Unveiling potential sex-determining genes and sex-specific markers in autotetraploid Carassius auratus

Autotetraploid Carassius auratus is a stable hereditary autotetraploid fish resulting from the hybridization of Carassius auratus red var. (RCC, ♀) × Megalobrama amblycephala (BSB, ♂), containing four sets of RCC chromosomes. However, the molecular mechanism underlying the determination of sex in th...

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Veröffentlicht in:Science China. Life sciences 2024-11, Vol.67 (11), p.2444-2458
Hauptverfasser: Zhang, Kun, Huang, Xu, Wang, Chongqing, Xu, Xidan, Xu, Xiaowei, Dong, Xiaoping, Xiao, Qingwen, Bai, Jinhai, Zhou, Yue, Liu, Zhengkun, Deng, Xinyi, Tang, Yan, Li, Siyang, Hu, Enkui, Peng, Wanjing, Xiong, Ling, Qin, Qinbo, Liu, Shaojun
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Sprache:eng
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Zusammenfassung:Autotetraploid Carassius auratus is a stable hereditary autotetraploid fish resulting from the hybridization of Carassius auratus red var. (RCC, ♀) × Megalobrama amblycephala (BSB, ♂), containing four sets of RCC chromosomes. However, the molecular mechanism underlying the determination of sex in this species remains largely unknown. Currently, there lacks a full understanding of the molecular mechanisms governing sex determination and specific molecular markers to differentiate sex in this species. In this study, 25,801,677 SNPs (Single-nucleotide polymorphism) and 6,210,306 Indels (insertion-deletion) were obtained from whole-genome resequencing of 100 individuals (including 50 female and 50 male). Further identification confirmed the candidate chromosomes as Chr46B, with the sex-determining region located at Chr46B: 22,500,000–22,800,000 bp. Based on the male-specific insertion (26 bp) within the candidate sex-determining region, a pair of sex-specific molecular markers has been identified. In addition, based on the screening of candidate sex-determining region genes and RT-qPCR validation analysis, ADAM10, AQP9 and tc1a were identified as candidate sex-determining genes. These findings provide a robust foundation for investigating sex determination mechanisms in fish, the evolution of sex chromosomes, and the development of monosex populations.
ISSN:1674-7305
1869-1889
1869-1889
DOI:10.1007/s11427-023-2694-5