Literature DB >> 29337627

Increased Incidence of Enterococcal Infection in Nonviable Broiler Chicken Embryos in Western Canadian Hatcheries as Detected by Matrix-Assisted Laser Desorption/Ionization-Time-of-Flight Mass Spectrometry.

Ruwani Karunarathna1, Shelly Popowich1, Morgan Wawryk1, Betty Chow-Lockerbie1, Khawaja Ashfaque Ahmed1, Chenfang Yu2, Mengying Liu1, Kalhari Goonewardene1, Thushari Gunawardana1, Shanika Kurukulasuriya1, Ashish Gupta1, Philip Willson3, Neil Ambrose4, Musangu Ngeleka5, Susantha Gomis1.   

Abstract

The emergence of enterococcal infections in neonatal broiler chickens in the poultry industry has become common in many countries, including Canada. The objective of this study was to examine the bacterial infections in nonviable broiler chicken embryos in three western Canadian poultry hatcheries using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS). The pattern of embryo mortality that occurred during incubation and the breakout analysis results were similar in all three hatcheries. The majority of embryo mortality occurred during the late stage of incubation (35.08%), followed by the early stage of incubation (15.35%). The breakout analysis showed that 65.82% of swabs had at least one type of bacterial growth while 34.17% of swabs were negative for bacterial isolation. Of those 65.82% swabs with bacterial growth, 34.3% of swabs yielded a mixed bacterial population while 31.52% yielded one type of bacterial growth. The frequency of bacterial isolation from hatch debris (60%-75%) increased with the age of broiler breeders. MALDI-TOF MS was able to provide genus-level identification of 83.13% of isolates among all bacterial types isolated. MALDI-TOF MS identified Enterococcus and Escherichia coli isolates with 97.18% and 100% accuracy at species level, respectively, whereas Staphylococcus species were identified with 62.59% accuracy. The congruence between MALDI-TOF MS identification and 16S rRNA or cpn60 universal gene target sequencing was 100% or 90%, respectively. Of all bacteria isolated, Enterococcus species (29.71%) were the most prevalent, followed by E. coli (19.46%). About 56% of E. coli-infected samples were coinfected with Enterococcus species. Among all Enterococcus species isolated, Enterococcus faecalis (79.58%) was the most prevalent, followed by Enterococcus faecium (8.1%). Overall, our study showed that Enterococcus-associated embryo mortality was predominant in all three hatcheries investigated and suggests that MALDI-TOF MS technology can be applied to identify bacteria such as Enterococcus species isolated from poultry.

Entities:  

Keywords:  Enterococcus species; Escherichia coli; MALDI-TOF MS; breakout analysis; broiler breeders; chicken embryos

Mesh:

Year:  2017        PMID: 29337627     DOI: 10.1637/11678-052317-Reg.1

Source DB:  PubMed          Journal:  Avian Dis        ISSN: 0005-2086            Impact factor:   1.577


  3 in total

1.  Molecular detection and antibiotyping of multi-drug resistant Enterococcus faecium from healthy broiler chickens in Bangladesh.

Authors:  Krishna Roy; Md Saiful Islam; Anamika Paul; Samina Ievy; Mithun Talukder; Md Abdus Sobur; Fatimah Muhammad Ballah; Md Shahidur Rahman Khan; Md Tanvir Rahman
Journal:  Vet Med Sci       Date:  2021-11-16

2.  Development of an environmental contamination model to simulate the microbial bloom that occurs in commercial hatch cabinets.

Authors:  B D Graham; C M Selby; A J Forga; M E Coles; L C Beer; L E Graham; K D Teague; G Tellez-Isaias; B M Hargis; C N Vuong
Journal:  Poult Sci       Date:  2022-03-31       Impact factor: 4.014

3.  Non-viable chicken embryos: an overlooked niche harbouring a significant source of multidrug resistant bacteria in the poultry production.

Authors:  Ruwani Karunarathna; Khawaja Ashfaque Ahmed; Mengying Liu; Chenfang Yu; Shelly Popowich; Kalhari Goonewardene; Thushari Gunawardana; Shanika Kurukulasuriya; Ashish Gupta; Lisanework E Ayalew; Philip Willson; Musangu Ngeleka; Susantha Gomis
Journal:  Int J Vet Sci Med       Date:  2020-01-23
  3 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.