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1.
原位杂交技术在植物遗传育种上的应用   总被引:4,自引:0,他引:4  
本文在简要介绍原位杂交技术的基础之上 ,重点介绍了该技术在植物遗传育种领域 ,即在 (1 )异源染色质及染色体畸变检测 ;(2 )植物基因工程及基因表达研究 ;(3)构建植物基因物理图谱 ;(4)染色体RNA研究等方面的应用现状 ,并对原位杂交技术在提高检出率 ,与染色体显带技术结合 ,PCR 原位杂交等方面提了一些见解。  相似文献   

2.
原位杂交技术 ( in situ hybridization,ISH)是基因定位的主要技术之一。近来 ,随着植物细胞染色体制片技术的发展 ,以及酶联放大检测系统的采用 ,在植物中已有低拷贝和单拷贝甚至小于 1 kb的 DNA序列定位的成功报道 [1 ,2 ]。染色体原位杂交技术不仅可以用于基因的物理作图 ,而且可以用来对转基因植物中的外源基因进行染色体定位 [3 5] 。研究表明 ,外源目的基因在转基因植物中的表达与整合位点有关 [6] 。因而 ,进行外源基因在转基因植物染色体上的定位以及研究外源基因的整合位点与表达之间的关系 ,对于开发和利用转基因植物具有重要…  相似文献   

3.
王燕  陈清  陈涛  张静  汤浩茹  王小蓉 《西北植物学报》2017,37(10):2087-2096
基因组原位杂交(GISH)技术可以鉴定植物多倍体物种起源、杂种亲本染色体来源和组成,分析栽培种与其近缘野生种的亲缘关系,研究减数分裂染色体行为等。基因组原位杂交包括多色基因组原位杂交、比较基因组原位杂交和自身基因组原位杂交等。基因组原位杂交技术的关键步骤是染色体制片、探针制备及长度优化、探针与封阻的浓度比例和杂交后洗脱强度。该文对近年来国内外有关基因组原位杂交技术的发展及其在园艺植物基因组研究中的应用现状进行了综述,并指出随着多种园艺植物全基因组的测定,未来应从基因组信息中寻找更多的染色体特异性标记,结合荧光显带及荧光原位杂交技术,为深入研究园艺植物的起源以及遗传关系鉴定等提供技术支持。  相似文献   

4.
荧光原位杂交是在分子水平上检测外源染色质的一种有效方法。其探针主要有染色体重复序列、总基因组DNA、寡单拷贝序列和染色体涂色集中等,该技术在研究植物细胞遗传学、基因扩增、基因作图及植物进化和亲缘关系的鉴定上已广泛应用。简要概述了荧光原位杂交技术在植物细胞遗传学和绘制基因图谱中的应用现状与展望。  相似文献   

5.
多倍化是植物物种形成与多样化的重要原动力。研究植物特别是一些重要经济作物和园艺植物多倍体的起源与进化,不仅对于揭示多倍体形成过程中性状变异的分子机制具有重要意义,而且可为植物遗传资源的保护与利用提供理论和技术支持。作为连接基因组序列片段到染色体组的桥梁,荧光原位杂交技术长期被广泛用来研究多倍体形成与进化过程中相关特异基因或序列的表达定位、外源染色体检测和鉴定、基因组结构变异等科学问题。因此,在简单介绍荧光原位杂交技术发展历史和植物多倍体主要类型的基础上,主要总结了荧光原位杂交技术在植物多倍体起源与进化相关研究上的应用。  相似文献   

6.
原位杂交技术在稻属研究中的应用   总被引:14,自引:0,他引:14  
在文献综述的基础上,对原位杂交技术在稻属的应用进行了介绍,主要包括3个方面:(1)特定 DNA序列的定位;(2)构建染色体的物理图谱及其与遗传图谱之间的关系;(3)稻属基因组间关系的研究。  相似文献   

7.
细菌人工染色体荧光原位杂交(BAC-FISH)是将包含不同特性的BAC克隆直接定位到染色体上的技术,其在植物基因组学和分子细胞遗传学研究中具有不可替代的作用。综述其在各种植物染色体鉴定和核型分析、图谱构建、植物起源与进化分析、基因定位以及FISH的分辨率等植物基因组学研究的应用进展。  相似文献   

8.
染色体原位杂交技术作为植物分子细胞遗传学研究的重要手段被广泛地应用于基因定位、染色体结构变异、物种的起源、进化和亲缘关系分析,物理图谱的构建,转基因植物的鉴定等多个方面。在植物显微技术实验中,以研究生的科研选题与兴趣为主导选材进行石蜡切片、显微摄影直至获得照片;同时合理安排木材切片、压片技术、花粉在柱头上萌发和花粉管伸长、染色体原位杂交技术等多个其他实验,有的放矢、因人施教能够激发学生自主学习的兴趣,收到良好的教学效果。  相似文献   

9.
植物染色体原位杂交技术及其在稻属研究中的应用   总被引:3,自引:0,他引:3  
本文介绍了植物染色体原位杂交技术,以及该技术在稻属特定DNA序列定位、基因组间关系、外源染色体鉴定等研究中的应用.  相似文献   

10.
BAC-FISH在植物基因组研究中的应用   总被引:18,自引:0,他引:18  
细菌人工染色体与荧光原位杂交合成技术(BAC-FISH)是90年代开始发展起来的一种新的定位技术.由于该技术较常规荧光原位杂交(FISH)技术的信号检出率高得多,近年来在植物基因组研究中得到了越来越多的应用.运用该技术已将一些重要的功能基因定位到相应植物染色体上.  相似文献   

11.
J Jiang  B S Gill 《Génome》1994,37(5):717-725
Nonisotopic in situ hybridization (ISH) was introduced in plants in 1985. Since then the technique has been widely used in various areas of plant genome mapping. ISH has become a routine method for physical mapping of repetitive DNA sequences and multicopy gene families. ISH patterns on somatic metaphase chromosomes using tandemly repeated sequences provide excellent physical markers for chromosome identification. Detection of low or single copy sequences were also reported. Genomic in situ hybridization (GISH) was successfully used to analyze the chromosome structure and evolution of allopolyploid species. GISH also provides a powerful technique for monitoring chromatin introgession during interspecific hybridization. A sequential chromosome banding and ISH technique was developed. The sequential technique is very useful for more precise and efficient mapping as well as cytogenetic determination of genomic affinities of individual chromosomes in allopolyploid species. A critical review is made on the present resolution of the ISH technique and the future outlook of ISH research is discussed.  相似文献   

12.
利用高灵敏的TSA-FISH在玉米中定位bz1、bz2基因(英文)   总被引:1,自引:0,他引:1  
植物中 ,程序性细胞死亡 (PCD)发生在植物生殖和发育的许多方面 ,已有的研究表明 ,在玉米种子的发育过程中 ,胚乳组织经历了程序性细胞死亡的过程。bz1 (bronze)和bz2是与种子的糊粉层发育相关的花青素生物合成基因 ,在玉米基因组中 ,bz1基因所在区域是重组热点 ,bz2与类黄酮的酰化、糖基化、转运、沉积等有关 ,基因的物理定位有利于基因的分离和克隆。TSA FISH (Tyramidesignalamplificationfluorescenceinsituhybridization)是一种新颖的高灵敏度的荧光原位杂交技术 ,它的主要反应原理是辣根过氧化物酶催化过氧化氢和标记的酪胺分子 (tyramide)的苯环部分反应 ,使荧光标记的酪胺分子在直接带有或间接带有HRP报告分子的探针周围沉积 ,信号因此得以极大的放大 ,从而大大提高了荧光原位杂交技术的灵敏度 ,90年代中期开始引入动物和人类组织化学和细胞遗传学研究中 ,2 0 0 1年才应用于植物细胞遗传学的研究。利用这一技术 ,我们将bz1基因定位于玉米的第 9染色体的短臂和第 1染色体的长臂上 ,其信号点距着丝粒的百分距离分别为 40 .2 ,75 .4;bz2基因定位于玉米的第 1染色体的长臂和第 5染色体的短臂上 ,其信号点距着丝粒的百分距离分别为2 1 .6,1 5 .3。本文讨论了TSA FISH技术在植物中小的、低拷贝的DNA序  相似文献   

13.
Z6/陕7859胚培养再生植株的细胞遗传学研究与易位系选育   总被引:6,自引:0,他引:6  
林志珊  钱幼婷 《遗传学报》1999,26(4):377-383
二体附加系Z6携带抗大麦黄矮病毒病基因,为了将其抗性导入小麦,将Z6与普通小麦陕7859杂交,杂种F1经幼胚培养诱导形成再生植株,对再生植株及后代进行抗性鉴定,农艺性状考察及对SC2部分抗病植株花粉母细胞减数分裂期染色体行为进行了观察。结果表明,(1)SC2不同单株间存在染色体数目,结构的变异。(2)同一再生植株后代的不同单株,染色体数目可能相同,但染色体组成及减数分裂期行为可心不同,致使后代抗性  相似文献   

14.
A simple procedure, which combines a chromosome preparation technique with an in situ labelling technique modified from fluorescence in situ hybridization (FISH), has been developed for in situ detection of plant programmed cell death (PCD) at the single-cell level. After exposure of chromosomes and nuclei on slides by enzymolysis, Klenow or TdT was used to incorporate Bio-dUTP or fluorescein-dUTP at sites of DNA breaks. After Klenow-mediated labelling, the signals were amplified by a cascade of antigen-antibody reaction according to the detection system of FISH. This method enables in situ detection of plant PCD in vivo morphologically and biochemically at the chromosome, nuclear and DNA levels without cell culture and histological sectioning. This technique permits labelling of DNA breaks with high sensitivity due to increased chromosome and nucleus exposure to the labelling solutions, as well as due to the immunological amplification of the signals. Moreover, the changes in the cells were easier to be observed because the spatial obstacle of the cell wall and its autofluorescence were eliminated. It is potentially useful for in situ detection of PCD in plant root meristematic cells triggered by various environmental abiotic factors. It is proposed that the root tip is a versatile in vivo system for studying PCD induced by environmental abiotic factors.  相似文献   

15.
Fragments of the natural rat ceruloplasmin (Cp) gene and cDNA copies of rat Cp and transferring (Tf) mRNAs highly labelled by nick translation with 125I-dCTP were used as specific probes for assignment of these genes to the metaphase chromosomes of rat, mouse and man by in situ hybridization. Both Cp and Tf genes were found to be syntenic in rodents, occupying with high probability the regions 9D and 9F1–3 in mice and 7q11–13 and 7q31–34 in rats respectively. The significant increase in silver grain count over chromosome 15 in rats after hybridization with both the Cp and Tf probes suggests the presence of a related pseudogene cluster on this particular chromosome and thus favours its partial homeology to chromosome 7. The localization of silver grains in metaphase chromosome of man indicates subregional assignment of the Tf gene to 3q21. Use of the rat Cp DNA probe does not indicate synteny of the Cp and Tf genes in man and suggests the existence of a related DNA sequence in 15q11–13. The potential and limitations of the in situ hybridization technique with heterologous DNA probes for gene mapping in mammalian species are discussed.  相似文献   

16.
Sequential chromosome banding and in situ hybridization analysis.   总被引:28,自引:0,他引:28  
J Jiang  B S Gill 《Génome》1993,36(4):792-795
Different combinations of chromosome N- or C-banding with in situ hybridization (ISH) or genomic in situ hybridization (GISH) were sequentially performed on metaphase chromosomes of wheat. A modified N-banding-ISH/GISH sequential procedure gave best results. Similarly, a modified C-banding - ISH/GISH procedure also gave satisfactory results. The variation of the hot acid treatment in the standard chromosome N- or C-banding procedures was the major factor affecting the resolution of the subsequent ISH and GISH. By the sequential chromosome banding - ISH/GISH analysis, multicopy DNA sequences and the breakpoints of wheat-alien translocations were directly allocated to specific chromosomes of wheat. The sequential chromosome banding- ISH/GISH technique should be widely applicable in genome mapping, especially in cytogenetic and molecular mapping of heterochromatic and euchromatic regions of plant and animal chromosomes.  相似文献   

17.
J Xu  E D Earle 《Génome》1994,37(6):1062-1065
We describe a direct and sensitive fluorescence in situ hybridization protocol for plant chromosomes. We labelled 45S rDNA with fluorescein-12-dUTP and hybridized to somatic chromosomes of four tomato genotypes. This technique does not require posthybridization immunocytochemical amplifications. The improved signal sensitivity with this technique allowed identification of new rDNA loci on three pairs of chromosomes, in addition to the previously known locus on chromosome 2. We discuss favorable features of direct fluorescence in situ hybridization for chromosomes fixed on a slide and chromosomes or cells in suspension.  相似文献   

18.
The porcine gene for luteinizing hormone/choriogonadotropin receptor (LHCGR) was localized to chromosome 3q2.2----q2.3 using radioactive and nonradioactive in situ hybridization. A computer-assisted image-analysis system was developed which facilitated detection of the position of silver grains and fluorescent spots on the chromosomes after in situ hybridization. Compared with autoradiographic visualization, the nonisotopic procedure proved to be more rapid, precise, and highly specific; however, nonradiographic in situ hybridization was much less efficient than the autoradiographic technique for the detection of unique DNA sequences with small probes. From these results and published gene-mapping data, it was concluded that the synteny between LHCGR and MDH1 observed in man is conserved in the pig genome.  相似文献   

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