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减数分裂分析显示出对亚马逊青蛙 Leptodactylus pentadactylus(Laurenti,1768)的 X1Y1X2Y2X3Y3X4Y4X5Y5 系统中生育能力维持的适应。

Meiotic analyses show adaptations to maintenance of fertility in X1Y1X2Y2X3Y3X4Y4X5Y5 system of amazon frog Leptodactylus pentadactylus (Laurenti, 1768).

机构信息

Laboratório de Citogenética, Centro de Estudos Avançados em Biodiversidade, Instituto de Ciências Biológicas, Universidade Federal do Pará, Campus Guamá, Rua Augusto Corrêa, no. 01, Guamá, Belém, Pará, CEP 66075-900, Brazil.

Departamento de Biologia Estrutural e Funcional, Instituto de Biociências de Botucatu, Universidade Estadual Paulista (UNESP), Campus Botucatu, Botucatu, São Paulo, CEP 18618689, Brazil.

出版信息

Sci Rep. 2020 Oct 1;10(1):16327. doi: 10.1038/s41598-020-72867-x.

Abstract

Heterozygous chromosomal rearrangements can result in failures during the meiotic cycle and the apoptosis of germline, making carrier individuals infertile. The Amazon frog Leptodactylus pentadactylus has a meiotic multivalent, composed of 12 sex chromosomes. The mechanisms by which this multi-chromosome system maintains fertility in males of this species remain undetermined. In this study we investigated the meiotic behavior of this multivalent to understand how synapse, recombination and epigenetic modifications contribute to maintaining fertility and chromosomal sexual determination in this species. Our sample had 2n = 22, with a ring formed by ten chromosomes in meiosis, indicating a new system of sex determination for this species (X1Y1X2Y2X3Y3X4Y4X5Y5). Synapsis occurs in the homologous terminal portion of the chromosomes, while part of the heterologous interstitial regions performed synaptic adjustment. The multivalent center remains asynaptic until the end of pachytene, with interlocks, gaps and rich-chromatin in histone H2A phosphorylation at serine 139 (γH2AX), suggesting transcriptional silence. In late pachytene, paired regions show repair of double strand-breaks (DSBs) with RAD51 homolog 1 (Rad51). These findings suggest that Rad51 persistence creates positive feedback at the pachytene checkpoint, allowing meiosis I to progress normally. Additionally, histone H3 trimethylation at lysine 27 in the pericentromeric heterochromatin of this anuran can suppress recombination in this region, preventing failed chromosomal segregation. Taken together, these results indicate that these meiotic adaptations are required for maintenance of fertility in L. pentadactylus.

摘要

杂合染色体重排可导致减数分裂周期和生殖细胞凋亡失败,使携带者个体不育。亚马逊青蛙 Leptodactylus pentadactylus 具有减数分裂多价体,由 12 条性染色体组成。这种多染色体系统在该物种雄性中保持生育能力的机制尚不清楚。在这项研究中,我们研究了多价体的减数分裂行为,以了解突触、重组和表观遗传修饰如何有助于维持该物种的生育能力和染色体性别决定。我们的样本 2n = 22,在减数分裂中有十个染色体组成的环,表明该物种有一个新的性别决定系统(X1Y1X2Y2X3Y3X4Y4X5Y5)。染色体的同源末端部分发生联会,而异源的部分进行突触调整。多价体中心在粗线期结束前保持无联会状态,存在交叉、间隙和富含组蛋白 H2A 丝氨酸 139 磷酸化的染色质(γH2AX),提示转录沉默。在粗线期后期,配对区域显示双链断裂(DSB)的修复,与 RAD51 同源物 1(Rad51)相关。这些发现表明 Rad51 的持续存在在粗线期检查点创造了正反馈,允许减数分裂 I 正常进行。此外,在这种无尾两栖动物的着丝粒异染色质的组蛋白 H3 赖氨酸 27 上的三甲基化可以抑制该区域的重组,防止染色体分离失败。综上所述,这些结果表明,这些减数分裂适应是维持 L. pentadactylus 生育能力所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d148/7529792/07f89897266f/41598_2020_72867_Fig1_HTML.jpg

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