4.1 Article

GROWTH AND LIPID METABOLISM OF THE PACIFIC WHITE SHRIMP LITOPENAEUS VANNAMEI AT DIFFERENT SALINITIES

期刊

JOURNAL OF SHELLFISH RESEARCH
卷 33, 期 3, 页码 825-832

出版社

NATL SHELLFISHERIES ASSOC
DOI: 10.2983/035.033.0317

关键词

shrimp; Litopenaeus vannamei; salinity; lipid metabolism; fatty acids; osmoregulation

资金

  1. National Natural Science Foundation of China [31472291, 31172422]
  2. Special Fund for Agro-scientific Research in the Public Interest [201003020, 201203065]
  3. National Twelfth Five-Year Plan for Science & Technology Support [2012BAD25B03]
  4. National Basic Research Program (973Program) [2014CB138603]
  5. Shanghai University Knowledge Service Platform Shanghai Ocean University Aquatic Animal Breeding Center [ZF1206]
  6. E-Institute of Shanghai Municipal Education Commission [E03009]
  7. ECNU innovation fund

向作者/读者索取更多资源

Juvenile white shrimp Litopenaeus vannamei (1.98 +/- 0.28 g) were fed a commercial diet for 8 wk in triplicate to investigate growth and lipid metabolism at 3 salinities (3, 17, and 30). Shrimp weight gain and survival at 3 were significantly less than that at 17 and 30. No differences were found in whole-body proximate composition. Linolenic acid (18: 3[n-3]) and (n-3) long-chain unsaturated fatty acid levels in the hepatopancreas, and n-3 long-chain polyunsaturated fatty acid level, especially eicosapentaenoic acid (EPA; C20:5[n-3]) and docosahexaenoic acid (DHA; C22:6[n-3]) in muscle at 3 were significantly greater than at other salinities. Fatty acid synthase, hormone sensitive lipase, lipoprotein lipase, adipose triacylglycerol lipase, acyl-CoA, diacylglycerol acyltransferase 2, elongase of very long-chain fatty acid 6, and Delta 5 and Delta 6 fatty acid desaturase activity was detected and showed a negative trend with an increase of salinity, and no significant differences were found among salinity groups (P > 0.05). The results indicate that the low salinity of 3 decreases the growth of L. vannamei. Although L. vannamei could not synthesize either DHA or EPA de novo, it possibly has the potential ability to convert linolenic acid to DHA and EPA regardless of salinity. However, the factors influencing this ability remain unknown and need further study.

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