Copeland Donald L, Duff Robert Joel, Liu Qin, Prokop Jeremy, Londraville Richard Lyle
Department of Biology, University of Akron Akron, OH, USA.
Front Physiol. 2011 Jun 14;2:26. doi: 10.3389/fphys.2011.00026. eCollection 2011.
All organisms face tradeoffs with regard to how limited energy resources should be invested. When is it most favorable to grow, to reproduce, how much lipid should be allocated to storage in preparation for a period of limited resources (e.g., winter), instead of being used for growth or maturation? These are a few of the high consequence fitness "decisions" that represent the balance between energy acquisition and allocation. Indeed, for animals to make favorable decisions about when to grow, eat, or reproduce, they must integrate signals among the systems responsible for energy acquisition, storage, and demand. We make the argument that leptin signaling is a likely candidate for an integrating system. Great progress has been made understanding the leptin system in mammals, however our understanding in fishes has been hampered by difficulty in cloning fish orthologs of mammalian proteins and (we assert), underutilization of the comparative approach.
所有生物体在如何分配有限的能量资源方面都面临权衡。何时最有利于生长、繁殖,应该分配多少脂质用于储存以应对资源有限的时期(如冬季),而不是用于生长或成熟?这些都是一些具有重大影响的适应性“决策”,代表了能量获取与分配之间的平衡。事实上,动物要对何时生长、进食或繁殖做出有利的决策,就必须整合负责能量获取、储存和需求的系统之间的信号。我们认为瘦素信号传导可能是一个整合系统的候选者。在理解哺乳动物的瘦素系统方面已经取得了很大进展,然而我们对鱼类的理解却因难以克隆哺乳动物蛋白质的鱼类直系同源物以及(我们认为)比较方法未得到充分利用而受到阻碍。