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Titlebook: Insects at Low Temperature; Richard E. Lee,David L. Denlinger Book 1991 Springer Science+Business Media Dordrecht 1991 Drosophila.arthropo

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Biochemistry of Cryoprotectantsl as a cryoprotectant was first recognized by R. W. Salt after he and others linked the presence of high levels of glycerol with winter hibernation, diapause, or freezing survival (Salt, 1957, 1959, 1961; Wyatt and Kalf, 1957; Chino, 1957). Over the last 30 years, literally hundreds of publications
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Thermoperiodismes. In a volume dealing with the effects of low temperatures on insects, inclusion of a chapter on thermoperiodic effects is quite appropriate, because it is the low-temperature phase of the thermoperiod that appears to play the major role in determining the insect’s response (Danilevskii, 1961; Bec
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Winter Habitats and Ecological Adaptations for Winter Survival to withstand the low temperatures. In practice, many adaptations combine to permit winter survival, notably the timing of the lifecycle, including the overwintering stage, and diapause and correlated changes in food storage. This chapter emphasizes habitat choices made by overwintering insects and
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Freezing Tolerance in the Goldenrod Gall Fly (,)s however, has, been investigated extensively, with a comparatively large number of publications (more than 50) describing facets of its overwintering biology and many separate laboratories have at one time or another studied cold-hardening of the goldenrod gall fly, . Fitch. Accordingly, the . mode
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Comparative Invertebrate Cold Hardinessf ice in their extracellular fluids. These include some lower vertebrates, such as frogs, turtles, and snakes and intertidal invertebrates. There are some basic similarities and differences in the mechanisms of freezing tolerance between insects and intertidal invertebrates, and it is the purpose of
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