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1 December 2012 Influence of Winter Temperature and Simulated Climate Change on Body Mass and Fat Body Depletion during Diapause in Adults of the Solitary Bee, Osmia rufa (Hymenoptera: Megachilidae)
Monika Fliszkiewicz, Karol Giejdasz, Oskar Wasielewski, Natraj Krishnan
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Abstract

The influence of simulated climate change on body weight and depletion of fat body reserves was studied during diapause in the European solitary bee Osmia rufa L. (Hymenoptera: Megachilidae). Insects (females) were reared and collected from outdoor nests from September to March. One cohort of females was weighed and dissected immediately for analyses, whereas another cohort was subjected to simulated warmer temperature (15°C for 7 d) before analyses. A gradual decline in body mass and fat body content was recorded with declining temperatures from September to January in female bees from natural conditions. Temperature increased gradually from January to March with a further decline in body mass and fat body content. The fat body development index dropped from five in September—October (≈89% individuals) to four for the period from November to February (≈84% individuals) and further to three in March (95% individuals) before emergence. Simulated warmer winter temperature also resulted in a similar decline in body weight and fat body content; however, body weight and fat body content declined faster. The fat body development index dropped to three in December in the majority of individuals and continued at this level until March just before emergence. Taken together, our data indicate an earlier depletion of fat body reserves under simulated climate change conditions that may impact ovarian development and reproductive fitness in O. rufa.

© 2012 Entomological Society of America
Monika Fliszkiewicz, Karol Giejdasz, Oskar Wasielewski, and Natraj Krishnan "Influence of Winter Temperature and Simulated Climate Change on Body Mass and Fat Body Depletion during Diapause in Adults of the Solitary Bee, Osmia rufa (Hymenoptera: Megachilidae)," Environmental Entomology 41(6), 1621-1630, (1 December 2012). https://doi.org/10.1603/EN12004
Received: 4 January 2012; Accepted: 1 August 2012; Published: 1 December 2012
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KEYWORDS
diapause
Osmia rufa
simulated climate change
temperature
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