欢迎访问作物学报,今天是

作物学报 ›› 2011, Vol. 37 ›› Issue (10): 1794-1800.doi: 10.3724/SP.J.1006.2011.01794

• 作物遗传育种·种质资源·分子遗传学 • 上一篇    下一篇

以流式核型分析小麦根尖细胞的有丝分裂同步化过程

郭东伟1,张仁和1,李春莲1,陈耀锋1,闵东红1,*,陈明2,李连成2,徐兆师2,马有志2   

  1. 1西北农林科技大学农学院,陕西杨凌 712100;2中国农业科学院作物科学研究所,北京 100081
  • 收稿日期:2011-01-13 修回日期:2011-06-25 出版日期:2011-10-12 网络出版日期:2011-07-28
  • 通讯作者: 闵东红, E-mail: mdh2493@nwsuaf.edu.cn
  • 基金资助:

    本研究由陕西省自然科学基金项目(SJ08-ZD04)资助。

Analyzing Synchronization Process of Mitosis Cells in Wheat Root-tip with Flow Karyotype

GUO Dong-Wei1,ZHANG Ren-He1,LI Chun-Lian1,CHEN Yao-Feng1,MIN Dong-Hong1,*,CHEN Ming2,LI Lian-Cheng2,XU Zhao-Shi2,MA You-Zhi2   

  1. 1 Agronomy College, Northwest A & F University, Yangling 712100, China; 2 Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China
  • Received:2011-01-13 Revised:2011-06-25 Published:2011-10-12 Published online:2011-07-28
  • Contact: 闵东红, E-mail: mdh2493@nwsuaf.edu.cn

摘要: 构建染色体特异文库是简化小麦基因组测序的有效途径,而通过同步化处理提高根尖细胞有丝分裂指数,使根尖细胞中富集高比例的中期染色体是实现染色体分选成功的前提。采用双阻断法用50 µmol L-1羟基脲和100 µmol L-1氟乐灵对普通小麦根尖细胞进行同步化处理,然后用流式核型分析法观测各周期细胞在不同时间点上的比例变化。结果显示,最佳方案为羟基脲处理10 h,恢复7 h,氟乐灵处理4 h。以此方案处理中国春小麦根尖可获得最高的有丝分裂指数,达70.1%。附加冰水处理(0°C)有助于减少染色体碎片和增加流式核型的分辨率,但对富集更多的中期染色体没有效果。

关键词: 小麦, 有丝分裂, 同步化, 流式核型, 分选

Abstract: Genomic sequencing of wheat can be simplified through constructing chromosome specific library. Synchronization of cells is propitious to high mitosis index (MI), which results in the accumulation of metaphase chromosomes and a successful flow sorting. In the present study, we used a double-blocked strategy in the synchronization treatment of wheat (Triticum aestivum L. cv. Chinese Spring) root-tip cells with 50 µmol L-1 hydroxyurea (HU) and 100 µmol L-1 trifluralin. The effects of treatments were evaluated by analyzing the dynamic proportions of cells at different stages of cell cycle. The optimal hours of treatments were 10 h for HU block, 7 h for recovery, and 4 h for trifluralin block. According to this synchronization scheme, the maximum MI was 70.1%. Additional ice water (0°C) depression was helpful for decreasing chromosome debris and rising resolution of the flow karyotype, but had no effect on the accumulation of metaphase chromosomes in root-tip cells.

Key words: Wheat, Mitosis, Synchronization, Flow karyotype, Flow sorting

[1]Gill B S, Appels R, Botha-Oberholster A M, Robin Buell C, Bennetzen J L, Chalhoub B, Chumley F, Dvoák J, Iwanaga M, Keller B, Li W, McCombie W R, Ogihara Y, Quetier F, Sasaki T. A workshop report on wheat genome sequencing: international genome research on wheat consortium. Genetics, 2004, 168: 1087–1096
[2]Vrana J, Kubalakova M, Simkova M, Cihalikovaa J, Lysáka M A,Dolezela J. Flow sorting of mitotic chromosomes in common wheat (Triticum aestivum L.). Genetics, 2000, 156: 2033–2041
[3]Paux E, Sourdille P, Salse J, Saintenac C, Choulet F, Leroy P,Korol A, Michalak M, Kianian S, Spielmeyer W, Lagudah E,Somers D, Kilian A, Alaux M, Vautrin S, Berges H, Eversole K,Appels R, Safar J, Simkova H, Dolezel J, Bernard M, Feuillet C. A physical map of the 1-gigabase bread wheat chromosome 3B.Science, 2008, 322: 101–104
[4]Janda J, Bartos J, Safar J, Kubalakova M, Valarik M, Cihalikova J, Simkova H, Caboche M, Sourdille P, Benard M, Chalhoub B, Dolezel J. Construction of a subgenomic BAC library specific for chromosomes 1D, 4D and 6D of hexaploid wheat. Theor Appl Genet, 2004, 109: 1337–1345
[5]Safar J, Simkova H, Kubalakova M, Cihalikova J, Suchankova P,Bartos J, Dolezel J. Development of chromosome-specific BAC resources for genomics of bread wheat. Cytogenetic & Genome Res, 2010, 129: 211–223
[6]Lee J H, Arumuganathan K, Yen Y, Kaeppler S, Kaeppler H,Baenziger P S. Root tip cell cycle synchronization and metaphase chromosome isolation suitable for flow sorting in common wheat (Triticum aestivum L.). Genome, 1997, 40: 633–638
[7]Dolezel J, Kubalakova M, Paux E, Bartos J, Feuillet C. Chromosome-based genomics in the cereals. Chromosome Res, 2007, 15:51–66 1800 作 物 学 报 第 37 卷
[8]Kubalakova M, Kubalakova P, Suchankova P, Cihalikova J, Bartos J, Lucretti S, Wantanabe N, Kianian J, Dolezel J. Chromosome sorting in tetraploid wheat and its potential for genome analysis. Genetics, 2005, 170: 823–829
[9]Pan W H, Houben A and Schlegel R. Highly effective cell synchronization in plant roots by hydroxyurea and amiprophos-methyl or colchicines. Genome, 1993, 36: 387–390
[10]Suchankova P, Simkova, H, Svensson J T, Hribova E, Condamine P, Bhat P R, Bartos J, Safar J, Close T J, Dole?el J. Production of microgram amounts of DNA from flow-sorted plant chromosomes. Chromosome Res, 2007, 15: 4–5
[11]Clain E, Brulfert A. Hydroxyurea-induced mitotic synchronization in Allium sativum root meristems. Planta, 1980, 150: 26–31
[12]Bouget F V, Moulager M, Corellou F. Circadian regulation of cell division. In: Verma D P S, Hong Z, eds. Cell Division Control in Plants. Verlag Berlin Heideberg: Springer, 2007. pp 3–12
[13]Guo D W, Ma Y Z, Li L C, Chen Y F. Flow sorting of wheat chromosome arms from the ditelosomic 7BL. Plant Mol Biol Rep, 2006, 24: 23–31
[14]Luo M, Ma Y, You F M, Anderson O D, Kopecky D, Simkova H,Safar J, Dole?el J, Gill B, McGuire P, Dvorak J. Feasibility of physical map construction from fingerprinted bacterial artificial chromosome libraries of polyploid plant species. BMC Genomics,2010, 11: 122
[15]Mayer K F X, Taudien S, Martis M, Šimková H, Suchánková P,Gundlach H, Wicker T, Petzold A, Felder M, Steuernagel B,Scholz U, Graner A, Platzer M, Dole?el J, Stein N. Gene content and virtual gene order of barley chromosome 1H. Plant Physiol,2009, 151: 496–505
[16]Simkova H, Safar J, Kubalakova M, Suchankova P, Cihalikova J,Robert-Quatre H, Azhaguvel P, Weng Y, Peng J, Lapitan Nora L V, Ma Y, You F M, Luo M, Bartos J, Dolezel J. BAC libraries from wheat chromosome 7D: efficient tool for positional cloning of aphid resistance genes. J Biomedicine & Biotechnol, 2011, doi: 10.1155/2011/302543
[17]Kovarova P, Navratilova A, Macas J, Dolezel J. Chromosome analysis and sorting in Vicia sativa using flow cytometry. Biol Plant, 2007, 51: 43–48
[18]Nompumelelo H M, Walter D, Margit M, Spencer M, Carl C,Rachael H, Jeroen N, Simon S, James A H M. D-type cyclins activate division in the root apex to promote seed germination in Arabidopsis. Proc Natl Acad Sci USA, 2005, 102: 15694–15699
[19]Huberman J A. New views of the biochemistry of eukaryotic DNA replication revealed by aphidicolin, an unusual inhibitor of DNA polymerase alpha. Cell, 1981, 23: 647–648
[20]Simkova H, Safar J, Suchankova P, Kovarova P, Bartoa J, Kubalakova M, Janda J, Cihalikova J, Mago R, Lelley T, Dolezel J.Novel resource for genomics of Triticeae: BAC library specific for the short arm of rye (Secale cereale L.) chromosome 1R (1RS). BMC Genomics, 2008, 9: 237
[1] 翟胜男, 曹新有, 李豪圣, 李吉虎, 李法计, 刘金栋, 夏先春, 吕莹莹, 马瑞峰, 王颖, 耿洪伟, 刘建军. 小麦Pod-A1、Pod-D1和Pod-2D位点等位变异对籽粒过氧化物酶活性的遗传效应分析[J]. 作物学报, 2026, 52(6): 1593-1603.
[2] 习千辉, 徐梓瑗, 刘梦梦, 王宏艺, 郎凯琳, 井震海, 陈锋, 赵磊. 小麦籽粒铜含量的全基因组关联分析及候选基因预测[J]. 作物学报, 2026, 52(6): 1604-1617.
[3] 毛嘉琦, 黄朋雨, 赵佳佳, 郑兴卫, 武棒棒, 郝宇琼, 屈非, 刘成, 马朋涛, 郑军. 山西小麦品种白粉病抗性评价及抗病基因分子检测[J]. 作物学报, 2026, 52(6): 1669-1681.
[4] 胡川, 赵凯男, 黄修利, 吴金芝, 任开明, 王贺正, 付国占, 黄明, 李友军. 一次灌溉下耕作方式和氮肥用量对旱地小麦产量和品质的影响[J]. 作物学报, 2026, 52(6): 1830-1846.
[5] 陈雪燕, 何华川, 李政嘉, 董新盼, 李藕琪, 刘小云, 李丹萍, 陈志伟, 刘国霞, 吕胜源, 吴印莹, 赵振东, 曹新有, 万何平. 水培盐碱复合胁迫下‘济麦60’苗期根系有机酸分泌动态变化及其转录调控机制[J]. 作物学报, 2026, 52(6): 1859-1875.
[6] 高沛阳, 李瑾璇, 董宇奎, 石玉, 张振, 张永丽. 测墒补灌下小麦分蘖发生和成穗对施氮量的响应[J]. 作物学报, 2026, 52(6): 1847-1858.
[7] 张献丰, 郭利建, 李康春, 孔斌雪, 刘玉芳, 车卓, 杨德龙. 小麦ABHD6基因家族鉴定与粒重功能标记开发[J]. 作物学报, 2026, 52(6): 1711-1727.
[8] 王壮壮, 武紫君, 张永新, 张芯源, 袁丽雪, 陈如雪, 刘世举, 段剑钊, 冯伟, 王同朝, 王永华. 豫东南黏壤潮土区水氮优化协同提高冬小麦产量和氮素利用效率[J]. 作物学报, 2026, 52(5): 1501-1521.
[9] 何万龙, 耿洪伟, 张飞飞, 米克热阿依·阿巴白克热, 罗紫洋, 李鹏程, 周钊宇, 程宇坤. 基于深度学习的小麦重要病害图像识别系统的研究[J]. 作物学报, 2026, 52(5): 1401-1417.
[10] 张振, 冯连杰, 石玉, 于振文, 张永丽. 节水补灌下不同穗型小麦产量形成差异研究[J]. 作物学报, 2026, 52(5): 1522-1535.
[11] 侯思宇, 王国璀, 韦金贵, 谢玮欣, 殷文, 樊志龙, 柴强, 胡发龙. 绿肥配施化学氮肥对西北干旱灌区小麦干物质积累及产量形成的影响[J]. 作物学报, 2026, 52(4): 1208-1219.
[12] 尚云秋, 赵竹, 陈欢, 丁永刚, 乔玉强, 李玮, 张向前, 曹承富, 杜世州. 长期定位耕作方式对雨养小麦籽粒灌浆和产量形成的影响[J]. 作物学报, 2026, 52(4): 1236-1250.
[13] 乔宇馨, 李程越, 康晓玉, 张鑫琪, 贾绍辉, 刘倩, 曹亚丽, 史鑫蕊, 郝兴宇, 李萍. 基于APSIM模型的长期免耕秸秆覆盖对旱地小麦增产效应研究[J]. 作物学报, 2026, 52(4): 1181-1192.
[14] 李灿, 张喜伟, 朱博涛, 张沛沛. 小麦GSK激酶TaSK41的功能分析及互作蛋白的筛选[J]. 作物学报, 2026, 52(3): 677-687.
[15] 侯洁, 付朵朵, 武海峰, 郝宇琼, 郑兴卫, 武棒棒, 周凯, 李晓华, 郑军, 赵佳佳. 山西省小麦地方品种的染色体多样性及遗传效应分析[J]. 作物学报, 2026, 52(3): 746-763.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!