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Genome-wide identification, evolution, and expression analysis of the bone morphogenetic protein gene family in Myxocyprinus asiaticus

文献类型: 外文期刊

作者: Zhang, Yizheng 1 ; Zhang, Meng 2 ; Yu, Jinhui 2 ; Ma, Zhigang 1 ; Chen, Xin 1 ; Tang, Yongtao 1 ; Zhou, Chuanjiang 2 ; Li, Qiang 3 ;

作者机构: 1.Henan Normal Univ, Coll Fisheries, Engn Technol Res Ctr Henan Prov Aquat Anim Cultiva, Xinxiang 453007, Peoples R China

2.Henan Normal Univ, Coll Life Sci, State Key Lab Cell Differentiat & Regulat Observat, Xinxiang 453007, Peoples R China

3.Sichuan Acad Agr Sci, Fisheries Inst, Chengdu 611731, Peoples R China

关键词: Myxocyprinus asiaticus; Bone morphogenetic protein; Gene family; Body size

期刊名称:COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY D-GENOMICS & PROTEOMICS ( 影响因子:2.4; 五年影响因子:2.8 )

ISSN: 1744-117X

年卷期: 2025 年 54 卷

页码:

收录情况: SCI

摘要: Bone morphogenetic proteins (BMPs) are important growth factors belonging to the TGF-(3 superfamily. These factors not only play a vital role in skeleton formation in young fish but also regulate the morphological development of M. asiaticus, with Group II genes regulating morphology mainly during the juvenile stage. This study investigated how BMP genes regulate Myxocyprinus asiaticus development and function and explored the role of the BMP family in fish morphological development. In this study, 43 BMPs were identified and classified into five groups: BMP1/3/11/15 (Group I), BMP12/13/14 (Group II), BMP2/4/16 (Group III), BMP9/10 (Group IV), and BMP5/6/7/8 (Group V). Analyses of the gene structures and conserved motifs revealed the conservation of the BMP gene family in M. asiaticus. In M. asiaticus, gene fragmentation, duplication, and 4R whole-genome duplication events contributed to BMP gene family expansion. Furthermore, expression pattern analysis and qRT-PCR revealed that changes in M. asiaticus BMP gene expression during different developmental stages were due to body size alterations, highlighting the major impact of the BMP gene on body size variation in this species. Our study provides fundamental data for investigating the morphological development of M. asiaticus and lays the framework for understanding the genetic mechanisms of body size variation in scleractinian fishes, with potential applications in the artificial breeding and conservation of M. asiaticus.

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