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Genome Plasticity a Key Factor in the Success of Polyploid Wheat Under Domestication

机译:基因组可塑性是驯化多倍体小麦成功的关键因素

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Wheat was domesticated about 10,000 years ago and has since spread worldwide to become one of the major crops. Its adaptability to diverse environments and end uses is surprising given the diversity bottlenecks expected from recent domestication and polyploid speciation events. Wheat compensates for these bottlenecks by capturing part of the genetic diversity of its progenitors and by generating new diversity at a relatively fast pace. Frequent gene deletions and disruptions generated by a fast replacement rate of repetitive sequences are buffered by the polyploid nature of wheat, resulting in subtle dosage effects on which selection can operate.
机译:小麦大约在10,000年前就已驯化,此后已在世界范围内传播,成为主要农作物之一。考虑到最近驯化和多倍体物种形成事件带来的多样性瓶颈,其对多种环境和最终用途的适应性令人惊讶。小麦通过捕获其祖先的部分遗传多样性并以相对较快的速度产生新的多样性来弥补这些瓶颈。小麦的多倍体特性可以缓冲由于重复序列快速替换率而产生的频繁基因缺失和破坏,从而产生微妙的剂量效应,从而可以进行选择。

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