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首页> 外文期刊>The Journal of Experimental Biology >Carbohydrate absorption by blackcap warblers (Sylvia atricapilla) changes during migratory refuelling stopovers
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Carbohydrate absorption by blackcap warblers (Sylvia atricapilla) changes during migratory refuelling stopovers

机译:黑cap莺(Sylvia atricapilla)在迁徙加油中途停留期间吸收碳水化合物

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Passerine birds migrating long distances arrive at stopover sites to refuel having lost as much as 50% of their initial body mass (m(b)), including significant losses to digestive organs that may serve as a reservoir of protein catabolised for fuel during flight. Birds newly arrived at a stopover show slow or no mb gain during the initial 2-3 days of a stopover, which suggests that energy assimilation may be limited by reduced digestive organs. Measurements of migrants and captive birds subjected to simulated migratory fasts have shown reductions in intestine mass, morphological changes to the mucosal epithelium, and reductions in food intake and assimilation rate upon initial refeeding. We found that blackcaps (Sylvia atricapilla, Linnaeus) newly arrived at a migratory stopover after crossing the Sahara and Sinai deserts had significantly increased paracellular nutrient absorption (non-carrier mediated uptake occurring across tight junctions between enterocytes) that may provide partial compensation for reduced digestive capacity resulting from changes to intestinal tissues. Indeed, newly arrived birds also had a slightly reduced capacity for absorption of a glucose analogue (3-O-methyl-D-glucose) transported simultaneously by both carrier-mediated and non-mediated mechanisms. Increased paracellular absorption coupled with extended digesta retention time may thus allow migratory blackcaps to maintain high digestive efficiency during initial stages of refuelling while digestive organs are rebuilt.
机译:远距离迁徙的雀形目鸟类到达中途停留处补给燃油,损失的体重已高达其初始体重的50%(m(b)),其中包括大量消化器官的损失,这些消化器官可能会在飞行过程中被分解为燃料中的蛋白质。新近到达中途停留的鸟类在中途停留的最初2-3天显示缓慢或无mb增长,这表明能量吸收可能受到消化器官减少的限制。对经过模拟迁徙禁食的移民和圈养鸟类的测量表明,肠道质量减少了,粘膜上皮的形态发生了变化,初次喂食后食物摄入和同化率也降低了。我们发现黑cap(西尔维亚·阿特里卡皮拉,林奈)在穿越撒哈拉沙漠和西奈沙漠后新到达迁徙中途停留,其旁细胞营养吸收显着增加(跨肠细胞之间紧密连接的非载体介导的吸收),可能为消化减少提供了部分补偿肠组织变化产生的能力。实际上,新来的禽类对通过载体介导和非介导的机制同时转运的葡萄糖类似物(3-O-甲基-D-葡萄糖)的吸收能力也略有降低。因此,副细胞吸收的增加以及消化物保留时间的延长,可能会使迁徙的黑black在加油的最初阶段在重建消化器官的过程中保持较高的消化效率。

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