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Investigation of the bottleneck leading to the domestication of maize

机译:导致玉米驯化瓶颈的调查

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摘要

Maize (Zea mays ssp. mays) is genetically diverse, yet it is also morphologically distinct from its wild relatives. These two observations are somewhat contradictory: the first observation is consistent with a large historical population size for maize, but the latter observation is consistent with strong, diversity-limiting selection during maize domestication. In this study, we sampled sequence diversity, coupled with simulations of the coalescent process, to study the dynamics of a population bottleneck during the domestication of maize. To do this, we determined the DNA sequence of a 1,400-bp region of the Adh1 locus from 19 individuals representing maize, its presumed progenitor (Z. mays ssp. parviglumis), and a more distant relative (Zea luxurians). The sequence data were used to guide coalescent simulations of population bottlenecks associated with domestication. Our study confirms high genetic diversity in maize—maize contains 75% of the variation found in its progenitor and is more diverse than its wild relative, Z. luxurians—but it also suggests that sequence diversity in maize can be explained by a bottleneck of short duration and very small size. For example, the breadth of genetic diversity in maize is consistent with a founding population of only 20 individuals when the domestication event is 10 generations in length.
机译:玉米(Zea mays ssp。mays)在遗传上是多样的,但在形态上也不同于其野生近缘种。这两个观察结果有些矛盾:第一个观察结果与玉米的历史种群数量大相符,但是第二个观察结果与玉米驯化期间强大的,限制多样性的选择相符。在这项研究中,我们对序列多样性进行了采样,并结合了聚结过程的模拟,以研究玉米驯化过程中种群瓶颈的动态。为此,我们从代表玉米的19个个体,其推测的祖先(Z. mays ssp。parviglumis)和一个较远的亲戚(Zea luxurians)中确定了Adh1基因座1400 bp区的DNA序列。序列数据用于指导与驯化相关的种群瓶颈的合并模拟。我们的研究证实了玉米的高遗传多样性-玉米包含其祖先变异的75%,并且比其野生亲缘种Z. luxurians更具多样性-但它也表明玉米的序列多样性可以用短瓶颈来解释持续时间非常小。例如,当驯化事件的长度为10代时,玉米遗传多样性的广度与仅20个个体的创始种群一致。

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