首页> 外文期刊>Генетика: Ежемес. журн. >[Chromosome maps of trilliaceae: II. A study of the genome composition in polyploid species of the genus Trillium by fluorescence nucleotide base-specific staining of heterochromatic chromosome regions]
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[Chromosome maps of trilliaceae: II. A study of the genome composition in polyploid species of the genus Trillium by fluorescence nucleotide base-specific staining of heterochromatic chromosome regions]

机译:【染色体trilliaceae地图:II。多倍体物种的基因组组成延龄草属的荧光核苷酸base-specific染色的异色的染色体区域)

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Chromosome banding with nucleotide base-specific fluorochromes chromomycin A3 (CMA) and Hoechst 33258 (H33258) was used to study the karyotypes and to construct cytological maps for diploid Trillium camschatcense (2n = 10), tetraploid T. tschonoskii (2n = 20), hexaploid T. rhombifolium (2n = 30), and a triploid T. camschatcense x T. tschonoskii hybrid (T. x hagae, 2n = 15). With H33258, species- and genome-specific patterns with numerous AT-rich heterochromatin bands were obtained for each of the four forms; CMA revealed a few small, mostly telomeric GC-rich bands. In T. tschonoskii, the two subgenomes were similar to each other and differed from the T. camschatcense genome; on this evidence, the species was considered to be a segmental allotetraploid. In T. x hagae, one T. camschatcense and both T. tschonoskii subgenomes were identified. The subgenomes of T. rhombifolium only partly corresponded to the T. camschatcense and T. tschonoskii genomes, in contrast to the morphologically identical Japanese species T. hagae. This was assumed to indicate that allohexaploids T. rhombifolium and T. hagae originated independently at different times; i.e., their origin is polyphyletic. Based on the chromosome maps, a new nomenclature was proposed for the Trillium genomes examined: K1K1 for T. camschatcense, T1T1T2T2 for T. tschonoskii, T1T1T2T2 for T. x hagae, and K1RK1RT1RT1RT2RT2R for T. rhombifolium.
机译:与核苷酸base-specific染色体显带荧光染料色霉素A3 (CMA)和赫斯特33258 (H33258)被用来研究分析为二倍体和构建细胞学的地图延龄草camschatcense (2 n = 10),四倍体的T。tschonoskii (2 n = 20),六倍体rhombifolium(2 n = 30)和三倍体T camschatcense x T。tschonoskii混合(t . x hagae 2 n = 15)。H33258,物种——genome-specific模式与众多at富集异染色质乐队获得了四种形式;一些小的,大多是端粒的GC-rich乐队。t . tschonoskii两subgenomes相似,不同于T。camschatcense基因组;物种被认为是一个节段异源四倍体。camschatcense和t . tschonoskii subgenomes被确定。rhombifolium只是部分对应的T。camschatcense和t . tschonoskii基因组与形态相同日本t . hagae物种。表明allohexaploids t rhombifolium和在不同的独立t hagae起源次;染色体上的地图,一个新的术语提出了延龄草基因组研究:K1K1对T . camschatcense T1T1T2T2 T。tschonoskii, t . x hagae T1T1T2T2,

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