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Cytogenetics of Legumes in the Phaseoloid Clade

机译:菜豆科中豆类的细胞遗传学。

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Cytogenetics played an essential role in studies of chromosome structure, behavior, and evolution in numerous plant species. The advent of molecular cytogenetics combined with recent development of genomic resources has ushered in a new era of chromosome studies that have greatly advanced our knowledge of karyotypic diversity, genome and chromosome organization, and chromosomal evolution in legumes. This review summarizes some of the achievements of cytogenetic studies in legumes in the Phaseoloid clade, which includes several important legume crops such as common bean (Phaseolus vulgaris L.), cowpea [Vigna unguiculata (L.) Walp.], soybean [Glycine max (L.) Merr.], and pigeonpea [Cajanus cajan (L.) Huth]. In the Phaseoloid clade, karyotypes are mostly stable. There are, however, several species with extensive chromosomal changes. Fluorescence in situ hybridization has been useful to reveal chromosomal structure by physically mapping transposons, satellite repeats, ribosomal DNA genes, and bacterial artificial chromosome clones onto chromosomes. Polytene chromosomes, which are much longer than the mitotic chromosomes, have been successfully found and used in cytogenetic studies in some Phaseolus and Vigna species. Molecular cytogenetics will continue to be an important tool in legume genetics and genomics, and we discuss future applications of molecular cytogenetics to better understand chromosome and genome structure and evolution in legumes.
机译:细胞遗传学在众多植物物种的染色体结构,行为和进化研究中起着至关重要的作用。分子细胞遗传学的出现与基因组资源的最新发展相结合,开创了染色体研究的新纪元,极大地提高了我们对核型多样性,基因组和染色体组织以及豆类中染色体进化的认识。这篇综述总结了菜豆科植物豆类细胞遗传学研究的一些成就,其中包括几种重要的豆类作物,例如普通豆(菜豆),cow豆[Vigna unguiculata(L.)Walp。],大豆[Glycine max]。 (L.)Merr。]和木豆[Cajanus cajan(L.)Huth]。在菜豆科进化枝中,核型大多数是稳定的。但是,有些物种的染色体变化很大。通过将转座子,卫星重复序列,核糖体DNA基因和细菌人工染色体克隆物理定位到染色体上,荧光原位杂交可用于揭示染色体结构。已经成功地发现了比有丝分裂染色体长得多的多烯染色体,并将其用于某些菜豆和and豆的细胞遗传学研究中。分子细胞遗传学将继续是豆类遗传学和基因组学中的重要工具,我们将讨论分子细胞遗传学的未来应用,以更好地了解豆类的染色体和基因组结构及进化。

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