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Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy

Maternal recognition of pregnancy (MRP) in the mare is not well defined. In a non-pregnant mare, prostaglandin F(2α) (PGF) is released on day 14 post-ovulation (PO) to cause luteal regression, resulting in loss of progesterone production. Equine MRP occurs prior to day 14 to halt PGF production. Stu...

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Autores principales: Klohonatz, Kristin M., Coleman, Stephen J., Cameron, Ashley D., Hess, Ann M., Reed, Kailee J., Canovas, Angela, Medrano, Juan F., Islas-Trejo, Alma D., Kalbfleisch, Ted, Bouma, Gerrit J., Bruemmer, Jason E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6826835/
https://www.ncbi.nlm.nih.gov/pubmed/31635328
http://dx.doi.org/10.3390/genes10100821
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author Klohonatz, Kristin M.
Coleman, Stephen J.
Cameron, Ashley D.
Hess, Ann M.
Reed, Kailee J.
Canovas, Angela
Medrano, Juan F.
Islas-Trejo, Alma D.
Kalbfleisch, Ted
Bouma, Gerrit J.
Bruemmer, Jason E.
author_facet Klohonatz, Kristin M.
Coleman, Stephen J.
Cameron, Ashley D.
Hess, Ann M.
Reed, Kailee J.
Canovas, Angela
Medrano, Juan F.
Islas-Trejo, Alma D.
Kalbfleisch, Ted
Bouma, Gerrit J.
Bruemmer, Jason E.
author_sort Klohonatz, Kristin M.
collection PubMed
description Maternal recognition of pregnancy (MRP) in the mare is not well defined. In a non-pregnant mare, prostaglandin F(2α) (PGF) is released on day 14 post-ovulation (PO) to cause luteal regression, resulting in loss of progesterone production. Equine MRP occurs prior to day 14 to halt PGF production. Studies have failed to identify a gene candidate for MRP, so attention has turned to small, non-coding RNAs. The objective of this study was to evaluate small RNA (<200 nucleotides) content in endometrium during MRP. Mares were used in a cross-over design with each having a pregnant and non-mated cycle. Each mare was randomly assigned to collection day 11 or 13 PO (n = 3/day) and endometrial biopsies were obtained. Total RNA was isolated and sequencing libraries were prepared using a small RNA library preparation kit and sequenced on a HiSeq 2000. EquCab3 was used as the reference genome and DESeq2 was used for statistical analysis. On day 11, 419 ncRNAs, representing miRNA, snRNA, snoRNA, scaRNA, and vaultRNA, were different between pregnancy statuses, but none on day 13. Equine endometrial ncRNAs with unknown structure and function were also identified. This study is the first to describe ncRNA transcriptome in equine endometrium. Identifying targets of these ncRNAs could lead to determining MRP.
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spelling pubmed-68268352019-11-18 Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy Klohonatz, Kristin M. Coleman, Stephen J. Cameron, Ashley D. Hess, Ann M. Reed, Kailee J. Canovas, Angela Medrano, Juan F. Islas-Trejo, Alma D. Kalbfleisch, Ted Bouma, Gerrit J. Bruemmer, Jason E. Genes (Basel) Article Maternal recognition of pregnancy (MRP) in the mare is not well defined. In a non-pregnant mare, prostaglandin F(2α) (PGF) is released on day 14 post-ovulation (PO) to cause luteal regression, resulting in loss of progesterone production. Equine MRP occurs prior to day 14 to halt PGF production. Studies have failed to identify a gene candidate for MRP, so attention has turned to small, non-coding RNAs. The objective of this study was to evaluate small RNA (<200 nucleotides) content in endometrium during MRP. Mares were used in a cross-over design with each having a pregnant and non-mated cycle. Each mare was randomly assigned to collection day 11 or 13 PO (n = 3/day) and endometrial biopsies were obtained. Total RNA was isolated and sequencing libraries were prepared using a small RNA library preparation kit and sequenced on a HiSeq 2000. EquCab3 was used as the reference genome and DESeq2 was used for statistical analysis. On day 11, 419 ncRNAs, representing miRNA, snRNA, snoRNA, scaRNA, and vaultRNA, were different between pregnancy statuses, but none on day 13. Equine endometrial ncRNAs with unknown structure and function were also identified. This study is the first to describe ncRNA transcriptome in equine endometrium. Identifying targets of these ncRNAs could lead to determining MRP. MDPI 2019-10-18 /pmc/articles/PMC6826835/ /pubmed/31635328 http://dx.doi.org/10.3390/genes10100821 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Klohonatz, Kristin M.
Coleman, Stephen J.
Cameron, Ashley D.
Hess, Ann M.
Reed, Kailee J.
Canovas, Angela
Medrano, Juan F.
Islas-Trejo, Alma D.
Kalbfleisch, Ted
Bouma, Gerrit J.
Bruemmer, Jason E.
Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy
title Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy
title_full Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy
title_fullStr Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy
title_full_unstemmed Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy
title_short Non-Coding RNA Sequencing of Equine Endometrium During Maternal Recognition of Pregnancy
title_sort non-coding rna sequencing of equine endometrium during maternal recognition of pregnancy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6826835/
https://www.ncbi.nlm.nih.gov/pubmed/31635328
http://dx.doi.org/10.3390/genes10100821
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