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The Genetic Architecture of Parallel Armor Plate Reduction in Threespine Sticklebacks

机译:三脊椎棘背Arm平行装甲板复位的遗传结构

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摘要

How many genetic changes control the evolution of new traits in natural populations? Are the same genetic changes seen in cases of parallel evolution? Despite long-standing interest in these questions, they have been difficult to address, particularly in vertebrates. We have analyzed the genetic basis of natural variation in three different aspects of the skeletal armor of threespine sticklebacks (Gasterosteus aculeatus): the pattern, number, and size of the bony lateral plates. A few chromosomal regions can account for variation in all three aspects of the lateral plates, with one major locus contributing to most of the variation in lateral plate pattern and number. Genetic mapping and allelic complementation experiments show that the same major locus is responsible for the parallel evolution of armor plate reduction in two widely separated populations. These results suggest that a small number of genetic changes can produce major skeletal alterations in natural populations and that the same major locus is used repeatedly when similar traits evolve in different locations.
机译:有多少遗传变化控制着自然种群中新特性的进化?在平行进化的情况下是否看到相同的遗传变化?尽管长期以来一直对这些问题感兴趣,但是很难解决,尤其是在脊椎动物中。我们已经分析了三脊刺背鳍(Gasterosteus aculeatus)的骨骼装甲的三个不同方面的自然变异的遗传基础:骨外侧板的样式,数量和大小。少数染色体区域可以解释侧板的所有三个方面的变化,其中一个主要位点是导致侧板样式和数量变化的主要部分。遗传作图和等位基因互补实验表明,在两个广泛分离的种群中,相同的主要基因座可导致装甲板减少的平行演变。这些结果表明,少量的遗传变化可以在自然种群中产生主要的骨骼变化,并且当在不同位置进化相似的性状时,可以重复使用相同的主要基因座。

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