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Independent Losses of Function in a Polyphenol Oxidase in Rice: Differentiation in Grain Discoloration between Subspecies and the Role of Positive Selection under Domestication

机译:水稻中多酚氧化酶的独立功能丧失:亚种间籽粒变色的差异及驯化条件下正选择的作用

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摘要

Asian rice (Oryza sativa) cultivars originated from wild rice and can be divided into two subspecies by several criteria, one of which is the phenol reaction (PHR) phenotype. Grains of indica cultivars turn brown in a phenol solution that accelerates a similar process that occurs during prolonged storage. By contrast, the grains of japonica do not discolor. This distinction may reflect the divergent domestication of these two subspecies. The PHR is controlled by a single gene, Phr1; here, we report the cloning of Phr1, which encodes a polyphenol oxidase. The Phr1 gene is indeed responsible for the PHR phenotype, as transformation with a functional Phr1 can complement a PHR negative cultivar. Phr1 is defective in all japonica lines but functional in nearly all indica and wild strains. Phylogenetic analysis showed that the defects in Phr1 arose independently three times. The multiple recent origins and rapid spread of phr1 in japonica suggest the action of positive selection, which is further supported by several population genetic tests. This case may hence represent an example of artificial selection driving the differentiation among domesticated varieties.
机译:亚洲稻(Oryza sativa)栽培种起源于野生稻,可以通过几个标准分为两个亚种,其中之一是酚反应(PHR)表型。 a品种在酚溶液中变成棕色,从而加速了长时间存储过程中发生的类似过程。相比之下,粳米的颗粒不会变色。这种区别可能反映了这两个亚种的不同驯化。 PHR由单个基因Phr1控制;在这里,我们报道了编码多酚氧化酶的Phr1的克隆。 Phr1基因确实负责PHR表型,因为用功能性Phr1进行转化可以补充PHR阴性品种。 Phr1在所有粳稻品系中均存在缺陷,但在几乎所有in株和野生株中均具有功能。系统发育分析表明,Phr1中的缺陷独立发生了3次。 phr1在粳稻中的多个新近起源和迅速传播表明了阳性选择的作用,这得到了一些群体遗传学测试的进一步支持。因此,这种情况可能代表了人工选择驱动驯化品种之间差异的一个例子。

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