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携带不同平衡结构染色体重排的猪的减数分裂重组分析

Meiotic Recombination Analyses in Pigs Carrying Different Balanced Structural Chromosomal Rearrangements.

作者信息

Mary Nicolas, Barasc Harmonie, Ferchaud Stéphane, Priet Aurélia, Calgaro Anne, Loustau-Dudez Anne-Marie, Bonnet Nathalie, Yerle Martine, Ducos Alain, Pinton Alain

机构信息

INRA, UMR1388 Génétique, Physiologie et Systèmes d'Elevage, Castanet-Tolosan, France.

Université de Toulouse INPT ENSAT, UMR1388 Génétique, Physiologie et Systèmes d'Elevage, Castanet-Tolosan, France.

出版信息

PLoS One. 2016 Apr 28;11(4):e0154635. doi: 10.1371/journal.pone.0154635. eCollection 2016.

Abstract

Correct pairing, synapsis and recombination between homologous chromosomes are essential for normal meiosis. All these events are strongly regulated, and our knowledge of the mechanisms involved in this regulation is increasing rapidly. Chromosomal rearrangements are known to disturb these processes. In the present paper, synapsis and recombination (number and distribution of MLH1 foci) were studied in three boars (Sus scrofa domestica) carrying different chromosomal rearrangements. One (T34he) was heterozygote for the t(3;4)(p1.3;q1.5) reciprocal translocation, one (T34ho) was homozygote for that translocation, while the third (T34Inv) was heterozygote for both the translocation and a pericentric inversion inv(4)(p1.4;q2.3). All three boars were normal for synapsis and sperm production. This particular situation allowed us to rigorously study the impact of rearrangements on recombination. Overall, the rearrangements induced only minor modifications of the number of MLH1 foci (per spermatocyte or per chromosome) and of the length of synaptonemal complexes for chromosomes 3 and 4. The distribution of MLH1 foci in T34he was comparable to that of the controls. Conversely, the distributions of MLH1 foci on chromosome 4 were strongly modified in boar T34Inv (lack of crossover in the heterosynaptic region of the quadrivalent, and crossover displaced to the chromosome extremities), and also in boar T34ho (two recombination peaks on the q-arms compared with one of higher magnitude in the controls). Analyses of boars T34he and T34Inv showed that the interference was propagated through the breakpoints. A different result was obtained for boar T34ho, in which the breakpoints (transition between SSC3 and SSC4 chromatin on the bivalents) seemed to alter the transmission of the interference signal. Our results suggest that the number of crossovers and crossover interference could be regulated by partially different mechanisms.

摘要

同源染色体之间的正确配对、联会和重组对于正常减数分裂至关重要。所有这些事件都受到严格调控,并且我们对参与该调控的机制的了解正在迅速增加。已知染色体重排会干扰这些过程。在本文中,研究了三头携带不同染色体重排的公猪(家猪)的联会和重组(MLH1 位点的数量和分布)。一头(T34he)是 t(3;4)(p1.3;q1.5) 相互易位的杂合子,一头(T34ho)是该易位的纯合子,而第三头(T34Inv)既是该易位的杂合子,又是 4 号染色体臂间倒位 inv(4)(p1.4;q2.3) 的杂合子。所有三头公猪的联会和精子产生均正常。这种特殊情况使我们能够严格研究重排对重组的影响。总体而言,重排仅对 3 号和 4 号染色体的 MLH1 位点数量(每个精母细胞或每条染色体)以及联会复合体长度产生了微小改变。T34he 中 MLH1 位点的分布与对照相当。相反,在公猪 T34Inv 中,4 号染色体上 MLH1 位点的分布发生了强烈改变(四价体异源联会区域缺乏交叉,交叉转移到染色体末端),在公猪 T34ho 中也是如此(与对照中一个较高幅度的峰相比,q 臂上有两个重组峰)。对公猪 T34he 和 T34Inv 的分析表明,干扰通过断点传播。公猪 T34ho 的结果不同,其中断点(二价体上 SSC3 和 SSC4 染色质之间的转变)似乎改变了干扰信号的传递。我们的结果表明,交叉的数量和交叉干扰可能由部分不同的机制调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0644/4849707/200ba399a67b/pone.0154635.g001.jpg

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