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凡纳滨对虾活性氧调节剂 1 基因的功能表征。

Functional characterization of a reactive oxygen species modulator 1 gene in Litopenaeus vannamei.

机构信息

School of Life Sciences, Sun Yat-sen University, 135 Xingang Road West, Guangzhou 510275, PR China; State Key Laboratory for Biocontro, Institute of Aquatic Economic Animals and Guangdong Province Key Laboratory for Aquatic Economic Animals, SunYat-senUniversity, 135 Xingang Road West, Guangzhou 510275, PR China.

Key Laboratory of Marine Resources and Coastal Engineering in Guangdong Province, South China Sea Bio-Resource Exploitation and Protection Collaborative Innovation Center (SCS-REPIC), School of Marine Sciences, SunYat-senUniversity, 135 Xingang Road West, Guangzhou 510275, PR China.

出版信息

Fish Shellfish Immunol. 2017 Nov;70:270-279. doi: 10.1016/j.fsi.2017.09.024. Epub 2017 Sep 6.

Abstract

Reactive oxygen species (ROS) imparts a dual effect on multicellular organisms, wherein high levels are usually harmful, and low levels could facilitate in combating pathogenic microorganisms; therefore, the regulation of ROS production is critical. Previous studies have suggested that ROS contributes to resistance to the white spot syndrome virus (WSSV) or Vibrio alginolyticus in Litopenaeus vannamei. However, the regulation of ROS metabolism in L. vannamei remains elusive. In the present study, we proved that the overexpression of L. vannamei reactive oxygen species modulator 1 (LvROMO1) increases ROS production in Drosophila Schneider 2 (S2) cells. Real-time RT-PCR analysis indicated that LvROMO1 is induced by WSSV or V. alginolyticus infection and β-glucan or microcystin (MC-LR) injection. Further investigation showed that LvROMO1 responding to MC-LR, thereby inducing hemocytes to undergo apoptosis, and ultimately resulting in hepatopancreatic damage. And LvROMO1 downregulation induced an increase in the cumulative mortality of WSSV-infected shrimp by reducing ROS production and suppressing the expression of antimicrobial peptides genes. The findings of present study suggest that LvROMO1 plays an important role in ROS production in L. vannamei and is involved in innate immunity.

摘要

活性氧(ROS)对多细胞生物具有双重作用,高水平通常是有害的,而低水平则有助于抵抗致病微生物;因此,ROS 产生的调节至关重要。先前的研究表明,ROS 有助于凡纳滨对虾抵抗白斑综合征病毒(WSSV)或溶藻弧菌。然而,ROS 代谢在凡纳滨对虾中的调节仍不清楚。在本研究中,我们证明了凡纳滨对虾活性氧调节剂 1(LvROMO1)的过表达会增加果蝇 Schneider 2(S2)细胞中的 ROS 产生。实时 RT-PCR 分析表明,LvROMO1 被 WSSV 或溶藻弧菌感染以及β-葡聚糖或微囊藻毒素(MC-LR)注射诱导。进一步的研究表明,LvROMO1 对 MC-LR 作出反应,从而诱导血细胞发生凋亡,最终导致肝胰腺损伤。而 LvROMO1 的下调通过降低 ROS 产生和抑制抗菌肽基因的表达,导致感染 WSSV 的虾的累积死亡率增加。本研究的结果表明,LvROMO1 在凡纳滨对虾的 ROS 产生中起重要作用,并参与先天免疫。

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