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Journal ArticleDOI

Drosophila melanogaster seminal fluid can protect the sperm of other males

Luke Holman
- 01 Feb 2009 - 
- Vol. 23, Iss: 1, pp 180-186
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TLDR
It is suggested that residual seminal fluid inside females could benefit the sperm of subsequent mates, affecting the outcome of sperm competition and influencing the evolution of ejaculates and mating systems.
Abstract
Summary 1Many internally-fertilizing animals produce seminal fluid which is transferred along with sperm during mating. Seminal fluid typically contains a diverse range of chemicals that coordinate sperm storage, moderate sperm motility, provide advantages in sexual selection and influence female physiology. 2Seminal fluid is well-studied in Drosophila melanogaster, a species in which it has been suggested to ‘incapacitate’ the sperm of rival males (e.g. by killing them) and thereby provide an advantage in sperm competition. This hypothesis has been tested several times over many years, but different studies have yielded conflicting conclusions. Here, I use fluorescent staining to directly measure the effects of D. melanogaster seminal fluid on the survival of sperm from the same male or from a rival. The results suggest that seminal fluid improves sperm survival, even if the sperm are from a different male. This study therefore provides strong evidence that seminal fluid does not kill rival sperm, and instead can actually protect them. This study also tested whether chemicals in the female reproductive tract harm sperm as in another Drosophila species, but found no evidence of this. 3These findings suggest that residual seminal fluid inside females could benefit the sperm of subsequent mates, affecting the outcome of sperm competition and influencing the evolution of ejaculates and mating systems.

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Reference EntryDOI

Post‐copulatory Reproductive Strategies

TL;DR: The concept of post-copulatory sexual selection is a powerful heuristic tool to explain variation in individual fitness and the staggering variation in sexual strategies both across and within species.
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Research gaps and new insights in the intriguing evolution of Drosophila seminal proteins

TL;DR: In this paper, the authors provide an overview of the current knowledge on the inter-specific divergence of Drosophila SFPs and compile the increasing amount of relevant genomic information from multiple species.
References
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Effect size, confidence interval and statistical significance: a practical guide for biologists.

TL;DR: This article extensively discusses two dimensionless (and thus standardised) classes of effect size statistics: d statistics (standardised mean difference) and r statistics (correlation coefficient), because these can be calculated from almost all study designs and also because their calculations are essential for meta‐analysis.
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Cost of mating in Drosophila melanogaster females is mediated by male accessory gland products

TL;DR: It is demonstrated here that seminal fluid products from the main cells of the male accessory gland are responsible for the cost of mating in females, and that increasing exposure to these products increases female death rate.
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TL;DR: The fine balance between ROS production and scavenging, as well as the right timing and site for ROS production are of paramount importance for acquisition of fertilizing ability.
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Sperm in competition: not playing by the numbers.

TL;DR: To understand how postcopulatory sexual selection influences sperm traits, future research should determine sex-specific interactions that influence paternity, identify genetic correlations between ejaculate characters, quantify the relative costs of producing different sperm trait, and test assumptions of models of sperm quality evolution.
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Tokens of love: functions and regulation of Drosophila male accessory gland products.

TL;DR: These studies provide excellent models to address basic questions in cell biology such as the control of genes in response to sex-specific, mating-regulated and cell type-specific cues and the function and targeting of peptide hormones.
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This study therefore provides strong evidence that seminal fluid does not kill rival sperm, and instead can actually protect them.