首页> 外文期刊>The Plant Cell >Spatiotemporal asymmetry of the meiotic program underlies the predominantly distal distribution of meiotic crossovers in barley.
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Spatiotemporal asymmetry of the meiotic program underlies the predominantly distal distribution of meiotic crossovers in barley.

机译:减数分裂程序的时空不对称是大麦减数分裂交叉的主要远端分布的基础。

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摘要

Meiosis involves reciprocal exchange of genetic information between homologous chromosomes to generate new allelic combinations. In cereals, the distribution of genetic crossovers, cytologically visible as chiasmata, is skewed toward the distal regions of the chromosomes. However, many genes are known to lie within interstitial/proximal regions of low recombination, creating a limitation for breeders. We investigated the factors underlying the pattern of chiasma formation in barley (Hordeum vulgare) and show that chiasma distribution reflects polarization in the spatiotemporal initiation of recombination, chromosome pairing, and synapsis. Consequently, meiotic progression in distal chromosomal regions occurs in coordination with the chromatin cycles that are a conserved feature of the meiotic program. Recombination initiation in interstitial and proximal regions occurs later than distal events, is not coordinated with the cycles, and rarely progresses to form chiasmata. Early recombination initiation is spatially associated with early replicating, euchromatic DNA, which is predominately found in distal regions. We demonstrate that a modest temperature shift is sufficient to alter meiotic progression in relation to the chromosome cycles. The polarization of the meiotic processes is reduced and is accompanied by a shift in chiasma distribution with an increase in interstitial and proximal chiasmata, suggesting a potential route to modify recombination in cereals.
机译:减数分裂涉及同源染色体之间遗传信息的相互交换以产生新的等位基因组合。在谷物中,遗传交叉点的分布在细胞学上可以看作是Chiasmata,偏向染色体的末端区域。然而,已知许多基因位于重组低的间质/近端区域内,这对育种者造成了限制。我们调查了大麦(Hordeum vulgare)中的as骨形成模式的基础因素,并显示了chi骨分布反映了重组的时空起始,染色体配对和突触中的极化。因此,远端染色体区域的减数分裂进程与染色质循环协调发生,而染色质循环是减数分裂程序的保守特征。间隙和近端区域的重组起始发生在远端事件的发生之后,与周期不协调,并且很少进展为形成Chiasmata。早期重组起始在空间上与早期复制的常染色体DNA相关联,而后者通常在远端区域发现。我们证明适度的温度变化足以改变与染色体周期有关的减数分裂进程。减数分裂过程的两极分化减少,并伴随着横纹肌分布的变化,间质横纹肌和近端横纹肌的增加,提示了改变谷物重组的潜在途径。

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