中国明对虾MKK3 基因cDNA 克隆及其在氨氮胁迫下的表达
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1. 农业部海洋渔业可持续发展重点实验室, 中国水产科学研究院 黄海水产研究所, 山东 青岛 266071; 2. 上海海洋大学 水产与生命学院, 上海 201306; 3. 青岛海洋科学与技术国家实验室, 海洋渔业科学与食物产出过程功能实验室, 山东 青岛 266235

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作者简介: 姚万龙(1988−), 硕士研究生, 主要从事海水养殖生物种质资源与遗传育种研究. E-mail: wanlongyao@yeah.net 通信作者: 王清印, 研究员. E-mail: qywang@public.qd.sd.cn

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S917

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国家虾产业技术体系项目(CARS-47);国家自然科学基金面上项目(31172401); 青岛海洋科学与技术国家实验室螯山科技创新计划项目(2015ASKJ02).


Cloning and expression analysis of the MKK3 gene in Fenneropenaeus chinensis under ammonia-N stress
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1. Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture; Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266071, China; 2. College of Fisheries and Life Science, Shanghai Ocean Univer

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    摘要:

    采用RACE 技术克隆获得中国明对虾(Fenneropenaeus chinensis)丝裂原活化蛋白激酶激酶3(MKK3)基因全长cDNA 序列, 并对该序列进行分析。结果表明, 该基因全长为1434 bp, 开放阅读框长1011 bp, 5′非编码区长33 bp,3′非编码区长390 bp, 将该基因命名为FcMKK3。推测该基因编码336 个氨基酸, 分子量为37.89 kD, 理论等电点为6.08。同源性和系统进化分析表明, FcMKK3 基因与丽蝇蛹集金小蜂(Nasonia vitripennis)和地中海实蝇(Ceratitiscapitata)的相似性分别为69%和68%, 与其他节肢动物MKK3 聚为一类。荧光定量RT-PCR 结果表明, FcMKK3 基因在肌肉中的相对表达量最高, 其次为鳃。氨氮胁迫后该基因在中国明对虾肠、鳃、胃、心脏、肝胰腺、肌肉和血细胞中的表达量均显著增加, 并有不同的时空表达趋势, 表明FcMKK3 基因可能在中国明对虾应对非生物胁迫反应的过程中起着重要的作用。

    Abstract:

    We cloned the full-length mitogen activated protein kinase kinase 3 (MKK3) cDNA sequence using therapid amplification of cDNA ends method to understand the physicochemical and functional characteristics ofMKK3 in Fenneropenaeus chinensis. F. chinensis MKK3 was analyzed using a bioinformatics method to explorethe sequence homology of MKK3 genes from different species. MKK3 gene expression levels were determined indifferent tissues by quantitative real-time polymerase chain reaction analysis before and after exposure to ammonia-N stress. The full-length cDNA sequence of the F. chinensis MKK3 gene (FcMKK3) was 1434 bp long andcontained a 33 bp 5′-untranslated region (UTR), a 390-bp 3′-UTR, and a 1011-bp open reading frame that encoded336 amino acid residues, with an isoelectric point (PI) of 6.08 and molecular mass of 37.89 kD. The homologyanalysis revealed that the FcMKK3 amino acid sequence had highly similarity with MKK3 of other species, suchas 69% identity with Nasonia vitripennis MKK3 and 68% identity with Ceratitis capitata MKK3. The phylogeneticanalysis showed that FcMKK3 was in the same class with other arthropod MKK3 genes. The FcMKK3 genewas expressed in intestine, gill, stomach, heart, lymph, hepatopancreas, muscle, and hemocytes, with significantdifferences in tissue expression levels. Relative expression of FcMKK3 in muscle was the highest, followed by thegill. FcMKK3 expression in hemocytes was the lowest. FcMKK3 expression after exposure to ammonia-N stresswas initially upregulated in intestine, gill, stomach, and muscle and then downregulated, followed by upregulation.FcMKK3 expression reached the first peak at 6 h, 6 h, 6 h, and 3 h in intestine, gill, stomach, and muscle, respectively,which was 2.33-fold (P<0.01), 1.56-fold (P<0.01), 2.99-fold (P<0.01), and 1.56-fold (P<0.01) of the fourtissues in control animals, respectively. The second peak was reached at 96 h, 72 h, 72 h, and 48 h, which was2.49-fold (P<0.01), 2.34-fold (P<0.01), 2.36-fold (P<0.01), and 5.58-fold (P<0.01) more than those in the controlgroup, respectively. Relative FcMKK3 expression levels in the experimental group were higher than those in thecontrol group at all testing points. In contrast, relative FcMKK3 expression in heart, hepatopancreas, and hemocyteswas downregulated initially and then upregulated. FcMKK3 expression was the lowest at 3 h, 3 h, and 6 h,which was 0.56-fold (P<0.01), 0.26-fold (P<0.01), and 0.72-fold (P<0.01) of the values in the three tissues fromanimals in the control group, respectively. Then, FcMKK3 expression was upregulated and reached peaks at 48 h,6 h, and 24 h, which were 2.16-fold (P<0.01), 2.53-fold (P<0.01), and 1.19-fold (P<0.05) of the control groupvalues, respectively. In conclusion, relative FcMKK3 expression was upregulated significantly in intestine, gill,stomach, heart, hepatopancreas, muscle, and hemocytes compared with those in the control group after exposure toammonia-N stress and showed different expression profiles. These results suggest that FcMKK3 might play importantroles in the F. chinensis stress response.

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姚万龙,何玉英,刘萍,李健,王清印.中国明对虾MKK3 基因cDNA 克隆及其在氨氮胁迫下的表达[J].中国水产科学,2016,23(1):34-43
YAO Wanlong, HE Yuying, LIU Ping, LI Jian, WANG Qingyin. Cloning and expression analysis of the MKK3 gene in Fenneropenaeus chinensis under ammonia-N stress[J]. Journal of Fishery Sciences of China,2016,23(1):34-43

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  • 在线发布日期: 2016-01-12
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