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基因可变剪接事件对大黄鱼(Larimichthys crocea)抗刺激隐核虫病的影响。

Effects of Gene Alternative Splicing Events on Resistance to Cryptocaryonosis of Large Yellow Croaker (Larimichthys crocea).

机构信息

State Key Laboratory of Mariculture Breeding, College of Ocean and Earth Sciences, Xiamen University, Xiamen, 361102, China.

College of the Environment and Ecology, Xiamen University, Xiamen, 361102, China.

出版信息

Mar Biotechnol (NY). 2024 Aug;26(4):741-753. doi: 10.1007/s10126-024-10342-8. Epub 2024 Jul 6.

Abstract

Large yellow croaker (L. crocea) is a productive species in marine aquaculture with great economic value in China. However, the sustainable development of large yellow croaker is hampered by various diseases including cryptocaryonosis caused by Cryptocaryon irritans. The genetic regulation processes for cryptocaryonosis in large yellow croaker are still unclear. In this present study, we analyzed differential alternative splicing events between a C. irritans resistance strain (RS) and a commercial strain (CS). We identified 678 differential alternative splicing (DAS) events from 453 genes in RS and 719 DAS events from 500 genes in CS. A set of genes that are specifically alternatively spliced in RS was identified including mfap5, emp1, and trim33. Further pathway analysis revealed that the specifically alternative spliced genes in RS were involved in innate immune responses through the PRR pathway and the Toll and Imd pathway, suggesting their important roles in the genetic regulation processes for cryptocaryonosis in large yellow croaker. This study would be helpful for the studies of the pathogenesis of cryptocaryonosis and dissection of C. irritans resistance for L. crocea.

摘要

大黄鱼(L. crocea)是中国海水养殖业中一种高产量的物种,具有巨大的经济价值。然而,大黄鱼的可持续发展受到多种疾病的阻碍,包括由刺激隐核虫(Cryptocaryon irritans)引起的隐核虫病。大黄鱼隐核虫病的遗传调控过程尚不清楚。在本研究中,我们分析了抗刺激隐核虫大黄鱼(RS)和商业大黄鱼(CS)之间的差异剪接事件。我们在 RS 中鉴定了 678 个差异剪接(DAS)事件,来自 453 个基因;在 CS 中鉴定了 719 个 DAS 事件,来自 500 个基因。鉴定到一组在 RS 中特异性剪接的基因,包括 mfap5、emp1 和 trim33。进一步的通路分析表明,RS 中特异性剪接的基因通过 PRR 通路和 Toll 和 Imd 通路参与先天免疫反应,表明它们在大黄鱼隐核虫病的遗传调控过程中发挥重要作用。本研究将有助于研究隐核虫病的发病机制和解析大黄鱼对刺激隐核虫的抗性。

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