Literature DB >> 22771244

Acute dietary restriction in heifers alters expression of genes regulating exposure and response to gonadotrophins and IGF in dominant follicles.

S W Walsh1, D Matthews, J A Browne, N Forde, M A Crowe, M Mihm, M Diskin, A C O Evans.   

Abstract

Dietary restriction in growing cattle and severe negative energy balance in lactating cows have been associated with altered gonadotropin secretion, reduced follicle diameter, reduced circulating oestradiol concentrations and anovulation. Therefore, we hypothesised that acute dietary restriction would influence the fate and function of the dominant follicle by altering the expression for genes regulating gonadotrophin and IGF response in ovarian follicles. Newly selected dominant follicles were collected 7-8 days after prostaglandin F(2α) (PGF) administration from heifers (n=25) that were individually fed a diet supplying 1.2 maintenance (M; control, n=8) or 0.4 M (restricted, n=17) for a total duration of 18-19 days. Heifers within 0.4 M were ovulatory (n=11) or anovulatory (n=6) depending on whether the dominant follicle present at PGF ovulated or became atretic following luteolysis. Control animals were all ovulatory. Acute dietary restriction decreased IGF-I (P<0.001) and insulin (P<0.05) in circulation; oestradiol (P<0.01) and IGF-I (P<0.01) in follicular fluid; and mRNA for FSHR (P<0.01) in granulosa cells but increased mRNA for IGFBP2 (P<0.05) in theca cells of the newly selected dominant follicle. However, this only led to anovulation when dietary restriction also decreased mRNA for CYP19A1 (P<0.05), IGF2 (P<0.01) and IGF1R (P<0.05) in granulosa cells and LHCGR (P<0.05) in theca cells of follicles collected from heifers fed 0.4 M. These results suggest that the catabolic environment induced by dietary restriction may ultimately cause anovulation by reducing oestradiol synthesis, FSH-responsiveness and IGF signaling in granulosa, and LH-responsiveness in theca cells of dominant follicles.
Copyright © 2012. Published by Elsevier B.V.

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Year:  2012        PMID: 22771244     DOI: 10.1016/j.anireprosci.2012.06.012

Source DB:  PubMed          Journal:  Anim Reprod Sci        ISSN: 0378-4320            Impact factor:   2.145


  7 in total

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Authors:  R W Bender; K S Hackbart; A R Dresch; P D Carvalho; L M Vieira; P M Crump; J N Guenther; P M Fricke; R D Shaver; D K Combs; M C Wiltbank
Journal:  J Dairy Sci       Date:  2013-12-18       Impact factor: 4.034

2.  Long Non-Coding RNA GDAR Regulates Ovine Granulosa Cells Apoptosis by Affecting the Expression of Apoptosis-Related Genes.

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3.  Metabolic and endocrine profiles and hepatic gene expression of Holstein cows fed total mixed ration or pasture with different grazing strategies during early lactation.

Authors:  Ana Laura Astessiano; Ana Meikle; Maite Fajardo; Jorge Gil; Diego Antonio Mattiauda; Pablo Chilibroste; Mariana Carriquiry
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4.  Effect of short term diet restriction on gene expression in the bovine hypothalamus using next generation RNA sequencing technology.

Authors:  Daragh Matthews; Michael G Diskin; David A Kenny; Christopher J Creevey; Kate Keogh; Sinead M Waters
Journal:  BMC Genomics       Date:  2017-11-09       Impact factor: 3.969

Review 5.  Non-esterified fatty acids in the ovary: friends or foes?

Authors:  Vijay Simha Baddela; Arpna Sharma; Jens Vanselow
Journal:  Reprod Biol Endocrinol       Date:  2020-06-06       Impact factor: 5.211

Review 6.  The hormonal composition of follicular fluid and its implications for ovarian cancer pathogenesis.

Authors:  Megan M Emori; Ronny Drapkin
Journal:  Reprod Biol Endocrinol       Date:  2014-07-06       Impact factor: 5.211

7.  Model-based exploration of the impact of glucose metabolism on the estrous cycle dynamics in dairy cows.

Authors:  Mohamed Omari; Alexander Lange; Julia Plöntzke; Susanna Röblitz
Journal:  Biol Direct       Date:  2020-01-15       Impact factor: 4.540

  7 in total

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