Control of lung ventilation following overwintering conditions in bullfrogs, Lithobates catesbeianus

被引:10
|
作者
Santin, Joseph M. [1 ,2 ]
Hartzler, Lynn K. [1 ]
机构
[1] Wright State Univ, Dept Biol Sci, 3640 Colonel Glenn Hwy, Dayton, OH 45435 USA
[2] Wright State Univ, Biomed Sci PhD Program, 3640 Colonel Glenn Hwy, Dayton, OH 45435 USA
来源
JOURNAL OF EXPERIMENTAL BIOLOGY | 2016年 / 219卷 / 13期
基金
美国国家科学基金会;
关键词
Temperature acclimation; Control of breathing; Bullfrog; Environmental physiology; Hypercarbia; Hypoxia; ISOLATED BRAIN-STEM; SEASONAL-CHANGES; RANA-PIPIENS; CARDIORESPIRATORY RESPONSES; PULMONARY VENTILATION; RESPIRATORY CONTROL; SKELETAL-MUSCLES; LOCUS-COERULEUS; METABOLIC-RATE; TEMPERATURE;
D O I
10.1242/jeb.136259
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Ranid frogs in northern latitudes survive winter at cold temperatures in aquatic habitats often completely covered by ice. Cold-submerged frogs survive aerobically for several months relying exclusively on cutaneous gas exchangewhilemaintaining temperature-specific acid-base balance. Depending on the overwintering hibernaculum, frogs in northern latitudes could spend several months without access to air, the need to breathe or the chemosensory drive to use neuromuscular processes that regulate and enable pulmonary ventilation. Therefore, we performed experiments to determine whether aspects of the respiratory control system of bullfrogs, Lithobates catesbeianus, are maintained or suppressed following minimal use of air breathing in overwintering environments. Based on the necessity for control of lung ventilation in early spring, we hypothesized that critical components of the respiratory control systemof bullfrogs would be functional following simulated overwintering. We found that bullfrogs recently removed from simulated overwintering environments exhibited similar resting ventilation when assessed at 24 degrees C compared with warm-acclimated control bullfrogs. Additionally, ventilation met resting metabolic and, presumably, acid-base regulation requirements, indicating preservation of basal respiratory function despite prolonged disuse in the cold. Recently emerged bullfrogs underwent similar increases in ventilation during acute oxygen lack (aerial hypoxia) compared with warm-acclimated frogs; however, CO2-related hyperventilation was significantly blunted following overwintering. Overcoming challenges to gas exchange during overwintering have garnered attention in ectothermic vertebrates, but this study uncovers robust and labile aspects of the respiratory control systemat a time point correlating with early spring following minimal to no use of lung breathing in coldaquatic overwintering habitats.
引用
收藏
页码:2003 / 2014
页数:12
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