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空间变化的卵大小和卵数反映了权衡和风险分散在一个淡水鱼。

Spatial variation in egg size and egg number reflects trade-offs and bet-hedging in a freshwater fish.

机构信息

School of Biological Sciences, Monash University, Clayton, Vic 3800, Australia.

出版信息

J Anim Ecol. 2012 Jul;81(4):806-17. doi: 10.1111/j.1365-2656.2012.01961.x. Epub 2012 Feb 6.

Abstract

1. Maternal reproductive investment is thought to reflect a trade-off between offspring size and fecundity, and models generally predict that mothers inhabiting adverse environments will produce fewer, larger offspring. More recently, the importance of environmental unpredictability in influencing maternal investment has been considered, with some models predicting that mothers should adopt a diversified bet-hedging strategy whilst others a conservative bet-hedging strategy. 2. We explore spatial egg size and fecundity patterns in the freshwater fish southern pygmy perch (Nannoperca australis) that inhabits a diversity of streams along gradients of environmental quality, variability and predictability. 3. Contrary to some predictions, N. australis populations inhabiting increasingly harsh streams produced more numerous and smaller eggs. Furthermore, within-female egg size variability increased as environments became more unpredictable. 4. We argue that in harsh environments or those prone to physical disturbance, sources of mortality are size independent with offspring size having only a minor influence on offspring fitness. Instead, maternal fitness is maximized by producing many small eggs, increasing the likelihood that some offspring will disperse to permanent water. We also provide empirical support for diversified bet-hedging as an adaptive strategy when future environmental quality is uncertain and suggest egg size may be a more appropriate fitness measure in stable environments characterized by size-dependent fitness. These results likely reflect spatial patterns of adaptive plasticity and bet-hedging in response to both predictable and unpredictable environmental variance and highlight the importance of considering both trait averages and variance. 5. Reproductive life-history traits can vary predictably along environmental gradients. Human activity, such as the hydrological modification of natural flow regimes, alters the form and magnitude of these gradients, and this can have both ecological and evolutionary implications for biota adapted to now non-existent natural environmental heterogeneity.

摘要
  1. 母体生殖投资被认为反映了后代大小和繁殖力之间的权衡,而模型通常预测,生活在不利环境中的母亲会产生更少、更大的后代。最近,环境不确定性对母体投资的影响的重要性已经被考虑在内,一些模型预测母亲应该采取多样化的风险分散策略,而另一些模型则预测母亲应该采取保守的风险分散策略。

  2. 我们探索了生活在环境质量、变异性和可预测性梯度上的各种溪流中的淡水鱼南方矮鲈(Nannoperca australis)的空间卵大小和繁殖力模式。

  3. 与一些预测相反,生活在越来越恶劣溪流中的 N. australis 种群产生了更多数量更小的卵。此外,随着环境变得更加不可预测,雌性内部的卵大小变异性增加。

  4. 我们认为,在恶劣的环境或容易受到物理干扰的环境中,死亡源与大小无关,后代大小对后代的适应性只有很小的影响。相反,通过产生许多小卵来最大限度地提高母体适应性,增加一些后代分散到永久性水域的可能性。我们还为未来环境质量不确定时的多样化风险分散提供了适应性策略的实证支持,并表明在以大小依赖性适应性为特征的稳定环境中,卵大小可能是更合适的适应性衡量标准。这些结果可能反映了对可预测和不可预测的环境变化的适应性可塑性和风险分散的空间模式,并强调了考虑特征平均值和方差的重要性。

  5. 生殖生活史特征可以沿着环境梯度有规律地变化。人类活动,如对自然水流模式的水文改造,改变了这些梯度的形式和幅度,这对适应现在不存在的自然环境异质性的生物群具有生态和进化意义。

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