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Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii

Kisspeptin system was shown to be a key factor in mediating social stress and reproduction. Yellowtail clownfish, Amphiprion clarkii, is a hermaphrodite fish, whose sex determination and gonadal development are affected by the social status of individuals. The yellowtail clownfish is a fantastic ani...

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Autores principales: Zhang, Yan-yu, Zhang, Xian, Bu, Shao-yang, Zhang, Wei-wei, Li, Tian-xiu, Zheng, De-cai, Huang, Ze-xiang, Wang, Qian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9346329/
https://www.ncbi.nlm.nih.gov/pubmed/35904230
http://dx.doi.org/10.1530/EC-22-0136
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author Zhang, Yan-yu
Zhang, Xian
Bu, Shao-yang
Zhang, Wei-wei
Li, Tian-xiu
Zheng, De-cai
Huang, Ze-xiang
Wang, Qian
author_facet Zhang, Yan-yu
Zhang, Xian
Bu, Shao-yang
Zhang, Wei-wei
Li, Tian-xiu
Zheng, De-cai
Huang, Ze-xiang
Wang, Qian
author_sort Zhang, Yan-yu
collection PubMed
description Kisspeptin system was shown to be a key factor in mediating social stress and reproduction. Yellowtail clownfish, Amphiprion clarkii, is a hermaphrodite fish, whose sex determination and gonadal development are affected by the social status of individuals. The yellowtail clownfish is a fantastic animal model to explore sex determination, but the social status and precise distribution of kiss mRNAs in the brain of this species are unknown. Hererin, a novel in situ hybridization technique, RNAscope, was used to investigate the distribution of kiss1 and kiss2 expressions in the brain of yellowtail clownfish. The coronal planes of brain showed that the kiss1 signal was mainly present in dorsal habenular nucleus (NHd) and kiss2 mRNA was widely expressed in telencephalon, midbrain, and hypothalamus, especially in dorsal part of the nucleus of the lateral recess (NRLd). Additionally, kiss1 and kiss2 signals have sexually dimorphic distribution. The kiss1 mRNA was distributed in NHd, the telencephalon, and lateral part of the diffuse nucleus of the inferior lobe (NDLIl) of females but in NHd and NDLIl of males. kiss2 signals were stronger in females than that in males. The distribution of kiss1 and kiss2 neurons in NHd of habenula and NRLd of hypothalamus may suggest that kiss genes associate environmental signaling and reproductive function in yellowtail clownfish.
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spelling pubmed-93463292022-08-03 Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii Zhang, Yan-yu Zhang, Xian Bu, Shao-yang Zhang, Wei-wei Li, Tian-xiu Zheng, De-cai Huang, Ze-xiang Wang, Qian Endocr Connect Research Kisspeptin system was shown to be a key factor in mediating social stress and reproduction. Yellowtail clownfish, Amphiprion clarkii, is a hermaphrodite fish, whose sex determination and gonadal development are affected by the social status of individuals. The yellowtail clownfish is a fantastic animal model to explore sex determination, but the social status and precise distribution of kiss mRNAs in the brain of this species are unknown. Hererin, a novel in situ hybridization technique, RNAscope, was used to investigate the distribution of kiss1 and kiss2 expressions in the brain of yellowtail clownfish. The coronal planes of brain showed that the kiss1 signal was mainly present in dorsal habenular nucleus (NHd) and kiss2 mRNA was widely expressed in telencephalon, midbrain, and hypothalamus, especially in dorsal part of the nucleus of the lateral recess (NRLd). Additionally, kiss1 and kiss2 signals have sexually dimorphic distribution. The kiss1 mRNA was distributed in NHd, the telencephalon, and lateral part of the diffuse nucleus of the inferior lobe (NDLIl) of females but in NHd and NDLIl of males. kiss2 signals were stronger in females than that in males. The distribution of kiss1 and kiss2 neurons in NHd of habenula and NRLd of hypothalamus may suggest that kiss genes associate environmental signaling and reproductive function in yellowtail clownfish. Bioscientifica Ltd 2022-06-27 /pmc/articles/PMC9346329/ /pubmed/35904230 http://dx.doi.org/10.1530/EC-22-0136 Text en © The authors https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. (https://creativecommons.org/licenses/by-nc/4.0/)
spellingShingle Research
Zhang, Yan-yu
Zhang, Xian
Bu, Shao-yang
Zhang, Wei-wei
Li, Tian-xiu
Zheng, De-cai
Huang, Ze-xiang
Wang, Qian
Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii
title Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii
title_full Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii
title_fullStr Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii
title_full_unstemmed Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii
title_short Sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, Amphiprion clarkii
title_sort sexually dimorphic distribution of kiss1 and kiss2 in the brain of yellowtail clownfish, amphiprion clarkii
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9346329/
https://www.ncbi.nlm.nih.gov/pubmed/35904230
http://dx.doi.org/10.1530/EC-22-0136
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