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1.
鹅观草与大麦属间杂种的形态和细胞遗传学研究   总被引:7,自引:0,他引:7  
蒋继明  刘大钧 《遗传学报》1990,17(5):373-376
用活体/离体幼胚培养法成功地获得了鹅观草(Roegneria kamooji,2n=12,SSHHYY)与大麦(Hordeum vulgare,2n=14,11)间的属间杂种。杂交结实率为31.4%,胚培成苗率60.9%。杂种表现一年生,具有很强的生活力,形态上偏向鹅观草。F_1自交不孕,用大麦回交亦不结实。杂种具有预期的2n=28(SHYI)条染色体,花粉母细胞减数分裂中期Ⅰ平均形成26.38个单价体,0.67个棒状二价体,0.12个环状二价体和0.02个三价体。本文对双亲染色体组间的同源性以及在大麦育种中利用鹅观草种质的可能性进行了讨论。  相似文献   

2.
余小芳  周永红  张海琴  丁春邦  袁明   《广西植物》2006,26(5):573-575
为研究猬草Hystrixpatula的染色体组组成,进行了H.patula与Pseudoroegnerialibanotica的人工杂交,获得杂种F1,观察了亲本和杂种F1花粉母细胞减数分裂染色体配对行为。杂种F1染色体配对较高,84%的细胞形成7个或7个以上二价体,其构型为6.08Ⅰ+7.48Ⅱ,C-值为0.69。结果表明,H.patula含有St染色体组。  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.
本文分析了早椒和C;hinense 二亲本及F1杂种花粉母细胞减数分裂终变期和中期Ⅰ期染色体配对的构型。结果表明;二亲本工粉母细胞减娄分裂染色体配对均正常,为12个二价体。F1杂种花粉母细胞减数分裂染色体配对很不规则。其平均频率为单价体0.036,二价体9.18,三价体0.036,四价体0.80,六价体0.38。  相似文献   

5.
辣椒属种间杂种F_1植株的细胞遗传学研究   总被引:1,自引:0,他引:1  
本文分析了南京早椒(CapsicumfrutescensL.var.ConoideesBailey)和C.chinense二亲本及F1杂种花粉母细胞减数分裂终变期和中期I染色体配对的构型。结果表明:二亲本花粉母细胞减数分裂染色体配对均正常,为12个二价体(双单倍体2n=24)。F1杂种花粉母细胞减数分裂染色体配对很不规则。其平均频率分别为单价体0.036,二价体9.18,三价体0.036,四价体0.80,六价体0.38。南京早椒和C.chinense染色体间存在着相互易位,因此,二亲本间彼此有差异。单价体出现极少,这可断定南京早椒与C.chinense染色体间是部分同源的,但染色体组结构上存在着差异。由于染色体结构上差异,所以F1杂种的育性较低。  相似文献   

6.
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  
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   

7.
大鹅观草与阿拉善鹅观草杂种的形态学和细胞学研究   总被引:7,自引:1,他引:6  
张海琴  周永红  郑有良  杨瑞武  丁春邦 《广西植物》2002,22(4):352-356,T004
为探讨阿拉善鹅观草 ( R.alashanica( Keng) S.L.Chen)的染色体组组成 ,进行了大鹅观草 ( R.grandisKeng( 2 n=2 4 ,St St YY) )和阿拉善鹅观草种间杂交 ,对这两个种及其杂种 F1的形态学、繁育学和减数分裂染色体配对行为进行了研究。结果表明 :杂种 F1的形态特征介于父母本之间 ,其花粉母细胞减数分裂染色体平均构型为 :2 0 .4 0 +3.6 9 +0 .0 9 +0 .0 4 。表明阿拉善鹅观草含有一个修饰的 St基因组 ,即 Sta。  相似文献   

8.
吴鹤鸣  陆维忠等 《遗传学报》1993,20(1):50-58,T001,T002
本文报道了栽培番茄(Lycopersico esculentum)“北京早红”等5个品种分别与野生型秘鲁番茄(L.peruvianum)PI128657中8号株系杂交,离体胚培养,得F1杂种植株,对花粉母细胞在减数分裂中染色体行为和终变期二价体交叉点的频率,以及亲和性程度等进行了.结果表明,6个亲本植株花粉母细胞减数分裂染色体的行为是正常的,中期I为12个二价体。其中环状二价体占多数,棒状二价体数较少,中期I没有单价体,后期I和II均正常,四分体阶段无微出现,但各亲本在终变期和中期I的环状二价体和棒状二价体的数有一定的差异,这可能与不同亲本基因型的亲和性程度和在遗传学上的不协调有关。5个组合的大多数F1杂种花粉母细胞减数分裂中染色体行为基本正常,12个二价体占多数,但染色体配对不稳定,有较多的单价体,染色单体桥。四分体阶段有微核,此外,在5个组合的F1杂种植株中,均出现双二倍体花粉母细胞,这些双二倍体花粉母细胞的染色体,在减数分裂中,也均,出现落后染色体和染色单体桥,以及较多的多价体,四分体阶段有微和不同类型的四分孢子群。  相似文献   

9.
以加拿大披碱草(2n=4x=28)和圆柱披碱草(2n=6x=42)为材料,对其BC1植株染色体数目、配对构型以及花粉育性和结实性等进行了鉴定。结果显示:BC1代85%以上细胞染色体数目为28条(2n=4x=28);BC1植株的花粉母细胞减数分裂中期Ⅰ染色体配对行为较规则,其平均染色体构型分别为0.04Ⅰ 13.98Ⅱ,且环状二价体多于棒状二价体;BC1植株的花粉可育率和自然结实率分别为84.83%和70.98%,说明BC1植株的育性已得到恢复,为其后代优良株系的选育奠定了基础。  相似文献   

10.
普通小麦与华山新麦草的杂交   总被引:23,自引:2,他引:23  
陈涑阳  张安静 《遗传学报》1991,18(6):508-512
华山新麦草是分布在秦岭山脉华山段的1个特有种,经细胞学鉴定为二倍体种(2n=14)。利用普通小麦与之杂交并通过幼胚培养获得了杂种,杂交结实率为0.19%,幼胚培养出苗率为33.3%。杂种表现为双亲的中间型,杂种F_1体细胞染色体数为2n=28,花粉母细胞减数分裂中期Ⅰ每细胞平均0.99个二价体,26.01个单价体。杂种花粉粒败育,以小麦花粉与杂种回交时获得了种子,回交结实率为2.5%。回交一代体细胞染色体数为2n=49,花粉母细胞减数分裂中期Ⅰ染色体构型多数为2Ⅲ 7Ⅰ。  相似文献   

11.
Elymus mollis is distributed widely from Korea to Japan, Kamchatka and Alaska, the northern part of U.S.S.R., and Northern and Eastern Canada, Greenland and Iceland. This species is tetraploid (2n=28). A strain of this species collected in Hokkaido was crossed withAgropyron tsukushiense var.transiens collected in Mishima. From this cross, 22 F1 plants were produced. Crossability calculated from the number of hybrid plants produced and the number of floret pollinated was 30.6%. The shape of the F1 spikes was of theAgropyron type but the glumes were hairy as were those of theElymus parent. One of the characteristics distinguishingElymus fromAgropyron is the production of two spikelets at almost all nodes of the rachis. This character was not expressed in the F1 plants. All pollen grains of the F1 plants were completely abortive. The average chromosome pairing at the MI of the PMCs of the F1 amounted to 2.03 bivalents and 30.95 univalents. Almost all bivalents ranging from one to seven were rod-shaped connected with interstitial or terminal chiasma. These results indicate a lack of genomic homology between the three genomes ofA. tsukushiense and the two genomes ofE. mollis. Contribution No. 37 from the Plant Germ-plasm Institute, Faculty of Agriculture, Kyoto University, Kyoto, Japan.  相似文献   

12.
To explore the cytogenetical relationships ofElymus andAgropyron of the tribe Triticeae, Gramineae, two species of AsiaticElymus, E. sibiricus (2n=28) andE. dahuricus (2n=42), and a JapaneseAgropyron, A. tsukushiense (2n=42) were crossed. Pentaploid and hexaploid F1 hybrids were vigorous. All pollen grains were aborted and none of the hybrids produced seed. For the crossE. sibiricus × A. tsukushiense, the average chromosome pairing per cell at the MI of the PMCs in the F1 was 16.38 univalents, 8.93 bivalents, 0.25 trivalents and 0.01 quadrivalents; for the crossE. dahuricus × A. tsukushiense, it was 4.41 univalents, 17.67 bivalents, 0.32 trivalents, 0.28 quadrivalents and 0.04 quinquevalents; and for the crossE. dahuricus × E. sibiricus, it was 17.11 univalents, 8.74 bivalents, 0.04 trivalents and 0.07 quadrivalents. From the present results, it is concluded thatE. sibiricus contains one genome andE. dahuricus contains two genomes, which are homologous to those ofA. tsukushiense, and that the third genome ofE. dahuricus might be partially homologous to the remaining genome ofA. tsukushiense. This conclusion is also supported by the cytogenetical analysis ofE. dahuricus × E. sibiricus. Contribution No. 27 from the Plant Germ-plasm Institute, Faculty of Agriculture, Kyoto University, Kyoto, Japan.  相似文献   

13.
A. Davies  G. Jenkins  H. Rees 《Genetica》1990,82(2):103-110
The chromosomes of the two closely related diploid species, Gibasis consobrina and G. karwinskyana (Commelinaceae; 2n=2x=10), are morphologically alike, yet form few chiasmate associations at metaphase I in the f1 hybrid. During meiotic prophase, however, synaptonemal complexes join the majority of the chromosomes of the complement in complex multiple pairing configurations. The F1 hybrid between different tetraploid genotypes of the same two species similarly forms multivalents during meiotic prophase, which are subsequently eliminated in favour of strictly homologous bivalents before metaphase I. One quadrivalent comprising interchange chromosomes inherited from one of the parents, usually persists to first metaphase. Evidently the resolution of multivalents to bivalents at first metaphase, which accounts for diploidisation, is not attributable to the elimination of multivalents per se, but of multivalents comprising chromosomes of limited homology.  相似文献   

14.
In both Oenothera villaricae Dietrich and O. picensis ssp. picensis, chromosomes are transmitted as two Renner complexes. Reciprocal combinations of the Renner complexes produce eight different F1 hybrids, but only seven are viable. Each species, and each F1 hybrid, produces three sizes of pollen, approximately 50% small sterile grains, 15% medium-sized viable grains and 35% large viable grains. Medium- and large-sized grains were separated manually and subjected to random amplified polymorphic DNAs (RAPDs) analysis. A pattern of RAPD amplifications was obtained which indicates that, for each species and F1 hybrid, one specific Renner complex characterizes the medium- and another the large-sized viable pollen. The results indicate that pollen size is determined in part by the pollen genotype and in part by the genotype of the other pollen grains developing within the same anther.  相似文献   

15.
Comparative genetic mapping in interspecific pedigrees presents a powerful approach to study genetic differentiation, genome evolution and reproductive isolation in diverging species. We used this approach for genetic analysis of an F1 hybrid of two Eucalyptus tree species, Eucalyptus grandis (W. Hill ex Maiden.) and Eucalyptus globulus (Labill.). This wide interspecific cross is characterized by hybrid inviability and hybrid abnormality. Approximately 20% of loci in the genome of the F1 hybrid are expected to be hemizygous due to a difference in genome size between E. grandis (640 Mbp) and E. globulus (530 Mbp). We investigated the extent of colinearity between the two genomes and the distribution of hemizygous loci in the F1 hybrid using high-throughput, semi-automated AFLP marker analysis. Two pseudo-backcross families (backcrosses of an F1 individual to non-parental individuals of the parental species) were each genotyped with more than 800 AFLP markers. This allowed construction of de novo comparative genetic linkage maps of the F1 hybrid and the two backcross parents. All shared AFLP marker loci in the three single-tree parental maps were found to be colinear and little evidence was found for gross chromosomal rearrangements. Our results suggest that hemizygous AFLP loci are dispersed throughout the E. grandis chromosomes of the F1 hybrid.Communicated by O. Savolainen  相似文献   

16.
Summary Crosses were made to obtain interspecific hybrids between B. fruticulosa (wild species , 2n = 16) × B. campestris (cultivar , 2n = 20). Although many pollen grains germinated and their tubes entered the style, only about 30% of the ovules received pollen tubes. Fertilized ovules aborted at various stages of development. A few hybrid seeds resulted from hand pollinations in the field, and they showed poor germination and seedling establishment. The in vitro culture of ovaries, ovules, and seeds increased the frequency of obtaining hybrid seeds and plants: the most effective method was ovary culture followed by ovule culture. The hybrid nature of the plants was confirmed through morphological, cytological, and electrophoretic studies. A meiotic analysis of F1 hybrids (2n = 18) showed that they had 0–5 bivalents and were completely pollen sterile. Electrophoretic analysis of leaf esterases and acid phosphatases of F1 hybrids revealed bands derived from each parent. Induced amphidiploids of F1 hybrids contained mostly bivalents, and had about 50% fertile pollen.  相似文献   

17.
Hybrids between the two diploid species Festuca donax and F. drymeja had regular chromosome association, forming 7 bivalents at metaphase I. However, when the two species were crossed with a third species F. scariosa, the hybrids involving F. drymeja showed greater desynapsis than those with F. donax. When the F1 hybrid F. donax × F. drymeja was crossed with F. scariosa, the trispecific progeny could be grouped into three classes according to the degree of desynapsis recorded. Abnormalities associated with the fusion of pollen mother cells, which produced highly polyploid cells, were also observed in the trispecific hybrids. Failure of chromosomal pairing and the occurrence of syncytes is attributed to genotypic interactions.  相似文献   

18.
Amphidiploid Raphanofortii was synthesized by colchicinization of the F1 hybrid Brassica tournefortii (TT, 2n = 20)×Raphanus caudatus (RR, 2n = 18). The crossability between these two species, and the cytomorphology of the F1 plants and the amphidiploids were investigated. Intergeneric hybrids between the species were obtained only when B. tournefortii was involved as female parent. The hybrid plants were intermediate for most of the morphological attributes and showed very low pollen fertility compared to the parents. Although a majority of the pollen mother cells of the dihaploid hybrid (TR, 2n = 19) harboured univalents, a maximum of six bivalents were also observed. Of the 37 colchicine-treated F1 plants analyzed cytologically, 21 were found to be true amphidiploids (2n = 38), whereas seven were mixoploids. Meiosis in the amphidiploids was characterized by the occurrence of 19 bivalents, though multivalents and univalents were also observed in a few cells. Most of the amphidiploid plants exhibited a fairly high pollen and seed fertility, which was further enhanced with the advancement of generations. Out of 69 plants investigated in the A2 generation, 64 were euploids while the remaining five were aneuploids (2n = 36, 37, 39, 40 and 42). The newly synthesized Raphanofortii has great potential as a new commercial crop, as well as a bridge species for the transfer of economically important attributes of both the species to other Brassicas. Received: 2 November 1999 / Accepted: 26 March 2000  相似文献   

19.
杨艳萍  陈佩度 《遗传》2009,31(3):290-296
通过胚拯救, 成功获得鹅观草Roegneria kamoji (2n=6x=42, SSHHYY)和普通小麦中国春Triticum aesti-vum (2n=6x=42, AABBDD)的正反交属间杂种F1, 并对这些杂种F1及其BC1的形态学、减数分裂配对行为、育性和赤霉病抗性进行研究。结果表明, (鹅观草×中国春)F1和(中国春×鹅观草)F1的形态介于双亲之间。杂种F1花粉母细胞减数分裂中期I染色体构型分别为40.33I + 0.78II + 0.03III和40.40I + 0.79II 。杂种F1高度雄性不育, 用中国春花粉与其回交可获得BC1代种子。(鹅观草×中国春) F1×中国春BC1植株的染色体数目主要分布在55~63之间, 单价体较多, 植株高度不育; (中国春×鹅观草)F1×中国春BC1植株染色体数目也主要分布在55~63之间, 但其中部分植株拥有整套小麦染色体且能正常配对、分离, 可形成部分可育花粉粒, 能收到少量自交结实种子。在 (鹅观草×中国春)F1中有1株穗型趋向中国春, 其染色体数目为2n=63, 经染色体分子原位杂交(GISH)检测, 含有42条小麦染色体和21条鹅观草染色体。该杂种F1在减数分裂中期I平均每个花粉母细胞有26.40I+18.30II, 但植株高度雄性不育, 用中国春花粉回交能收到BC1种子。(鹅观草×中国春) F1 (2n=63)×中国春BC1的染色体数目主要分布在40~59之间, 其中的外源染色体已经逐渐减少, 虽然该BC1的穗型已接近中国春, 但仍然高度不育。赤霉病抗性鉴定结果显示, 所有杂种F1及大部分BC1对赤霉病均表现出较好的抗性。  相似文献   

20.
Pollen morphology in ten plants of F2 progeny of an interspecific tree hybrid, Chorisia insignis H. B.& K.×C. speciosa St. Hil (Bombacoideae, Malvaceae) has been studied with a view to have an insight in to the effect of hybridization on the pollen morphological features in F2 generation. The study is a sequel to an earlier study on the pollen morphology of Chorisia species and their F1 hybrid, in which case the hybrid pollen uniformly exhibited the apertural features of the male parent and exine features of the female parent. In the F2 progeny the pollen grains display the apertural feature of the male parent in all the plants. However, with regard to exine ornamentation, variability has been observed. Of the ten plants, two plants exhibit the exine features of the male parent showing empty lumina (without bacula), five plants have their pollen exactly like that of the F1 plant (showing prominent columellar heads in the lumina of the apocolpium region) and the remaining three plants showing columellae in lumina of both apocolpium and mesocolpium region being different from the above types. It has been inferred that the variability in the exine pattern in F2 pollen indicates that the pollen exine pattern in hybrids, perhaps, is not unequivocally controlled by sporophytic or gametophytic genomes.  相似文献   

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