Zhang Xin, Shi Jialong, Sun Yulong, Wang Yilei, Zhang Ziping
Key Laboratory of Healthy Mariculture for the East China Sea, Ministry of Agriculture and Rural Affairs, Fisheries College, Jimei University, Xiamen, 361021, China.
College of Marine Science, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Fish Shellfish Immunol. 2022 May;124:300-312. doi: 10.1016/j.fsi.2022.04.007. Epub 2022 Apr 7.
Long non-coding RNAs (lncRNAs) have been linked to immunological modulation. Unfortunately, little is known about the processes of immune control in shrimp. In crustaceans such as Litopenaeus vannamei, a prominent aquaculture species, the X-organ-sinus gland complex (XO-SG) in the eyestalk is an essential neuroendocrine regulatory organ. Eyestalk ablation is commonly employed in aquaculture to accelerate ovarian maturation in shrimp. It does, however, have a negative impact on the shrimps' immunocompetence and causes death. As a result, we used RNA-seq to profile the transcriptomes of L. vannamei hemocytes infected with Vibrio parahaemolyticus after the eyestalk ablation. Following strict transcript screening procedures, 2307 lncRNAs were identified from L. vannamei hemocytes in this study. Pearson correlation analysis was finally used to uncover 535 DElncRNAs and 1566 DEmRNA targets. According to the Venn diagram analysis, 326 non-eyestalk regulatory lncRNAs (NElncRNAs) with a target of 1014 non-eyestalk regulatory genes (NEmRNAs), 47 eyestalk negative regulatory lncRNAs (ENRlncRNAs) with a target of 95 eyestalk negative regulatory genes (ENRmRNAs), and 162 eyestalk positive regulatory lncRNAs (EPRlncRNAs) with a target of 457 eyestalk positive regulatory genes (EPRmRNAs) were screened. The bioinformatics analysis revealed that lncRNAs were associated with Axon regeneration, Rap1 signaling pathway, Thyroid hormone signaling pathway, TGF-beta signaling pathway, and PI3K-Akt signaling pathway, implying that lncRNAs may play a role in the regulation of the neuroendocrine-immune (NEI) system. Furthermore, several lncRNAs targeting HSP70, YWHAZ, FER2, HIF1α, and Notch were discovered and verified by qRT-PCR. These findings showed that regulation of lncRNAs in hemocytes which were controlled by the eyestalk might be one of the impact variables in controlling the differential expression of mRNAs associated with immune response in L. vannamei infected with V. parahaemolyticus.
长链非编码RNA(lncRNAs)与免疫调节有关。遗憾的是,对虾类免疫控制过程了解甚少。在诸如凡纳滨对虾这种重要的水产养殖品种的甲壳类动物中,眼柄中的X器官 - 窦腺复合体(XO - SG)是一个重要的神经内分泌调节器官。水产养殖中通常采用眼柄切除来加速虾的卵巢成熟。然而,这确实会对虾的免疫能力产生负面影响并导致死亡。因此,我们利用RNA测序对眼柄切除后感染副溶血性弧菌的凡纳滨对虾血细胞转录组进行了分析。经过严格的转录本筛选程序,本研究从凡纳滨对虾血细胞中鉴定出2307个lncRNAs。最终通过Pearson相关性分析发现了535个差异表达lncRNAs(DElncRNAs)和1566个差异表达mRNA靶标。根据维恩图分析,筛选出了326个靶向1014个非眼柄调节基因(NEmRNAs)的非眼柄调节lncRNAs(NElncRNAs)、47个靶向95个眼柄负调节基因(ENRmRNAs)的眼柄负调节lncRNAs(ENRlncRNAs)以及162个靶向457个眼柄正调节基因(EPRmRNAs)的眼柄正调节lncRNAs(EPRlncRNAs)。生物信息学分析表明,lncRNAs与轴突再生、Rap1信号通路、甲状腺激素信号通路、TGF - β信号通路和PI3K - Akt信号通路相关,这意味着lncRNAs可能在神经内分泌 - 免疫(NEI)系统的调节中发挥作用。此外,通过qRT - PCR发现并验证了几个靶向HSP70、YWHAZ、FER2、HIF1α和Notch的lncRNAs。这些发现表明,受眼柄控制的血细胞中lncRNAs的调节可能是控制感染副溶血性弧菌的凡纳滨对虾中与免疫反应相关mRNA差异表达的影响变量之一。