首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Effects of suppressing the DNA mismatch repair system on homeologous recombination in tomato.
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Effects of suppressing the DNA mismatch repair system on homeologous recombination in tomato.

机译:抑制DNA错配修复系统对番茄同源重组的影响。

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In plant breeding, the ability to manipulate genetic (meiotic) recombination would be beneficial for facilitating gene transfer from wild relatives of crop plants. The DNA mismatch repair (MMR) system helps maintain genetic integrity by correcting base mismatches that arise via DNA synthesis or damage, and antagonizes recombination between homeologous (divergent) DNA sequences. Previous studies have established that the genomes of cultivated tomato (Solanum lycopersicum) and the wild relative S. lycopersicoides are substantially diverged (homeologous) such that recombination between their chromosomes is strongly reduced. Here, we report the effects on homeologous recombination of suppressing endogenous MMR genes in S. lycopersicum via RNAi-induced silencing of SlMSH2 and SlMSH7 or overexpressing dominant negatives of Arabidopsis MSH2 (AtMSH2-DN) in an alien substitution line (SL-8) of S. lycopersicoides in tomato. We show that certain inhibitions of MMR (RNAi of SlMSH7, AtMSH2-DN) are associated with modest increases in homeologous recombination, ranging from 3.8 to 29.2% (average rate of 17.8%) compared to controls. Unexpectedly, only the AtMSH2-DN proteins but not RNAi-induced silencing of MSH2 was found to increase homeologous recombination. The ratio of single to double crossovers (SCO:DCO ratio) decreased by approximately 50% in progeny of the AtMSH2-DN parents. An increase in the frequency of heterozygous SL-8 plants was also observed in the progeny of the SlMSH7-RNAi parents. Our findings may contribute to acceleration of introgression in cultivated tomato.
机译:在植物育种中,操纵遗传(减数分裂)重组的能力将有利于促进农作物野生近缘种的基因转移。 DNA错配修复(MMR)系统可通过纠正由于DNA合成或破坏引起的碱基错配来帮助维持遗传完整性,并拮抗同源(不同)DNA序列之间的重组。先前的研究已经确定,栽培番茄( Solanum lycopersicum )和野生亲缘种 S的基因组。 lycopersicoides 基本上是发散的(同源的),因此它们的染色体之间的重组会大大减少。在这里,我们报道抑制i中的内源性MMR基因对同源重组的影响。 RNAi诱导的 SlMSH2 和 SlMSH7 沉默或过量表达拟南芥 MSH2 (i)的外来替代品系(SL-8)中的AtMSH2-DN。番茄中的lycopersicoides 。我们显示,MMR( SlMSH7 ,AtMSH2-DN的RNAi)的某些抑制作用与同源重组的适度增加相关,与对照相比,范围从3.8到29.2%(平均比率为17.8%)。出乎意料的是,只发现AtMSH2-DN蛋白,而没有RNAi诱导的 MSH2 沉默会增加同源重组。在AtMSH2-DN亲本的子代中,单倍交叉与双倍交叉的比率(SCO:DCO比率)降低了约50%。在 SlMSH7 -RNAi亲本的后代中也观察到杂合SL-8植物的频率增加。我们的发现可能有助于加速栽培番茄的渗入。

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