Balzer Evan W, Grottoli Adam D, Burns Lynne E, Broders Hugh G
Department of Biology University of Waterloo Waterloo Ontario Canada.
Environment and Climate Change Canada Edmonton Alberta Canada.
Ecol Evol. 2022 Aug 22;12(8):e9230. doi: 10.1002/ece3.9230. eCollection 2022 Aug.
Animals are expected to adjust their behavioral patterns to improve fitness outcomes, such as fecundity or offspring survival. For long-lived hibernators, decisions made in each annual cycle may reflect considerations not just for concurrent survival and reproduction but also the pressure to maximize overwinter survival and future reproductive success. We examined how these elements manifest themselves in the body mass variation patterns of North American northern latitude temperate bats, whose size and roosting habits present considerable monitoring challenges. We characterized and compared the summer and fall mass variation patterns of little brown myotis () and northern myotis () from a historic dataset. In summer, the estimated date of parturition was strongly associated with spring foraging conditions (low wind, low precipitation, and warm temperatures), and mass gain associated with female reproduction conferred considerable differentiation between the mass variation patterns of females and males. In fall, differences were most apparent among species, although adults exhibited a greater capacity for rapid mass gain than juveniles. These results demonstrate how reproductive constraints and interannual survival have important influences on the behavior of temperate bats. Future work should seek to quantify the fitness benefits of patterns identified in this study, such as the rate of prehibernation mass gain.
动物有望调整其行为模式以改善适应性结果,如繁殖力或后代存活率。对于长寿的冬眠动物来说,每个年度周期所做出的决策可能不仅反映了对同时期生存和繁殖的考量,还反映了最大化越冬生存和未来繁殖成功的压力。我们研究了这些因素如何在北美北纬温带蝙蝠的体重变化模式中体现出来,这些蝙蝠的体型和栖息习性给监测带来了相当大的挑战。我们利用一个历史数据集对小棕蝠()和北美鼠耳蝠()的夏季和秋季体重变化模式进行了特征描述和比较。在夏季,估计的分娩日期与春季觅食条件(低风速、低降水量和温暖气温)密切相关,与雌性繁殖相关的体重增加使得雌性和雄性的体重变化模式存在显著差异。在秋季,物种间的差异最为明显,尽管成年个体比幼年个体表现出更强的快速增重能力。这些结果表明繁殖限制和年际生存如何对温带蝙蝠的行为产生重要影响。未来的研究应致力于量化本研究中所确定模式的适应性益处,例如冬眠前体重增加的速率。