首页> 外文期刊>Aquaculture >Effects of different photoperiod regimes on the smoltification and seawater adaptation of seawater-farmed rainbow trout (Oncorhynchus mykiss): Insights from Na+, K+-ATPase activity and transcription of osmoregulation and growth regulation genes
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Effects of different photoperiod regimes on the smoltification and seawater adaptation of seawater-farmed rainbow trout (Oncorhynchus mykiss): Insights from Na+, K+-ATPase activity and transcription of osmoregulation and growth regulation genes

机译:不同光周期制度对海水养殖彩虹鳟鱼糊化和海水适应的影响(Oncorhynchus mykiss):Na +,K + -ATPase活性和Osmoreculation和生长调控基因的洞察

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Photoperiod is thought to be the main zeitgeber that induces smoltification in salmonids. However, its effects on the smoltification of rainbow trout (Oncorhynchus mykiss) are not fully understood and no published data documents the effects of the photoperiod regime currently used commercially, continuous light (LL). The present study compared the effect of four different photoperiod regimes (i. e. advanced phase photoperiod (APP), delayed phase photoperiod (DPP), LL and simulated natural photoperiod (SNP)) on the smoltification and growth of juvenile rainbow trout during their freshwater phase of winter-spring and the following summer post smolt phase. Smoltification was evaluated by monitoring gill Na+, K+-ATPase (NKA) activity and transcription of NKA a-subunit isoforms 1a and 1b, and Na+, K+, 2Cl(-) cotransporter 1a. Growth was measured as specific growth rate of both length and weight, and through molecular growth proxies such as the levels of circulating insulin-like growth factor 1 (IGF-I) in plasma and transcription of igf-I, igf binding protein 1b (igfbp1b), growth hormone receptor 1 (ghr1) and cathepsin L (ctsl) in the liver. Results indicate that APP induces a longer smolt window and higher levels of plasma IGF-I in both freshwater and seawater (two months post transfer), while DPP led to a shorter smolt window, lower plasma IGF-I levels in freshwater and seawater, an earlier decrease in liver igf-I and ctsl transcription in freshwater (as seen by modelling over time) and lower specific growth rate in freshwater. The transcription analysis of osmoregulatory genes complemented NKA activity and allowed for the detection of a transient response to light and of differences between the osmoregulatory capacity of parr and desmolted fish. Furthermore, an upregulation of the liver transcription of igf-I, ghr1 and ctsl was found in all treatments during the smolt window, which corresponded to the periods with highest growth. Finally, both plasma IGF-I and liver igf-I in seawater were found to be significantly correlated to fish growth in seawater. However, our data did not show that plasma IGF-I prior to seawater transfer could be used as a reliable predictor of growth in seawater. Overall, and especially when compared with other salmonid species, photoperiod seems to be a weaker inducer of smoltification in rainbow trout, according to the parameters that were tested, suggesting that other environmental cues might be more important drivers of this process.
机译:Photoperiod被认为是诱导鲑鱼中的糊化化的主要Zeitgeber。然而,它对彩虹鳟鱼(Oncorhynchus Mykiss)的对Smoltizing的影响不完全理解,并且没有公布的数据记录目前使用的光周期制度的效果,连续光(LL)。本研究比较了四种不同的光周期制度(即高级相光周期(APP),延迟相位光周期(DPP),LL和模拟自然光周期(SNP)的效果在其淡水阶段的少年虹鳟鱼的SMOLTIZE和生长中冬季春季和以下夏季后柱柱。通过监测鳃Na +,K + -ATP酶(NKA)活性和NKA A-亚基同种型1A和1B的转录来评估SMOLTIZE,以及Na +,K +,2Cl( - )COTRANSPORPOR 1A。以长度和重量的特异性生长速度,通过分子生长率和IGF-I,IGFBP1B的转录(IGFBP1B ),肝脏中生长激素受体1(GHR1)和组织蛋白酶L(CTSL)。结果表明,应用在淡水和海水(转移后两个月)中诱导较长的灰尘窗口和更高水平的血浆IGF-I,而DPP导致淡水和海水中的较低的血浆IGF-I水平较短。淡水中肝脏IGF-I和CTSL转录的早期降低(随时间建模,淡水中的较低特异性生长速率降低。 OSMoregulatory基因的转录分析互补NKA活性,并允许检测瞬态响应的瞬态响应和Parr和Desmolted鱼的Osmoregulatory能力之间的差异。此外,在防止窗口的所有治疗中发现了IGF-1,GHR1和CTSL的肝脏转录的上调,其对应于增长最高的时间。最后,发现海水中的血浆IGF-I和肝脏IGF-1与海水中的鱼类生长显着相关。然而,我们的数据并未显示海水转移之前的血浆IGF-1可作为海水增长的可靠预测因子。总体而言,特别是当与其他鲑鱼类相比相比,根据经过测试的参数,光周期似乎是虹鳟鱼中的彩虹鳟鱼中的较弱诱导剂,这表明其他环境提示可能是这个过程的更重要的驱动因素。

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