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A barley cultivation-associated polymorphism conveys resistance to powdery mildew

机译:大麦栽培相关多态性传达对白粉病的抗性

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Barley ( Hordeum vulgare) has played a pivotal role in Old World agriculture since its domestication about 10,000 yr ago(1). Barley plants carrying loss-of-function alleles (mlo) of the Mlo locus are resistant against all known isolates of the widespread powdery mildew fungus(2). The sole mlo resistance allele recovered so far from a natural habitat, mlo-11, was originally retrieved from Ethiopian landraces and nowadays controls mildew resistance in the majority of cultivated European spring barley elite varieties(2). Here we use haplotype analysis to show that the mlo-11 allele probably arose once after barley domestication. Resistance in mlo-11 plants is linked to a complex tandem repeat array inserted upstream of the wild-type gene. The repeat units consist of a truncated Mlo gene comprising 3.5 kilobases (kb) of 50-regulatory sequence plus 1.1 kb of coding sequence. These generate aberrant transcripts that impair the accumulation of both Mlo wild-type transcript and protein. We exploited the meiotic instability of mlo-11 resistance and recovered susceptible revertants in which restoration of Mlo function was accompanied by excision of the repeat array. We infer cis-dependent perturbation of transcription machinery assembly by transcriptional interference in mlo-11 plants as a likely mechanism leading to disease resistance.
机译:大麦(Hordeum vulgare)自大约10,000年前驯化以来在旧世界农业中发挥了关键作用(1)。携带Mlo基因座功能丧失等位基因(mlo)的大麦植物对广泛已知的白粉病真菌的所有已知分离株均具有抗性(2)。迄今为止,从自然栖息地回收的唯一的抗mlo等位基因最初来自埃塞俄比亚的地方品种mlo-11,如今已控制了大多数欧洲春季大麦精英品种的抗霉性(2)。在这里,我们使用单倍型分析显示大麦驯化后可能出现了mlo-11等位基因。 mlo-11植物中的抗性与插入野生型基因上游的复杂串联重复序列阵列相关。所述重复单元由截短的Mlo基因组成,所述Mlo基因包含3.5个碱基(kb)的50个调节序列和1.1kb的编码序列。这些会产生异常的转录本,从而损害Mlo野生型转录本和蛋白质的积累。我们利用了mlo-11抗性的减数分裂不稳定性,并恢复了易感性回复株,其中Mlo功能的恢复伴随着重复序列的切除。我们通过在mlo-11植物中的转录干扰来推断转录机械装配的顺式依赖性干扰,这是导致疾病抗性的可能机制。

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