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花药黑粉菌交配型染色体中非重组区域的退化。

Degeneration of the nonrecombining regions in the mating-type chromosomes of the anther-smut fungi.

作者信息

Fontanillas Eric, Hood Michael E, Badouin Hélène, Petit Elsa, Barbe Valérie, Gouzy Jérôme, de Vienne Damien M, Aguileta Gabriela, Poulain Julie, Wincker Patrick, Chen Zehua, Toh Su San, Cuomo Christina A, Perlin Michael H, Gladieux Pierre, Giraud Tatiana

机构信息

Ecologie, Systématique et Evolution, Bâtiment 360, Université Paris-Sud, Orsay, France CNRS, Orsay, France.

Department of Biology, Amherst College.

出版信息

Mol Biol Evol. 2015 Apr;32(4):928-43. doi: 10.1093/molbev/msu396. Epub 2014 Dec 21.

Abstract

Dimorphic mating-type chromosomes in fungi are excellent models for understanding the genomic consequences of recombination suppression. Their suppressed recombination and reduced effective population size are expected to limit the efficacy of natural selection, leading to genomic degeneration. Our aim was to identify the sequences of the mating-type chromosomes (a1 and a2) of the anther-smut fungi and to investigate degeneration in their nonrecombining regions. We used the haploid a1 Microbotryum lychnidis-dioicae reference genome sequence. The a1 and a2 mating-type chromosomes were both isolated electrophoretically and sequenced. Integration with restriction-digest optical maps identified regions of recombination and nonrecombination in the mating-type chromosomes. Genome sequence data were also obtained for 12 other Microbotryum species. We found strong evidence of degeneration across the genus in the nonrecombining regions of the mating-type chromosomes, with significantly higher rates of nonsynonymous substitution (dN/dS) than in nonmating-type chromosomes or in recombining regions of the mating-type chromosomes. The nonrecombining regions of the mating-type chromosomes also showed high transposable element content, weak gene expression, and gene losses. The levels of degeneration did not differ between the a1 and a2 mating-type chromosomes, consistent with the lack of homogametic/heterogametic asymmetry between them, and contrasting with X/Y or Z/W sex chromosomes.

摘要

真菌中的双态交配型染色体是理解重组抑制的基因组后果的优秀模型。它们受到抑制的重组和减小的有效种群大小预计会限制自然选择的效力,导致基因组退化。我们的目标是鉴定花药黑粉菌交配型染色体(a1和a2)的序列,并研究其非重组区域的退化情况。我们使用了单倍体a1 柳叶菜小煤炱的参考基因组序列。a1和a2交配型染色体均通过电泳分离并测序。与限制性酶切光学图谱整合确定了交配型染色体中的重组和非重组区域。还获得了其他12种小煤炱属物种的基因组序列数据。我们发现,在交配型染色体的非重组区域,整个属都有明显的退化证据,非同义替换率(dN/dS)显著高于非交配型染色体或交配型染色体的重组区域。交配型染色体的非重组区域还表现出高转座元件含量、弱基因表达和基因丢失。a1和a2交配型染色体之间的退化水平没有差异,这与它们之间缺乏同配/异配不对称性一致,与X/Y或Z/W性染色体形成对比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d90a/4379399/2f1d5efcf1ec/msu396f1p.jpg

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