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基因型性别决定和温度依赖性别决定雄鱼的精子核行为存在明显差异,这与一种雌核发育鱼类的复制和表达相关途径有关。

Distinct sperm nucleus behaviors between genotypic and temperature-dependent sex determination males are associated with replication and expression-related pathways in a gynogenetic fish.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Innovative Academy of Seed Design, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Wuhan, 430072, China.

Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China.

出版信息

BMC Genomics. 2018 Jun 5;19(1):437. doi: 10.1186/s12864-018-4823-6.

Abstract

BACKGROUND

Coexistence and transition of diverse sex determination strategies have been revealed in some ectothermic species, but the variation between males caused by different sex determination strategies and the underlying mechanism remain unclear. Here, we used the gynogenetic gibel carp (Carassius gibelio) with both genotypic sex determination (GSD) and temperature-dependent sex determination (TSD) strategies to illustrate this issue.

RESULTS

We found out that males of GSD and TSD in gibel carp had similar morphology, testicular histology, sperm structure and sperm vitality. However, when maternal individuals were mated with males of GSD, sperm nucleus swelling and fusing with the female pronucleus were observed in the fertilized eggs. On the contrary, when maternal individuals were mated with males of TSD, sperm nucleus remained in the condensed status throughout the whole process. Subsequently, semen proteomics analysis unveiled that DNA replication and gene expression-related pathways were inhibited in the sperm from males of TSD compared to males of GSD, and most differentially expressed proteins associated with DNA replication, transcription and translation were down-regulated. Moreover, via BrdU incorporation and immunofluorescence detection, male nucleus replication was revealed to be present in the fertilized eggs by the sperm from males of GSD, but absent in the fertilized eggs by the sperm from males of TSD.

CONCLUSIONS

These findings indicate that DNA replication and gene expression-related pathways are associated with the distinct sperm nucleus development behaviors in fertilized eggs in response to the sperm from males of GSD and TSD. And this study is the first attempt to screen the differences between males determined via GSD and TSD in gynogenetic species, which might give a hint for understanding evolutionary adaption of diverse sex determination mechanisms in unisexual vertebrates.

摘要

背景

一些变温动物物种中存在多种性别决定策略的共存和转换,但不同性别决定策略导致的雄性个体差异及其潜在机制尚不清楚。本研究以兼具基因型性别决定(genotypic sex determination,GSD)和温度依赖型性别决定(temperature-dependent sex determination,TSD)策略的雌核发育银鲫(Carassius gibelio)为研究对象,阐明了这一问题。

结果

我们发现,GSD 和 TSD 雄鱼的银鲫在形态、精巢组织学、精子结构和活力方面均无明显差异。然而,当母体与 GSD 雄鱼交配时,观察到受精过程中精子核肿胀并与雌原核融合。相反,当母体与 TSD 雄鱼交配时,精子核在整个过程中保持浓缩状态。随后的精液蛋白质组学分析表明,与 GSD 雄鱼的精子相比,TSD 雄鱼的精子中与 DNA 复制和基因表达相关的途径受到抑制,与 DNA 复制、转录和翻译相关的大多数差异表达蛋白下调。此外,通过 BrdU 掺入和免疫荧光检测发现,GSD 雄鱼的精子可在受精过程中诱导雄核复制,而 TSD 雄鱼的精子则无此作用。

结论

这些结果表明,DNA 复制和基因表达相关途径与 GSD 和 TSD 雄鱼精子诱导的受精后雄核发育行为的差异有关。本研究首次尝试筛选 GSD 和 TSD 决定的雄鱼之间的差异,这可能有助于理解单性脊椎动物中多种性别决定机制的进化适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9de0/5987661/6337086e5162/12864_2018_4823_Fig1_HTML.jpg

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