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Stoichiometric traits of stickleback: Effects of genetic background, rearing environment, and ontogeny

机译:棘背动物的化学计量特征:遗传背景,饲养环境和个体发育的影响

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摘要

Abstract Phenotypes can both evolve in response to, and affect, ecosystem change, but few examples of diverging ecosystem-effect traits have been investigated. Bony armor traits of fish are good candidates for this because they evolve rapidly in some freshwater fish populations, and bone is phosphorus rich and likely to affect nutrient recycling in aquatic ecosystems. Here, we explore how ontogeny, rearing environment, and bone allocation among body parts affect the stoichiometric phenotype (i.e., stoichiometric composition of bodies and excretion) of threespine stickleback. We use two populations from distinct freshwater lineages with contrasting lateral plating phenotypes (full vs. low plating) and their hybrids, which are mostly fully plated. We found that ontogeny, rearing environment, and body condition were the most important predictors of organismal stoichiometry. Although elemental composition was similar between both populations and their hybrids, we found significant divergence in phosphorus allocation among body parts and in phosphorus excretion rates. Overall, body armor differences did not explain variation in whole body phosphorus, phosphorus allocation, or phosphorus excretion. Evolutionary divergence between these lineages in both allocation and excretion is likely to have important direct consequences for ecosystems, but may be mediated by evolution of multiple morphological or physiological traits beyond plating phenotype.
机译:摘要表型可以响应并影响生态系统变化而演化,但是很少有人研究不同的生态系统效应特征的例子。鱼的骨甲特性是很好的候选者,因为它们在某些淡水鱼种群中迅速发展,并且骨骼富含磷,并可能影响水生生态系统中的养分循环。在这里,我们探讨个体的个体发育,饲养环境和骨骼分配如何影响三脊椎棘背le的化学计量表型(即身体的化学计量组成和排泄)。我们使用来自不同淡水谱系的两个种群,它们具有相反的侧向电镀表型(完全与低向电镀)和它们的杂种,它们大多是完全被电镀的。我们发现个体发育,饲养环境和身体状况是有机化学计量的最重要预测指标。尽管两个种群及其杂种的元素组成相似,但我们发现人体各部分的磷分配和磷排泄率存在显着差异。总体而言,防弹衣的差异不能解释全身磷的变化,磷的分配或磷的排泄。这些谱系之间在分配和排泄方面的进化差异可能对生态系统产生重要的直接后果,但可能由平板形态以外的多种形态或生理特征的进化所介导。

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