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      Cold hardiness of Apteropanorpa tasmanica Carpenter (Mecoptera: Apteropanorpidae).

      1 ,
      Journal of insect physiology

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          Abstract

          There are very few investigations of cold hardiness in native Australian insects, and no such studies on insects from Tasmania. The Apteropanorpidae is a family of wingless Mecoptera endemic to Tasmania, comprising four described species that can be active in winter. In this study, we used infrared video thermography to investigate the physiological and behavioural responses of Apteropanorpa tasmanica to fast (0.3 degrees Cmin(-1)) and slow (0.03 degrees Cmin(-1)) rates of temperature reduction down to -10 degrees C. No adults survived cooling to -10 degrees C at either cooling rate. Mean supercooling points (SCPs) from fast cooling were -7.0 and -4.6 degrees C in 2002 and 2003, respectively. Ice nucleation always began in the abdomen, however, the position of nucleation within the abdomen varied between individuals. There was no relationship between SCP and body length, and no significant difference in SCPs between males and females. Stress-induced fast walking began when insects reached approximately -1.5 degrees C. Cooling rate did not affect the SCP or the temperature at which the behavioural stress response began. Adults survived for only short periods of time in the supercooled state; however they survived in the laboratory for up to 60 days at 4 degrees C, indicating their longevity at more favourable temperatures. Members of the Apteropanorpidae are adapted to the relatively warm, maritime climate currently influencing Tasmania.

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          Author and article information

          Journal
          J. Insect Physiol.
          Journal of insect physiology
          0022-1910
          0022-1910
          Jul 2008
          : 54
          : 7
          Affiliations
          [1 ] School of Botany and Zoology, The Australian National University, Canberra, ACT 0200, Australia. christopher.palmer@nt.gov.au
          Article
          S0022-1910(08)00089-9
          10.1016/j.jinsphys.2008.04.016
          18606167
          00e2c2a3-cd6d-4cbd-8532-876e4edbf39f
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