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杂交雌性的RNA测序分析揭示了远交物种等位基因的表达相对于自交物种等位基因的表达具有优势。

RNA-sequencing Analysis of Hybrid Females Reveals a Dominance of Expression of Alleles From Outcrossing Species Over Those From Selfing Species.

作者信息

Shao Yanwen, Zhang Yiwen, Ren Xiaoliang, Ho Vincy Wing Sze, Bi Yu, Zhao Zhongying, Li Runsheng

机构信息

Department of Infectious Diseases and Public Health, Jockey Club College of Veterinary Medicine and Life Sciences, City University of Hong Kong, Hong Kong, China.

Department of Marine Organism Taxonomy and Phylogeny, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

出版信息

Genome Biol Evol. 2025 May 30;17(6). doi: 10.1093/gbe/evaf098.

Abstract

The sister species Caenorhabditis briggsae and Caenorhabditis nigoni are the first Caenorhabditis nematode pair known to produce viable F1 hybrids, making them an ideal model for speciation study. Male F1 hybrids are lethal or sterile depending on the parent of origin, while F1 females, though viable, exhibit distinct phenotypes in fecundity and viability. Besides, both female hybrids could mate with C. nigoni males to produce viable progeny but experience hybrid breakdown when crossed with C. briggsae males. The molecular mechanisms driving these phenotype variations in F1 females remain unknown. Here, we analyzed the transcriptomes of F1 female hybrids from both crossing directions to examine whether a parent-specific haplotype dominates gene expression in the hybrids and to explore the mechanisms underlying the distinct phenotypes. We showed that in female hybrids from both directions, the C. nigoni haplotype was more abundantly expressed and maintained the parental expression patterns better than that of C. briggsae. We also observed an upregulation of female-biased genes in the C. nigoni haplotype of F1 females, which may explain their compatibility with C. nigoni males for producing viable progeny, suggesting a haplotype-specific influence on female reproductive traits. Our mitochondrial gene analysis suggested a nuclear-cytoplasmic incompatibility marked by cis-dominated expression patterns of mitochondrial genes, which may contribute to the reduced viability in F1 females. This research provides insights into the expression pattern of interspecies F1 female hybrids and the mechanisms underlying nonlethal hybrid incompatibility defects.

摘要

姊妹种秀丽隐杆线虫(Caenorhabditis briggsae)和尼氏隐杆线虫(Caenorhabditis nigoni)是已知的第一对能产生可存活F₁杂种的秀丽隐杆线虫,这使它们成为物种形成研究的理想模型。雄性F₁杂种根据其起源亲本的不同而致死或不育,而F₁雌性虽然可存活,但在繁殖力和活力方面表现出明显的表型。此外,两种雌性杂种都能与尼氏隐杆线虫雄性交配产生可存活的后代,但与秀丽隐杆线虫雄性杂交时会出现杂种衰败。驱动F₁雌性这些表型变异的分子机制仍然未知。在这里,我们分析了两个杂交方向的F₁雌性杂种的转录组,以检查亲本特异性单倍型是否在杂种中主导基因表达,并探索不同表型背后的机制。我们发现,在两个方向的雌性杂种中,尼氏隐杆线虫单倍型的表达更丰富,并且比秀丽隐杆线虫单倍型更好地维持了亲本的表达模式。我们还观察到F₁雌性的尼氏隐杆线虫单倍型中雌性偏向基因上调,这可能解释了它们与尼氏隐杆线虫雄性交配产生可存活后代的兼容性,表明单倍型对雌性生殖性状有特异性影响。我们的线粒体基因分析表明存在核质不相容性,其特征是线粒体基因的顺式主导表达模式,这可能导致F₁雌性活力降低。这项研究为种间F₁雌性杂种的表达模式以及非致死性杂种不相容缺陷背后的机制提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/688e/12142003/9693e010a458/evaf098f1.jpg

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