Artificial Induction of Meiotic Gynogenesis in Koi Carp Using Blunt Snout Bream Sperm and Identification of Gynogenetic Offspring
文献类型: 外文期刊
第一作者: Chen, Xiaoyu
作者: Chen, Xiaoyu;Shi, Xiulan;Dong, Zaijie;Guo, Jun;Lin, Kai;Luo, Mingkun;Dong, Zaijie
作者机构:
关键词:
gynogenesis;
期刊名称:ANIMALS ( 影响因子:2.7; 五年影响因子:3.2 )
ISSN: 2076-2615
年卷期: 2025 年 15 卷 10 期
页码:
收录情况: SCI
摘要: Artificial gynogenesis is an effective means of producing pure lines and is widely used for genetic analysis of fish and for sex control. In this study, inactivated sperm from heterogenous blunt snout bream (Megalobrama amblycephala, MA) were used to activate Kohaku koi (Cyprinus carpio var. koi, CK) and produce high-quality female offspring. To determine whether the offspring were gynogenetic fish, the karyotype and DNA content of the CK, MA and the induced offspring (IO) were first compared and it was found that the IO were diploid with 100 chromosomes and their karyotype was 22m + 34sm + 22st + 22t. The DNA content of the IO was not significantly different from that of the CK. Subsequently, the amplified band profiles of CK, MA and IO were analyzed with species-specific microsatellite markers. The results showed that there were no amplified MA microsatellite bands in IO. The size of the amplified bands and the sequence of the 5S rDNA in CK, MA and IO were also analyzed. It was found that the amplified 5S rDNA gene fragments in IO contained two fragments that were both the same size as those of CK and matched more than 90% with those of CK. Finally, the sex of IO was verified using gonadal tissue sections. The result showed that IO was not an all-female population; males were also present (36.7%). In summary, a series of validation methods confirmed that the induced offspring were gynogenetic fish, which is the basis for the subsequent genetic improvement of pure lines of high-quality koi.
分类号:
- 相关文献
作者其他论文 更多>>
-
Genome-wide methylation and transcriptome analysis in koi carp (Cyprinus carpio var. koi): Uncovering novel molecular mechanisms in skin color differentiation and pigmentation
作者:Shi, Xiulan;Chen, Xiaoyu;Dong, Zaijie;Zhu, Wenbin;Fu, Jianjun;Wang, Lanmei;Luo, Mingkun;Dong, Zaijie;Guo, Jun;Lin, Kai
关键词:Koi carp; Skin color; DNA methylation; RNA-sequencing
-
Multiscale structure barrier of whole grains and its transformation during heating as starch digestibility controllers in digestive tract: A review
作者:Chen, Xiaoyu;Zhu, Ling;Zhang, Hui;Wu, Gangcheng;Cheng, Lilin;Zhang, Yayuan
关键词:Whole grains; Microstructure; Starch digestion barriers; Heating effects; Digestive tract changes
-
Citrus huanglongbing detection: A hyperspectral data-driven model integrating feature band selection with machine learning algorithms
作者:Yan, Kangting;Yang, Jing;Xiao, Junqi;Xu, Xidan;Guo, Jun;Lan, Yubin;Zhang, Yali;Yan, Kangting;Lan, Yubin;Yang, Jing;Xiao, Junqi;Xu, Xidan;Guo, Jun;Zhu, Hongyun;Zhang, Yali;Song, Xiaobing
关键词:Hyperspectral technology; Citrus Huanglongbing; Machine learning; Feature band extraction; Rapid detection
-
Influence of cell-wall permeability on starch digestion in sweet potato cells
作者:Chen, Xiaoyu;Zhu, Ling;Zhang, Hui;Wu, Gangcheng;Zhang, Yayuan;Cheng, Lilin
关键词:Sweet potato; Starch digestibility; Cell wall; Amylase permeability
-
The influence mechanism of rice protein on leached amylose molecular structure: Steric hindrance effect of protein bodies
作者:Hu, Jiali;Zhu, Ling;Chen, Xiaoyu;Shi, Xiaowei;Ji, Ying;Zhang, Hui;Hu, Jiali;Zhu, Ling;Chen, Xiaoyu;Shi, Xiaowei;Ji, Ying;Zhang, Hui;Zhang, Yayuan
关键词:Protein bodies; Amylose leaching; Texture properties; Rice protein
-
Application of stable isotopes and mineral elements fingerprinting for beef traceability and authenticity in inner mongolia of China
作者:Bai, Yang;Wang, Xin;Ha, Liya;Dong, Xin;Guo, Jun;Zhao, Yan;Ao, Qier
关键词:Beef; Stable isotope; Mineral element; Traceability; Authenticity
-
Structural barriers governing starch digestibility in intact highland barley cells: A closer insight from cell wall and protein matrix
作者:Chen, Xiaoyu;Zhu, Ling;Zhang, Hui;Wu, Gangcheng;Zhang, Yayuan;Cheng, Lilin
关键词:Intact endosperm cells; Structural barriers; Cell wall; Protein matrix; Starch digestibility