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首页> 外文期刊>The New Phytologist >Widely distributed hot and cold spots in meiotic recombination as shown by the sequencing of rice F-2 plants
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Widely distributed hot and cold spots in meiotic recombination as shown by the sequencing of rice F-2 plants

机译:水稻F-2植株的测序显示减数分裂重组中分布广泛的热点和热点

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摘要

Numerous studies have argued that environmental variations may contribute to evolution through the generation of novel heritable variations via meiotic recombination, which plays a crucial role in crop domestication and improvement. Rice is one of the most important staple crops, but no direct estimate of recombination events has yet been made at a fine scale. Here, we address this limitation by sequencing 41 rice individuals with high sequencing coverage and c. 900000 accurate markers. An average of 33.9 crossover (c. 4.53cMMb(-1)) and 2.47 non-crossover events were detected per F-2 plant, which is similar to the values in Arabidopsis. Although not all samples in the stress treatment group showed an increased number of crossover events, environmental stress increased the recombination rate in c. 28.5% of samples. Interestingly, the crossovers showed a highly uneven distribution among and along chromosomes, with c. 13.9% of the entire genome devoid of crossovers, including 11 of the 12 centromere regions, and c. 0.72% of the genome containing large numbers of crossovers (>50cMMb(-1)). The gene ontology (GO) categories showed that genes clustered within the recombination hot spot regions primarily tended to be involved in responses to environmental stimuli, suggesting that recombination plays an important role for adaptive evolution in rapidly changing environments.
机译:许多研究认为,环境变化可能通过减数分裂重组产生新的遗传变异来促进进化,这在作物的驯化和改良中起着至关重要的作用。水稻是最重要的主食作物之一,但尚无关于大规模重组事件的直接估计。在这里,我们通过对41个具有较高测序覆盖率和c的水稻个体进行测序来解决这一限制。 900000个准确的标记。每个F-2植物平均检测到33.9次交配(c。4.53cMMb(-1))和2.47次非交配事件,与拟南芥中的值相似。尽管并非压力处理组中的所有样品都显示出增加的交叉事件数量,但环境压力增加了c中的重组率。 28.5%的样本。有趣的是,交叉显示出在染色体之间和沿染色体的高度不均匀分布,c。整个基因组的13.9%没有交叉,包括12个着丝粒区域中的11个,以及c。 0.72%的基因组包含大量交叉(> 50cMMb(-1))。基因本体论(GO)类别显示,聚集在重组热点区域内的基因主要倾向于参与对环境刺激的反应,这表明重组在快速变化的环境中对适应性进化起着重要作用。

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