Centro de Investigaciones en Ecosistemas, Universidad Nacional Autónoma de México, Apartado Postal 27-3 (Xangari), 58089, Morelia, Michoacán, México.
Comp Biochem Physiol A Mol Integr Physiol. 2013 Apr;164(4):622-8. doi: 10.1016/j.cbpa.2013.01.015. Epub 2013 Jan 28.
Digestive capabilities of nectar-feeding vertebrates to assimilate sugars affect their ability to acquire and store energy and could determine the minimal temperatures at which these animals can survive. Here, we described the sugar digestive capability of Leptonycteris nivalis and related it with its capacity to live in cold environments. We measured the enzymatic activity, food intake rate and changes in body mass of bats feeding at four different sucrose concentrations (from 5 to 35% wt./vol.). Additionally, we used a mathematical model to predict food intake and compared it with the food intake of bats. L. nivalis was able to obtain ~111.3kJ of energy regardless of the sugar concentration of their food. Also, bats gained ~2.57g of mass during the experimental trials and this gain was independent of sugar concentration. The affinity (1/Km) of sucrase (EC 3.2.1.48) was one order of magnitude higher relative to that reported for its sister species Leptonycteris yerbabuenae (0.250 and 0.0189mmol(-1)L, respectively), allowing this species to have a higher energy intake rate. We propose that the high ability to acquire energy conferred L. nivalis the faculty to invade cold environments, avoiding in this way the ecological competition with its sympatric species L. yerbabuenae.
食蜜型脊椎动物消化糖的能力会影响它们获取和储存能量的能力,并可能决定这些动物能够生存的最低温度。在这里,我们描述了 Leptonycteris nivalis 的糖消化能力,并将其与它在寒冷环境中生存的能力联系起来。我们测量了蝙蝠在四种不同蔗糖浓度(5%至 35%wt./vol.)下进食时的酶活性、进食率和体重变化。此外,我们使用了一个数学模型来预测食物摄入量,并将其与蝙蝠的食物摄入量进行了比较。无论食物中糖的浓度如何,L. nivalis 都能够获得约 111.3kJ 的能量。此外,蝙蝠在实验过程中体重增加了约 2.57g,而且这种增加与糖浓度无关。与姐妹种 Leptonycteris yerbabuenae(分别为 0.250 和 0.0189mmol(-1)L)相比,蔗糖酶(EC 3.2.1.48)的亲和力(1/Km)高了一个数量级,这使得该物种能够有更高的能量摄入率。我们提出,高能量获取能力使 L. nivalis 有能力入侵寒冷环境,从而避免与同域分布的物种 L. yerbabuenae 产生生态竞争。