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Chia, Shaphan Yong; Tanga, Chrysantus M; Khamis, Fathiya Mbarak; Mohamed, Samira Abuelgasim; Salifu, Daisy; Sevgan, Subramanian; Fiaboe, Komi K M; Niassy, Saliou; van Loon, Joop J A; Dicke, Marcel; Ekesi, Sunday (2018): Threshold temperatures and thermal requirements of black soldier fly Hermetia illucens - links to files [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.895274, Supplement to: Chia, SY et al. (2018): Threshold temperatures and thermal requirements of black soldier fly Hermetia illucens: Implications for mass production. PLoS ONE, 13(11), e0206097, https://doi.org/10.1371/journal.pone.0206097

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Abstract:
Efforts to recycle organic wastes using black soldier fly (BSF) Hermetia illucens into high-nutrient biomass that constitutes a sustainable fat (biodiesel) and high-quality protein ingredient in animal feeds have recently gained momentum worldwide. However, there is little information on the most suitable rearing conditions for growth, development and survivorship of these flies, which is a prerequisite for mass production technologies. We evaluated the physiological requirements for growth and reproduction of H. illucens on two diets [spent grains supplemented with brewers' yeast (D1) and un-supplemented (D2)]. Development rates at nine constant temperatures (10 - 42°C) were fitted to temperature-dependent linear and non-linear day-degree models. Thereafter, life history table parameters were determined within a range of favourable temperatures. The thermal maximum (TM) estimates for larval, pre-pupal and pupal development using non-linear model ranged between 37.2 ± 0.3 and 44.0 ± 2.3°C. The non-linear and linear day-degree model estimations of lower developmental temperature threshold for larvae were 11.7 ± 0.9 and 12.3 ± 1.4 °C for D1, and 10.4 ± 1.7 and 11.7 ± 3.0 °C for D2, respectively. The estimated thermal constant of immature life stages development of BSF was higher for the larval stage (250±25 DD for D1 and 333±51 for D2) than the other stages evaluated. Final larval wet weight was higher on D1 compared to D2. The population growth rate was most favourable at 30-degree celsius (°C) with higher intrinsic rate of natural increase (r_m=0.127 for D1 and 0.122 for D2) and shorter doubling time (5.5 days for D1 and 5.7 days for D2) compared to the other temperatures. These results are valuable for the optimization of commercial mass rearing procedures of BSF under various environmental conditions and prediction of population dynamics patterns using computer simulation models.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
File contentContentChia, Shaphan Yong
File nameFile nameChia, Shaphan Yong
File formatFile formatChia, Shaphan Yong
File sizeFile sizekByteChia, Shaphan Yong
Uniform resource locator/link to fileURL fileChia, Shaphan Yong
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35 data points

Data

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Development rate of the different life stages of black soldier fliesDevelopment_rate_of_different_life_stagesXLSX8.542Development_rate_of_different_life_stages.xlsx
Effect of diet and temperature on the wet weight gain of various life stages of black soldier flyEffect_of_diet_and_temp_on_wet_weight_gainXLSX15.347Effect_of_diet_and_temp_on_wet_weight_gain.xlsx
Effect of temperature on adult male and female black soldier fly longevity and quadratic modelsEffect_of_temp_on_adult_male_and_female_longevity_and_quadratic_modelsXLSX11.453Effect_of_temp_on_adult_male_and_female_longevity_and_quadratic_models.xlsx
Effect of temperature on the developmental time of the different life stages of black soldier fliesEffect_of_temp_on_developm_timeXLSX14.519Effect_of_temp_on_developm_time.xlsx
Effect of temperature on the lifetable parameters of black soldier fliesEffect_of_temp_on_lifetable_paramsXLSX11.835Effect_of_temp_on_lifetable_params.xlsx
Effect of temperature on the percentage survival of the different life stages of black soldier flyEffect_of_temp_on_perc_survivalXLSX14.275Effect_of_temp_on_perc_survival.xlsx
Evaluation of the preoviposition and oviposition period of black soldier fly at various temperatureEvaluation_of_preoviposition_and_oviposition_period_various_tempXLSX9.811Evaluation_of_preoviposition_and_oviposition_period_various_temp.xlsx