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teosinte branched1 and the origin of maize: evidence for epistasis and the evolution of dominance.

机译:teosinte branched1和玉米的起源:上位性和优势进化的证据。

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摘要

Two quantitative trait loci (QTL) controlling differences in plant and inflorescence architecture between maize and its progenitor (teosinte) were analyzed. Complementation tests indicate that one of these, which is on chromosome arm 1L, is the locus for the maize mutant teosinte branched1 (tb1). This QTL has effects on inflorescence sex and the number and length of internodes in the lateral branches and inflorescences. This QTL has strong phenotypic effects in teosinte background but reduced effects in maize background. The second QTL, which is on chromosome arm 3L, affects the same traits as the QTL on 1L. We identify two candidate loci for this QTL. The effects of this QTL on several traits are reduced in both maize and teosinte background as compared to a maize-teosinte F2 population. Genetic background appears to affect gene action for both QTL. Analysis of a population in which both QTL were segregating revealed that they interact epistatically. Together, these two QTL substantially transform both plant and inflorescence architecture. We propose that tb1 is involved in the plant's response to local environment to produce either long or short branches and that maize evolution involved a change at this locus to produce short branches under all environments.
机译:分析了两个数量性状基因座(QTL),它们控制了玉米及其祖先(端粒蛋白)之间植物和花序结构的差异。补充测试表明,其中一个位于染色体1L染色体上,是玉米突变体teosinte branched1(tb1)的基因座。该QTL影响花序性别以及侧枝和花序节间的数量和长度。该QTL在teosinte背景中具有强的表型作用,但是在玉米背景中的作用降低。第二个QTL位于染色体臂3L上,其影响与1L上的QTL相同。我们为此QTL确定了两个候选基因座。与玉米-端粒F2群体相比,该QTL对玉米和端粒背景中几个性状的影响均降低。遗传背景似乎影响两个QTL的基因作用。对两个QTL隔离的人群的分析表明,它们在上位性相互作用。这两个QTL一起可以极大地改变植物和花序的结构。我们建议tb1参与植物对当地环境的响应以产生长枝或短枝,并且玉米进化涉及在该位点发生变化以在所有环境下产生短枝。

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