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Between-male variation in sperm size, velocity and longevity in sand martins Riparia riparia

机译:沙丁鱼Riparia riparia的男性间精子大小,速度和寿命的差异

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Sperm mobility is known to be an important determinant of a male's sperm competitive ability. Although more debated, sperm length and its relation to sperm swimming ability has also been proposed to determine a male's fertilisation potential. Furthermore, both mobility and length may covary with a male's phenotype, either positively (the phenotype-linked fertility hypothesis) or negatively if, for instance, low-quality males have less access to females but invest more in sperm production. Using dummy females, we collected sperm samples from wild sand martins Riparia raparia males. We investigated the relationship between sperm length and sperm swimming speed as measured by sperm straight line velocity (VSL), and determined whether sperm traits are correlated with male body size and condition. We found that total sperm length is repeatable within-ejaculate and shows substantial inter-male variation. Sperm length was associated with sperm velocity: males with short sperm have sperm that swim initially faster but die sooner, whereas males with longer sperm have sperm that swim more slowly but for a longer time. Smaller males produced sperm with higher overall velocity. This correlation between male size and sperm behaviour may reflect alternative fertilisation strategies where small males having less mating opportunities invest more in sperm competitive ability. The existence of such alternative strategies would participate in maintaining variation in sperm length and velocity in this species.
机译:众所周知,精子活动性是决定男性精子竞争能力的重要因素。尽管存在更多争议,但还提出了精子长度及其与精子游泳能力的关系,以确定男性的受精潜力。此外,例如,如果低质量的男性与女性的接触较少,但对精子生产的投入更多,则流动性和体长都可能与男性的表型呈正相关(与表型相关的生育率假设),也可能与男性的表型无关。我们使用假雌性,从野生沙马丁Riparia raparia雄性中收集了精子样本。我们调查了精子长度和精子游动速度之间的关系(通过精子直线速度(VSL)测量),并确定了精子性状是否与男性体型和状况相关。我们发现精子总长度在射精内是可重复的,并显示出大量的雄性间变异。精子的长度与精子的速度有关:精子短的男性的精子最初游得更快,但死得更快,而精子更长的男性的精子游得更慢,但时间更长。较小的雄性产生的精子具有较高的整体速度。雄性大小与精子行为之间的这种相关性可能反映了替代的受精策略,在这种策略中,交配机会较小的雄性对精子竞争能力的投入更多。这种替代策略的存在将参与维持该物种精子长度和速度的变化。

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