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脂肪酸在潜水哺乳动物中的作用:不止是燃料。

Fatty Acid use in Diving Mammals: More than Merely Fuel.

作者信息

Trumble Stephen J, Kanatous Shane B

机构信息

Department of Biology, Baylor University Waco, TA, USA.

出版信息

Front Physiol. 2012 Jun 13;3:184. doi: 10.3389/fphys.2012.00184. eCollection 2012.

Abstract

Diving mammals, are under extreme pressure to conserve oxygen as well as produce adequate energy through aerobic pathways during breath-hold diving. Typically a major source of energy, lipids participate in structural and regulatory roles and have an important influence on the physiological functions of an organism. At the stoichiometric level, the metabolism of polyunsaturated fatty acids (PUFAs) utilizes less oxygen than metabolizing either monounsaturated fatty acids or saturated fatty acids (SFAs) and yields fewer ATP per same length fatty acid. However, there is evidence that indicates the cellular metabolic rate is directly correlated to the lipid composition of the membranes such that the greater the PUFA concentration in the membranes the greater the metabolic rate. These findings appear to be incompatible with diving mammals that ingest and metabolize high levels of unsaturated fatty acids while relying on stored oxygen. Growing evidence from birds to mammals including recent evidence in Weddell seals also indicates that at the whole animal level the utilization of PUFAs to fuel their metabolism actually conserves oxygen. In this paper, we make an initial attempt to ascertain the beneficial adaptations or limitations of lipids constituents and potential trade-offs in diving mammals. We discuss how changes in Antarctic climate are predicted to have numerous different environmental effects; such potential shifts in the availability of certain prey species or even changes in the lipid composition (increased SFA) of numerous fish species with increasing water temperatures and how this may impact the diving ability of Weddell seals.

摘要

潜水哺乳动物在屏气潜水期间面临着保存氧气以及通过有氧途径产生足够能量的巨大压力。脂质通常是主要的能量来源,同时还参与结构和调节作用,并对生物体的生理功能产生重要影响。在化学计量水平上,多不饱和脂肪酸(PUFA)的代谢比单不饱和脂肪酸或饱和脂肪酸(SFA)的代谢消耗更少的氧气,并且每相同长度的脂肪酸产生的ATP也更少。然而,有证据表明细胞代谢率与膜的脂质组成直接相关,即膜中PUFA浓度越高,代谢率越高。这些发现似乎与潜水哺乳动物不相容,因为它们在依靠储存的氧气的同时摄入并代谢高水平的不饱和脂肪酸。从鸟类到哺乳动物的越来越多的证据,包括最近在威德尔海豹身上的证据,也表明在整个动物水平上,利用PUFA为其新陈代谢提供能量实际上可以保存氧气。在本文中,我们初步尝试确定潜水哺乳动物脂质成分的有益适应性或局限性以及潜在的权衡。我们讨论了预计南极气候的变化将如何产生许多不同的环境影响;某些猎物种类的可用性的潜在变化,甚至随着水温升高许多鱼类的脂质组成变化(SFA增加),以及这可能如何影响威德尔海豹的潜水能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2565/3374346/f1f3150a01eb/fphys-03-00184-g001.jpg

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