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首页> 外文期刊>Journal of Theoretical Biology >Calculation of binding length of base-specific DNA dyes by comparison of sequence and flow cytometric data. Application to Oryza sativa and Arabidopsis thaliana.
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Calculation of binding length of base-specific DNA dyes by comparison of sequence and flow cytometric data. Application to Oryza sativa and Arabidopsis thaliana.

机译:通过比较序列和流式细胞仪数据,计算碱基特异性DNA染料的结合长度。应用于水稻和拟南芥。

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摘要

From biochemical experiments it has been found that AT- and GC-specific dyes need a certain number of consecutive bases of the same type for binding one dye molecule. From known base sequences the amount of bases included in dye binding can be calculated and compared with experimental data from flow cytometry. Oryza sativa and Arabidopsis thaliana are the first higher plants which are nearly completely (>90%) sequenced. From the published sequences the theoretical fluorescence intensity of base-specific dyes in relation to a base-unspecific dye is calculated for different binding lengths. These values are compared with the actual fluorescence intensities of nuclei analyzed by flow cytometry. For all investigated dyes (DAPI, Hoechst 33258, Hoechst 33342 (all AT specific) and Mithramycin A (GC specific)) a binding length of 1 bp results from the comparison of theoretical and experimental data. This is, however, in disagreement with former results on dye binding. The main reason for the discrepancy seems to be the remaining gap in the sequencing of the Arabidopsis genome.
机译:从生化实验中发现,AT和GC特异性染料需要一定数量的相同类型的连续碱基才能结合一个染料分子。根据已知的碱基序列,可以计算出染料结合中所包含的碱基数量,并将其与流式细胞术的实验数据进行比较。稻(Oryza sativa)和拟南芥(Arabidopsis thaliana)是最早被近乎完全测序(> 90%)的高等植物。从公开的序列中,针对不同的结合长度,计算了碱基特异性染料相对于碱基非特异性染料的理论荧光强度。将这些值与通过流式细胞术分析的核的实际荧光强度进行比较。对于所有研究的染料(DAPI,Hoechst 33258,Hoechst 33342(全部对AT特异性)和Mithramycin A(GC特异性)),结合理论和实验数据得出1 bp的结合长度。但是,这与染料结合的先前结果不同。差异的主要原因似乎是拟南芥基因组测序中仍然存在差距。

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