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Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds

Selection for cold tolerance in chickens is important for improving production performance and animal welfare. The identification of chicken breeds with higher cold tolerance and production performance will help to target candidates for the selection. The thyroid gland plays important roles in therm...

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Autores principales: Xie, Shanshan, Yang, Xukai, Wang, Dehe, Zhu, Feng, Yang, Ning, Hou, Zhuocheng, Ning, Zhonghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5761956/
https://www.ncbi.nlm.nih.gov/pubmed/29320582
http://dx.doi.org/10.1371/journal.pone.0191096
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author Xie, Shanshan
Yang, Xukai
Wang, Dehe
Zhu, Feng
Yang, Ning
Hou, Zhuocheng
Ning, Zhonghua
author_facet Xie, Shanshan
Yang, Xukai
Wang, Dehe
Zhu, Feng
Yang, Ning
Hou, Zhuocheng
Ning, Zhonghua
author_sort Xie, Shanshan
collection PubMed
description Selection for cold tolerance in chickens is important for improving production performance and animal welfare. The identification of chicken breeds with higher cold tolerance and production performance will help to target candidates for the selection. The thyroid gland plays important roles in thermal adaptation, and its function is influenced by breed differences and transcriptional plasticity, both of which remain largely unknown in the chicken thyroid transcriptome. In this study, we subjected Bashang Long-tail (BS) and Rhode Island Red (RIR) chickens to either cold or warm environments for 21 weeks and investigated egg production performance, body weight changes, serum thyroid hormone concentrations, and thyroid gland transcriptome profiles. RIR chickens had higher egg production than BS chickens under warm conditions, but BS chickens produced more eggs than RIRs under cold conditions. Furthermore, BS chickens showed stable body weight gain under cold conditions while RIRs did not. These results suggested that BS breed is a preferable candidate for cold-tolerance selection and that the cold adaptability of RIRs should be improved in the future. BS chickens had higher serum thyroid hormone concentrations than RIRs under both environments. RNA-Seq generated 344.3 million paired-end reads from 16 sequencing libraries, and about 90% of the processed reads were concordantly mapped to the chicken reference genome. Differential expression analysis identified 46–1,211 genes in the respective comparisons. With regard to breed differences in the thyroid transcriptome, BS chickens showed higher cell replication and development, and immune response-related activity, while RIR chickens showed higher carbohydrate and protein metabolism activity. The cold environment reduced breed differences in the thyroid transcriptome compared with the warm environment. Transcriptional plasticity analysis revealed different adaptive responses in BS and RIR chickens to cope with the cold, and showed higher responsiveness in BS compared with RIR chickens, suggesting greater adaptability of the thyroid in BS chickens. Moreover, 10,053 differential splicing events were revealed among the groups, with RNA splicing and processing, gene expression, transport, and metabolism being the main affected biological processes, identifying a valuable alternative splicing repertoire for the chicken thyroid. A short isoform of TPO (encoding thyroid peroxidase) containing multiple open reading frames was generated in both breeds by skipping exons 4 and 5 in the cold environment. These findings provide novel clues for future studies of the molecular mechanisms underlying cold adaptation and/or acclimation in chickens.
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spelling pubmed-57619562018-01-23 Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds Xie, Shanshan Yang, Xukai Wang, Dehe Zhu, Feng Yang, Ning Hou, Zhuocheng Ning, Zhonghua PLoS One Research Article Selection for cold tolerance in chickens is important for improving production performance and animal welfare. The identification of chicken breeds with higher cold tolerance and production performance will help to target candidates for the selection. The thyroid gland plays important roles in thermal adaptation, and its function is influenced by breed differences and transcriptional plasticity, both of which remain largely unknown in the chicken thyroid transcriptome. In this study, we subjected Bashang Long-tail (BS) and Rhode Island Red (RIR) chickens to either cold or warm environments for 21 weeks and investigated egg production performance, body weight changes, serum thyroid hormone concentrations, and thyroid gland transcriptome profiles. RIR chickens had higher egg production than BS chickens under warm conditions, but BS chickens produced more eggs than RIRs under cold conditions. Furthermore, BS chickens showed stable body weight gain under cold conditions while RIRs did not. These results suggested that BS breed is a preferable candidate for cold-tolerance selection and that the cold adaptability of RIRs should be improved in the future. BS chickens had higher serum thyroid hormone concentrations than RIRs under both environments. RNA-Seq generated 344.3 million paired-end reads from 16 sequencing libraries, and about 90% of the processed reads were concordantly mapped to the chicken reference genome. Differential expression analysis identified 46–1,211 genes in the respective comparisons. With regard to breed differences in the thyroid transcriptome, BS chickens showed higher cell replication and development, and immune response-related activity, while RIR chickens showed higher carbohydrate and protein metabolism activity. The cold environment reduced breed differences in the thyroid transcriptome compared with the warm environment. Transcriptional plasticity analysis revealed different adaptive responses in BS and RIR chickens to cope with the cold, and showed higher responsiveness in BS compared with RIR chickens, suggesting greater adaptability of the thyroid in BS chickens. Moreover, 10,053 differential splicing events were revealed among the groups, with RNA splicing and processing, gene expression, transport, and metabolism being the main affected biological processes, identifying a valuable alternative splicing repertoire for the chicken thyroid. A short isoform of TPO (encoding thyroid peroxidase) containing multiple open reading frames was generated in both breeds by skipping exons 4 and 5 in the cold environment. These findings provide novel clues for future studies of the molecular mechanisms underlying cold adaptation and/or acclimation in chickens. Public Library of Science 2018-01-10 /pmc/articles/PMC5761956/ /pubmed/29320582 http://dx.doi.org/10.1371/journal.pone.0191096 Text en © 2018 Xie et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Xie, Shanshan
Yang, Xukai
Wang, Dehe
Zhu, Feng
Yang, Ning
Hou, Zhuocheng
Ning, Zhonghua
Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
title Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
title_full Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
title_fullStr Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
title_full_unstemmed Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
title_short Thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
title_sort thyroid transcriptome analysis reveals different adaptive responses to cold environmental conditions between two chicken breeds
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5761956/
https://www.ncbi.nlm.nih.gov/pubmed/29320582
http://dx.doi.org/10.1371/journal.pone.0191096
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