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半胱氨酸亚磺酸脱羧酶的鉴定与表达,对低渗胁迫下中国蛤蜊(Crassostrea gigas)牛磺酸生物合成的可能调控。

Identification and expression of cysteine sulfinate decarboxylase, possible regulation of taurine biosynthesis in Crassostrea gigas in response to low salinity.

机构信息

Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao, 266003, China.

School of Marine Sciences, Ningbo University, Ningbo, 315211, China.

出版信息

Sci Rep. 2017 Jul 14;7(1):5505. doi: 10.1038/s41598-017-05852-6.

Abstract

Taurine has been reported high amounts in marine animals to maintain osmotic balance between osmoformers and sea water. Approximately 80% of the total amino-acid content is taurine in Pacific oyster Crassostrea gigas, an intertidal and euryhaline species. In this study, we cloned the two copies of cysteine sulfinate decarboxylase (CSAD), the key enzyme in taurine biosynthesis pathway, screened in oyster genome data. Sequentially, we compared the expression patterns of CgCSAD1 and CgCSAD2 under low salinity treatment (8‰ and 15‰) using different families from two populations. There was no correlation between the expression of CSAD and the different population. Notably, CgCSAD1 increased significantly in treated groups for 24 h, but CgCSAD2 had no significant differentiation. Moreover, the results of CgCSAD1 interference provided the evidence of the positive correlation between CgCSAD1 expressions and taurine contents. The zinc finger domain showed in multi-alignment results may be the important character of CgCSAD1 as the key enzyme in taurine biosynthesis to regulate taurine pool in response to low salinity. This study provides a new evidence for the important role of taurine in adaptation to low salinity in oyster. In addition, it is a good model to discuss the function and evolution of the duplication in mollusks.

摘要

牛磺酸在海洋动物中含量很高,可在渗透调节剂和海水之间维持渗透压平衡。太平洋牡蛎(Crassostrea gigas)是一种潮间带广盐性物种,其总氨基酸含量的 80%左右为牛磺酸。本研究根据牡蛎基因组数据,克隆了牛磺酸生物合成途径中的关键酶半胱氨酸亚磺酸脱羧酶(CSAD)的两个拷贝。随后,我们比较了来自两个种群的不同家族在低盐处理(8‰和 15‰)下 CgCSAD1 和 CgCSAD2 的表达模式。CSAD 的表达与不同种群之间没有相关性。值得注意的是,在处理组中,CgCSAD1 在 24 小时内显著增加,但 CgCSAD2 没有明显的分化。此外,CgCSAD1 干扰的结果提供了 CgCSAD1 表达与牛磺酸含量之间存在正相关的证据。多重比对结果中的锌指结构域可能是 CgCSAD1 作为牛磺酸生物合成的关键酶调节牛磺酸库以响应低盐的重要特征。本研究为牛磺酸在牡蛎适应低盐中的重要作用提供了新的证据。此外,它是讨论贝类中重复功能和进化的良好模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49ba/5511178/7a3526f8d235/41598_2017_5852_Fig1_HTML.jpg

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