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过氧化物酶 1 在交配过程中的转移保护球孢白僵菌 eupyrene 精子免受氧化应激。

Peroxiredoxin 1 transfer during mating protects eupyrene sperm against oxdative stress in Grapholita molesta.

机构信息

Department of Entomology, MOA Key Laboratory of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing, China.

Department of Entomology, Pennsylvania State University, University Park, Pennsylvania, USA.

出版信息

Pest Manag Sci. 2023 Aug;79(8):2823-2830. doi: 10.1002/ps.7458. Epub 2023 Apr 7.

Abstract

BACKGROUND

Each Grapholita molesta female only copulates once during its lifetime and thus must maintain the viability of stored eupyrene sperm for male reproductive success. The male ejaculate comprises abundant accessory gland proteins produced by the male accessory gland (AG), and many of which are major effectors for sperm storage and maintenance.

RESULTS

Here, we reported that an antioxidant protein, peroxiredoxin 1 (GmolPrx1), secreted by the male AG, is essential for protecting eupyrene sperm from oxidative stress and maintaining their quality during storage in the female bursa copulatrix (BC). Our data showed that GmolPrx1 is highly expressed in the AG of sexually mature males. The GmolPrx1 protein is localized to the cytoplasm of AG cells and delivered to the female BC during mating. Knockdown of GmolPrx1 strongly decreased the fertility of mated females. Additionally, we evaluated oxidative status in the spermatophore of females and found that the content of hydrogen peroxide increased significantly after mating with GmolPrx1 knockdown males. Finally, the quality assessment of eupyrene sperm demonstrated that the plasma membrane integrity, acrosome integrity, and DNA integrity were all severely impaired in the spermatophore of females after mating with GmolPrx1 knockdown males, which may contribute to the fertility decline in males.

CONCLUSION

Our current data demonstrated that activities of eupyrene sperm stored in females can be significantly impaired by enhanced oxidative stress through knocking down of GmolPrx1 in males. Our finding thus may further lay new foundations for the control of G. molesta through suppressing their populations by manipulating male reproductive genes. © 2023 Society of Chemical Industry.

摘要

背景

Grapholita molesta 雌性一生中仅交配一次,因此必须维持储存的有丝精子的活力,以确保雄性的生殖成功。雄性精液包含大量由雄性附腺(AG)产生的附属腺蛋白,其中许多是储存和维持精子活力的主要效应因子。

结果

我们报道了一种抗氧化蛋白,即过氧化物酶 1(GmolPrx1),由雄性 AG 分泌,对于保护有丝精子免受氧化应激以及在雌性交配囊中储存期间维持其质量至关重要。我们的数据表明,GmolPrx1 在性成熟雄性的 AG 中高度表达。GmolPrx1 蛋白定位于 AG 细胞的细胞质中,并在交配时被输送到雌性 BC。GmolPrx1 的敲低强烈降低了交配雌性的生育能力。此外,我们评估了雌性交配囊中精子的氧化状态,发现与 GmolPrx1 敲低雄性交配后,过氧化氢的含量显著增加。最后,对有丝精子质量的评估表明,与 GmolPrx1 敲低雄性交配后,雌性交配囊中精子的质膜完整性、顶体完整性和 DNA 完整性均严重受损,这可能导致雄性生育能力下降。

结论

我们目前的数据表明,通过敲低雄性中的 GmolPrx1 增强氧化应激,可以显著损害储存在雌性中的有丝精子的活力。我们的发现可能为通过操纵雄性生殖基因来控制 G. molesta 种群提供新的依据。© 2023 化学工业协会。

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