副鞘氨醇蜕变过程中 BMP 信号通路的功能研究

Fishes Pub Date : 2024-07-04 DOI:10.3390/fishes9070263
Botao Zhong, Huaihua Yu, Shengming Han, Weiwei Song, Zhiming Ren, Chunlin Wang, C. Mu
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摘要

本研究通过添加LDN-193189 2HCL来抑制副鳞片藻的BMP信号通路,并通过其生长性能和蜕皮相关基因表达的变化来探讨该通路在蜕皮过程中的功能。研究结果表明,当培养水中的LDN-193189 2HCL浓度为2 µm/L时,副鳞片藻中ACVR1、BMPRIB和Smad1的表达受到抑制。随后,经过 30 天的实验,副鞘氨醇幼虫的蜕皮频率、生长速度和体型都显著下降。对蜕皮期 BMP 通路基因表达的分析表明,BMP2、BMPR2 和 Smad1 基因呈现周期性表达模式,而 ACVR1、BMP7 和 BMPRIB 则在整个蜕皮周期中保持一致的表达水平。此外,抑制组中 BMP2、BMPR2 和 Smad1 的表达水平明显低于对照组。此外,BMP通路的抑制导致蜕皮间期MIH的表达增加,而蜕皮前期EcR的表达减少。这些研究结果表明,BMP信号通路通过影响幼蟹蜕皮过程中关键基因MIH和ECR的表达,从而影响幼蟹的蜕皮过程,为甲壳类BMP信号通路的功能研究提供了有价值的数据。
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Functional Study on the BMP Signaling Pathway in the Molting of Scylla paramamosain
In this study, we added LDN-193189 2HCL to inhibit the BMP signaling pathway in Scylla paramamosain and then explored the function of this pathway in molting through the changes in the growth performance and molt-related gene expression. The study findings indicated that the expression of ACVR1, BMPRIB, and Smad1 in Scylla paramamosain was suppressed when the LDN-193189 2HCL concentration in the culture water was 2 µm/L. Subsequently, following a 30-day experiment, there was a significant reduction in the molting frequency, growth rate, and body size of the S. paramamosain larvae. An analysis of the BMP pathway gene expression during the molting phase revealed that the BMP2, BMPR2, and Smad1 genes displayed cyclic expression patterns, while ACVR1, BMP7, and BMPRIB maintained consistent expression levels throughout the molting cycle. Additionally, the expression levels of BMP2, BMPR2, and Smad1 in the inhibition group were significantly lower compared to those in the control group. Furthermore, the inhibition of the BMP pathway led to an increase in the expression of MIH during the intermolt period and a decrease in the expression of EcR during the premolt period. These findings demonstrate that the BMP signaling pathway affects the molting of Scylla paramamosain juvenile crabs by influencing the expression of the critical genes MIH and ECR during molting, offering valuable data for functional research on the BMP signaling pathway in crustaceans.
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