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1.
小麦染色体的显微激光分离   总被引:18,自引:0,他引:18  
马有志  钱红 《遗传学报》1999,26(1):43-48
探讨了应用氩离子激光进行植物染色体显微激光切割,分离的可行性,应用该技术对普通小麦的体细胞及特定染色体(1B染色体)实施切割,分离,并且以分离到的单细胞核或单条染色体为模板进行了PCR DNA扩增。该技术比玻璃针切割分离染色体技术,具有操作方便,容易掌握,且可对整个细胞核进行分离等优点,有利于促进染色体显微操作技术的普及应用。同时,探讨了染色体显微操作技术在细胞遗传学及分子生物学研究领域的应用前景  相似文献   

2.
染色体显微操作技术及其应用何聪芬马有志辛志勇(中国农业科学院作物育种栽培研究所北京100081)染色体显微操作技术起始于80年代初,是一项特异性基因克隆技术[1],其优点是能够根据研究者的需要分离任意一条染色体或特定染色体片段,快速高效地建立相应的DNA文库。迄今已开发出三种染色体或染色体片段的分离技术,即流式细胞分类器法,微细玻璃针切割法和激光显微切割法[2],本文将综述这三种方法的原理...  相似文献   

3.
染色体微切割,微分离与微克隆技术研究进展   总被引:6,自引:0,他引:6  
本文详细介绍了染色体微切割、微分离与微克隆技术在动物、人类及植物中的创立与发展,评述了不同染色体微切割、微分离与微克隆方法的优缺点,总结了这项技术在遗传学研究中的应用,提出了管项技术在植物分子遗传学研究中新方向。  相似文献   

4.
本文详细介绍了染色体微切割、微分离与微克隆技术在动物、人类及植物中的创立与发展,评述了不同染色体微切割、微分离与微克隆方法的优缺点,总结了这项技术在遗传学研究中的应用,提出了利用这项技术在植物分子遗传学研究中的新方向。  相似文献   

5.
染色体微切割和微克隆已成为复杂基因组研究的有效途径,但是操作过程中的核外DNA的污染一直是令人担心的问题.通过研究植物染色体微切割(微分离)和微切割的染色体DNA 扩增过程中细胞质DNA的污染问题,表明目前常用的植物染色体微切割过程中,细胞质DNA的污染几乎难以避免,并提出了一个改进的降低细胞质DNA污染的方法,对如何控制细胞质DNA的污染进行了详细的讨论.  相似文献   

6.
染色体微切割和微克隆已成为复杂基因组研究的有效途径。但是操作过程中的核外DNA的污染一直是令人担心的问题,通过研究植物染色体微切割(微分离)和微切割的染色体DNA扩增过程中细胞质DNA的污染问题,表明目前常用的植物染色体微切割过程中,细胞质DNA的污染几乎难以避免,并提出了一个改进的降低细胞质DNA污染的方法。对如何控制细胞质DNA的污染进行了详细的讨论。  相似文献   

7.
用人染色体14q24.3区带探针池直接分离表达顺序   总被引:4,自引:1,他引:3  
张民  余龙 《实验生物学报》1997,30(3):241-246
本文报道了从显微切割的人染色体区带直接分离区带专一性表达序列的方法和结果。  相似文献   

8.
活细胞染色体切割(光刀)和光捕捉(光钳)的研究   总被引:1,自引:0,他引:1  
本文报道了光捕捉活细胞染色体的最新实验结果。对PTK_2有丝分裂细胞的染色体先围激光刀切割,再用光钳捕捉使该切割的染色体片断的行为发生改变。光捕捉中期切割的染色体片断有可能使它们整合到同一个子细胞中或丢失在分裂沟中。光捕捉后期切割的染色体可使该切割片断或掺入相反的细胞中或丢失在分裂沟中或回到原有的相应子细胞中。光捕捉操纵染色体去水螈肺上支子细胞中不仅同样有效,还可以在纺缍体的边缘,即纺缍体和间丝笼之间的细胞质清澈区域内用光钳操纵染色体片断移动,旋转。根据细胞和染色体形态和行为,对700-840nm波长范围内的各种波长的光捕捉进行了比较,结果表明,700nm或800-820nm波长操纵的细胞,出现最少的异常细胞百分率,760nm则诱发百分之百的异常细胞率。根据各方面的综合比较,700nm为最佳波长,共次为1060和800nm。760nm损伤细胞最严重,应避免使用。文中并讨论了光捕捉染色体的应用前景。  相似文献   

9.
本文概述了近年来激光微束在染色体微切割和微分离、分子细胞生物学、去除细胞壁、诱导原生质体融合等方面的应用,并对其今后的应用前景作了展望。  相似文献   

10.
14个染色体区特异性探针池的构建   总被引:9,自引:2,他引:7  
夏家辉  杨毅 《遗传学报》1994,21(4):253-256
本文运用人类染色体显微切割和PCR技术,成功地构建了14个染色体区带专特性探针池,并通过染色体原位杂交证明它们均分别来源于相应的被切割的染色体区带。  相似文献   

11.
In the past, ultrastructural studies on chromosome morphology have been carried out using light microscopy, scanning electron microscopy and transmission electron microscopy of whole mounted or sectioned samples. Until now, however, it has not been possible to use all of these techniques on the same specimen. In this paper we describe a specimen preparation method that allows one to study the same chromosomes by transmission, scanning-transmission and scanning electron microscopy, as well as by standard light microscopy and confocal microscopy. Chromosome plates are obtained on a carbon coated glass slide. The carbon film carrying the chromosomes is then transferred to electron microscopy grids, subjected to various treatments and observed. The results show a consistent morphological correspondence between the different methods. This method could be very useful and important because it makes possible a direct comparison between the various techniques used in chromosome studies such as banding, in situ hybridization, fluorescent probe localization, ultrastructural analysis, and colloidal gold cytochemical reactionsAbbreviations CLSM confocal laser scanning microscope - EM electron microscopy - kV kilovolt(s) - LM light microscope - SEM scanning electron microscope - STEM scanning-transmission electron microscope - TEM transmission electron microscope  相似文献   

12.
玉米单染色体的分离和体外扩增   总被引:25,自引:0,他引:25  
胡赞民  党本元 《遗传学报》1998,25(6):545-550
建立了玉米单染色体的分离及体外扩增的方法。取95%乙醇固定后经果胶酶和纤维酶酶解的根尖制备染色体标本,用自制的微细玻璃针在倒置显微镜下挑取目的染色体。染色体DNA经Sau3A酶切后与人工合成的Sau3A连接接头连接,经两次PCR扩增获得足以用于构建单染色体DNA文库的扩增产物。片段大小为0.3~5kb,多数为0.5~3.5kb.与前人研究方法相比,所需底物量少(只需1条染色体),扩增片段大,为植物中小型染色体分离、体外扩增进而进行单染色体DNA文库构建奠定了基础。  相似文献   

13.
V. Guacci  D. B. Kaback 《Genetics》1991,127(3):475-488
Distributive disjunction is defined as the first division meiotic segregation of either nonhomologous chromosomes that lack homologs or homologous chromosomes that have not recombined. To determine if chromosomes from the yeast Saccharomyces cerevisiae were capable of distributive disjunction, we constructed a strain that was monosomic for both chromosome I and chromosome III and analyzed the meiotic segregation of the two monosomic chromosomes. In addition, we bisected chromosome I into two functional chromosome fragments, constructed strains that were monosomic for both chromosome fragments and examined meiotic segregation of the chromosome fragments in the monosomic strains. The two nonhomologous chromosomes or chromosome fragments appeared to segregate from each other in approximately 90% of the asci analyzed, indicating that yeast chromosomes were capable of distributive disjunction. We also examined the ability of a small nonhomologous centromere containing plasmid to participate in distributive disjunction with the two nonhomologous monosomic chromosomes. The plasmid appeared to efficiently participate with the two full length chromosomes suggesting that distributive disjunction in yeast is not dependent on chromosome size. Thus, distributive disjunction in S. cerevisiae appears to be different from Drosophila melanogaster where a different sized chromosome is excluded from distributive disjunction when two similar size nonhomologous chromosomes are present.  相似文献   

14.
Isolation of giant DNA fragments from flow-sorted human chromosomes   总被引:1,自引:0,他引:1  
We have established a method using a conventional cell sorter equipped with a single argon laser to sort intact human chromosomes that can be used as a source for the production of giant DNA fragments. Various improvements were made to both the equipment and sorting method to enhance the sorting resolution and avoid destruction of chromosomal DNA. Using this improved method chromosomes 21 and 22 were sorted from the B-lymphoblastoid line GM00130B, digested with the rare cutting restriction endonuclease NotI, and analyzed by pulsed field gel electrophoresis followed by Southern hybridization using the Alu repetitive sequence as a probe. More than 25 discrete NotI giant DNA fragments ranging from 50 kb to longer than 2.5 Mb were separated and the size distribution pattern was unique for each chromosome, indicating successful sorting of intact chromosomes. The cumulative size of these Alu-positive NotI DNA fragments were 22.7 Mb and 25.5 Mb for chromosomes 21 and 22, respectively. These values are 47% and 49% of the estimated size of chromosomes 21 (48 Mb) and 22 (52 Mb).  相似文献   

15.
A physical map of the chromosome of the extremely thermophilic eubacterium Thermus thermophilus HB8 has been constructed by using pulsed-field gel electrophoresis techniques. A total of 26 cleavage sites for the rarely cutting restriction endonucleases HpaI, MunI, and NdeI were located on the genome. On the basis of the sizes of the restriction fragments generated, the genome size was estimated to be 1.74 Mbp, which is significantly smaller than the chromosomes of Escherichia coli and other mesophiles. Partial digestion experiments revealed the order of the six HpaI bands on the chromosome. Hybridization of isolated restriction fragments to pulsed-field gel-separated restriction digestions confirmed the deduced order of the HpaI fragments and allowed ordering and alignment of the NdeI and MunI fragments. In addition, 16 genes or gene clusters cloned from several different Thermus strains were located on the T. thermophilus HB8 chromosomal map by hybridization of gene probes to pulsed-field gel-resolved restriction digestions.  相似文献   

16.
Giemsa-stained chromosomes as prepared for light microscopy, and including G-banded, C-banded, and FPG-stained chromosomes, were examined by scanning electron microscopy. Although suitable for light microscopy, these chromosomes were too flat for a close examination of their fine structure by scanning electron microscopy. The surface of Giemsa-positive regions was rough and bright, whereas that of unstained or poorly stained regions was smoother and less bright. Giemsa-staining, therefore, seems to produce the bulkiness of the chromosomes. On topographical examination by scanning electron microscopy, the transparent chromosomes as observed with the light microscope proved to be footprints. Stereographical examinations of surface-spread chromosomes showed that minimally stretched chromosomes were composed of a mass of nodular and twisted looping fibers with an average diameter of about 300 Å. The substructure of these chromosome fibers was not determined. The kinetochore region was discernible as a constriction in the mass of the chromosome fibers, and was distinguishable from gaps by the presence of several chromosome fibers parallel to the axis of the chromatid. The organization of the chromosome fibers, however, was disordered rather than regular.  相似文献   

17.
A method of chromosome spreading on microscopic slides was modified for electron microscopy of metaphase chromosomes in Drosophila tissues. The slides covered with an electron transparent film were plasmochemically modified to make them hydrophilic. A piece of fixed tissue was macerated in 60% propionic acid before spreading chromosomes over the slide. The parts of preparation selected under light microscope for electron microscopic examination were cut and peeled of the slide to the top of a water drop. It was shown that the resolution of chromosomal structures was significantly higher than seen under optical microscope, but lower than in serial sections.  相似文献   

18.
M I Mosevitski? 《Genetika》1978,14(7):1127-1145
Three basic versions for the formation of circularly permuted and terminally redundant chromosomes with rings, concatemers, or fragments as replicative intermediates were considered. Experimental results show that the chromosome of T-even phage can turn into 4-6 large fragments soon after it penetrates inside the Escherichia coli cell. The fragments are capable for autonomous replication and contribute their material to progeny phage chromosomes. These results confirm the suggestion that circularly permuted and terminally redundant chromosomes of T-even phages are made of fragments. A theoretical analysis of different modes of parental chromosome fragments formation, autonomous replication and ordered association was carried out. In particular, it was emphasized that at a low multiplicity of infection the reassociation of fragments by means of recombination can be accomplished only if breaks in complementary strands of the parental chromosome were made with a shift for about 3000 nucleotides. Complexity is a feature of linear chromosomes that ensures their reproduction without defects at the ends.  相似文献   

19.
Radiobiological effects of a low-energy ion beam on wheat   总被引:14,自引:0,他引:14  
The radiobiological effects of a low-energy nitrogen ion (N+) beam on wheat were studied, particularly with regard to the induction of chromosome aberrations. The results demonstrated that the three test varieties showed different sensitivities to ion implantation, and a higher dose of ion implantation had a marked effect on the germination and survival rate of the seeds exposed. The germination rate and survival rate curve basically followed a similar trend in the same variety. Cytological analysis indicated that ion beams were effective in producing chromosome aberrations. The frequencies of mitotic or meiotic cells with chromosome aberrations increased linearly with increasing doses. The aberration types included, for example, acentric fragments, chromosome deletions, lagging chromosomes, chromosome bridges and micronuclei. In the root tip cells, aberrations chiefly consisted of acentric fragments and deletions. Chromosome bridges and lagging chromosomes were the main aberration phenomena observed in the pollen mother cells. The highest frequencies of root tip cells and pollen mother cells with chromosome aberrations were 15.2% and 39.8%, respectively. Changes in morphology and mutant were also observed in the plants derived from exposed seeds. Received: 10 April 2000 / Accepted: 10 October 2000  相似文献   

20.
The same C-banded human polymorphic chromosomes were observed in the light microscope (LM) and then in the scanning electron microscope (SEM) to investigate the structural changes produced by the C-banding technique. C-banded regions, which stained positively in LM, were highly condensed with tightly packed chromatin fibres, resembling non-banded chromosomes. In striking contrast, adjacent non-C-banded regions were represented by loosely arranged fibres, resembling G-banded chromosomes. The significance of these observations in relation to current theories on the effects of C-banding on chromosome structure is discussed.  相似文献   

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