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A cryptic species produced by autopolyploidy and subsequent introgression involving Medicago prostrata (Fabaceae)

机译:自动化倍数和随后涉及Medicago Prostrata(Fabaceae)产生的神秘物种

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Although hybridisation through genome duplication is well known, hybridisation without genome duplication (homoploid hybrid speciation, HHS) is not. Few well-documented cases have been reported. A possible instance of HHS in Medicago prostrata Jacq. was suggested previously, based on only two genes and one individual. We tested whether this species was formed through HHS by sampling eight nuclear loci and 22 individuals, with additional individuals from related species, using gene capture and Illumina sequencing. Phylogenetic inference and coalescent simulations were performed to infer the causes of gene tree incongruence. We found no evidence that phylogenetic differences among M. prostrata individuals were the result of HHS. Instead, an autopolyploid origin of tetraploids with introgression from tetraploids of the M. sativa complex is likely. We argue that tetraploid M. prostrata individuals constitute a new species, characterised by a partially non-overlapping distribution and distinctive alleles (from the M. sativa complex). No gene flow from tetraploid to diploid M. prostrata is apparent, suggesting partial reproductive isolation. Thus, speciation via autopolyploidy appears to have been reinforced by introgression. This raises the intriguing possibility that introgressed alleles may be responsible for the increased range exploited by tetraploid M. prostrata with respect to that of the diploids. (C) 2016 Elsevier Inc. All rights reserved.
机译:虽然通过基因组重复杂交是众所周知的,但没有基因组重复的杂交(同性金杂化物质,HHS)不是。报告了很少有记录的案件。 Medicago Prostrata Jacq中的HHS可能的实例。以前建议仅基于两个基因和一个人。我们通过采样八个核基因座和22个个体,通过HHS进行了通过HHS来测试该物种,使用基因捕获和illumina测序,具有相关物种的其他个体。进行了系统发育推理和束化学模拟,以推断基因树不一致的原因。我们发现没有证据表明M. prostrata个人之间的系统发育差异是HHS的结果。相反,可能的是来自M.Sativa复合物的四倍体迟发的四倍体的自动化素来源。我们认为Tetraploid M. prostrata个体构成一种新的物种,其特征在于部分非重叠分布和独特的等位基因(来自M. Sativa Complex)。没有从四倍体到二倍体M. prostrata的基因流动,表明部分生殖隔离。因此,通过AttopolyPLoidy的形态似乎通过血栓增强。这引发了狭口的等位基因可能对Tetrapoid M. Prostrata关于二倍体的增加的范围负责的有趣可能性。 (c)2016年Elsevier Inc.保留所有权利。

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