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Effects of Methionine Restriction from Different Sources on Sperm Quality in Aging Mice
Yinghui Wu1, Hao Li1, Yueyue Miao1
1Department of Animal Nutrition and Feed Science, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
Abstract:
Decreased sperm quality causing poor pregnancy outcomes in aging males is a common problem. The aim of this study was to investigate the ameliorative effect of methionine restriction on sperm quality in aging mice, using methionine or 2-hydroxy-4-(methylthio)butanoate (HMTBA) as the methionine source, with a view to providing nutritional strategies to mitigate the decline in sperm quality in aging livestock. Fifty-one 6-week-old male mice were randomly divided into four groups: the non-aging group (NA, 0.86% methionine), the control diet group (CD, 0.86% methionine), the methionine-restricted group (MR, 0.17% methionine) and the HMTBA-restricted group (HR, 0.17% methionine). The mice in the CD, MR and HR groups were injected with a daily dose of 0.25 mL/20 g body weight of 10% D-galactose to establish an aging model. The test period was 42 days. The results showed that aging mice in the CD group had impaired testicular morphology and significantly decreased sperm quality compared to those in the NA group. Aging mice in the MR and HR groups showed attenuated impaired testicular morphology and improved sperm quality, especially sperm acrosomal integrity and membrane integrity, compared to mice in the CD group. In addition, mice in the MR and HR groups had reduced testicular inflammation and oxidative stress, increased spermidine levels, and reduced sperm RNA N6-methyladenosine (m6A) and DNA 5-methylcytosine (5mC) levels. Spermidine levels were positively correlated, whereas sperm RNA m6A and DNA 5mC levels were negatively correlated with sperm quality parameters. Our study suggests that methionine restriction alleviates the decline in sperm quality in aging mice, which may be related to changes in methionine metabolism and inhibition of sperm DNA and RNA methylation.
Insights
Methionine restriction improves sperm quality in aging mice by reducing inflammation and oxidative stress. This dietary strategy may help mitigate age-related declines in male fertility and livestock reproductive health.
Area of Science:
- Reproductive Biology
- Nutritional Science
- Gerontology
Background:
- Aging in males is associated with decreased sperm quality, negatively impacting pregnancy outcomes.
- Nutritional strategies are sought to counteract age-related declines in male fertility, particularly in livestock.
Purpose of the Study:
- To investigate the effects of methionine restriction on sperm quality in aging male mice.
- To evaluate the potential of methionine or 2-hydroxy-4-(methylthio)butanoate (HMTBA) as methionine sources for improving sperm health.
Main Methods:
- Aging mouse models were established using D-galactose injection.
- Mice were divided into four groups: non-aging control, control diet, methionine-restricted (MR), and HMTBA-restricted (HR).
- Sperm quality, testicular morphology, inflammation, oxidative stress, spermidine, and methylation levels (m6A, 5mC) were assessed over 42 days.
Main Results:
- Aging mice on a control diet exhibited impaired testicular morphology and reduced sperm quality.
- Methionine restriction (MR and HR groups) attenuated these negative effects, improving sperm acrosomal and membrane integrity.
- MR and HR groups showed reduced testicular inflammation and oxidative stress, increased spermidine, and decreased sperm RNA N6-methyladenosine (m6A) and DNA 5-methylcytosine (5mC) levels.
Conclusions:
- Methionine restriction effectively alleviates the decline in sperm quality associated with aging in male mice.
- Improvements in sperm quality may be linked to altered methionine metabolism and reduced sperm DNA and RNA methylation.
- Findings suggest potential nutritional strategies for enhancing fertility in aging males and livestock.

