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欧洲鳗鲡初孵仔鱼的分子个体发育

Molecular Ontogeny of First-Feeding European Eel Larvae.

作者信息

Politis Sebastian N, Sørensen Sune R, Mazurais David, Servili Arianna, Zambonino-Infante Jose-Luis, Miest Joanna J, Clemmesen Catriona M, Tomkiewicz Jonna, Butts Ian A E

机构信息

National Institute of Aquatic Resources, Technical University of Denmark, Kongens Lyngby, Denmark.

Billund Aquaculture Service A/S, Billund, Denmark.

出版信息

Front Physiol. 2018 Oct 23;9:1477. doi: 10.3389/fphys.2018.01477. eCollection 2018.

Abstract

Digestive system functionality of fish larvae relies on the onset of genetically pre-programmed and extrinsically influenced digestive functions. This study explored how algal supplementation (green-water) until 14 days post hatch (dph) and the ingestion of food [enriched rotifer () paste] from 15 dph onward affects molecular maturation and functionality of European eel larval ingestion and digestion mechanisms. For this, we linked larval biometrics to expression of genes relating to appetite [ghrelin (), cholecystokinin ()], food intake [proopiomelanocortin ()], digestion [trypsin (), triglyceride lipase (), amylase ()], energy metabolism [ATP synthase F0 subunit 6 (), cytochrome--oxidase 1 ()], growth [insulin-like growth factor ()] and thyroid metabolism [thyroid hormone receptors (, )]. Additionally, we estimated larval nutritional status nucleic acid analysis during transition from endogenous and throughout the exogenous feeding stage. Results showed increased expression of and on 12 dph, marking the beginning of the first-feeding window, but no benefit of larviculture in green-water was observed. Moreover, expression of genes relating to protein () and lipid () hydrolysis revealed essential digestive processes occurring from 14 to 20 dph. On 16 dph, a molecular response to initiation of exogenous feeding was observed in the expression patterns of , , , , and . Additionally, we detected increased DNA contents, which coincided with increased RNA contents and greater body area, reflecting growth in feeding compared to non-feeding larvae. Thus, the here applied nutritional regime facilitated a short-term benefit, where feeding larvae were able to sustain growth and better condition than their non-feeding conspecifics. However, RNA:DNA ratios decreased from 12 dph onward, indicating a generally low larval nutritional condition, probably leading to the point-of-no-return and subsequent irreversible mortality due to unsuccessful utilization of exogenous feeding. In conclusion, this study molecularly identified the first-feeding window in European eel and revealed that exogenous feeding success occurs concurrently with the onset of a broad array of enzymes and hormones, which are known to regulate molecular processes in feeding physiology. This knowledge constitutes essential information to develop efficient larval feeding strategies and will hopefully provide a promising step toward sustainable aquaculture of European eel.

摘要

鱼类幼体的消化系统功能依赖于基因预编程和外在影响的消化功能的启动。本研究探讨了孵化后14天(dph)前的藻类添加(绿水)以及15 dph起开始摄食食物(强化轮虫糊)如何影响欧洲鳗鲡幼体摄食和消化机制的分子成熟和功能。为此,我们将幼体生物特征与食欲相关基因[胃饥饿素()、胆囊收缩素()]、食物摄入[阿黑皮素原()]、消化[胰蛋白酶()、甘油三酯脂肪酶()、淀粉酶()]、能量代谢[ATP合酶F0亚基6()、细胞色素氧化酶1()]、生长[胰岛素样生长因子()]和甲状腺代谢[甲状腺激素受体(,)]的表达联系起来。此外,我们在从内源性摄食到整个外源性摄食阶段的过渡过程中,通过核酸分析估计了幼体的营养状况。结果显示,在12 dph时和的表达增加,标志着首次摄食窗口的开始,但未观察到绿水培育幼体有任何益处。此外,与蛋白质()和脂质()水解相关的基因表达揭示了从14到20 dph发生的基本消化过程。在16 dph时,在外源摄食开始时,、、、、和的表达模式中观察到分子反应。此外,我们检测到DNA含量增加,这与RNA含量增加和更大的体表面积相吻合,反映出与未摄食幼体相比,摄食幼体的生长情况。因此,这里应用的营养方案带来了短期益处,即摄食幼体能够比未摄食的同种幼体维持生长并保持更好的状态。然而,从12 dph起RNA:DNA比率下降,表明幼体总体营养状况较低,这可能导致不可逆转的死亡点,并因外源性摄食利用不成功而导致随后不可逆转的死亡。总之,本研究从分子水平确定了欧洲鳗鲡的首次摄食窗口,并揭示外源性摄食成功与一系列已知调节摄食生理分子过程的酶和激素的启动同时发生。这些知识构成了制定高效幼体摄食策略的重要信息,并有望为欧洲鳗鲡的可持续水产养殖迈出有希望的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa49/6232945/02ff76633075/fphys-09-01477-g001.jpg

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