首页> 外文期刊>Aquaculture >Improving the survival, growth and hemolymph ion maintenance of early juvenile blue swimmer crabs, Portunus pelagicus, at hypo- and hyper-osmotic conditions through dietary long chain PUFA supplementation.
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Improving the survival, growth and hemolymph ion maintenance of early juvenile blue swimmer crabs, Portunus pelagicus, at hypo- and hyper-osmotic conditions through dietary long chain PUFA supplementation.

机译:通过饮食中的长链PUFA补充,在低渗和高渗条件下改善早熟幼蓝游泳蟹 Petunic pelagicus 的存活,生长和血淋巴离子维持。

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Blue swimmer crab, Portunus pelagicus, juveniles are weak osmoregulators leading to reduced survival and growth outside salinities of 15-35 per mil. Therefore improving the performance of this commercially important crab at sub-optimal salinities through diet manipulation will likely benefit the aquaculture industry. The aim of the current experiment was to determine whether increased dietary LC-PUFA, in the form of fish oil, could improve the survival, growth and hemolymph ion maintenance of early P. pelagicus juveniles at salinities of 14, 30 and 42 per mil. Crabs were fed five diets containing 0, 3, 6, 9 and 12% fish oil inclusion levels (% dry diet weight) and their survival and growth were measured over 20 days. After 20 days, the hemolymph Na+, K+ and Ca2+ levels of the crabs were measured. Seven replicates, with three crabs in each replicate, were used in each salinity/dietary treatment (total of 315 crabs). Results showed diets containing 0% fish oil inclusion led to the lowest survival in all salinities, although this was only significant (p<0.05) for the crabs cultured at a high salinity of 42 per mil. Further, a salinity of 42 per mil generally caused lower growth, compared to 14 and 30 per mil, however the highest fish oil inclusion level of 12% (or 3.73% LC-PUFA) caused no significant growth or development difference (p>0.05) compared with those fed the same diet but at a salinity of 30 per mil. Between salinities of 14 and 30 per mil, no significant growth difference was detected although the growth benefit to increased dietary LC-PUFA at 14 per mil was more obvious than at 30 per mil. Meanwhile, at salinities of 14 and 42 per mil, hemolymph Na+ regulation was significantly improved through dietary LC-PUFA supplementation, indicating that LC-PUFA is an essential nutrient for undisrupted ion-regulation. These findings indicate that the productivity of P. pelagicus juveniles may be increased at sub-optimal salinities through dietary LC-PUFA supplementation, which may be linked with improved hemolymph ion maintenance.Digital Object Identifier http://dx.doi.org/10.1016/j.aquaculture.2012.02.013
机译:蓝色游泳蟹 Petunus pelagicus ,幼鱼是弱渗透调节剂,导致盐度为每密耳15-35时,存活率和生长速度降低。因此,通过饮食控制改善这种商业上重要的螃蟹在盐分欠佳的情况下的性能可能会使水产养殖业受益。当前实验的目的是确定增加鱼油形式的饮食中LC-PUFA是否可以改善早期P的存活,生长和维持血淋巴离子。盐度为每密耳14、30和42的远洋幼鱼。给螃蟹喂食五种日粮,这些日粮含有0、3、6、9和12%的鱼油夹杂物含量(%日粮干重),并在20天之内测量了它们的存活和生长。 20天后,测量螃蟹的血淋巴Na + ,K + 和Ca 2 + 水平。在每种盐度/饮食处理中使用了七个重复样本,每个重复样本中有三个螃蟹(总共315个螃蟹)。结果表明,含0%鱼油的饲料在所有盐度下的存活率最低,尽管对于高盐度/每密耳养殖的螃蟹来说,这仅是显着的(p <0.05)。此外,每密尔盐度为42时,通常导致生长降低,而每密尔盐度为14和30,但是最高鱼油含量为12%(或3.73%LC-PUFA)不会导致显着的生长或发育差异(p> 0.05) )与饲喂相同饮食但盐度为每密尔30的那些相比。在盐浓度为每密耳14到30之间,未发现显着的生长差异,尽管增加饮食中LC-PUFA的生长益处(每毫升14)比每毫升30时更明显。同时,在盐浓度分别为14和42 / mil时,通过饮食中添加LC-PUFA可以显着改善血淋巴Na + 的调节,这表明LC-PUFA是不间断离子调节的必需营养素。这些发现表明 P的生产率。通过饮食中添加LC-PUFA可以使盐度次佳的幼虾增加,这可能与改善血淋巴离子的维持能力有关。数字对象标识符http://dx.doi.org/10.1016/j。水产养殖。 2012.02.013

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