Necrotic enteritis
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Types of Clostridium perfringens
There are five types of C. perfringens (A, B, C, D and E) which produce a number of toxins (alpha, beta, epsilon, iota and CPE). The α-toxin, an enzyme (phospholipase C) is believed to be a key to the occurrence of NE. However, a recent study has shown that an isolate that does not produce α-toxin can still cause disease. In addition, a new toxin called NetB has been recently identified in disease causing C. perfringens isolates. The intestine of infected birds is friable and distended with gas and gross lesions caused by toxins. In the acute form of NE, birds often die without clinical signs. However, in its subclinical form the disease is much more financially damaging for the producer. The commonly observed symptoms of the disease vary with the age of birds.
Signs of an outbreak
Early signs of an NE outbreak are often wet litter and diarrhoea, and an increase in mortality is not often obvious. However, the depression of growth rate and feed efficiency of birds become noticeable by day 35 because of damage to the intestine and the subsequent reduction in digestion and absorption of food. Furthermore, increased condemnations at processing due to liver lesions associated with subclinical NE can occur. It has been estimated that the average cost of NE to the poultry industry can be as high as 5 US cents per bird. The images on the right are examples of NE lesions in broiler chickens; the increasing seriousness of the lesions is scored from 1 to 4.
NE is a complex, multifactorial disease with many unknown factors influencing its occurrence and the severity of outbreaks. In particular, sporadic outbreaks of NE can occur frequently in farms where antibiotics are not used as growth promoters or coccidial infections are not controlled, the husbandry practice is not strict, and diets based on viscous grains with animal protein sources are common.
Predisposing factors for necrotic enteritis
Some other dietary and husbandry factors can contribute to the outbreak of NE. For example, damage to the intestinal mucosa through coccidial infection or a change in the normal intestinal microflora as a result of a change in diet formulation, such as inclusion of a high level of viscous cereal grains and/or animal byproducts like fish meal and meat meal, can predispose birds to the rapid proliferation of C. perfringens.
Viscous grains
The incidence of clostridial infections is high in birds fed diets based on wheat, barley, oats or rye. These grains contain a high level of indigestible soluble fibre, which increases digesta viscosity, decreases digesta passage rate and reduces nutrient digestibility. A highly viscous intestinal environment will increase the proliferation of facultative anaerobes like gram-positive cocci and enterobacteria. Furthermore, a large amount of undigested material in the small intestine together with a slow flow of digesta increases the chances of rapid bacterial colonisation of the intestine.
Poorly digestible protein sources
The use of poorly digestible protein sources alters the microflora and creates a favourable condition in the intestine for the proliferation of pathogens. Of course, the converse is also true because when a highly digestible diet is fed to animals, the chance of pathogens colonising the gut can be greatly diminished.
Animal protein ingredients
The use of high levels of animal protein meals such as fish meal or meat and bone meal is often associated with an increased risk of NE. In fact, the most effective model for reproduction of NE under experimental conditions uses a diet containing in excess of 25% fish meal and/or meat and bone meal prior to a challenge with Eimeria and C. perfringens.
Coccidial infection
The occurrence of NE is often associated with an outbreak of coccidial infection. Coccidial infections cause damage to the intestinal lining, making the gut susceptible to other infections including C. perfringens.
Current management of necrotic enteritis
Following the ground-breaking discovery that alpha-toxin is not the main causative factor for NE, by a Monash University PhD student funded by the Poultry CRC, Anthony Keyburn, CSIRO Livestock Industries researchers have patented NetB, the toxin they believe is the culprit. The research team has identified the novel toxin and is now working on how it might be used to create the first truly effective vaccines against NE.
Further information
- Choct, M. (2005). Australian Poultry CRC Fact Sheet: Necrotic enteritis.
- Keyburn AL, Sheedy SA, Ford ME, Williamson MM, Awad MM, Rood JI, Moore RJ. Alpha-toxin of Clostridium perfringens is not an essential virulence factor in necrotic enteritis in chickens. Infect Immun. 2006 Nov;74(11):6496-500. Epub 2006 Aug 21.
- Keyburn AL, Boyce JD, Vaz P, Bannam TL, Ford ME, Parker D, Di Rubbo A, Rood JI, Moore RJ. NetB, a new toxin that is associated with avian necrotic enteritis caused by Clostridium perfringens. PLoS Pathog. 2008 Feb 8;4(2):e26.
- Branton, S. L., Reece, F. N. & Hagler Jr, W. M. (1987). "Influence of a wheat diet on mortality of broiler chickens associated with necrotic enteritis." Poultry Science 66, 1326–1330.
- Hofacre, C. L., Froyman, R., Gautrias, B., George, B., Goodwin, M. A. & Brown, J. (1998). "Use of Aviguard and other intestinal bioproducts in experimental Clostridium perfringens-associated necrotizing enteritis in broiler chickens." Avian Diseases 42, 579–584.
- Kaldhusdal, M. & Løvland, A. (2000). "The economical impact of Clostridium perfringens is greater than anticipated." World Poultry 16, 50–51.
- Kaldhusdal, M. & Skjerve, E. (1996). "Association between cereal contents in the diet and the incidence of necrotic enteritis in broiler chickens in Norway." Preventive Veterinary Medicine 28, 1–16.
- Parish, W. E. (1961). "Necrotic enteritis in the fowl (Gallus gallus domesticus). I. Histopathology of the disease and isolation of the strain Clostridium welchii." Journal of Comparative Pathology 71, 377–393.
- Riddell, C. & Kong, X. M. (1992). "The influence of diet on necrotic enteritis in broiler chickens." Avian Diseases 36, 499–503.
- Truscott, R. B. & Al-Sheikhly, F. (1977). "Reproduction and treatment of necrotic enteritis in broilers." American Journal of Veterinary Research 38, 857–861.
- van der Sluis, W. (2000a). "Necrotic enteritis (1): Clostridial enteritis a syndrome emerging worldwide." World Poultry 16, 56–57.
- van der Sluis, W. (2000b). "Necrotic enteritis (3): Clostridial enteritis is an often underestimated problem." World Poultry 16, 42–43.
See also
- List of avian diseases
- eChook News: Re-writing ‘the book’ on a devastating poultry disease
- Poultry CRC project 07-15: A new virulence factor in Clostridium perfringens causing Necrotic Enteritis in chickens - a route to vaccine development
- Poultry CRC
- CSIRO
- Monash University
- References
- Rapid tests for poultry diseases
External links
- Audio podcast: Re-think on how to beat a major poultry disease (CSIRO) is an audio-file detailing Anthony Keyburn's break-through in research for a Necrotic Entertitis vaccine.
- Poultry CRC web siteThe Poultry CRC performs research in order to improve the sustainability and competitiveness of the Australian poultry industries.
- The Merck Veterinary Manual, Poultry:Necrotic enteritis Etiology and Pathogenesis, Clinical Findings and Lesions, Diagnosis, Prevention, Control, and Treatment for Necrotic Enteritis.
- Schering-Plough's necrotic enteritis website Necrotic Enteritis Vaccine,disease information and consumer needs.
- ThePoultrySite.com's page on necrotic enteritis Signs,Post-mortem lesions, diagnosis, prevention and treatment.
- Wikipedia: Clostridium perfringens Infection characteristics and dangers to human consumers passed through consuming infected meat.
- Wikipedia: Category:Poultry diseases A list of common poultry diseases and health issues.
- Wikipedia: Poultry disease Definition of 'poultry Disease'.

