Temperature-dependent oxygen limitation in insect eggs

Зависимое от температуры ограничение снабжения кислородом у яиц насекомых
H. Arthur Woods, Ryan I. Hill
2004-05-24

Manduca sexta eggsinsect gigantismoxygen limitationoxygen microelectrodetemperature-oxygen interactions
Most terrestrial insect embryos support metabolism with oxygen from the environment by diffusion across the eggshell. Because metabolism is more temperature sensitive than diffusion, embryos should be relatively oxygen-limited at high temperatures. We tested whether survival, development time and metabolism of eggs of a moth, Manduca sexta, were sensitive to experimentally imposed variation in atmospheric oxygen availability (5-50 kPa; normoxia at sea level is 21 kPa) across a range of biologically realistic temperatures. Temperature-oxygen interactions were apparent in most experiments. Hypoxia affected survival more strongly at warmer temperatures. Metabolic rates, measured as rates of CO2 emission, were virtually insensitive to hypo- and hyperoxia at 22 degrees C but were strongly influenced at 37 degrees C. Radial profiles of P(O2) inside eggs, measured using an oxygen microelectrode, demonstrated that 3-day-old eggs had broad central volumes with P(O2) less than 2 kPa, and that higher temperature led to lower P(O2). These data indicate that at realistically high temperatures (32-37 degrees C) eggs of M. sexta were oxygen limited, even in normoxia. This result has important implications for insect population ecology and the evolution of eggshell structures, and it suggests a novel hypothesis about insect gigantism during Paleozoic hyperoxia.
1
At realistically high temperatures of 32–37°C, M. sexta eggs were oxygen-limited even under normoxic atmospheric conditions.
2
Egg metabolic rates were nearly insensitive to altered oxygen availability at 22°C but were strongly affected by hypo- and hyperoxia at 37°C.
3
Manduca sexta egg survival was more strongly reduced by hypoxia at warmer temperatures, demonstrating a temperature–oxygen interaction.
4
Oxygen microelectrode measurements showed broad central egg regions below 2 kPa P(O₂) in three-day-old eggs, with lower internal oxygen at higher temperatures.
5
The findings implicate oxygen limitation in insect population ecology and eggshell evolution and motivate a hypothesis linking Paleozoic hyperoxia to insect gigantism.

Manduca sexta eggs and embryos under varying atmospheric oxygen availability and temperature

Temperature-dependent oxygen limitation, including effects on survival, development time, metabolism, and intr egg oxygen profiles

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2004-05-24
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H. Arthur Woods
Ryan I. Hill
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