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1.
S-M Chung  J E Staub  J-F Chen 《Génome》2006,49(3):219-229
To investigate phylogenetic relationships in the genus Cucumis, 9 consensus chloroplast simple sequence repeat (ccSSR) primer pairs (ccSSR3, 9, 11, 13, 14, 17, 20, 21, and 23) were employed for DNA fragment length variation and 5 amplified fragments, ccSSR4, 12, 13, 19, and 20, were sequenced using total DNA from 13 accessions representing 7 African Cucumis species (x = 12), 3 Cucumis melo L. (x = 12) accessions, 2 Cucumis sativus L. (x = 7) accessions, and 1 Cucumis hystrix Chakr. (x = 12) accession. A Citrullus lanatus (Thunb.) Matsum. & Nakai (x = 11) accession was used as an outgroup. While fragment length analysis revealed the existence of 3 major species clusters (i.e., a group of African Cucumis species, a group composed of C. melo accessions, and a group containing C. sativus and C. hystrix species), sequence variation analysis identified 2 major species clusters (i.e., a group of African Cucumis species and a group composed of C. melo, C. sativus, and C. hystrix species). Comparative analysis using nuclear DNA (previous studies) and cpDNA sequence substitution data resulted in the placement of C. melo and C. sativus in different cluster groupings. Thus, both nuclear and cytoplasmic DNA should be employed and compared when a putative progenitor or specimens of an ancestral Cucumis species lineage is investigated. In addition, C. ficifolius (2x) and C. aculeatus (4x) of the African Cucumis species clustered together in this study. This result does not agree with reported isozyme analyses, but does agree with previously characterized chromosome homologies between these 2 species. Although African Cucumis species and C. hystrix do not share a close relationship, genetic affinities between C. sativus and C. hystrix are considerable. Combined evidence from previously published studies and data presented herein lend support to the hypothesis that C. hystrix is either a progenitor species of C. sativus or that they at least share a common ancestral lineage.  相似文献   

2.
栽培黄瓜与野黄瓜正反杂交的几种同工酶分析   总被引:6,自引:0,他引:6  
运用天冬氨酸转氨酶(AAT)、苹果酸脱氢酶(MDH)以及酯酶(EST)3种同工酶对栽培黄瓜"长春密刺"Cucumis sativus cv. Changchunmici (2n=14)与野黄瓜C. hystrix (2n=24)的正反交种间杂种F1 (正交: 野黄瓜×栽培黄瓜"长春密刺", 反交: 栽培黄瓜"长春密刺"×野黄瓜)及其双亲进行鉴定和比较研究。结果表明: 正反交种间杂种F1主要表现为双亲酶带的互补, 同时还形成4个杂合带(Aat-1-94、Aat-2-104、Mdh-3-102和Est-5-102)。上述3种酶均能准确地鉴定种间杂种的真实性。研究还发现正反交杂种F1的AAT和MDH的酶谱分别在酶带数目和强弱上表现出一定的差异, 进一步证实了野黄瓜与栽培黄瓜杂交存在正反交差异。  相似文献   

3.
采用SSR和RAPD标记研究黄瓜属(葫芦科)的系统发育关系   总被引:21,自引:0,他引:21  
野黄瓜Cucumis hystrix(2n=24)是在亚洲发现的第一个染色体基数为12的黄瓜属物种。这一发现对现行的以染色体基数和地理分布为基础的黄瓜属分类系统提出了质疑。采用SSR和RAPD两种分子标记对黄瓜属22份不同类型材料的亲缘关系进行了研究。结果表明,野黄瓜C.hystrix与黄瓜C.sativus var.sativus(2n=14)间的遗传距离(SSR:0.59,RAPD:0.57)小于其与甜瓜C.melo var.melo(2n=24)间的距离(SSR:0.87,RAPD:0.70)。SS  相似文献   

4.
The mechanism of production of the various aneuploid progenies was clarified in the asynaptic amphidiploid plants (2n=34+4f+2F, AABB) ofScilla scilloides. Its asynaptic nature and chromosomal stickiness lead to the unequal segregation at anaphase I (AI) in PMC's. The observed values in 18 segregation patterns, 17:17 to 0: 34, were different from the expected values estimated from random segregation of chromosomes. Nevertheless, the preferential transmission of special chromosomes among genomes A (x=8=a1−a8) and B (x=9=b1−b9) had not occurred. As the result of unequal segregation, the pollen grains with various chromosome numbers were observed. Almost all of the 200 pollen grains contained chromosome numbers more than 17 (range 8 to 34). The observed values of each chromosome number were roughly similar to the expected values of containing the complete set of genome A or B in the random distribution without preferential segregation of chromosomes at AI. The difference between the index of polien mitosis and the pollen fertility was significant in the Wilcoxon matched-pairs signed rank test and suggested the selection for some genomically unbalanced pollen grains during maturation. Consequently, viable pollen grains with various chromosome constitutions are a few (mean pollen fertility of 5.8%) but might produce many aneuploids by self- and cross-pollination.  相似文献   

5.
在甜瓜属野生种Cucumis hystrix Chakr. 和栽培黄瓜之间的种间杂交取得成功的基础上,简要回顾了甜瓜属植物种质资源和系统学的研究情况,然后从甜瓜属植物种间杂交的概况、种间杂交的障碍及其解决途径等三个方面,回顾和讨论了甜瓜属植物的种间杂交的研究进展,并对进一步通过种间杂交研究利用甜瓜属野生植物资源的前景进行了展望。  相似文献   

6.
卢宝荣  杨俊良   《广西植物》1991,(3):231-239
本文对缘毛鹅观草(Roegneria pendulina)、鹅观草(R.tsukushiensis var.transiens)及其人工合成杂种F_1、双二倍体进行了细胞学,育性等的分析和研究。结果表明双亲的减数分裂,花粉育性和结实性均正常,杂种F_1的减数分裂不规则且完全不育;当代双二倍体的染色体数目为70,其减数分裂构型为:6.04 Ⅰ+26.21 Ⅱ+1.52 Ⅲ+1.59 Ⅳ+0.02 Ⅴ:第二代双二倍体的染色体数目为70,个别植株为69,减数分裂构型分别为:4.16 Ⅰ+27.33 Ⅱ+0.50 Ⅲ+2.16 Ⅳ和4.79 Ⅰ26.26 Ⅱ+1.13 Ⅲ+2.13 Ⅳ。与期望染色体配对模式相比,双二倍体中二价体出现的频率有明显增大的趋势。在减数分裂AⅠ和AⅡ分别观察到数目不定的落后单价体,大部份的四分体中出现了微核。双二倍体的育性得到了很大程度的恢复,其花粉可染色性及结实率分别为54.4%和64.0%。  相似文献   

7.
为了研究甜瓜属种间杂交线粒体DNA的遗传规律,对甜瓜属人工杂交合成的异源四倍体新种(Cucumis hytivus Chen and Kirkbride.)的S5后代及其杂交母本甜瓜属野生种(Cucumis hystrix Chakr.)和父本栽培种黄瓜‘北京截头’(Cucumis sativus L.)线粒体中apocytochrome b (cob), NADH dehydrogenase subunit 1 (nad 1), NADH dehydrogenase subunit 7(nad 7) 基因序列片断进行了测序与分析。结果显示3个种长度为909 bp cob, 943 bp nad 1和880 bp nad 7基因片断序列中分别存在着相应的1、7和17个多态性核苷酸位点,其中新种与父本‘北京截头’相同而与母本野生种不同的多态性碱基位点分别有1、6和14个,nad 1和nad 7中分别只有1和3个多态性位点与双亲都不相同。该结果表明甜瓜属hystrix譻ativus种间杂交后代线粒体DNA多态性碱基位点主要来源于父本而不是母本,线粒体DNA主要表现为父系遗传。  相似文献   

8.
不同分类群的异源多倍体在二倍化过程中, 正反交序列消除往往表现出不同特征, 暗示了在不同物种中, 核质互作在多倍体进化过程的作用不同。利用13对EcoRI-NN/MseI-NNN选择性引物, 对野黄瓜Cucumis hystrix (2n=24)与栽培黄瓜C. sativus (2n=14)的正反交F1、异源四倍体及二倍体亲本DNA进行AFLP分析。结果表明: 杂交后代基因组的杂合性诱发了F1与异源四倍体广泛的序列消除; 细胞质可能会影响部分亲本序列消除的频率, 但是正反交在序列消除频率上差异不显著, 并且在序列消除时间(均始于F1代)及消除类型上也表现出一致性, 表明核质互作并不是影响序列消除的主要因素; 实验还发现, 正反交不能影响序列的倾向性丢失, 染色体数少的黄瓜条带易发生丢失。  相似文献   

9.
白菜型油菜与蓝花子杂交的初步研究   总被引:6,自引:0,他引:6  
吴沿友  罗鹏   《广西植物》1998,18(1):54-57
通过胚胎培养,成功地获得了白菜型油菜(Brasicacampestris)与蓝花子(RaphanussativusLvarraphanistroidesMakino)的属间杂种。该杂种具有两种类型;一种为大花类型,一种为小花类型。对它们进行花粉母细胞减数分裂的观察结果表明:小花类型为未加倍的杂种MI,存在19个未配对染色体,大花类型为加倍或部分加倍杂种,加倍类型MI,19个二价体排列在赤道板上;部分加倍类型AI,具有10-10-9的染色体组分割现象。大花类型具有可育性;它能够产生很多n=19及n=9、n=10的正常配子。染色体组分割能够产生倍半二倍体,它能用来研究染色体的功能和开展染色体工程。  相似文献   

10.
甜瓜属种间杂交中3种不同倍性资源的微繁   总被引:3,自引:0,他引:3  
以3种不同倍性的甜瓜属种间杂交资源(双二倍体Cucumis hytivus、异源三倍体黄瓜和种间杂种F1)无菌苗的顶芽或腋芽为试材,比较它们再生能力的差异,寻求各自增殖的最适培养基,从而建立其离体繁殖体系.结果表明:倍性越高,增殖能力越小,增殖速度也最小(双二倍体种转接的间隔时间比其它两种材料长1~2周).双二倍体、异源三倍体黄瓜和种间杂种F1的最大繁殖系数分别为4.6、7.1和8.4;相对应的培养基分别为MS 0.05 mg·L-1TDZ、MS 2.2 mg·L-1 6-BA和MS 0.5 mg·L-1 6-BA).3种材料的生根结果基本一致,在1/2MS 0.2 mg·L-1IBA上的生根率均能达84.5%,驯化成活率达90%以上.同一材料的田间性状表现整齐一致,没有发现变异.  相似文献   

11.
Mechanisms of two F1 hybrids (D46A × DTP-4 and D46A × Dminghui63) of autotetraploid rice (2n = 4x = 48) showing extremely high pollen fertility 87.40% and 85.97%, respectively, seed set 82.00% and 79.00%, respectively and extremely high level of heterosis were analyzed cytologically. The chromosome pairing of D46A × DTP-4 and D46A × Dminghui63 was normal at metaphase I(MI), and had almost no I or III, with an average of 0.020I +14.36 II 6.44rod+7.91ring) +0.01III + 4.80 IV + 0.01VIII and 0.06 I + 17.67 II (11.01rod + 6.67ring)] + 0.06 III +3.10IV+0.01VI, respectively. The most frequent chromosome configurations were 10II+7IV and 12II+bIV. The bivalent frequency was less frequent in hybrids than that in restoring parents, and the same results were gained from univalents, trivalent and multivalents. However, the quadrivalent frequency was significantly higher in hybrids than that in restoring parents at MI. The other meiotic phases progressed normally, except for low percentages of PMCs with lagging chromosomes at AI and low percentages of PMCs with micronuclei at telophaseI (TI) and telophaseII (TII). PMCs with lagging chromosomes at AI and PMCs with micronuclei at TI and TII showed negative correlation between pollen fertility and seed set. Above 90% of the PMCs could form normal microspores, which resulted in the production of viable pollen grains, abnormal microspores were observed including penta-fission and hexa-fission. Based on these results we suggest that the two F1 hybrids had better behaviors of chromosome pairing and genetic stability than autotetraploid rice and other autotetraploid plants ever studied.  相似文献   

12.
普通小麦与簇毛麦双二倍体的合成,育性及细胞遗传学研究   总被引:19,自引:3,他引:16  
傅杰  陈漱阳 《遗传学报》1989,16(5):348-356
通过杂种幼胚无性系培养获得大量再生植株F_1,经秋水仙碱处理,合成了普通小麦与簇毛麦属间双二倍体(AABBDDVV)。其形态特征除株高、穗长、小穗数,籽粒大小和育性明显增加,生育期延长外,分别与各自的再生植株F_1相似。双二倍体的体细胞染色体数目变化范围为48—56。花粉母细胞减数分裂中期Ⅰ 2n=28Ⅱ的细胞占56.82%,每个细胞平均有27.10个二价体,1.44个单价体,0.08个三价体,0.03个四价体。经过连续两代单穗单株选择,结实率由15.91%提高到36.52%。  相似文献   

13.
Resynthesized Brassica napus cv. Hanakkori (AACC, 2n?=?38) was produced by cross-hybridization between B. rapa (AA, 2n?=?20) and B. oleracea (CC, 2n?=?18) as a new vegetative crop. Many studies have provided evidences for the instability and close relationship between A and C genome in the resynthesized B. napus cultivars. In fact, seed produced to obtain progeny in Hanakkori had unstable morphological characters and generated many off-type plants. In this study, we investigated the pollen fertility, chromosome number, structure, and behavior linked to various Hanakkori phenotypes to define factors of unstable phenotypic expression in the progeny. Hanakkori phenotypes were categorized into five types. The results of pollen fertility, chromosome number, and fluorescence in situ hybridization analysis for somatic mitosis cells indicated that the off-type plants had lower pollen fertility, aberrant chromosome number, and structures with small chromosome fragments. Observation of chromosomes at meiosis showed that the meiotic division in off-type plants led to appreciably higher abnormalities than in on-type plants. However, polyvalent chromosomes were observed frequently in both on- and off-type plants in diplotene stage of meiosis. We assume that the unstable morphological characters in resynthesized progeny were the result of abnormal division in meiosis. It results as important that the plants of normal phenotype, chromosome structure and minimized abnormal meiosis are selected to stabilize progeny.  相似文献   

14.
Sexual polyploidization has both a theoretical as well as an applied significance. Morphological screening for large pollen grains and shape of pollen produced by the individual, cytological investigation of hybrid progeny, and unbalanced separation of chromosomes at anaphase I in pollen mother cells were used to detect the gametes with somatic chromosome number in Fuchsia. The interspecific hybrids of F. fulgens (sect. Ellobium) × F. magellanica (sect. Quelusia), F. fulgens (sect. Ellobium) × F. splendens (sect. Ellobium), and F. triphylla (sect. Fuchsia) × F. splendens (sect. Ellobium) produced at the University of Auckland, New Zealand, showed both large and normal pollen grains in the same anther indicating the presence of unreduced gametes. Cytological investigation carried out on the hybrid progeny of F. fulgens (diploid, 2n=22, sect. Ellobium) × F. magellanica (tetraploid, 2n=44, sect. Quelusia) and F. triphylla (diploid, sect. Fuchsia) × F. arborescens (diploid, sect. Schufia) revealed unexpected chromosome numbers of 2n=44 and 2n=33, respectively. In general, the hybrids showed low fertility caused by genetically unbalanced gametes resulted from random disjunction of chromosomes at anaphase I. Studies on meiosis together with the presence of different shapes and sizes of pollen grains in Fuchsia proved indirectly that unreduced gametes are the products of first division meiotic nuclear restitution. These unreduced gametes were viable irrespective of pollen shape, their predominance in the hybrids, nuclear DNA amount and species phylogenetic position.  相似文献   

15.
Zhigang Zhao  Ni Ma  Zaiyun Li 《Génome》2007,50(2):226-233
In an earlier study, the progenies of intergeneric hybrids Brassica napus (2n = 38) x Orychophragmus violaceus (2n = 24) were investigated in successive generations (F1-F4) for the cytological phenomenon of parental genome separation during mitotic and meiotic division. In the present study, inbred lines (F5-F8) derived from 1 such hybrid were characterized for morphology, chromosome pairing behaviour, and genome composition. One F5 plant (2n = 31) with slightly yellow petals and 12:19 and 15:16 segregation ratios in its pollen mother cells (PMCs) produced F6 plants with distinct morphological characteristics and wide variations in fertility and chromosome numbers (2n = 25-38). F7 and F8 lines with distinctive morphology and wide ranges in chromsome numbers were established. In PMCs of F7 plants from 4 F6 plants, 0-12 labelled chromosomes from O. violaceus, which predominantly appeared as bivalents, were identified by genomic in situ hybridization. They behaved synchronously with B. napus chromosomes during meiotic division. The results provide molecular cytogenetic evidence of the inclusion of O. violaceus chromosomes in the original hybrids and the cytology in the hybrids documented earlier. They also show that chromosome behaviour was altered and the parental chromosomes became synchronized after successive generations.  相似文献   

16.
34个小麦品种(系)与黑麦进行了杂交,结果表明:亲和性在供试材料间存在明显差异,其中12个小麦品种表现了与中国春相似的亲和性;对34个小麦/黑麦属间杂种(F_1)的回交结实率和开放授粉条件下的自交结实率的统计表明,杂种育性普遍较差,但不同组合间存在明显不同,其回交与自交结实率的变异幅度分别为0—4.50%和0—3.087粒/穗;小麦与黑麦属间杂种(F_1)育性与杂交亲和性间存在明显相关,回交和自交结实率以及能够回交和自交结实组合的出现频率均随亲和性的增加而表现增加的趋势;在小麦品种演化过程中,亲和性与杂种育性均表现降低的趋势;小麦/黑麦属间杂种(F_1)PMC MI染色体配对水平普遍较低,平均交叉结仅为0.359,但组合间存在一定差异,变幅为0—1.3;平均99.936%的杂种(F_1)花粉表现败育,仅有0.064%的杂种(F_1)花粉能被KI—I_2正常染色,杂种(F_1)染色体配对水平与正常染色花粉频率、正常染色花粉频率与自交结实率间存在一定程度的相关性,相关系数分别为0.209和0.205。  相似文献   

17.
We examined the level of postzygotic reproductive isolation in F(1) and F(2) hybrids of reciprocal crosses between the Arabidopsis lyrata subspecies lyrata (North American) and petraea (European). Our main results are: first, the percentage of fertile pollen was significantly reduced in the F(1) and F(2) compared to the parental populations. Second, mean pollen fertility differed markedly between reciprocal crosses: 84% in the F(2) with ssp. lyrata cytoplasm and 61% in the F(2) with ssp. petraea cytoplasm. Third, 17% of the F(2) with ssp. petraea cytoplasm showed male sterility (produced less than 30 pollen grains in our subsample). The hybrids were female fertile. We used QTL mapping to find the genomic regions that determine pollen fertility and that restore cytoplasmic male sterility (CMS). In the F(2) with ssp. lyrata cytoplasm, an epistatic pair of QTLs was detected. In the reciprocal F(2) progeny, four QTLs demonstrated within-population polymorphism for hybrid male sterility. In addition, in the F(2) with ssp. petraea cytoplasm, there was a strong male fertility restorer locus on chromosome 2 where a cluster of CMS restorer gene-related PPR genes have been found in A. lyrata. Our results underline the importance of cytonuclear interactions in understanding genetics of the early stages of speciation.  相似文献   

18.
黄芩的花粉母细胞减数分裂及核型分析   总被引:1,自引:0,他引:1  
采用压片法,对黄芩花粉母细胞减数分裂及核型进行了研究。结果表明:黄芩的大多数花粉母细胞减数分裂中染色体的行为正常,在终变期同源染色体配对后可形成9个二价体,后期Ⅰ染色体以9∶9的方式向细胞两极分离,其减数分裂为同时型;在少数花粉母细胞减数分裂中观察到落后染色体、染色体桥等异常行为;其花粉粒育性为76.49%。黄芩的染色体数目为2n=2X=18,核型公式为K(2n)=2X=18=16m+2 sm,染色体相对长度组成为2n=1 s+4M1+3M2+1L,其核型为"1A"型。  相似文献   

19.
Summary Triploids (2n=3X=60) were obtained from genetic male-sterile (ms1 ms1) soybean [Glycine max (L.) Merr.] plants. Meiosis, pollen fertility, and chromosome number of their progeny were studied. Studies of meiosis in fertile and sterile triploids revealed no distinguishable differences in chromosome associations. Male-sterile plants formed coenocytic microspores characteristic of the ms1 mutant. Restitution of some dyad and tetrad nuclei were observed in male-sterile plants. Chromosomes of the triploids tended to occur in trivalents during diakinesis and metaphase I (MI), but multivalents, bivalents, and univalents also were observed. Average types and frequencies of chromosome associations per cell in diakinesis and MI from 542 pollen mother cells were 0.004 IX + 0.06 VI + 0.002 V + 0.005 IV + 16.99 III + 1.79 II + 5.03 I. Some secondary associations, nonhomologous pairing, and aberrant nucleolar distributions occasionally were observed. Such behavior support the hypothesis of duplicated genomes and the polyploid origin of soybean. Pollen fertility in male-fertile triploid plants (Ms1 ms1 ms1) varied from 57% to 82%, with an average of about 71%. Chromosome numbers of progenies obtained from these fertile triploids varied from 2n=40 to 2n=71, and exhibited a near-random distribution, with the majority (about 60%) being between 56 and 65. Progenies of the fertile triploids gave segregation ratios for the ms1 allele, which confirmed the Ms1 ms1 ms1 genotype.Joint contribution: Agricultural Research Service, U.S. Department of Agriculture, and Journal Paper No. J-11672 of the Iowa Agriculture and Home Economics Experiment Station, Ames, IA 50011, USA, Project 2471  相似文献   

20.
We studied some features of the development of self-fertile 42-chromosome lines on the base of self-pollination progeny of 46-chromosome plants obtained by backcrossing of barley--wheat hybrids Hordeum marinum subsp. gussoneanum Hudson (= H. geniculatum All.) (2n = 28) x Triticum aestivum L. (2n = 42). The stabilization of karyotypes, resulting in 42-chromosome plants of the wheat type was generally completed by generation BC1F10. The plants of all self-pollination progenies, including BC1F10, showed some phenotypic traits characteristic of wild barley. Plants of BC1F10 with the chromosome sets 2n = 42 and 2n = 42 + t were analyzed by RAPD with a set of 115 primers. Fragments of the wild barley genome were detected in RAPD patterns with 19 primers. Cross-hybridization confirmed that these fragments belonged to the wild barley genome. We raised four phenotypically different 42-chromosome lines from grains obtained from plants of generation BC1F10, and these lines proved to be cytogenetically stable and self-fertile when grown in the field.  相似文献   

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