首页> 外文期刊>Heredity: An International Journal of Genetics >Introgressive hybridization as a promoter of genome reshuffling in natural homoploid fish hybrids (Cyprinidae, Leuciscinae)
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Introgressive hybridization as a promoter of genome reshuffling in natural homoploid fish hybrids (Cyprinidae, Leuciscinae)

机译:作为天然同性恋鱼类杂交种中的基因组的启动子(Cyprinidae,Leuciscina),其滴注杂交

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Understanding the mechanisms underlying diversification and speciation by introgressive hybridization is currently one of the major challenges in evolutionary biology. Here, the analysis of hybridization between two pairs of Iberian Leuciscinae provided new data on independent hybrid zones involving Achondrostoma oligolepis (AOL) and Pseudochondrostoma duriense (PDU), and confirmed the occurrence of hybrids between AOL and Pseudochondrostoma polylepis (PPO). A multilevel survey combining morphological, genetic and cytogenomic markers on a vast population screening successfully sorted the selected fishes as admixed. Results were similar in both AOL × PDU and AOL × PPO systems. Overall, hybrid morphotypes, cytogenomic data and genetic profiling indicated preferential backcrossing and suggested AOL as a major genomic contributor. Moreover, results implied AOL as more permissive to introgression than PDU or PPO. Although PDU- and PPO-like individuals appeared more resilient to genome modifications, AOL appeared to be more involved and affected by the ongoing hybridization events, as chromosomal translocations were only found in AOL-like individuals. All hybrids analysed evidenced extensive ribosomal DNA (rDNA) polymorphism that was not found in parental species, but usually seen falling within the range of possible parental combinations. Yet, transgressive phenotypes that cannot be explained by normal recombination, including more rDNA clusters than expected or the occurrence of syntenic rDNAs, were also detected. Present results proved rapid genomic evolution providing the genetic novelty for species to persist. In addition, although the ultimate consequences of such apparently extensive and recurrent events remain unknown, modern genome-wide methodologies are of great promise towards answering questions concerning the causes, dynamics and impacts of hybridization.
机译:了解术语潜在的多样化和形态的机制目前是进化生物学中的主要挑战之一。这里,两对Iberian leuciscina之间的杂交分析提供了涉及Achondrostoma Oligolepis(AOL)和伪血管瘤DURIENSE(PDU)的独立杂交区的新数据,并确认了AOL和伪血管瘤酚(PPO)之间的杂种。在庞大的人口筛查中结合形态,遗传和细胞源标志物的多级调查成功将所选鱼类分类为混合。结果在AOL×PDU和AOL×PPO系统中具有相似。总体而言,杂种Morclotypes,细胞素数据和遗传分析表明优先回交并提出了AOL作为主要的基因组贡献者。此外,结果暗示了AOL比PDU或PPO更允许迟发。尽管PDU和PPO的个体出现了更具弹性的基因组修饰,但是AOL似乎更多地参与并受到持续杂交事件的影响,因为染色体易位仅在AOL样中发现。分析的所有杂种都证明了父母种类中未发现的广泛核糖体DNA(RDNA)多态性,但通常看出落入可能的父母组合的范围内。然而,还发现了不能通过正常重组解释的近侵袭表型,包括比预期的rDNA簇或同步RDNA的发生。目前的结果证明了快速的基因组进化,为物种持续存在遗传新颖。此外,虽然如此明显广泛和经常发生的事件的最终后果仍然是未知的,但现代基因组的方法对于回答有关杂交的原因,动态和影响的问题非常有望。

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