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表型和遗传证据表明,日本鬼百合和奥西塞帕拉鬼百合发生了生态物种形成。

Phenotypic and genetic evidence for ecological speciation of Aquilegia japonica and A. oxysepala.

机构信息

Key Laboratory of Molecular Epigenetics of Ministry of Education, Northeast Normal University, Changchun, 130024, China.

出版信息

New Phytol. 2014 Dec;204(4):1028-40. doi: 10.1111/nph.12967. Epub 2014 Aug 13.

Abstract

Natural selection is thought to be a driving force that can cause the evolution of reproductive isolation. The genus Aquilegia is a model system to address how natural selection promotes the process of speciation. Morphological differences between A. oxysepala, A. japonica and their hybrids were quantified for two vegetative (plant height and leaf area) and three floral morphological (sepal area, corolla length and diameter) traits. We also evaluated the genetic variability of the two species and their hybrids based on two chloroplast (1225 bp), four nuclear (5811 bp) genes and 15 microsatellites. Our results revealed that differentiation of A. japonica and A. oxysepala at the ecological and morphological levels also involved divergence at the genetic level. In addition, the analysis of nucleotide variation patterns showed that the two species possessed numerous fixation sites at nuclear genes gAA4, gA7 and gAA12. Furthermore, we found that all of the phenotypic hybrids also showed a genetically admixed ancestry. These findings suggest that natural selection has indeed facilitated the formation of distinct genetic variation patterns in the two Aquilegia species and habitat adaptation has been driving the ecologically based evolution of reproductive isolation.

摘要

自然选择被认为是一种驱动力,可以导致生殖隔离的进化。翠雀属是一个用于解决自然选择如何促进物种形成过程的模式系统。对 A.oxysepala、A.japonica 及其杂种的两个营养(植株高度和叶面积)和三个花形态(萼片面积、花冠长度和直径)特征进行了形态差异的量化。我们还基于两个叶绿体(1225bp)、四个核(5811bp)基因和 15 个微卫星评估了这两个物种及其杂种的遗传变异性。研究结果表明,A.japonica 和 A.oxysepala 在生态和形态水平上的分化也涉及遗传水平上的分化。此外,核苷酸变异模式的分析表明,这两个物种在核基因 gAA4、gA7 和 gAA12 上具有许多固定位点。此外,我们发现所有表型杂种也表现出遗传混合的祖先。这些发现表明,自然选择确实促进了两个翠雀属物种形成独特的遗传变异模式,而栖息地适应则推动了基于生态的生殖隔离进化。

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