Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows

Abstract Background Fertility in dairy cows depends on ovarian cyclicity and on uterine involution. Ovarian cyclicity and uterine involution are delayed when there is uterine dysbiosis (overgrowth of pathogenic bacteria). Fertility in dairy cows may involve a mechanism through which the uterine micr...

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Main Authors: Stephen G. Moore, Aaron C. Ericsson, Susanta K. Behura, William R. Lamberson, Timothy J. Evans, Matthew S. McCabe, Scott E. Poock, Matthew C. Lucy
Format: Article
Language:English
Published: BMC 2019-05-01
Series:BMC Genomics
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12864-019-5797-8
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spelling doaj-06722029decc445d90140ddfef7fde522020-11-25T03:48:15ZengBMCBMC Genomics1471-21642019-05-0120112010.1186/s12864-019-5797-8Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cowsStephen G. Moore0Aaron C. Ericsson1Susanta K. Behura2William R. Lamberson3Timothy J. Evans4Matthew S. McCabe5Scott E. Poock6Matthew C. Lucy7Division of Animal Sciences, University of MissouriDepartment of Veterinary Pathobiology, University of MissouriDivision of Animal Sciences, University of MissouriDivision of Animal Sciences, University of MissouriDepartment of Veterinary Pathobiology, University of MissouriAnimal and Grassland Research and Innovation Centre, Teagasc Grange, DunsanyCollege of Veterinary Medicine, University of MissouriDivision of Animal Sciences, 160 Animal Science Research Center, 920 East Campus Drive, University of MissouriAbstract Background Fertility in dairy cows depends on ovarian cyclicity and on uterine involution. Ovarian cyclicity and uterine involution are delayed when there is uterine dysbiosis (overgrowth of pathogenic bacteria). Fertility in dairy cows may involve a mechanism through which the uterine microbiota affects ovarian cyclicity as well as the transcriptome of the endometrium within the involuting uterus. The hypothesis was that the transcriptome of the endometrium in postpartum cows would be associated with the cyclicity status of the cow as well as the microbiota during uterine involution. The endometrium of first lactation dairy cows was sampled at 1, 5, and 9 weeks postpartum. All cows were allowed to return to cyclicity without intervention until week 5 and treated with an ovulation synchronization protocol so that sampling at week 9 was on day 13 of the estrous cycle. The endometrial microbiota was measured by 16S rRNA gene sequencing and principal component analysis. The endometrial transcriptome was measured by mRNA sequencing, differential gene expression analysis, and Ingenuity Pathway Analysis. Results The endometrial microbiota changed from week 1 to week 5 but the week 5 and week 9 microbiota were similar. The endometrial transcriptome differed for cows that were either cycling or not cycling at week 5 and cyclicity status depended in part on the endometrial microbiota. Compared with cows cycling at week 5, there were large changes in the transcriptome of cows that progressed from non-cycling at week 5 to cycling at week 9. There was evidence for concurrent and longer-term associations between the endometrial microbiota and transcriptome. The week 1 endometrial microbiota had the greatest effect on the subsequent endometrial transcriptome and this effect was greatest at week 5 and diminished by week 9. Conclusions The cumulative response of the endometrial transcriptome to the microbiota represented the combination of past microbial exposure and current microbial exposure. The endometrial transcriptome in postpartum cows, therefore, depended on the immediate and longer-term effects of the uterine microbiota that acted directly on the uterus. There may also be an indirect mechanism through which the microbiome affects the transcriptome through the restoration of ovarian cyclicity postpartum.http://link.springer.com/article/10.1186/s12864-019-5797-8UterusBacteriaGene expressionOvarian cyclicityProgesteroneMicrobiome
collection DOAJ
language English
format Article
sources DOAJ
author Stephen G. Moore
Aaron C. Ericsson
Susanta K. Behura
William R. Lamberson
Timothy J. Evans
Matthew S. McCabe
Scott E. Poock
Matthew C. Lucy
spellingShingle Stephen G. Moore
Aaron C. Ericsson
Susanta K. Behura
William R. Lamberson
Timothy J. Evans
Matthew S. McCabe
Scott E. Poock
Matthew C. Lucy
Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
BMC Genomics
Uterus
Bacteria
Gene expression
Ovarian cyclicity
Progesterone
Microbiome
author_facet Stephen G. Moore
Aaron C. Ericsson
Susanta K. Behura
William R. Lamberson
Timothy J. Evans
Matthew S. McCabe
Scott E. Poock
Matthew C. Lucy
author_sort Stephen G. Moore
title Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
title_short Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
title_full Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
title_fullStr Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
title_full_unstemmed Concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
title_sort concurrent and long-term associations between the endometrial microbiota and endometrial transcriptome in postpartum dairy cows
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2019-05-01
description Abstract Background Fertility in dairy cows depends on ovarian cyclicity and on uterine involution. Ovarian cyclicity and uterine involution are delayed when there is uterine dysbiosis (overgrowth of pathogenic bacteria). Fertility in dairy cows may involve a mechanism through which the uterine microbiota affects ovarian cyclicity as well as the transcriptome of the endometrium within the involuting uterus. The hypothesis was that the transcriptome of the endometrium in postpartum cows would be associated with the cyclicity status of the cow as well as the microbiota during uterine involution. The endometrium of first lactation dairy cows was sampled at 1, 5, and 9 weeks postpartum. All cows were allowed to return to cyclicity without intervention until week 5 and treated with an ovulation synchronization protocol so that sampling at week 9 was on day 13 of the estrous cycle. The endometrial microbiota was measured by 16S rRNA gene sequencing and principal component analysis. The endometrial transcriptome was measured by mRNA sequencing, differential gene expression analysis, and Ingenuity Pathway Analysis. Results The endometrial microbiota changed from week 1 to week 5 but the week 5 and week 9 microbiota were similar. The endometrial transcriptome differed for cows that were either cycling or not cycling at week 5 and cyclicity status depended in part on the endometrial microbiota. Compared with cows cycling at week 5, there were large changes in the transcriptome of cows that progressed from non-cycling at week 5 to cycling at week 9. There was evidence for concurrent and longer-term associations between the endometrial microbiota and transcriptome. The week 1 endometrial microbiota had the greatest effect on the subsequent endometrial transcriptome and this effect was greatest at week 5 and diminished by week 9. Conclusions The cumulative response of the endometrial transcriptome to the microbiota represented the combination of past microbial exposure and current microbial exposure. The endometrial transcriptome in postpartum cows, therefore, depended on the immediate and longer-term effects of the uterine microbiota that acted directly on the uterus. There may also be an indirect mechanism through which the microbiome affects the transcriptome through the restoration of ovarian cyclicity postpartum.
topic Uterus
Bacteria
Gene expression
Ovarian cyclicity
Progesterone
Microbiome
url http://link.springer.com/article/10.1186/s12864-019-5797-8
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