其形态学、细胞学和育性作了观察分析.结果表明该杂种无雌花,雄花不能正常开放,表现高度不育.该杂种F1长势瘦弱,与笔者以前报道的种间杂种F1(C. hystrix与华北型黄瓜"北京截头"正反交)相比,在育性和形态学性状上有明显差异.花粉母细胞减数分裂观察发现,杂种F1的终变期和中期Ⅰ主要以17条单价体(Ⅰ)和1个二价体(II)存在;整个花粉母细胞的减数分裂行为异常,经常可见染色体滞后和纺锤丝定向紊乱,形成多极染色体,末期II后形成多分体,以致不能发育成正常的花粉粒,导致杂种F1高度不育.  相似文献   

7.
鹅观草和簇毛麦属间杂种的形态学和细胞遗传学研究   总被引:6,自引:0,他引:6  
通过幼胚离体拯救培养,成功地获得鹅观草Roegneria kamoji Ohwi(2n=6x=42,StStHHYY)和 簇毛麦Dasypyrum villosum(L.)Candargy(2n=2x=14,VV)属间杂种,对这两个种及其杂种Fl的形 态学、繁育学和减数分裂配对行为进行了研究。结果表明:(1)鹅观草和簇毛麦形态差异极大,杂种F1 的形态特征介于父母本之间;(2)杂交结实率低,为11.63%;经幼胚组织培养,获2株杂种苗;杂种Fl高 度不育,表明亲本间存在极强的生殖隔离,是独立的生物学种;(3)杂种Fl体细胞染色体数目为稳定的 28条,减数分裂中期I染色体配对很低,其构型为:26.72Ⅰ+0.62Ⅱ+0.02Ⅲ。表明鹅观草的St、H、Y染色体组与簇毛麦的V染色体组部分同源性很低,它们的亲缘关系较远。  相似文献   

8.
菊属与亚菊属属间杂种的鉴定及其分类学意义   总被引:6,自引:0,他引:6  
通过有性杂交的方法获得了栽培菊花“奥运火炬”Dendranthema×grandiflorum“Aoyunhuoju”和亚菊属Ajania矶菊A.pacifica的属间杂种。形态学、细胞学以及RAPD分子标记鉴定表明22个杂种为真正的属间杂种,成功地将矶菊的某些性状(叶色)转移到栽培菊花中,但同时也掺入了某些不良性状。杂种的叶色、叶形、花色、开花枝的分枝性和花期等性状均介于双亲之间,边缘舌状雌花大小、数量和形态不一;杂种根尖染色体数目正常(2n=72),花粉母细胞减数分裂基本正常。矶菊与栽培菊花属间杂交的成功以及杂种减数分裂染色体行为正常表明两者亲缘关系较近,从而推测菊属Dendranthema与亚菊属之间的亲缘关系可能较近。  相似文献   

9.
对鹅观草属、披碱草属、猬草属和仲彬草属4属23个物种进行了RAMP分析。结果表明属间变异极大,多态性极高。31个引物组合产生的286条DNA扩增片段均具有多态性。聚类分析显示鹅观草属、披碱草属、猬草属和仲彬草属物种各自聚为一类;Roegneria alashanica、R.elytrigioides和R.magnticaespes聚类在一起;猬草属的模式种Hystrix patula与披碱草属物种聚类在一起,而Hystrix duthiei和H.longearistata单独聚为一类;形态相似、染色体组相同、地理分布一致的物种聚类在一起。本研究结果基本上同形态学和细胞学研究结果相吻合,将鹅观草属、披碱草属和仲彬草属作为属分类等级处理比较恰当,而猬草属的系统地位有待进一步确认。RAMP标记可作为评价多年生小麦族物种遗传多样性和亲缘关系的一种分子标记技术。  相似文献   

10.
为了进一步研究Elymus sibiricus L.、E.nutans Griseb.和E.burchan-buddae(Neuski)Tzelev [=Roegneria nutans(Keng)Keng]的外部形态差异及其系统学关系,本文对这三种植物的6个穗部形 态性状进行了观测和比较,并对这三个Elymus种进行了种间杂交及杂种F1的减数分裂染色体配对行 为的分析研究。结果表明:这三个Elymus种的穗长及颖长等性状均变异很大,而内稃的长、宽则变异 不大并具有明显的种间差异。E. nutans×E.barchan-buddae及E.nutans×E.sibiricus的杂种F1均完 全不育,减数分裂不规则。E.nutans×E.burchan-buddae杂种F1的减数分裂构型为:7.70I+13.40 Ⅱ+0.06Ⅲ+O.08 Ⅳ,而E.sibiricus×E.nutans杂种F1的构型为11.98 Ⅰ+9.61Ⅱ+O.64Ⅲ+0.39 Ⅳ+0.01V。由本实验的形态学和细胞学的研究结果得出以下结论:1.利用内稃形态性状结合穗部 其它性状的差异能对这三个物种进行较准确的鉴定;2.E.nutans与E.burchan-buddae的亲缘关系较 近,而E.nutans与E.sibiricus的亲缘关系则较远;3. E,burchan-buddae×E.nutans的杂种Fl中存在着染色体配对控制因子。  相似文献   

11.
Although the monogenomic genera of the Triticeae have been analyzed in numerous biosystematic studies, the allopolyploid genera have not been as extensively studied within a phylogenetic framework. We focus on North American species of Elymus, which, under the current genomic system of classification, are almost all allotetraploid, combining the St genome of Pseudoroegneria with the H genome of Hordeum. We analyze new and previously published chloroplast DNA data from Elymus and from most of the monogenomic genera of the Triticeae in an attempt to identify the maternal genome donor of Elymus. We also present a cpDNA phylogeny for the monogenomic genera that includes more data than, and thus builds on, those previously published. The chloroplast DNA data indicate that Pseudoroegneria is the maternal genome donor to all but one of the Elymus individuals. There is little divergence among the Elymus and Pseudoroegneria chloroplast genomes, and as a group, they show little divergence from the rest of the Triticeae. Within the monogenomic Triticeae, the problematic group Thinopyrum is resolved as monophyletic on the chloroplast DNA tree. At the intergeneric level, the data reveal several deeper-level relationships that were not resolved by previous cpDNA trees.  相似文献   

12.
A total of 241 intergeneric combinations between Hordeum and Secale were attempted. It was only possible to obtain hybrid offspring from combinations with Hordeum as the female parent. By the aid of embryo culture technique 81 intergeneric combinations were synthesized, 72 of them not reported earlier. Generally hybridization with the polyploid species of Hordeum was most successful. Morphologically the hybrids were intermediate to the parents in most characters, though an obvious effect of genome dosage could be observed. Only few deviations from the expected chromosome numbers of the hybrids were found. All hybrid plants showed complete male sterility.  相似文献   

13.
B R Lu  K B Jensen  B Salomon 《Génome》1993,36(6):1157-1168
To investigate genomic relationships of Elymus tschimganicus (Drobov) Tzvelev (2n = 6x = 42, S1S2Y genomes) and E. glaucissimus (M. Pop.) Tzvelev (2n = 6x = 42, S1S2Y genomes), interspecific hybridizations of the two target species were carried out with 27 other Elymus species containing the SH, SY, SYH, SYP, SYW, and SH1H2 genomes, respectively, collected from different geographic regions. Chromosome pairing behavior was analyzed at metaphase I in 27 hybrids representing 23 hybrid combinations, and overall genomic relationships of the two target species with the other Elymus taxa were estimated. The study concluded that (i) interspecific hybridization was principally easy to perform between the Elymus species, but no general pattern of crossability was obtained, and all hybrids were completely sterile, (ii) the two species have a similar meiotic pattern in their hybrids with the other Elymus species, and (iii) species containing the SY, SYP, and SYH genomes have a generally higher level of genomic homology to the target species than those possessing the SH genomes, and the South American hexaploid with the SH1H2 genomes has the lowest level of genomic homology to the two target taxa.  相似文献   

14.
Sun G  Zhang X 《Génome》2011,54(8):655-662
Previous studies have suggested that the H haplome in Elymus could originate from different diploid Hordeum species, however, which diploid species best represent the parental species remains unanswered. The focus of this study seeks to pinpoint the origin of the H genome in Elymus. Allopolyploid Elymus species that contain the StH genome were analyzed together with diploid Hordeum species and a broad sample of diploid genera in the tribe Triticeae using DMC1 sequences. Both parsimony and maximum likelihood analyses well separated the American Hordeum species, except Hordeum brachyantherum subsp. californicum, from the H genome of polyploid Elymus species. The Elymus H-genomic sequences were formed into different groups. Our data suggested that the American Horedeum species, except H. brachyantherum subsp. californicum, are not the H-genomic donor to the Elymus species. Hordeum brevisubulatum subsp. violaceum was the progenitor species to Elymus virescens, Elymus confusus, Elymus lanceolatus, Elymus wawawaiensis, and Elymus caninus. Furthermore, North American H. brachyantherum subsp. californicum was a progenitor of the H genome to Elymus hystrix and Elymus cordilleranus. The H genomes in Elymus canadensis, Elymus sibiricus, and Elymus multisetus were highly differentiated from the H genome in Hordeum and other Elymus species. The H genome in both North American and Eurasian Elymus species was contributed by different Hordeum species.  相似文献   

15.
鹅观草与大鹅观草杂种的细胞遗传学及形态学研究   总被引:5,自引:0,他引:5       下载免费PDF全文
张新全  杨俊良  颜济  郑有良  伍碧华   《广西植物》1999,19(4):355-358+398
大鹅观草( Roegneria grandis Keng) 是分布于我国陕西的一种多年生四倍体植物。为了探索大鹅观草与鹅观草( Roegneria kamoji Ohwi) 间的物种生物学关系, 通过对其进行远缘杂交,幼胚离体培养, 合成了远缘杂种; 并对亲本及杂种F1 代花粉母细胞减数分裂中期Ⅰ染色体配对行为及形态学进行了研究。结果表明杂种F1 减数分裂染色体配对平均构型为: R- kamoji ×R-grandis10-26 Ⅰ+ 12-37 Ⅱ(c- 值= 0-74) , 大鹅观草与鹅观草所含的SY 染色体组间存在较大的同源性分化; 杂种穗部特征大多数介于双亲之间。  相似文献   

16.
Seven viable hybrid seeds were obtained from 48 hand-emasculated Elymus canadensis L., 2n = 28, florets pollinated by Hordeum bogdanii Wilensky, 2n = 14. The hybrids were large, vigorous, and completely sterile plants that bore a closer morphological resemblance to E. canadensis than to H. bogdanii. Chromosome associations in the 21-chromosome hybrids averaged 9.98I, 5.40II, and 0.08III in 264 metaphase-I cells. Chromosome pairing was attributed to allosyndetic pairing between E. canadensis and H. bogdanii chromosomes. The H. bogdanii genome appears to be partially homologous with one of the two E. canadensis genomes. One Sitanion hystrix (Nutt.) J. G. Smith X H. bogdanii hybrid was obtained from a cross involving 37 emasculated S. hystrix florets. This triploid, 2n = 21, hybrid was morphologically intermediate between the parents and totally sterile. Averages of 9.09I, 5.72II, and 0.16III were observed in 106 cells at metaphase I. A modified form of the H. bogdanii genome appears to occur in S. hystrix as well as in E. canadensis. Many allotetraploid Agropyron, Elymus, and Sitanion species apparently contain a genome derived from Hordeum.  相似文献   

17.
Muramatsu M 《Hereditas》2001,135(2-3):115-118
Hybrids between species of Elymus and Hystrix were obtained by the embryo-rescue technique. The two Elymus species E. ciliaris and E. yezoensis were used in combinations with H. longe-aristata. All three species involved are indigenous to Japan. The hybrids had mainly a single spikelet per node like the Elymus parents, and the spikelets had few florets as in Hystrix. The microsporogenesis of the hybrids was highly anomalous, and the hybrid plants were completely sterile. In combination with E. yezoensis the anther development was inhibited at an early stage and microsporocytes were not found. The results indicate that the two genera are distantly related.  相似文献   

18.
A study of 28 Elymus species using repetitive DNA sequences.   总被引:2,自引:0,他引:2  
Four repetitive DNA sequences cloned from the barley (Hordeum vulgare) genome and common for different Triticeae species were used for a molecular study of phylogenetic relationships among 28 Elymus species. Two wild Hordeum species (H genome), two Pseudoroegneria species (S genome), Agropyron cristatum (P genome), and Australopyrum velutinum (W genome) were included as genomic representatives for the genomes that supposedly were involved in the evolution of the genus Elymus. Our results are essentially congruent with the genomic classification system. This study demonstrates that Elymus is not a monophyletic genus. Based on an analysis of Southern blot hybridization we could discriminate between SY and SH species owing to the strong specific hybridization pattern of the H genome. Hexaploid SYH species gave a hybridization pattern similar to SH species for the same reason. The results support the genomic composition of Elymus batalinii as SYP and also indicated the presence of at least one H genome in Elymus enysii with a hitherto unknown genomic constitution. Elymus erianthus had a hybridization pattern distinctly different from all other species in the investigation. Key words : Elymus, RFLP, phylogeny, repetitive DNA.  相似文献   

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