Literature DB >> 28967300

Oocyst-Shedding Patterns of Three Eimeria Species in Chickens and Shedding Pattern Variation Depending on the Storage Period of Eimeria tenella Oocysts.

Jang O Cha1, Jing Zhao1, Myeon S Yang1, Won I Kim1, Ho S Cho1, Chae W Lim1, Bumseok Kim1.   

Abstract

Various species of Eimeria have different prepatent times and predilection sites, but their life cycles in infected poultry are similar. Practically speaking, chickens can be continuously exposed to various Eimeria species through environmental contamination. Furthermore, storage condition of the oocysts influences subsequent challenge infectivity, since coccidian oocysts contain a polysaccharide energy source known as amylopectin that is required for sporulation of oocysts and survival of the sporozoites. Here analysis of the oocyst-shedding patterns of 3 Eimeria species ( Eimeria acervulina, Eimeria maxima, and Eimeria tenella) and the effects of different oocyst storage time (64, 143, 225, and 332 days) on subsequent propagation patterns were evaluated. Based on the analysis of oocyst-shedding patterns and infectious lesions evaluated by oocyst counts and histopathology, respectively, the peak points of oocyst production and infectious lesion generation in animals infected with E. acervulina were observed to occur earlier in comparison to E. maxima- and E. tenella-infected animals. Prolonged storage of E. tenella oocysts decreased oocyst excretion (measured as oocysts per gram of feces [OPG]) and lengthened the peak period. Chickens infected with the freshest oocysts (Group A) had the highest fecal oocyst output, and animals in this group reached their peak at 7 days post-infection (dpi), which is similar to the normal pattern of oocyst output in fresh isolates. Infection with oocysts stored for longer periods showed a 1-day delay in the fecal oocyst peak count (8 dpi), and these infections also resulted in fewer OPG compared to Group A. Therefore, these results indicate that the storage period is important in affecting the peak point and pattern of oocyst shedding.

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Year:  2017        PMID: 28967300     DOI: 10.1645/16-132

Source DB:  PubMed          Journal:  J Parasitol        ISSN: 0022-3395            Impact factor:   1.276


  6 in total

1.  Effects of Tannic Acid Supplementation on Growth Performance, Oocyst Shedding, and Gut Health of in Broilers Infected with Eimeria Maxima.

Authors:  Janghan Choi; Yuguo Huo Tompkins; Po-Yun Teng; Robert M Gogal Jr; Woo Kyun Kim
Journal:  Animals (Basel)       Date:  2022-05-27       Impact factor: 3.231

2.  Effect of Feed Additives as Alternatives to In-feed Antimicrobials on Production Performance and Intestinal Clostridium perfringens Counts in Broiler Chickens.

Authors:  Silje Granstad; Anja B Kristoffersen; Sylvie L Benestad; Siri K Sjurseth; Bruce David; Line Sørensen; Arnulf Fjermedal; Dag H Edvardsen; Gorm Sanson; Atle Løvland; Magne Kaldhusdal
Journal:  Animals (Basel)       Date:  2020-02-03       Impact factor: 2.752

3.  Monitoring coccidia in commercial broiler chicken flocks in Ontario: comparing oocyst cycling patterns in flocks using anticoccidial medications or live vaccination.

Authors:  R P Snyder; M T Guerin; B M Hargis; G Page; J R Barta
Journal:  Poult Sci       Date:  2020-10-07       Impact factor: 3.352

4.  The impact of maturity on the ability of Eimeria acervulina and Eimeria meleagrimitis oocysts to sporulate.

Authors:  Jean-Michel Répérant; Martine Thomas-Hénaff; Chantal Benoit; Pierre Le Bihannic; Nicolas Eterradossi
Journal:  Parasite       Date:  2021-04-02       Impact factor: 3.000

5.  The Effect of Necrotic Enteritis Challenge on Production Performance, Cecal Microbiome, and Cecal Tonsil Transcriptome in Broilers.

Authors:  Gabriel Akerele; Walid G Al Hakeem; Jeferson Lourenco; Ramesh K Selvaraj
Journal:  Pathogens       Date:  2022-07-27

6.  Protective Effect of Lactobacillus plantarum P8 on Growth Performance, Intestinal Health, and Microbiota in Eimeria-Infected Broilers.

Authors:  Yang Wang; Xiaoguo Lv; Xuemin Li; Jinshan Zhao; Kai Zhang; Xiaojing Hao; Kaidong Liu; Huawei Liu
Journal:  Front Microbiol       Date:  2021-07-09       Impact factor: 5.640

  6 in total

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