Bucking Carol, Glover Chris N, Wood Chris M
Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada.
Physiol Biochem Zool. 2011 Nov-Dec;84(6):607-17. doi: 10.1086/662630. Epub 2011 Oct 14.
Hagfish feed by immersing themselves in the body cavities of decaying animals. This ensures a rich nutrient source for absorption via the gills, skin, and gut, but it may also subject hagfish to reduced levels of dissolved oxygen and elevated levels of the products of biological degradation. This study investigated the impacts of hypoxia and ammonia on the assimilation and metabolism of selected nutrients (glycine, l-alanine, and glucose) in Pacific hagfish (Eptatretus stoutii). Throughout exposure to hypoxia, plasma glucose levels increased. This was not accompanied by an increase in gut glucose transport, which suggests mobilization of glucose from body glycogen stores. Hypoxia preexposure enhanced glycine absorption across the gut and the gill, although l-alanine uptake was unchanged in these tissues. A 24-h period of exposure to hypoxia in hagfish concurrently exposed to waterborne radio-labeled glycine led to a large (5.7-fold) increase in brain glycine accumulation. Preexposure to high levels of waterborne ammonia (10 mM) for 24 h had no impact on gut or skin glycine uptake. These results indicate that hagfish are adapted to maintain nutrient assimilation despite environmental stressors and that tissue-specific absorption of key nutrients such as glycine can even be enhanced in order to sustain critical functions during hypoxia.
盲鳗通过将自己沉浸在腐烂动物的体腔中来进食。这确保了通过鳃、皮肤和肠道吸收丰富的营养源,但这也可能使盲鳗面临溶解氧水平降低和生物降解产物水平升高的情况。本研究调查了缺氧和氨对太平洋盲鳗(Eptatretus stoutii)中选定营养物质(甘氨酸、L-丙氨酸和葡萄糖)的同化和代谢的影响。在整个缺氧暴露过程中,血浆葡萄糖水平升高。这并未伴随着肠道葡萄糖转运的增加,这表明葡萄糖是从身体糖原储备中动员出来的。预先暴露于缺氧环境可增强盲鳗肠道和鳃对甘氨酸的吸收,尽管这些组织中L-丙氨酸的摄取没有变化。在同时暴露于水中放射性标记甘氨酸的盲鳗中,24小时的缺氧暴露导致大脑中甘氨酸积累大幅增加(5.7倍)。预先暴露于高水平的水中氨(10 mM)24小时对肠道或皮肤中甘氨酸的摄取没有影响。这些结果表明,尽管存在环境应激源,盲鳗仍能适应维持营养物质的同化,并且在缺氧期间,为了维持关键功能,甚至可以增强对甘氨酸等关键营养物质的组织特异性吸收。