Meiotic dynamics in a unique Australian marsupial provide new insights into the evolution of neo-sex chromosomes in the early stages of differentiation.

IF 4.6 2区 生物学 Q2 CELL BIOLOGY
Frontiers in Cell and Developmental Biology Pub Date : 2025-03-20 eCollection Date: 2025-01-01 DOI:10.3389/fcell.2025.1562403
Laia Marín-Gual, Carolyn J Hogg, J King Chang, Andrew J Pask, Marilyn B Renfree, Paul D Waters, Aurora Ruiz-Herrera
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Abstract

Understanding the origin and fate of sex chromosomes has been one of the most intriguing questions in biology. In therian (marsupial and eutherian) mammals, most species are characterized by a heteromorphic XX female XY male sex chromosome system. It is commonly accepted that they originated from a pair of autosomes after gaining a sex-determining function, leading to recombination suppression and subsequent Y chromosome degeneration. Unlike eutherian sex chromosomes which share a pseudo-autosomal region (PAR), the marsupial sex chromosomes are typically tiny and lack any homology. However, there is a lack of empirical evidence on biological systems that represent early stages of sex chromosome differentiation. Here, we describe the meiotic dynamics of an XY1Y2 system in the greater bilby (Macrotis lagotis: family Thylacomyidae) that resulted from a fusion between an autosome and the ancestral X chromosome. We compared the similarities and differences in the regulation of meiosis in two other Australian marsupial species with different sex chromosome systems: the tammar wallaby (Macropus eugenii: family Macropodidae) and the fat-tailed dunnart (Sminthopsis crassicaudata: family Dasyuridae), both with the ancestral XY system. We performed a cytological analysis of meiotic prophase I, including the study of chromosome synapsis, double strand break formation (as a proxy of recombination) and meiotic sex chromosome inactivation. Our results suggest that the neo-PAR in the greater bilby represents an early stage of differentiation, providing new insights into sex chromosome evolution.

一种独特的澳大利亚有袋动物的减数分裂动力学为分化早期新性染色体的进化提供了新的见解。
了解性染色体的起源和命运一直是生物学中最有趣的问题之一。在兽类(有袋类和真兽类)哺乳动物中,大多数物种的特征是异型的XX雌性XY雄性性染色体系统。人们普遍认为,它们起源于一对常染色体,在获得性别决定功能后,导致重组抑制和随后的Y染色体变性。与真动物的性染色体共享一个假常染色体区(PAR)不同,有袋动物的性染色体通常很小,缺乏任何同源性。然而,缺乏代表性染色体分化早期阶段的生物系统的经验证据。在这里,我们描述了大袋狸(巨袋狸:袋狸科)XY1Y2系统的减数分裂动力学,该系统是由常染色体和祖先X染色体融合引起的。我们比较了另外两种具有不同性染色体系统的澳大利亚有袋类动物:袋鼠(Macropus eugenii: Macropodidae家族)和肥尾袋鼠(Sminthopsis crassicaudata: Dasyuridae家族)的减数分裂调控的异同,两者都具有祖先的XY系统。我们进行了减数分裂前期I的细胞学分析,包括染色体突触,双链断裂形成(作为重组的代理)和减数分裂性染色体失活的研究。我们的研究结果表明,大兔耳袋狸的neo-PAR代表了分化的早期阶段,为性染色体进化提供了新的见解。
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
Frontiers in Cell and Developmental Biology
Frontiers in Cell and Developmental Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
9.70
自引率
3.60%
发文量
2531
审稿时长
12 weeks
期刊介绍: Frontiers in Cell and Developmental Biology is a broad-scope, interdisciplinary open-access journal, focusing on the fundamental processes of life, led by Prof Amanda Fisher and supported by a geographically diverse, high-quality editorial board. The journal welcomes submissions on a wide spectrum of cell and developmental biology, covering intracellular and extracellular dynamics, with sections focusing on signaling, adhesion, migration, cell death and survival and membrane trafficking. Additionally, the journal offers sections dedicated to the cutting edge of fundamental and translational research in molecular medicine and stem cell biology. With a collaborative, rigorous and transparent peer-review, the journal produces the highest scientific quality in both fundamental and applied research, and advanced article level metrics measure the real-time impact and influence of each publication.
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