Endocrine and molecular factors of increased female reproductive performance in the Dummerstorf high-fertility mouse line FL1

Author:

Ludwig Carolin Lisa Michaela1,Bohleber Simon2,Rebl Alexander3,Wirth Eva Katrin4,Venuto Marzia Tindara5,Langhammer Martina6,Schweizer Ulrich7,Weitzel Joachim M.8,Michaelis Marten9

Affiliation:

1. C Ludwig, Institute of Reproductive Biology, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany

2. S Bohleber, Institut für Biochemie und Molekularbiologie (IBMB), Rheinische Friedrich-Wilhelms-Universitat Bonn, Bonn, Germany

3. A Rebl, Institute of Genome Biology, Fish Genetics Unit, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany

4. E Wirth, Department of Endocriology and Metabolism, Charite Universitatsmedizin Berlin, Berlin, Germany

5. M Venuto, Institute of Reproductive Biology, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany

6. M Langhammer, Institute of Genetics and Biometry, Service Group Model Laboratory Animals, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany

7. U Schweizer, Institut für Biochemie und Molekularbiologie (IBMB), Rheinische Friedrich-Wilhelms-Universitat Bonn, Bonn, Germany

8. J Weitzel, Institute of Reproductive Biology, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany

9. M Michaelis, Institute of Reproductive Biology, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany

Abstract

The Dummerstorf high-fertility mouse line FL1 is a worldwide unique selection experiment for increased female reproductive performance. After more than 190 generations of selection these mice doubled the amount of offspring per litter compared to the unselected control line. FL1 females have a superior lifetime fecundity and the highest Silver fecundity index that has been described in mice, while their offspring show no signs of growth retardation. The reasons for the increased reproductive performance remained unclear. Thus, this study aims to characterize the Dummerstorf high-fertility mouse line FL1 on endocrine and molecular levels on the female side. We analyzed parameters of the HPG axis on both, hormonal and transcriptional levels. GnRH and FSH concentrations were decreased in FL1 throughout the whole estrous cycle. LH was increased in FL1 mice in estrus. Progesterone concentrations were decreased in estrus in FL1 mice and not affected in diestrus. We used a holistic gene expression approach in the ovary to obtain a global picture of how the high-fertility phenotype is achieved. We found several differentially expressed genes in the ovaries of FL1 mice that are associated with different female fertility traits. Our results indicate that ovulation rates in mice can be increased despite decreased FSH levels. Cycle-related alterations of progesterone and LH levels have the potential to improve follicular maturation and interactions of endocrine and molecular factors lead to enhanced follicular survival, more successful folliculogenesis and therefore higher ovulation rates in female FL1 mice.

Publisher

Bioscientifica

Subject

Endocrinology,Molecular Biology

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