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This reflects the different problems encountered on land and the lower mortality of larvae that are protected within the egg coverings.
LD50 is the minimum lethal dose for which we observe a 50% mortality of larvae.
Mortality of larvae was assessed at 24, 48, 72, 96, and 120 h post treatments.
Another bottleneck to production has been mortality of larvae from notochord flexion to metamorphosis.
It was observed that the spores from submerged fermentation (P < 0.01; F1,4 = 220.5) as well as the pure AC (P < 0.01; F1,4 = 156.3) significantly affected the mortality of larvae.
Results showed that Liquid Vermicompost, Coelomic fluid and Vermiwash had the greatest effect on egg hatching inhibition, respectively, and Coelomic fluid, Vermiwash and Liquid Vermicompost had the highest effect on mortality of larvae (J2), respectively, in vitro.
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The highest mortalities of larvae (55 and 65%) were observed at 96 and 120 h post exposure, respectively.
100% mortalities of larvae infesting the small and the large volume seeds were achieved at 55 °C at all MCs.
To simulate effects of pesticides on different honeybee (Apis mellifera L). life stages, we used the BEEHAVE model to explore how increased mortalities of larvae, in-hive workers, and foragers, as well as reduced egg-laying rate, could impact colony dynamics over multiple years.
The average cumulative mortality percentage of larvae was calculated for each concentration.
The mortality rates of larvae and adults were estimated daily after inoculation for 14 days.
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