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Influence of Soil Type and Moisture on Pupal Development of (Macquart) at Two Different Temperatures. | LitMetric

Influence of Soil Type and Moisture on Pupal Development of (Macquart) at Two Different Temperatures.

Insects

School of Medical, Molecular & Forensic Sciences, Murdoch University, Murdoch, WA 6150, Australia.

Published: June 2024

AI Article Synopsis

  • The study examines how soil composition, moisture levels, and temperature affect the development of Macquart pupae, which is important for forensic and veterinary sciences.
  • It tests various moisture levels in loam and sandy soils at two temperatures, finding that while soil type and temperature significantly affect pupal development, moisture content does not.
  • Results show distinct variations in larval survival, growth parameters, and gender differences in head size and emergence rates based on environmental conditions, enhancing our understanding of these factors' roles in dipteran development.

Article Abstract

The present study investigates the developmental process of (Macquart) pupae and their dependency on soil composition, moisture levels, and temperature changes. This research holds implications for forensic and veterinary applications, providing crucial insights for estimating minimum postmortem intervals and managing myiasis-causing flies in diverse environments. Specifically, the study explores the impact of five moisture content levels in loam and sandy soils (0%, 20%, 40%, 60%, and 80%) on the pupal development of under two distinct constant temperature regimes (24 ± 1 °C and 30 ± 1 °C). A significant correlation was observed between soil type and temperature regarding the time required to complete the pupal stages; however, moisture had no significant impact. Larvae exhibited varying survival rates across the two temperatures and five moisture levels in the two types of soils, particularly under extremely lower moisture conditions (0%) at 30 ± 1 °C, failing to progress to the pupariation stage. Additionally, growth parameters such as pupal length and width of the fully formed puparia were significantly impacted by temperature, soil type, and moisture level. Adult head width was systematically measured across different moisture levels and soil types, revealing distinct temperature-dependent responses. Furthermore, a sex-specific analysis highlighted that female consistently displayed larger head widths and higher emergence rates compared to their male counterparts. This research enhances our understanding of the intricate interrelationship among three environmental variables: soil type, moisture level, and temperature, elucidating their collective impact on the pupation processes of dipterans.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11276904PMC
http://dx.doi.org/10.3390/insects15070479DOI Listing

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