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菊头蝠耳蜗转录组中的性别差异

Sex Differences in Cochlear Transcriptomes in Horseshoe Bats.

作者信息

Wu Jianyu, Duan Can, Lan Linjing, Chen Wenli, Mao Xiuguang

机构信息

School of Ecological and Environmental Sciences, East China Normal University, Shanghai 200062, China.

出版信息

Animals (Basel). 2024 Apr 14;14(8):1177. doi: 10.3390/ani14081177.

Abstract

Sexual dimorphism of calls is common in animals, whereas studies on the molecular basis underlying this phenotypic variation are still scarce. In this study, we used comparative transcriptomics of cochlea to investigate the sex-related difference in gene expression and alternative splicing in four taxa. Based on 31 cochlear transcriptomes, we performed differential gene expression (DGE) and alternative splicing (AS) analyses between the sexes in each taxon. Consistent with the degree of difference in the echolocation pulse frequency between the sexes across the four taxa, we identified the largest number of differentially expressed genes (DEGs) and alternatively spliced genes (ASGs) in . However, we also detected multiple DEGs and ASGs in taxa without sexual differences in echolocation pulse frequency, suggesting that these genes might be related to other parameters of echolocation pulse rather than the frequency component. Some DEGs and ASGs are related to hearing loss or deafness genes in human or mice and they can be considered to be candidates associated with the sexual differences of echolocation pulse in bats. We also detected more than the expected overlap of DEGs and ASGs in two taxa. Overall, our current study supports the important roles of both DGE and AS in generating or maintaining sexual differences in animals.

摘要

动物中叫声的两性异形很常见,然而关于这种表型变异潜在分子基础的研究仍然很少。在本研究中,我们利用耳蜗的比较转录组学来研究四个类群中基因表达和可变剪接的性别差异。基于31个耳蜗转录组,我们在每个类群的雌雄之间进行了差异基因表达(DGE)和可变剪接(AS)分析。与四个类群中两性之间回声定位脉冲频率的差异程度一致,我们在[类群名称未给出]中鉴定出数量最多的差异表达基因(DEG)和可变剪接基因(ASG)。然而,我们也在回声定位脉冲频率没有性别差异的类群中检测到多个DEG和ASG,这表明这些基因可能与回声定位脉冲的其他参数而非频率成分有关。一些DEG和ASG与人类或小鼠的听力损失或耳聋基因相关,它们可被视为与蝙蝠回声定位脉冲性别差异相关的候选基因。我们还在两个类群中检测到DEG和ASG的重叠超过预期。总体而言,我们目前的研究支持DGE和AS在产生或维持动物性别差异方面的重要作用。

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