School of Biological Sciences, The University of Queensland, St. Lucia, QLD, 4072, Australia.
J Comp Physiol B. 2011 Jul;181(5):603-13. doi: 10.1007/s00360-010-0546-y. Epub 2011 Jan 7.
The lack of a stomach is not uncommon amongst teleost fishes, yet our understanding of this reductive specialisation is lacking. The absence of a stomach does not restrict trophic preference, resulting in fishes with very similar alimentary morphology capable of digesting differing diets. We examined the digestive biochemistry of four beloniform fishes: two herbivorous halfbeaks (Hemiramphidae) and two carnivorous needlefish (Belonidae) to determine how these fishes digest their respective diets with their simple, short gut. We found that although the halfbeaks showed significantly greater α-amylase activity than that of the needlefish (P < 0.01), trypsin, lipase, aminopeptidase and maltase activity were not substantially different between the two families. We also found that habitat (freshwater vs. marine) appears to play a significant role in digestive capability, as the two freshwater taxa and the two marine taxa were significantly different (ANOSIM; dietary Gobal R = 0.544, P = 0.001, habitat Global R = 0.437, P = 0.001), despite their phyletic and dietary similarities. Our findings offer partial support for the adaptive modulation hypothesis, support the Plug-Flow Reactor model of digestion in herbivorous halfbeaks and also support the compartmental model of digestion but suggest that another model is required to describe stomachless carnivorous needlefish.
在硬骨鱼类中,没有胃的情况并不罕见,但我们对这种退化特化的理解还很缺乏。没有胃并不限制营养偏好,这导致具有非常相似的消化形态的鱼类能够消化不同的饮食。我们研究了四种鱵形目鱼类的消化生物化学特性:两种草食半颚鱼(Hemiramphidae)和两种肉食针鱼(Belonidae),以确定这些鱼类如何用简单而短的肠道消化各自的饮食。我们发现,尽管半颚鱼的α-淀粉酶活性明显高于针鱼(P<0.01),但胰蛋白酶、脂肪酶、氨肽酶和麦芽糖酶活性在这两个科之间并没有显著差异。我们还发现,栖息地(淡水与海水)似乎在消化能力方面起着重要作用,因为两个淡水类群和两个海洋类群之间存在显著差异(ANOSIM;饮食全局 R=0.544,P=0.001,栖息地全局 R=0.437,P=0.001),尽管它们在系统发育和饮食上相似。我们的研究结果部分支持了适应性调节假说,支持了草食性半颚鱼的推流式反应器模型的消化,也支持了消化的分隔模型,但表明需要另一种模型来描述无胃的肉食性针鱼。