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Molecular cytogenetic characterization and phylogenetic analysis of four Miscanthus species (Poaceae)

机译:四种芒草(禾本科)的分子细胞遗传学表征和系统发育分析

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摘要

Chromosomes of four Miscanthus (Andersson, 1855) species including M. sinensis (Andersson, 1855), M. floridulus (Schumann & Lauterb, 1901), M. sacchariflorus (Hackel, 1882) and M. lutarioriparius (Chen & Renvoize, 2005) were analyzed using sequentially combined PI and DAPI (CPD) staining and fluorescence in situ hybridization (FISH) with 45S rDNA probe. To elucidate the phylogenetic relationship among the four Miscanthus species, the homology of repetitive sequences among the four species was analyzed by comparative genomic in situ hybridization (cGISH). Subsequently four Miscanthus species were clustered based on the internal transcribed spacer (ITS) of 45S rDNA. Molecular cytogenetic karyotypes of the four Miscanthus species were established for the first time using chromosome measurements, fluorochrome bands and 45S rDNA FISH signals, which will provide a cytogenetic tool for the identification of these four species. All the four have the karyotype formula of Miscanthus species, which is 2n = 2x = 38 = 34m(2SAT) + 4sm, and one pair of 45S rDNA sites. The latter were shown as strong red bands by CPD staining. A non-rDNA CPD band emerged in M. floridulus and some blue DAPI bands appeared in M. sinensis and M. floridulus. The hybridization signals of M. floridulus genomic DNA to the chromosomes of M. sinensis and M. lutarioriparius genomic DNA to the chromosomes of M. sacchariflorus were stronger and more evenly distributed than other combinations. Molecular phylogenetic trees showed that M. sinensis and M. floridulus were closest relatives, and M. sacchariflorus and M. lutarioriparius were also closely related. These findings were consistent with the phylogenetic relationships inferred from the cGISH patterns.
机译:四种芒草(Andersson,1855年)的染色体,包括中华芒草(Andersson,1855年),花芒芒(M. floridulus)(Schumann和Lauterb,1901年),糖糖芒(M. sacchariflorus)(Hackel,1882年)和 M。 lutarioriparius (Chen&Renvoize,2005)使用顺序结合的PI和DAPI(CPD)染色和荧光原位分析>与45S rDNA探针杂交(FISH)。为了阐明四种 =“ emmon =” taxon-name“> Miscanthus 物种之间的系统发育关系,这些序列之间的重复序列具有同源性通过比较基因组原位杂交(cGISH)分析了这四个物种。随后,基于45S的内部转录间隔子(ITS)将四个 Miscanthus 物种聚类。 rDNA。首次使用染色体测量建立了四个 =“ emon =” taxon-name“> Miscanthus 物种的分子细胞遗传核型。 ,荧光染料带和45S rDNA FISH信号,这将为鉴定这四个物种提供细胞遗传学工具。这四个都具有 Miscanthus 的核型公式,即2n = 2x = 38 = 34m(2SAT)+ 4sm,以及一对45S rDNA位点。后者通过CPD染色显示为强红色条带。在 M。 floridulus 中出现了一个非rDNA CPD带。 em> ,并且在 M。 sinensis < / em> M。 小花 M。 floridulus 的杂交信号em>基因组DNA到 M。 sinensis 的染色体上em> M。 lutarioriparius 基因组DNA到 M。 蔗糖的染色体上> 比其他组合更强大,分布更均匀。分子系统树表明, M。 sinensis < / em>和 M。 小花 是最接近的亲戚,而 M。 蔗糖 M。 lutarioriparius 也密切相关。这些发现与从cGISH模式推断出的系统发育关系一致。

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