Key Laboratory of Aquatic Germplasm Resources of Zhejiang, College of Biological & Environmental Sciences, Zhejiang Wanli University, Ningbo, 315100, China.
School of Marine Science, Ningbo University, Ningbo, 315823, China.
Mar Biotechnol (NY). 2022 Oct;24(5):942-955. doi: 10.1007/s10126-022-10156-6. Epub 2022 Aug 28.
The "Wanlihong" Meretrix meretrix (WLH-M) clam is a new variety of this species that has a red shell and stronger Vibrio tolerance than ordinary M. meretrix (ORI-M). To investigate the molecular mechanisms responsible for the WLH-M strain's tolerance to Vibrio, we challenged clams with Vibrio parahaemolyticus and then assessed physiological indexes and conducted transcriptome analysis and RNA interference experiments. The mortality, tissue bacterial load, and hemocyte reactive oxygen species level of ORI-M were significantly higher than those of WLH-M, whereas the content and activity of lysozyme were significantly lower. Gene Ontology functional annotation analysis and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis revealed that immune and metabolic pathways were enriched in Vibrio-challenged clams. The expressions of the heat shock protein 70 (Hsp70) and serine protease (SP) genes, which are involved in antibacterial immunity, were significantly upregulated in WLH-M but not in ORI-M, while the expression of the kynurenine 3-monooxygenase gene, a proinflammatory factor, was significantly downregulated in WLH-M. RNA interference experiments confirmed that Hsp70 and SP downregulation could result in increased mortality of WLH-M. Therefore, we speculate that Hsp70 and SP may be involved in the antibacterial immunity of WLH-M in vivo. Our data provided a valuable resource for further studies of the antibacterial mechanism of WLH-M and provided a foundation for the breeding of pathogen-resistant strains.
“万里红”(WLH)马氏珠母贝是该物种的一个新品种,与普通马氏珠母贝(ORI-M)相比,其贝壳呈红色且具有更强的弧菌耐受能力。为了研究导致 WLH-M 菌株耐受弧菌的分子机制,我们用副溶血弧菌对贝类进行了挑战,然后评估了生理指标,并进行了转录组分析和 RNA 干扰实验。ORI-M 的死亡率、组织细菌载量和血细胞活性氧水平明显高于 WLH-M,而溶菌酶的含量和活性明显低于 WLH-M。GO 功能注释分析和京都基因与基因组百科全书通路富集分析表明,免疫和代谢通路在受到弧菌挑战的贝类中富集。参与抗菌免疫的热休克蛋白 70(Hsp70)和丝氨酸蛋白酶(SP)基因的表达在 WLH-M 中明显上调,但在 ORI-M 中没有上调,而促炎因子色氨酸 3-单加氧酶基因的表达在 WLH-M 中明显下调。RNA 干扰实验证实 Hsp70 和 SP 的下调可导致 WLH-M 死亡率增加。因此,我们推测 Hsp70 和 SP 可能参与了 WLH-M 的体内抗菌免疫。我们的数据为进一步研究 WLH-M 的抗菌机制提供了有价值的资源,并为培育抗病原体菌株奠定了基础。