Testing immediate dosage compensation in Drosophila miranda via irradiation with heavy-ion beams.

IF 1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Genes & genetic systems Pub Date : 2023-10-24 Epub Date: 2023-09-29 DOI:10.1266/ggs.23-00100
Masafumi Ogawa, Kazuhide Tsuneizumi, Tomoko Abe, Masafumi Nozawa
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Abstract

Many organisms with heteromorphic sex chromosomes possess a mechanism of dosage compensation (DC) in which X-linked genes are upregulated in males to mitigate the dosage imbalance between sexes and between chromosomes. However, how quickly the DC is established during evolution remains unknown. In this study, by irradiating Drosophila miranda male flies, which carry young sex chromosomes (the so-called neo-sex chromosomes), with heavy-ion beams, we induced deletions in the neo-Y chromosome to mimic the condition of Y-chromosome degeneration, in which functional neo-Y-linked genes are nonfunctionalized; furthermore, we tested whether their neo-X-linked gametologs were immediately upregulated. Because the males that received 2-Gy iron-ion beam irradiation exhibited lower fertility, we sequenced the genomes and transcriptomes of six F1 males derived from these males. Our pipeline identified 82 neo-Y-linked genes in which deletions were predicted in the F1 males. Only three of them showed a one-to-one gametologous relationship with the neo-X-linked genes. The candidate deletions in these three genes occurred in UTRs and did not seriously affect their expression levels. These observations indirectly suggest that DC was unlikely to have operated on the neo-X-linked genes immediately after the pseudogenization of their neo-Y-linked gametologs in D. miranda. Therefore, the dosage imbalance caused by deletions in the neo-Y-linked genes without paralogs may not have effectively been compensated, and individuals with such deletions could have exhibited lethality. Future studies on sex chromosomes at different ages will further reveal the relationship between the age of sex chromosomes and the stringency of DC.

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重离子束辐照法在果蝇体内进行即时剂量补偿试验。
许多具有异型性染色体的生物体具有剂量补偿(DC)机制,其中雄性体内的X连锁基因上调,以缓解性别之间和染色体之间的剂量失衡。然而,DC在进化过程中建立的速度仍然未知。在这项研究中,通过用重离子束照射携带年轻性染色体(即所谓的新性染色体)的果蝇,我们诱导了新Y染色体的缺失,以模拟Y染色体退化的情况,在这种情况下,功能性的新Y连锁基因没有功能;此外,我们测试了它们的新X连接配子体是否立即上调。由于接受2-Gy铁离子束照射的雄性表现出较低的生育能力,我们对来自这些雄性的六只F1雄性的基因组和转录组进行了测序。我们的管道鉴定了82个新的Y连锁基因,其中F1雄性的缺失被预测。其中只有三个与新X连锁基因表现出一对一的配子关系。这三个基因中的候选缺失发生在UTR中,并没有严重影响它们的表达水平。这些观察结果间接表明,DC不太可能在D.miranda的新Y连接配子体假基因化后立即对新X连接基因进行操作。因此,由没有旁系同源物的新Y连锁基因缺失引起的剂量失衡可能没有得到有效补偿,具有这种缺失的个体可能表现出致命性。未来对不同年龄的性染色体的研究将进一步揭示性染色体年龄与DC严格性之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Genes & genetic systems
Genes & genetic systems 生物-生化与分子生物学
CiteScore
1.50
自引率
0.00%
发文量
22
审稿时长
>12 weeks
期刊介绍: Genes & Genetic Systems , formerly the Japanese Journal of Genetics , is published bimonthly by the Genetics Society of Japan.
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