首页> 美国卫生研究院文献>Genetics >The Origin of a Zebra Chromosome in Wheat Suggests Nonhomologous Recombination as a Novel Mechanism for New Chromosome Evolution and Step Changes in Chromosome Number
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The Origin of a Zebra Chromosome in Wheat Suggests Nonhomologous Recombination as a Novel Mechanism for New Chromosome Evolution and Step Changes in Chromosome Number

机译:小麦中斑马染色体的起源表明非同源重组是新的染色体进化和染色体数量阶跃变化的新机制

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摘要

An alloplasmic wheat line, TA5536, with the “zebra” chromosome z5A was isolated from an Elymus trachycaulus/Triticum aestivum backcross derivative. This chromosome was named “zebra” because of its striped genomic in situ hybridization pattern. Its origin was traced to nonhomologous chromosome 5A of wheat and 1Ht of Elymus; four chromatin segments were derived from chromosome 1Ht and five chromatin segments including the centromere from 5A. In this study, our objective was to determine the mechanism of origin of chromosome z5A, whether by nonhomologous recombination or by multiple translocation events. Different crossing schemes were used to recover recombinants containing various Elymus chromatin segments of the z5A chromosome. In addition, one z5AL telocentric chromosome and three z5AL isochromosomes were recovered. The dissection of the Elymus segments into different stocks allowed us to determine the chromosomal origin of the different chromosome fragments on the basis of the order of the RFLP markers employed and suggested that the zebra chromosome originated from nonhomologous recombination. We present a model of possible mechanism(s) of chromosome evolution and step changes in chromosome number applicable to a wide range of organisms.
机译:从“ Elymus trachycaulus / Atictic aestivum backcross衍生物”中分离出具有“斑马”染色体z5A的同质小麦品系TA5536。该染色体因其条纹基因组原位杂交模式而被称为“斑马”。其起源可追溯到小麦的非同源染色体5A和披碱草的1H t 。 1H t 染色体有4个染色质片段,5A的着丝粒有5个染色质片段。在这项研究中,我们的目的是确定z5A染色体的起源机制,无论是通过非同源重组还是通过多次易位事件。使用不同的杂交方案来回收含有z5A染色体的各种披碱草染色质片段的重组体。另外,回收了一个z5AL端粒染色体和三个z5AL异染色体。将Elymus片段解剖为不同的种群,使我们能够根据所采用的RFLP标记的顺序确定不同染色体片段的染色体起源,并暗示斑马染色体起源于非同源重组。我们提出了一种染色体进化和染色体数阶跃变化的可能机制模型,适用于多种生物。

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