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贝类 TGF-β 超家族的全基因组研究。

Genome-wide investigation of the TGF-β superfamily in scallops.

机构信息

Institute of Oceanography, College of Geography and Oceanography, Minjiang University, Fuzhou, 350108, China.

Fujian Key Laboratory on Conservation and Sustainable Utilization of Marine Bioaffiliationersity, Minjiang University, Fuzhou, 350108, China.

出版信息

BMC Genomics. 2024 Jan 2;25(1):24. doi: 10.1186/s12864-023-09942-w.

Abstract

BACKGROUND

Transforming growth factor β (TGF-β) superfamily genes can regulate various processes, especially in embryogenesis, adult development, and homeostasis. To understand the evolution and divergence patterns of the TGF-β superfamily in scallops, genome-wide data from the Bay scallop (Argopecten irradians), the Zhikong scallop (Chlamys farreri) and the Yesso scallop (Mizuhopecten yessoensis) were systematically analysed using bioinformatics methods.

RESULTS

Twelve members of the TGF-β superfamily were identified for each scallop. The phylogenetic tree showed that these genes were grouped into 11 clusters, including BMPs, ADMP, NODAL, GDF, activin/inhibin and AMH. The number of exons and the conserved motif showed some differences between different clusters, while genes in the same cluster exhibited high similarity. Selective pressure analysis revealed that the TGF-β superfamily in scallops was evolutionarily conserved. The spatiotemporal expression profiles suggested that different TGF-β members have distinct functions. Several BMP-like and NODAL-like genes were highly expressed in early developmental stages, patterning the embryonic body plan. GDF8/11-like genes showed high expression in striated muscle and smooth muscle, suggesting that these genes may play a critical role in regulating muscle growth. Further analysis revealed a possible duplication of AMH, which played a key role in gonadal growth/maturation in scallops. In addition, this study found that several genes were involved in heat and hypoxia stress in scallops, providing new insights into the function of the TGF-β superfamily.

CONCLUSION

Characteristics of the TGF-β superfamily in scallops were identified, including sequence structure, phylogenetic relationships, and selection pressure. The expression profiles of these genes in different tissues, at different developmental stages and under different stresses were investigated. Generally, the current study lays a foundation for further study of their pleiotropic biological functions in scallops.

摘要

背景

转化生长因子 β(TGF-β)超家族基因可以调节各种过程,特别是在胚胎发生、成人发育和体内平衡中。为了了解扇贝 TGF-β 超家族的进化和分化模式,我们系统地使用生物信息学方法分析了海湾扇贝(Argopecten irradians)、栉孔扇贝(Chlamys farreri)和虾夷扇贝(Mizuhopecten yessoensis)的基因组数据。

结果

为每种扇贝鉴定了 12 个 TGF-β 超家族成员。系统发育树表明,这些基因分为 11 个簇,包括 BMPs、ADMP、NODAL、GDF、激活素/抑制素和 AMH。不同簇之间的外显子数和保守基序存在一些差异,而同一簇中的基因表现出高度相似性。选择压力分析表明,扇贝的 TGF-β 超家族在进化上是保守的。时空表达谱表明,不同的 TGF-β 成员具有不同的功能。一些 BMP 样和 NODAL 样基因在早期发育阶段高度表达,为胚胎体模式形成提供了指导。GDF8/11 样基因在横纹肌和平滑肌中表达较高,表明这些基因可能在调节肌肉生长中发挥关键作用。进一步分析发现 AMH 可能发生了复制,这在扇贝的性腺生长/成熟中起着关键作用。此外,本研究发现,一些基因参与了扇贝的热和缺氧应激反应,为 TGF-β 超家族的功能提供了新的见解。

结论

鉴定了扇贝 TGF-β 超家族的特征,包括序列结构、系统发育关系和选择压力。研究了这些基因在不同组织、不同发育阶段和不同应激下的表达谱。总的来说,本研究为进一步研究它们在扇贝中的多效生物学功能奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adb8/10763453/ecbc8a507eb9/12864_2023_9942_Fig1_HTML.jpg

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