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小鼠种间杂种减数分裂染色体联会的X染色体控制

X chromosome control of meiotic chromosome synapsis in mouse inter-subspecific hybrids.

作者信息

Bhattacharyya Tanmoy, Reifova Radka, Gregorova Sona, Simecek Petr, Gergelits Vaclav, Mistrik Martin, Martincova Iva, Pialek Jaroslav, Forejt Jiri

机构信息

Mouse Molecular Genetics Group, Division BIOCEV, Institute of Molecular Genetics, Academy of Sciences of the Czech Republic, Prague, Czech Republic.

Institute of Molecular and Translational Medicine, Faculty of Medicine and Dentistry, Palacký University Olomouc, Olomouc, Czech Republic.

出版信息

PLoS Genet. 2014 Feb 6;10(2):e1004088. doi: 10.1371/journal.pgen.1004088. eCollection 2014 Feb.

Abstract

Hybrid sterility (HS) belongs to reproductive isolation barriers that safeguard the integrity of species in statu nascendi. Although hybrid sterility occurs almost universally among animal and plant species, most of our current knowledge comes from the classical genetic studies on Drosophila interspecific crosses or introgressions. With the house mouse subspecies Mus m. musculus and Mus m. domesticus as a model, new research tools have become available for studies of the molecular mechanisms and genetic networks underlying HS. Here we used QTL analysis and intersubspecific chromosome substitution strains to identify a 4.7 Mb critical region on Chromosome X (Chr X) harboring the Hstx2 HS locus, which causes asymmetrical spermatogenic arrest in reciprocal intersubspecific F1 hybrids. Subsequently, we mapped autosomal loci on Chrs 3, 9 and 13 that can abolish this asymmetry. Combination of immunofluorescent visualization of the proteins of synaptonemal complexes with whole-chromosome DNA FISH on pachytene spreads revealed that heterosubspecific, unlike consubspecific, homologous chromosomes are predisposed to asynapsis in F1 hybrid male and female meiosis. The asynapsis is under the trans- control of Hstx2 and Hst1/Prdm9 hybrid sterility genes in pachynemas of male but not female hybrids. The finding concurred with the fertility of intersubpecific F1 hybrid females homozygous for the Hstx2(Mmm) allele and resolved the apparent conflict with the dominance theory of Haldane's rule. We propose that meiotic asynapsis in intersubspecific hybrids is a consequence of cis-acting mismatch between homologous chromosomes modulated by the trans-acting Hstx2 and Prdm9 hybrid male sterility genes.

摘要

杂种不育(HS)属于生殖隔离障碍,可保护新形成物种的完整性。尽管杂种不育几乎普遍存在于动植物物种中,但我们目前的大部分知识都来自对果蝇种间杂交或渗入的经典遗传学研究。以家鼠亚种小家鼠和家鼠为模型,新的研究工具已可用于研究杂种不育背后的分子机制和遗传网络。在此,我们使用数量性状基因座(QTL)分析和亚种间染色体代换系,在X染色体(Chr X)上鉴定出一个4.7 Mb的关键区域,该区域包含Hstx2杂种不育基因座,其导致正反交亚种间F1杂种的精子发生不对称停滞。随后,我们在3号、9号和13号染色体上定位了常染色体基因座,这些基因座可以消除这种不对称性。将联会复合体蛋白的免疫荧光可视化与粗线期铺展上的全染色体DNA荧光原位杂交相结合,结果表明,与同种同源染色体不同,异种同源染色体在F1杂种雄性和雌性减数分裂中易发生联会消失。这种联会消失在雄性但非雌性杂种的粗线期受Hstx2和Hst1/Prdm9杂种不育基因的反式调控。这一发现与携带Hstx2(Mmm)等位基因的纯合亚种间F1杂种雌性的育性一致,并解决了与霍尔丹法则显性理论的明显冲突。我们提出,亚种间杂种中的减数分裂联会消失是由反式作用的Hstx2和Prdm9杂种雄性不育基因调控的同源染色体间顺式作用错配的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cce/3916230/15f8fbd60e6a/pgen.1004088.g001.jpg

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