chromosome banding

美 [ˈkroʊməsoʊm ˈbændɪŋ]英 [ˈkrəʊməsəʊm ˈbændɪŋ]
  • 网络染色体分带;染色体显带;染色体带型;染色体显带技术;显带
chromosome bandingchromosome banding
  1. Some ways of application of chromosome banding techniques on the plant chromosomal Engineering

    染色体分带技术在植物染色体工程中应用的某些途径

  2. The somatic chromosome banding pattern among the normal Chinese

    正常人体细胞的染色体分带

  3. Chromosome banding ( kinds and mechanism ) . ⅳ .

    染色体分带或显带(分带的种类和机制)。

  4. A novel gene mapping method for simultaneous in-situ hybridization and chromosome banding

    同时进行原位杂交及染色体分带的基因定位新方法

  5. The comprehensive application of chromosome banding and aneuploid technique in wheat cytogenetics research

    染色体分带和非整倍体技术在小麦细胞遗传研究中的综合运用

  6. Some Advances on the Studies of Chromosome Banding Mechanisms

    染色体显带机制研究的若干进展

  7. Studies on the Chromosome Banding Technique of Fine Chewing Cane in Fujian Province

    福建省地方优良果蔗染色体分带的研究

  8. Preliminary Investigation on Mechanism of Chromosome Banding

    染色体显带原理的初步探讨

  9. A new method for simultaneous in-situ hybridization and chromosome banding for gene mapping was reported .

    作者报道一种同时进行染色休原位杂交及染色休分带的基因定位新方法。

  10. Chromosome banding patterns are correlated with unique patterns of histone modifications .

    染色体带型和组蛋白修饰的特有模式相关。

  11. Electron microscopical observation of chromosome banding and sister chromatid differential staining

    染色体显带和姐妹染色单体色差的电镜研究

  12. Fluorescence in situ hybridization ( FISH ) is a supplement and development of chromosome banding technique .

    荧光原位杂交(FISH)是染色体显带技术的补充和发展。

  13. Analysis of the Chromosome Banding with Restriction Endonucleases

    用限制性内切酶诱导染色体显带的分析

  14. The High Temperature Affect on Mitosis Activity and Chromosome Banding of the Young Cotyledon in Vicia faba

    高温对蚕豆幼嫩子叶细胞有丝分裂活性和染色体分带的影响

  15. The application of cell synchronization to chromosome banding of fish and the tentative karyotype analysis of Ctenopharyngodon idellus

    同步化技术在草鱼染色体显带中的应用及草鱼核型的初步分析

  16. Study on the Methods of the High - Resolution Chromosome Banding [ Which Was Cut by the Restriction Enzyme ] in Grass Carp

    草鱼染色体高分辨显带的研究

  17. A karyotype analysis of blood lymphocytes in two males was carried out with G chromosome banding technique after irradiating the blood .

    取两名男性血液进行照射后,用G染色体显带技术对血淋巴细胞做了核型分析。

  18. Studies of chromosome banding with Giemsa in Vicia faba and Allium cepa

    蚕豆、洋葱染色体Giemsa显带的研究

  19. Chromosome banding studies were carried out on 75 couples with spontaneous abortions , among which three abnormal karyotypes were found first in the world .

    本文采用G显带技术对75对自然流产的夫妇进行了染色体分析,发现6例染色体异常核型,发生率为4%。

  20. Chromosome Banding in Fishes ⅰ . An Improved BrdU-Hoechst-Giemsa Method for Revealing DNA-Replication Bands in Fish Chromosomes

    鱼类染色体显带的研究Ⅰ.鱼类染色体复制带显带的BrdU-Hoechst-Giemsa方法

  21. The result shows that the chromosome banding technique is more sensitive than the common chromosome aberration analysis for detecting complicated chromosome aberration , increasing the positive rate .

    结果表明,染色体分带技术比一般分析方法更为敏感,并且能提高阳性检出率。

  22. In this study , various chromosome banding techniques were used to analyze the karyotype of LTK-cells and normal mouse cells in chromosome number as well as chromosome morphology .

    本实验对(LTK~-)细胞的核型进行了分析(C、G、Ag显带),结果表明LTK~-细胞染色体的数量与形态都与正常小鼠细胞有很大差别。

  23. After the detection of hybridization signals with antibodies , chromosome banding was performed with chromomycin A3 and methylgreen ( R banding ) .

    杂交信号经抗体检测放大后,染色体依次用色霉素A3以及甲绿处理进行荧光反带分带(R带)。

  24. Using the improved method of amniotic fluid cultivation and various techniques of chromosome banding , the rate of success was greatly increased , approaching 99.5 % , and the duration of culturing much shortened , averaging 7.6d .

    采用改良的羊水细胞培养方法,各种染色体显带技术,羊水细胞培养成功率大大提高,成功率为99.5%。进一步缩短了培养时间,平均7.6d。

  25. Conclusion : Chromosome banding by EDTA method can meet the routine need for chromosomes discrimination with better constancy and reproducibility , but it is much needed to further improve its effect on enhancing the contrast of dark and light bands of chromosome .

    结论EDTA法显带染色体能基本满足辩识的要求,稳定性和可重复性较好,但在方法学上有进一步探索的必要,以提高染色体深浅带带纹反差。

  26. Chinese fir ( Cunninghamia lanceolata ), one of the local and economically important tree species of China , has been studied in cytology and molecular cytogenetics levels by using fluorescence dyeing , chromosome banding , chromosome microdissection and microcloning and in suit hybridization ( ISH ) .

    本研究运用荧光染色、染色体分带、染色体微切割、微分离微扩增和原位杂交等技术手段,对我国重要的特有的用材树种杉木,进行细胞学和分子细胞遗传学研究。

  27. Method Karyotypes of 706 donor were analyzed by chromosome G banding .

    方法应用染色体G显带,对706例Donor的染色体进行分析。

  28. Study on Chromosome C banding in Leymus racemosus and Its Related Species

    大赖草及近缘种染色体C-分带的研究

  29. Study on chromosome Fluorescent Banding Pattern in Pinus massoniana

    马尾松染色体荧光带型的研究

  30. A Study on Chromosome Fluorescent Banding Pattern in Pinus tabulaeformis and P. Yunnanensis

    油松及云南松染色体的荧光带型