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多组织 RNA-Seq 分析和基于长读长的基因组组装揭示了菲律宾蛤仔中复杂的性别特异性基因调控和分子进化。

Multi-tissue RNA-Seq Analysis and Long-read-based Genome Assembly Reveal Complex Sex-specific Gene Regulation and Molecular Evolution in the Manila Clam.

机构信息

Department of Biological, Geological, and Environmental Sciences, University of Bologna, Bologna, Italy.

Department of Comparative Biomedicine and Food Science, University of Padova, Padova, Italy.

出版信息

Genome Biol Evol. 2022 Dec 7;14(12). doi: 10.1093/gbe/evac171.

Abstract

The molecular factors and gene regulation involved in sex determination and gonad differentiation in bivalve molluscs are unknown. It has been suggested that doubly uniparental inheritance (DUI) of mitochondria may be involved in these processes in species such as the ubiquitous and commercially relevant Manila clam, Ruditapes philippinarum. We present the first long-read-based de novo genome assembly of a Manila clam, and a RNA-Seq multi-tissue analysis of 15 females and 15 males. The highly contiguous genome assembly was used as reference to investigate gene expression, alternative splicing, sequence evolution, tissue-specific co-expression networks, and sexual contrasting SNPs. Differential expression (DE) and differential splicing (DS) analyses revealed sex-specific transcriptional regulation in gonads, but not in somatic tissues. Co-expression networks revealed complex gene regulation in gonads, and genes in gonad-associated modules showed high tissue specificity. However, male gonad-associated modules showed contrasting patterns of sequence evolution and tissue specificity. One gene set was related to the structural organization of male gametes and presented slow sequence evolution but high pleiotropy, whereas another gene set was enriched in reproduction-related processes and characterized by fast sequence evolution and tissue specificity. Sexual contrasting SNPs were found in genes overrepresented in mitochondrial-related functions, providing new candidates for investigating the relationship between mitochondria and sex in DUI species. Together, these results increase our understanding of the role of DE, DS, and sequence evolution of sex-specific genes in an understudied taxon. We also provide resourceful genomic data for studies regarding sex diagnosis and breeding in bivalves.

摘要

双单亲遗传(DUI)的线粒体可能参与双壳贝类的性别决定和性腺分化过程,但双壳贝类中涉及性别决定和性腺分化的分子因素和基因调控尚不清楚。我们展示了首例基于长读长的无梗边牡蛎基因组从头组装,以及对 15 只雌性和 15 只雄性的 15 种组织进行的 RNA-Seq 多组织分析。高度连续的基因组组装被用作参考,以研究基因表达、可变剪接、序列进化、组织特异性共表达网络和性对比 SNPs。差异表达(DE)和差异剪接(DS)分析揭示了性腺中的性别特异性转录调控,但在体细胞组织中没有。共表达网络揭示了性腺中复杂的基因调控,性腺相关模块中的基因表现出高度的组织特异性。然而,雄性性腺相关模块显示出序列进化和组织特异性的对比模式。一组基因与雄性配子的结构组织有关,表现出缓慢的序列进化但具有高度的多效性,而另一组基因富集在与生殖相关的过程中,表现出快速的序列进化和组织特异性。在与线粒体相关功能相关的基因中发现了性对比 SNPs,为研究 DUI 物种中线粒体与性别之间的关系提供了新的候选基因。总之,这些结果增加了我们对未充分研究的分类群中性别特异性基因的 DE、DS 和序列进化作用的理解。我们还提供了有价值的基因组数据,用于研究双壳贝类的性别诊断和繁殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b39/9803972/402a5c8932f5/evac171f1.jpg

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