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Burton, L. S.

Publications and source records attributed to Burton, L. S..

2 recordsLinked to original sources

Overwintering under the ice: seasonal shifts in cold and hypoxia stress physiology of three winter-active pond insects

Winter poses harsh physiological challenges for insects living in temperate ponds due to the combination of low temperatures and reduced oxygen levels (hypoxia). Despite these stressors, water boatmen (Hesperocorixa sp.), backswimmers (Notonecta sp.) and diving beetles (Laccophilus maculosus) remain active year-round in eastern Nova Scotia, including in ice- covered ponds. However, the underlying mechanisms that allow pond insects to survive overwintering have not been widely studied. We hypothesized that cold and hypoxia tolerance would improve from September to March in these insects, with changes in whole-animal and biochemical correlates of tolerance to both stressors. We collected insects from the field and stocked them in outdoor freshwater mesocosms. Every two months, between September 2023 and April 2024, we characterized whole animal responses and biochemical changes. Whole insect cold tolerance assays indicated a trend of improved ability to sustain voluntary muscle control (CTmin) at lower temperatures in winter-collected insects and higher internal fluid freezing temperatures (SCP). There were no changes in whole animal correlates of hypoxia tolerance over time (surface respiration frequency, submersion and surface time). Potential cryoprotectants like proline, myo-inositol and trehalose increased in concentration in multiple insect taxa during winter but were relatively low compared to terrestrial insect studies. As lactate dehydrogenase activity did not change, there is little evidence that the insects experienced functional hypoxia sufficient to induce anaerobic metabolism. Overall, this research has established a baseline cold and hypoxia tolerance dataset in understudied pond insects. Summary StatementPond insects remain active during low temperature and low oxygen conditions associated with ice cover in winter, supported by physiological and biochemical changes.

zoology↗

The cold tolerance of an adult winter-active stonefly: How Allocapnia pygmaea (Plecoptera: Capniidae) avoids freezing in Nova Scotian winters

Allocapnia pygmaea Burmeister (Plecoptera: Capniidae) is a winter-active stonefly in North America. Despite the adults winter emergence, little is documented about the cold tolerance and cryoprotective biochemistry of A. pygmaea. To better understand the cold tolerance of this winter-active stonefly, we collected adult A. pygmaea in Antigonish, NS during March or April in both 2023 and 2024. Following different cold exposures, we measured the lower limits of activity (-8.9 {degrees}C) and the temperature at which internal freezing occurs (-11.9 {degrees}C), and confirmed that A. pygmaea could survive subzero temperatures unless they froze. We also assayed the following putative cryoprotectants: proline, glycerol, myo-inositol, trehalose, and glucose in control (field-collected) and cold-shocked groups. We detected little effect of cold shock on most cryoprotectants, except for the polyols glycerol and myo-inositol, which decreased in concentration following cold shock. These findings improve our current understanding of Capniid cold tolerance, confirming that A. pygmaea uses a freeze-avoidant strategy, and lay a foundation for future studies on how they may use cryoprotectants for winter-activity.

zoology↗