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长期低渗胁迫诱导凡纳滨对虾肝胰腺差异表达基因的研究     被引量:4

Dentification of Differentially Expressed Genes in Hepatopancreas of White Shrimp Litopenaeus vannamei Induced by Long-Term Low-Salinity Stress

文献类型:期刊文献

中文题名:长期低渗胁迫诱导凡纳滨对虾肝胰腺差异表达基因的研究

英文题名:Dentification of Differentially Expressed Genes in Hepatopancreas of White Shrimp Litopenaeus vannamei Induced by Long-Term Low-Salinity Stress

作者:郜卫华[1];谭北平[2];麦康森[3];迟淑艳[2];刘泓宇[2];董晓慧[2];杨奇慧[2]

机构:[1]长江大学动物科学学院水产系;[2]广东海洋大学水产学院水产动物营养与饲料实验室;[3]中国海洋大学教育部海水养殖重点实验室

年份:2013

期号:9

起止页码:39

中文期刊名:中国海洋大学学报:自然科学版

收录:CSTPCD、、北大核心2011、北大核心、CSCD、CSCD2013_2014

基金:国家自然科学基金项目(30871928);广东省高等学校珠江学者特聘教授基金项目(GDUPS-2011);公益性行业(农业)科研专项基金项目(201003020)资助

语种:中文

中文关键词:凡纳滨对虾;肝胰脏;盐度;胁迫;基因表达

外文关键词:. Litopenaeus vannamei; hepatopancreas; salinity; stress; gene expression

中文摘要:本研究构建了长期低渗胁迫诱导凡纳滨对虾肝胰腺差异表达基因的cDNA文库。在此基础上,探讨了在不同盐度处理时反向文库5个基因(血蓝蛋白、蜕皮类固醇调节蛋白、几丁质酶、胰凝乳蛋白酶1和胰蛋白酶)mRNA表达量的变化情况,以期从分子机理上了解,在长期低盐养殖条件下凡纳滨对虾的生长性能和生理状态的关系。长期低盐养殖实验结果表明,随着盐度的降低,凡纳滨对虾的末重、增重率和特定生长率显著地降低(P<0.05);盐度2处理组成活率显著低于盐度10处理组和对照组(P<0.05);与对照组相比,盐度2处理组血蓝蛋白、几丁质酶、蜕皮类固醇调节蛋白、胰蛋白酶和胰凝乳蛋白酶1mRNA表达量显著性下调,分别下降了50%、31%、91%、25%和35%;盐度10处理组血蓝蛋白、胰蛋白酶和胰凝乳蛋白酶mRNA表达量显著性下调,分别下降了31%、72%和15%;短期低盐胁迫组几丁质酶和蜕皮类固醇调节蛋白mRNA表达量上调3.07和2.47倍。结果表明,盐度降低到一定程度,可显著降低凡纳滨对虾的生长性能和成活率;5个基因表达量在胁迫24h和56d后表达量变化明显不同,说明凡纳滨对虾对长期和短期盐度胁迫采取不同的应答策略。以上结果丰富了甲壳动物环境胁迫研究的基因信息。

外文摘要:We determined the transcript abundance roid regulated protein, trypsin and chymotrypsin 1) change of 5 protein (hemocyanin, chitinase, ecdysteencoding genes at different salinities (2, 10 and 30) with quantitative real-time PCR (qRT-PCR) in order to decipher the relationship between growth performance and physiological status of long-term low salinity breeding of Litopenaeus vannamei. The cDNA library was constructed with RNA extracted from the hepatopancreas. Long-term low salinity breeding significantly decreased the final weight, weight gain and specific growth rate of L. vannamei (P〈0. 05). At salinity 2, shrimp had the lowest growth and survival in comparison with those at salinity 10 and 30 (P〈0.05). In comparison with seawater, the expression of 5 genes decreased 50%, 31%, 91%, 25% and 35%, respectively, at salinity 2; the expression of hemocyanin, trypsin and chymotrypsin 1 gene de- creased 31%, 72% and 15%, respectively, at salinity 10% while the expression of chitinase and eedyste- roid-regulated protein gene increased 3. 07 and 2. 47 fold, respectively. These findings indicated that low salinity may reduce growth performance and survival rate significantly. The significant difference in the expression of 5 genes between long-term (56 days) and short-term (24 hours) salinity stress implied the difference in responsive mechanism to salinity stress.

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