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Nucleofection and In Vivo Propagation of Chicken Eimeria Parasites
Published on: February 14, 2020
Comparison between McMaster and Mini-FLOTAC methods for the enumeration of Eimeria maxima oocysts in poultry excreta
C Bortoluzzi1, K L Paras2, T J Applegate1
1Department of Poultry Science, College of Agriculture and Environmental Sciences, University of Georgia, Athens, GA, 30602, USA.
Abstract:
Monitoring Eimeria shedding has become more important due to the recent restrictions to the use of antibiotics within the poultry industry. Therefore, there is a need for the implementation of more precise and accurate quantitative diagnostic techniques. The objective of this study was to compare the precision and accuracy between the Mini-FLOTAC and the McMaster techniques for quantitative diagnosis of Eimeria maxima oocyst in poultry. Twelve pools of excreta samples of broiler chickens experimentally infected with E. maxima were analyzed for the comparison between Mini-FLOTAC and McMaster technique using, the detection limits (dl) of 23 and 25, respectively. Additionally, six excreta samples were used to compare the precision of different dl (5, 10, 23, and 46) using the Mini-FLOTAC technique. For precision comparisons, five technical replicates of each sample (five replicate slides on one excreta slurry) were read for calculating the mean oocyst per gram of excreta (OPG) count, standard deviation (SD), coefficient of variation (CV), and precision of both aforementioned comparisons. To compare accuracy between the methods (McMaster, and Mini-FLOTAC dl 5 and 23), excreta from uninfected chickens was spiked with 100, 500, 1,000, 5,000, or 10,000 OPG; additional samples remained unspiked (negative control). For each spiking level, three samples were read in triplicate, totaling nine reads per spiking level per technique. Data were transformed using log10 to obtain normality and homogeneity of variances. A significant correlation (R = 0.74; p = 0.006) was observed between the mean OPG of the McMaster dl 25 and the Mini-FLOTAC dl 23. Mean OPG, CV, SD, and precision were not statistically different between the McMaster dl 25 and Mini-FLOTAC dl 23. Despite the absence of statistical difference (p > 0.05), Mini-FLOTAC dl 5 showed a numerically lower SD and CV than Mini-FLOTAC dl 23. The Pearson correlation coefficient revealed significant and positive correlation among the four dl (p ≤ 0.05). In the accuracy study, it was observed that the Mini-FLOTAC dl 5 and 23 were more accurate than the McMaster for 100 OPG, and the Mini-FLOTAC dl 23 had the highest accuracy for 500 OPG. The McMaster and Mini-FLOTAC dl 23 techniques were more accurate than the Mini-FLOTAC dl 5 for 5,000 OPG, and both dl of the Mini-FLOTAC were less accurate for 10,000 OPG counts than the McMaster technique. However, the overall accuracy of the Mini-FLOTAC dl 23 was higher than the McMaster and Mini-FLOTAC dl 5 techniques.
Insights
The Mini-FLOTAC technique, particularly at a detection limit of 23, offers comparable precision and accuracy to the McMaster method for quantifying Eimeria oocysts in poultry. Mini-FLOTAC shows potential for improved diagnostic accuracy in poultry health management.
Area of Science:
- Veterinary Parasitology
- Poultry Health Management
- Diagnostic Microbiology
Background:
- Increasing restrictions on antibiotic use in poultry necessitate advanced diagnostic tools for parasite monitoring.
- Accurate quantification of Eimeria oocysts is crucial for effective disease management in poultry flocks.
- Traditional diagnostic techniques may lack the precision and accuracy required for current poultry health standards.
Purpose of the Study:
- To compare the diagnostic precision and accuracy of the Mini-FLOTAC and McMaster techniques for Eimeria maxima oocyst quantification in poultry.
- To evaluate the performance of Mini-FLOTAC across different detection limits (dl) for Eimeria oocyst enumeration.
- To provide data supporting the implementation of more precise quantitative diagnostic methods in poultry.
Main Methods:
- Experimental infection of broiler chickens with Eimeria maxima.
- Analysis of excreta samples using Mini-FLOTAC (dl 5, 10, 23, 46) and McMaster (dl 25) techniques.
- Precision assessment via technical replicates and accuracy evaluation using spiked samples at various oocyst per gram (OPG) levels.
Main Results:
- A significant positive correlation (R=0.74, p=0.006) was found between McMaster (dl 25) and Mini-FLOTAC (dl 23) for Eimeria oocyst counts.
- No statistically significant differences in mean OPG, CV, SD, or precision were observed between McMaster (dl 25) and Mini-FLOTAC (dl 23).
- Mini-FLOTAC (dl 23) demonstrated higher overall accuracy compared to McMaster and Mini-FLOTAC (dl 5), especially at lower OPG concentrations.
Conclusions:
- The Mini-FLOTAC technique, particularly at dl 23, is a precise and accurate alternative to the McMaster method for quantifying Eimeria oocysts in poultry.
- Mini-FLOTAC offers improved accuracy at lower OPG levels, aiding in early detection and management of Eimeria infections.
- These findings support the adoption of Mini-FLOTAC for enhanced quantitative diagnosis in poultry health programs.
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