首页> 外文期刊>Journal of experimental zoology, Part A. Comparative experimental biology >Inoculative freezing by environmental ice nuclei in the freeze-tolerant wood frog, Rana sylvatica.
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Inoculative freezing by environmental ice nuclei in the freeze-tolerant wood frog, Rana sylvatica.

机译:耐寒性木蛙蛙蛙(Rana sylvatica)中环境冰核的接种性冷冻。

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摘要

Efficacy of inoculative freezing by ice nuclei in a simulated winter environment was studied in the wood frog (Rana sylvatica), a freeze-tolerant species that overwinters on the forest floor beneath organic detritus. Adult frogs were confined to plastic canisters and cooled to -2 degrees C over 24 hr with their ventral skin in contact with substrate (humic soil hydrated to 40, 10, or 5%, or soil/peat mixture hydrated to 20 or 10%, w/w), or their dorsal skin in contact with damp leaf mould. Whereas only 20% of control frogs cooled in dry, plastic canisters froze, freezing occurred in nearly all (98%) frogs contacting soil or leaf mould. Inoculation was briefly delayed in frogs exposed to drier substrates. Frogs exposed to an unfreezable substrate (humic soil, 5% moisture) themselves froze, apparently due to the action of constituent nuclei which commonly occur in natural materials. Although the surface over which inoculation can occur is greater in larger frogs, inoculation susceptibility was not correlated with body mass in our frogs (mean +/- SE body mass = 14.0 +/- 0.2 g; range, 9.8-17.8 g). We conclude that the high susceptibility to inoculative freezing in R. sylvatica, which is conferred by its moist, highly permeable integument, promotes freeze tolerance by ensuring that inoculation commences at relatively high temperatures.
机译:在木蛙(Rana sylvatica)中研究了在模拟的冬季环境中冰核孕育冻结的功效,该蛙是一种耐冷冻的物种,在有机碎屑下的森林地面上越冬。将成年青蛙关在塑料罐中,并在24小时内冷却至-2摄氏度,使其腹侧皮肤与基质接触(腐殖质土壤水合至40%,10%或5%,或土壤/豌豆混合物水合至20%或10%, w / w),或者其背面皮肤与潮湿的叶子霉菌接触。尽管只有20%的对照青蛙在干燥的塑料罐中冷却,但是几乎所有(98%)与土壤或叶片发霉的青蛙都发生了冻结。暴露于干燥底物的青蛙的接种时间短暂延迟。暴露于不可冻结的底物(腐殖土,5%水分)的青蛙本身会冻结,这显然是由于天然存在的天然组成核的作用所致。尽管在较大的青蛙中可发生接种的表面更大,但接种敏感性与我们的青蛙的体重无关(平均+/- SE体重= 14.0 +/- 0.2 g;范围9.8-17.8 g)。我们得出的结论是,由于湿润,高渗透性的外皮赋予了西番莲接种冷冻的高敏感性,可通过确保接种在相对较高的温度下开始来提高耐冻性。

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