首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Expression characteristics of sulfur dioxygenase and its function adaption to sulfide in echiuran worm Urechis unicinctus
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Expression characteristics of sulfur dioxygenase and its function adaption to sulfide in echiuran worm Urechis unicinctus

机译:鱼蠕虫Urechis unicinctus的表达方式及其对硫化物的适应性

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Animals living in coastal burrows are periodically exposed to the sulfide, a mixture of H2S, HS- and S2-, during low tide. Mitochondrial sulfide oxidation is an important strategy that allows organisms to avoid injury from sulfide exposure, and sulfur dioxygenase (SDO) plays an essential role. In this study, we characterized the SDO expression and the total SDO-specific activity (T-SDO SA) in different organs of Urechis unicinctus, which inhabitUshaped burrows in intertidal and subtidal mudflats. The SDO expressions at both mRNA and protein levels were highest in the anal sac, followed by the midgut, and were extraordinarily low in the body wall and hindgut; SDO was located mainly in the epithelial cells of all organs by immunohistochemistry. Moreover, the T-SDO SA was different in the detected organs, but with no significant differences and SDO SAs were strong positive correlation with GSH contents. Furthermore, we investigated the responses of the SDO in the midgut and hindgut of U. unicinctus during sulfide exposure. The SDO contents increased significantly at 48 h and 72 h, respectively, in both the midgut and hindgut when the worms were exposed to 50 and 150 mu M sulfide. However, the T-SDO SA was no significantly different in the midgut except that at 72 h for 150 mu M sulfide treatment, meanwhile in the hindgut, the T-SDO SA increased significantly after 24 h exposure for 50 and 150 mu M sulfide treatments. We concluded that the hindgut plays more important role than the midgut in sulfide tolerance for U. unicinctus. (C) 2016 Elsevier B.V. All rights reserved.
机译:生活在沿海洞穴中的动物在退潮期间会定期暴露于硫化物(H2S,HS-和S2-的混合物)中。线粒体硫化物氧化是一项重要的策略,可以使生物体避免因暴露于硫化物而受到伤害,而硫双加氧酶(SDO)起着至关重要的作用。在这项研究中,我们表征了Urechis unicinctus不同器官中的SDO表达和总SDO特异性活性(T-SDO SA),这些器官栖息在潮间带和潮间带滩涂中的U型洞穴中。 SDO在mRNA和蛋白水平上的表达在肛门囊中最高,其次是中肠,而在体壁和后肠中则特别低。通过免疫组织化学,SDO主要位于所有器官的上皮细胞中。此外,T-SDO SA在检测器官中有所不同,但无显着差异,并且SDO SA与GSH含量呈强正相关。此外,我们调查了在硫化物暴露过程中,U。unicinctus中肠和后肠中SDO的响应。当蠕虫暴露于50和150μM硫化物时,中肠和后肠的SDO含量分别在48 h和72 h显着增加。然而,T-SDO SA在中肠中无显着差异,除了在72 h进行150μM硫化物处理外,在后肠中,T-SDO SA在暴露24 h分别在50和150μM硫化物处理后显着增加。我们得出的结论是,后肠比中肠在对U. unicinctus的硫化物耐受性中起着更重要的作用。 (C)2016 Elsevier B.V.保留所有权利。

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