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[洋葱(Allium cepa L.)染色体的CPD(PI/DAPI)和CMA/DAPI带型]

[Chromosome CPD(PI/DAPI)- and CMA/DAPI-banding patterns in Allium cepa L].

作者信息

Kim E S, Punina E O, Rodionov A V

机构信息

Komarov Botanical Institute, Russian Academy of Sciences, St. Petersburg, 197376 Russia.

出版信息

Genetika. 2002 Apr;38(4):489-96.

Abstract

Chromosome banding patterns of Allium cepa L. were obtained by using fluorochrome combinations chromomycin A3 (CMA) + 4',6-diamidino-2-phenylindole (DAPI), DAPI + actinomycin D (AMD) and propidium iodide (PI) + DAPI. In A. cepa, telomeric heterochromatin displayed dull fluorescence after staining with DAPI and DAPI/AMD. After staining with the GC-specific CMA and AT-specific DAPI, the CMA-positive fluorescence of the NOR region and the telomeric bands of C-heterochromatin was observed. In combination with DAPI, PI, a dye with low AT/GC specificity, produced almost uniform fluorescence of chromosomal arms and heterochromatin, whereas the NOR-adjoining regions displayed bright fluorescence. Denaturation of chromosomal DNA (95 degrees C for 1-3 min) followed by renaturation in the 2 x SSC buffer (37 degrees C, 12 h) altered the chromosome fluorescence patterns: specific PI-positive bands appeared and the contrast of CMA-banding increased. Bright fluorescence of the NOR and adjoining regions was also observed in the case. Three-minute denaturation led also to a bright PI-positive fluorescence of telomeric heterochromatin. The denaturation of chromosomal DNA before staining results in changes of the DAPI fluorescence pattern and in the appearance of DAPI fluorescence in GR-rich NOP regions. The mechanisms underlying the effects of denaturation/renaturation procedures on chromosome banding patterns obtained with different fluorochromes are discussed.

摘要

通过使用荧光染料组合色霉素A3(CMA)+4',6-二脒基-2-苯基吲哚(DAPI)、DAPI+放线菌素D(AMD)和碘化丙啶(PI)+DAPI获得了洋葱的染色体带型。在洋葱中,端粒异染色质在用DAPI和DAPI/AMD染色后显示出暗淡的荧光。在用GC特异性的CMA和AT特异性的DAPI染色后,观察到核仁组织区(NOR)区域和C-异染色质的端粒带的CMA阳性荧光。与DAPI、PI(一种AT/GC特异性较低的染料)结合使用时,染色体臂和异染色质产生几乎均匀的荧光,而NOR相邻区域显示明亮的荧光。染色体DNA变性(95℃,1-3分钟),然后在2×SSC缓冲液中复性(37℃,12小时)改变了染色体荧光模式:出现了特定的PI阳性带,CMA带型的对比度增加。在这种情况下,还观察到NOR及其相邻区域的明亮荧光。三分钟的变性也导致端粒异染色质出现明亮的PI阳性荧光。染色前染色体DNA的变性导致DAPI荧光模式的变化以及富含GR的NOP区域中出现DAPI荧光。讨论了变性/复性程序对用不同荧光染料获得的染色体带型的影响的潜在机制。

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