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Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus

Newcastle disease (ND) is a global threat to domestic poultry, especially in rural areas of Africa and Asia, where the loss of entire backyard local chicken flocks often threatens household food security and income. To investigate the genetics of Ghanaian local chicken ecotypes to Newcastle disease...

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Autores principales: Walugembe, Muhammed, Amuzu-Aweh, Esinam N., Botchway, Princess K., Naazie, Augustine, Aning, George, Wang, Ying, Saelao, Perot, Kelly, Terra, Gallardo, Rodrigo A., Zhou, Huaijun, Lamont, Susan J., Kayang, Boniface B., Dekkers, Jack C. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7402339/
https://www.ncbi.nlm.nih.gov/pubmed/32849779
http://dx.doi.org/10.3389/fgene.2020.00739
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author Walugembe, Muhammed
Amuzu-Aweh, Esinam N.
Botchway, Princess K.
Naazie, Augustine
Aning, George
Wang, Ying
Saelao, Perot
Kelly, Terra
Gallardo, Rodrigo A.
Zhou, Huaijun
Lamont, Susan J.
Kayang, Boniface B.
Dekkers, Jack C. M.
author_facet Walugembe, Muhammed
Amuzu-Aweh, Esinam N.
Botchway, Princess K.
Naazie, Augustine
Aning, George
Wang, Ying
Saelao, Perot
Kelly, Terra
Gallardo, Rodrigo A.
Zhou, Huaijun
Lamont, Susan J.
Kayang, Boniface B.
Dekkers, Jack C. M.
author_sort Walugembe, Muhammed
collection PubMed
description Newcastle disease (ND) is a global threat to domestic poultry, especially in rural areas of Africa and Asia, where the loss of entire backyard local chicken flocks often threatens household food security and income. To investigate the genetics of Ghanaian local chicken ecotypes to Newcastle disease virus (NDV), in this study, three popular Ghanaian chicken ecotypes (regional populations) were challenged with a lentogenic NDV strain at 28 days of age. This study was conducted in parallel with a similar study that used three popular Tanzanian local chicken ecotypes and after two companion studies in the United States, using Hy-line Brown commercial laying birds. In addition to growth rate, NDV response traits were measured following infection, including anti-NDV antibody levels [pre-infection and 10 days post-infection (dpi)], and viral load (2 and 6 dpi). Genetic parameters were estimated, and two genome-wide association study analysis methods were used on data from 1,440 Ghanaian chickens that were genotyped on a chicken 600K Single Nucleotide Polymorphism (SNP) chip. Both Ghana and Tanzania NDV challenge studies revealed moderate to high (0.18 – 0.55) estimates of heritability for all traits, except viral clearance where the heritability estimate was not different from zero for the Tanzanian ecotypes. For the Ghana study, 12 quantitative trait loci (QTL) for growth and/or response to NDV from single-SNP analyses and 20 genomic regions that explained more than 1% of genetic variance using the Bayes B method were identified. Seven of these windows were also identified as having at least one significant SNP in the single SNP analyses for growth rate, anti-NDV antibody levels, and viral load at 2 and 6 dpi. An important gene for growth during stress, CHORDC1 associated with post-infection growth rate was identified as a positional candidate gene, as well as other immune related genes, including VAV2, IL12B, DUSP1, and IL17B. The QTL identified in the Ghana study did not overlap with those identified in the Tanzania study. However, both studies revealed QTL with genes vital for growth and immune response during NDV challenge. The Tanzania parallel study revealed an overlapping QTL on chromosome 24 for viral load at 6 dpi with the US NDV study in which birds were challenged with NDV under heat stress. This QTL region includes genes related to immune response, including TIRAP, ETS1, and KIRREL3. The moderate to high estimates of heritability and the identified QTL suggest that host response to NDV of local African chicken ecotypes can be improved through selective breeding to enhance increased NDV resistance and vaccine efficacy.
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spelling pubmed-74023392020-08-25 Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus Walugembe, Muhammed Amuzu-Aweh, Esinam N. Botchway, Princess K. Naazie, Augustine Aning, George Wang, Ying Saelao, Perot Kelly, Terra Gallardo, Rodrigo A. Zhou, Huaijun Lamont, Susan J. Kayang, Boniface B. Dekkers, Jack C. M. Front Genet Genetics Newcastle disease (ND) is a global threat to domestic poultry, especially in rural areas of Africa and Asia, where the loss of entire backyard local chicken flocks often threatens household food security and income. To investigate the genetics of Ghanaian local chicken ecotypes to Newcastle disease virus (NDV), in this study, three popular Ghanaian chicken ecotypes (regional populations) were challenged with a lentogenic NDV strain at 28 days of age. This study was conducted in parallel with a similar study that used three popular Tanzanian local chicken ecotypes and after two companion studies in the United States, using Hy-line Brown commercial laying birds. In addition to growth rate, NDV response traits were measured following infection, including anti-NDV antibody levels [pre-infection and 10 days post-infection (dpi)], and viral load (2 and 6 dpi). Genetic parameters were estimated, and two genome-wide association study analysis methods were used on data from 1,440 Ghanaian chickens that were genotyped on a chicken 600K Single Nucleotide Polymorphism (SNP) chip. Both Ghana and Tanzania NDV challenge studies revealed moderate to high (0.18 – 0.55) estimates of heritability for all traits, except viral clearance where the heritability estimate was not different from zero for the Tanzanian ecotypes. For the Ghana study, 12 quantitative trait loci (QTL) for growth and/or response to NDV from single-SNP analyses and 20 genomic regions that explained more than 1% of genetic variance using the Bayes B method were identified. Seven of these windows were also identified as having at least one significant SNP in the single SNP analyses for growth rate, anti-NDV antibody levels, and viral load at 2 and 6 dpi. An important gene for growth during stress, CHORDC1 associated with post-infection growth rate was identified as a positional candidate gene, as well as other immune related genes, including VAV2, IL12B, DUSP1, and IL17B. The QTL identified in the Ghana study did not overlap with those identified in the Tanzania study. However, both studies revealed QTL with genes vital for growth and immune response during NDV challenge. The Tanzania parallel study revealed an overlapping QTL on chromosome 24 for viral load at 6 dpi with the US NDV study in which birds were challenged with NDV under heat stress. This QTL region includes genes related to immune response, including TIRAP, ETS1, and KIRREL3. The moderate to high estimates of heritability and the identified QTL suggest that host response to NDV of local African chicken ecotypes can be improved through selective breeding to enhance increased NDV resistance and vaccine efficacy. Frontiers Media S.A. 2020-07-28 /pmc/articles/PMC7402339/ /pubmed/32849779 http://dx.doi.org/10.3389/fgene.2020.00739 Text en Copyright © 2020 Walugembe, Amuzu-Aweh, Botchway, Naazie, Aning, Wang, Saelao, Kelly, Gallardo, Zhou, Lamont, Kayang and Dekkers. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Walugembe, Muhammed
Amuzu-Aweh, Esinam N.
Botchway, Princess K.
Naazie, Augustine
Aning, George
Wang, Ying
Saelao, Perot
Kelly, Terra
Gallardo, Rodrigo A.
Zhou, Huaijun
Lamont, Susan J.
Kayang, Boniface B.
Dekkers, Jack C. M.
Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus
title Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus
title_full Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus
title_fullStr Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus
title_full_unstemmed Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus
title_short Genetic Basis of Response of Ghanaian Local Chickens to Infection With a Lentogenic Newcastle Disease Virus
title_sort genetic basis of response of ghanaian local chickens to infection with a lentogenic newcastle disease virus
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7402339/
https://www.ncbi.nlm.nih.gov/pubmed/32849779
http://dx.doi.org/10.3389/fgene.2020.00739
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