乳液系统中的越冬可能是两栖动物数量下降的重要驱动因素

IF 1.5 3区 生物学 Q2 ZOOLOGY Ichthyology and Herpetology Pub Date : 2022-10-17 DOI:10.1643/h2021033
K. Hatch, Kelley L. Kroft
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引用次数: 0

摘要

对在结冰的池塘和湖泊中越冬的青蛙的研究记录了大量的越冬,这表明冬季可能是一个压力很大的时期,可能对在这些系统中越冬的稀有和濒危青蛙物种构成严重威胁。液体系统被认为比液体系统氧化更好,因此越冬死亡率更低,但很少有关于溪流生态系统中ranids冬季生态学的研究。我们调查了在内华达州Toiyabe山脉溪流系统中越冬的哥伦比亚斑蛙(Rana lutiventris)的栖息地使用和生存情况。从2000年10月到2001年3月,我们对13只斑点蛙进行了无线电跟踪,以定位冬眠蛙并记录冬季栖息地的使用情况。在冬天,青蛙在冰下移动了191米,经常逆流而上。从2000年到2001年,我们对1763只青蛙进行了标记,在五个地点中的四个地点发现了越冬的证据(数量减少了66%到86.5%),而第五个地点没有发现越冬的证据。这与在其中一个地点对88%的青蛙进行的越冬的实际观察结果相对应,使这成为少数几个将观察到的冬季死亡率与对ranid种群减少的标记-再捕获估计直接联系起来的研究之一,也是第一个对在乳液系统中越冬的两栖动物这样做的研究。洛蒂奇系统中的两栖动物冬季生态学,这些系统中越冬事件的严重性和频率,以及它们对种群规模和结构的影响,需要在广泛的物种中进行进一步的研究,并且应该在洛蒂奇系统中的两栖类保护计划中加以考虑。
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Winterkill in Lotic Systems May Be an Important Driver of Amphibian Population Declines
Studies of frogs overwintering in ice-covered ponds and lakes have documented large winterkills, suggesting that winter can be a time of great stress and may be a serious threat to rare and endangered frog species that overwinter in these systems. Lotic systems are assumed to be better oxygenated and therefore less subject to overwinter mortality than lentic systems, but few studies of the winter ecology of ranids in stream ecosystems exist. We investigated the habitat use and survival of Columbia Spotted Frogs (Rana luteiventris) overwintering in a stream system in the Toiyabe Mountains of Nevada. We radio-tracked 13 Spotted Frogs from October 2000 to March 2001 to locate hibernacula and document winter habitat use. During the winter, frogs moved up to 191 m under the ice, often upstream against the current. We marked 1,763 frogs from 2000 to 2001 and found evidence of winterkill (population decreases of 66% to 86.5%) at four out of five sites while the fifth site showed no evidence of winterkill. This corresponded to an actual observation of winterkill of 88% of the frogs at one of the sites, making this one of a few studies directly tying observed wintertime mortality to mark–recapture estimates of decreases in ranid populations and the first to do so for amphibians overwintering in a lotic system. Amphibian winter ecology in lotic systems, the severity and frequency of winterkill events in these systems, and their effect on population size and structure is in need of further study over a wide range of species and should be considered in conservation plans for ranids in lotic systems.
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6.70%
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74
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