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不同罗伯逊易位摩尔鼹鼠杂种的减数分裂核型:染色体链、拉长的着丝粒和扭曲的重组。

Meiotic Nuclear Architecture in Distinct Mole Vole Hybrids with Robertsonian Translocations: Chromosome Chains, Stretched Centromeres, and Distorted Recombination.

机构信息

Laboratory of Cytogenetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, 119991 Moscow, Russia.

Laboratory of Genome Evolution and Mechanisms of Speciation, Koltzov Institute of Developmental Biology, Russian Academy of Sciences, 119334 Moscow, Russia.

出版信息

Int J Mol Sci. 2020 Oct 15;21(20):7630. doi: 10.3390/ijms21207630.

Abstract

Genome functioning in hybrids faces inconsistency. This mismatch is manifested clearly in meiosis during chromosome synapsis and recombination. Species with chromosomal variability can be a model for exploring genomic battles with high visibility due to the use of advanced immunocytochemical methods. We studied synaptonemal complexes (SC) and prophase I processes in 44-chromosome intraspecific ( × ) and interspecific ( × ) hybrid mole voles heterozygous for 10 Robertsonian translocations. The same pachytene failures were found for both types of hybrids. In the intraspecific hybrid, the chains were visible in the pachytene stage, then 10 closed SC trivalents formed in the late pachytene and diplotene stage. In the interspecific hybrid, as a rule, SC trivalents composed the SC chains and rarely could form closed configurations. Metacentrics involved with SC trivalents had stretched centromeres in interspecific hybrids. Linkage between neighboring SC trivalents was maintained by stretched centromeric regions of acrocentrics. This centromeric plasticity in structure and dynamics of SC trivalents was found for the first time. We assume that stretched centromeres were a marker of altered nuclear architecture in heterozygotes due to differences in the ancestral chromosomal territories of the parental species. Restructuring of the intranuclear organization and meiotic disturbances can contribute to the sterility of interspecific hybrids, and lead to the reproductive isolation of studied species.

摘要

杂种的基因组功能面临不一致性。这种不匹配在减数分裂过程中染色体联会和重组时表现得尤为明显。具有染色体可变性的物种可以作为探索基因组战斗的模型,因为它们使用了先进的免疫细胞化学方法,具有很高的可见度。我们研究了具有 10 个罗伯逊易位杂合的 44 条染色体种内(×)和种间(×)杂种鼹形田鼠的联会复合体(SC)和前期 I 过程。这两种杂种都发现了相同的粗线期失败。在种内杂种中,在粗线期可见链,然后在后期和双线期形成 10 个封闭的 SC 三价体。在种间杂种中,SC 三价体通常组成 SC 链,很少能形成封闭构型。与 SC 三价体有关的着丝粒在种间杂种中伸展。邻近的 SC 三价体之间的连接由近端着丝粒的伸展着丝粒区维持。首次发现了这种 SC 三价体在结构和动力学上的着丝粒可塑性。我们假设伸展的着丝粒是由于亲种的祖先染色体区域的差异导致杂合体中核架构改变的标志。核内组织的重构和减数分裂干扰可能导致种间杂种的不育,并导致研究物种的生殖隔离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/459f/7589776/134fcadbf70b/ijms-21-07630-g001.jpg

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