Cargando…

Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation

The prevalence of crossed beaks ranging from 0.2 to 7.4% was documented in at least 12 chicken strains. Previous studies focused largely on candidate molecules, whereas the morphological observation was missing. This study reported a detailed phenotype and prevalence of crossed beaks based on morpho...

Descripción completa

Detalles Bibliográficos
Autores principales: Shi, Lei, Li, Yunlei, Bai, Hao, Li, Dongli, Wang, Panlin, Jiang, Linlin, Fan, Jing, Ge, Pingzhuang, Ni, Aixin, Wang, Yuanmei, Bian, Shixiong, Zong, Yunhe, Isa, Adamu Mani, Tesfay, Hailai Hagos, Ma, Hui, Gong, Yanzhang, Sun, Yanyan, Chen, Jilan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7647825/
https://www.ncbi.nlm.nih.gov/pubmed/33142435
http://dx.doi.org/10.1016/j.psj.2020.07.046
_version_ 1783606989586169856
author Shi, Lei
Li, Yunlei
Bai, Hao
Li, Dongli
Wang, Panlin
Jiang, Linlin
Fan, Jing
Ge, Pingzhuang
Ni, Aixin
Wang, Yuanmei
Bian, Shixiong
Zong, Yunhe
Isa, Adamu Mani
Tesfay, Hailai Hagos
Ma, Hui
Gong, Yanzhang
Sun, Yanyan
Chen, Jilan
author_facet Shi, Lei
Li, Yunlei
Bai, Hao
Li, Dongli
Wang, Panlin
Jiang, Linlin
Fan, Jing
Ge, Pingzhuang
Ni, Aixin
Wang, Yuanmei
Bian, Shixiong
Zong, Yunhe
Isa, Adamu Mani
Tesfay, Hailai Hagos
Ma, Hui
Gong, Yanzhang
Sun, Yanyan
Chen, Jilan
author_sort Shi, Lei
collection PubMed
description The prevalence of crossed beaks ranging from 0.2 to 7.4% was documented in at least 12 chicken strains. Previous studies focused largely on candidate molecules, whereas the morphological observation was missing. This study reported a detailed phenotype and prevalence of crossed beaks based on morphological observation in nine thousand nine hundred 1-day-old female Beijing-You chicks. Affected chicks were classified into 2 categories based on the direction of the mandibular deformation: left and right. Each category was selected to sacrifice for the measurement of length, width, and thickness of the bilateral mandibular ramus (MR). The normal chicks were used as controls. Paraffin section was made for the bilateral MR of a crossed beak and a normal control for histology analysis. A total of 97 out of 9,900 chickens showed beak deformity including 71 crossed beaks (0.72%) and 26 side beaks (0.26%) for which the upper and lower beak were both bent in the same direction. There was no difference in the direction of the bend of the lower beak in crossed beaks (P > 0.05). The incidence of crossed beaks increased quickly from 0 to 56 d and no new incidence after 56 d. The angle of the crossed beaks was below 5° in the first week and had grown more severe with age until 56 d. The mandible structure showed that condyle served as a growth center for the MR extension. The short-side MR of crossed beaks was thicker than normal ones (P < 0.05) and caused the mandible deviated to the same direction. Meanwhile, the short-side MR prevented the occlusion, leading the jugal arch deformity, which in turn resulted in a bent maxillary horizontally. Similarly, chicks with side beaks also had asymmetry in MR length and the deformities of the jugal arch after dissection. In summary, asymmetric growth of bilateral MR induced crossed beaks and side beaks; the mandibular condyle could be an ideal sample for the related molecular mechanism studies underlying this trait.
format Online
Article
Text
id pubmed-7647825
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-76478252020-11-13 Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation Shi, Lei Li, Yunlei Bai, Hao Li, Dongli Wang, Panlin Jiang, Linlin Fan, Jing Ge, Pingzhuang Ni, Aixin Wang, Yuanmei Bian, Shixiong Zong, Yunhe Isa, Adamu Mani Tesfay, Hailai Hagos Ma, Hui Gong, Yanzhang Sun, Yanyan Chen, Jilan Poult Sci Animal Well-Being and Behavior The prevalence of crossed beaks ranging from 0.2 to 7.4% was documented in at least 12 chicken strains. Previous studies focused largely on candidate molecules, whereas the morphological observation was missing. This study reported a detailed phenotype and prevalence of crossed beaks based on morphological observation in nine thousand nine hundred 1-day-old female Beijing-You chicks. Affected chicks were classified into 2 categories based on the direction of the mandibular deformation: left and right. Each category was selected to sacrifice for the measurement of length, width, and thickness of the bilateral mandibular ramus (MR). The normal chicks were used as controls. Paraffin section was made for the bilateral MR of a crossed beak and a normal control for histology analysis. A total of 97 out of 9,900 chickens showed beak deformity including 71 crossed beaks (0.72%) and 26 side beaks (0.26%) for which the upper and lower beak were both bent in the same direction. There was no difference in the direction of the bend of the lower beak in crossed beaks (P > 0.05). The incidence of crossed beaks increased quickly from 0 to 56 d and no new incidence after 56 d. The angle of the crossed beaks was below 5° in the first week and had grown more severe with age until 56 d. The mandible structure showed that condyle served as a growth center for the MR extension. The short-side MR of crossed beaks was thicker than normal ones (P < 0.05) and caused the mandible deviated to the same direction. Meanwhile, the short-side MR prevented the occlusion, leading the jugal arch deformity, which in turn resulted in a bent maxillary horizontally. Similarly, chicks with side beaks also had asymmetry in MR length and the deformities of the jugal arch after dissection. In summary, asymmetric growth of bilateral MR induced crossed beaks and side beaks; the mandibular condyle could be an ideal sample for the related molecular mechanism studies underlying this trait. Elsevier 2020-08-15 /pmc/articles/PMC7647825/ /pubmed/33142435 http://dx.doi.org/10.1016/j.psj.2020.07.046 Text en © 2020 Published by Elsevier Inc. on behalf of Poultry Science Association Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Animal Well-Being and Behavior
Shi, Lei
Li, Yunlei
Bai, Hao
Li, Dongli
Wang, Panlin
Jiang, Linlin
Fan, Jing
Ge, Pingzhuang
Ni, Aixin
Wang, Yuanmei
Bian, Shixiong
Zong, Yunhe
Isa, Adamu Mani
Tesfay, Hailai Hagos
Ma, Hui
Gong, Yanzhang
Sun, Yanyan
Chen, Jilan
Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation
title Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation
title_full Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation
title_fullStr Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation
title_full_unstemmed Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation
title_short Phenotype characterization of crossed beaks in Beijing-You chickens based on morphological observation
title_sort phenotype characterization of crossed beaks in beijing-you chickens based on morphological observation
topic Animal Well-Being and Behavior
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7647825/
https://www.ncbi.nlm.nih.gov/pubmed/33142435
http://dx.doi.org/10.1016/j.psj.2020.07.046
work_keys_str_mv AT shilei phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT liyunlei phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT baihao phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT lidongli phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT wangpanlin phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT jianglinlin phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT fanjing phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT gepingzhuang phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT niaixin phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT wangyuanmei phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT bianshixiong phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT zongyunhe phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT isaadamumani phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT tesfayhailaihagos phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT mahui phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT gongyanzhang phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT sunyanyan phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation
AT chenjilan phenotypecharacterizationofcrossedbeaksinbeijingyouchickensbasedonmorphologicalobservation