Model fitting to the relationship between fecundity in Diachasmimorpha longicaudata female and temperature, and adult senescence and temperature: (A) cumulative oviposition fitted to exponential modified 3 function; (B) Number of eggs per female fitted to Wang function7; (C) female senescence rates fitted to Ratkowsky function 4 model and D) male senescence rates fitted to Ratkowsky model. The observed experimental values are represented in blue points with bars representing the standard deviation. The solid red lines are the fitted models with dashed lines in blue above and below representing the upper and lower 95% confidence interval.</p
Estimates of linear model parameters describing the relationship between temperature and development...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Model fitting to the relationship between (A) development rate from egg to adult and (B) mortality r...
Statistics of the goodness of fit and parameters of functions with their approximate standard errors...
Statistics of the goodness of fit and parameters of functions with their approximate standard errors...
<p>Total egg production curve, fitted function: exponential polynomial model (a); and Age-related ov...
<p>Age of the females at 50% oviposition is indicated. Dots represent data points. The upper and low...
Pre-oviposition, oviposition, and post-oviposition durations (mean ± SE in days) for Diachasmimorpha...
<p>Because the reproductive dynamics are strongly temperature dependent, we let the three model para...
(a) Adult female mortality rate per day: points—published estimates from mark-recapture experiments ...
<p>Fitted relationships for environmental egg parameters with temperature compared to the data. Left...
<p>Oocytes developmental rate based on calculating the pre-ovipositing period at 22, 23, 24, 27, and...
<p>Egg (a), Larva (b) and Pupa (c). Fitted curves: Wang model for all immature stages. The upper and...
<p>Female(a) and Male (b). Fitted curves: Modified Sharpe and DeMichele model for both sexes. The up...
Estimates of linear model parameters describing the relationship between temperature and development...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Model fitting to the relationship between (A) development rate from egg to adult and (B) mortality r...
Statistics of the goodness of fit and parameters of functions with their approximate standard errors...
Statistics of the goodness of fit and parameters of functions with their approximate standard errors...
<p>Total egg production curve, fitted function: exponential polynomial model (a); and Age-related ov...
<p>Age of the females at 50% oviposition is indicated. Dots represent data points. The upper and low...
Pre-oviposition, oviposition, and post-oviposition durations (mean ± SE in days) for Diachasmimorpha...
<p>Because the reproductive dynamics are strongly temperature dependent, we let the three model para...
(a) Adult female mortality rate per day: points—published estimates from mark-recapture experiments ...
<p>Fitted relationships for environmental egg parameters with temperature compared to the data. Left...
<p>Oocytes developmental rate based on calculating the pre-ovipositing period at 22, 23, 24, 27, and...
<p>Egg (a), Larva (b) and Pupa (c). Fitted curves: Wang model for all immature stages. The upper and...
<p>Female(a) and Male (b). Fitted curves: Modified Sharpe and DeMichele model for both sexes. The up...
Estimates of linear model parameters describing the relationship between temperature and development...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...