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Sexual Dimorphism in the Multielemental Stoichiometric Phenotypes and Stoichiometric Niches of Spiders

机译:蜘蛛的多元化化学计量表型和化学计量的性二甲术

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摘要

Nutritional limitations may shape populations and communities of organisms. This phenomenon is often studied by treating populations and communities as pools of homogenous individuals with average nutritional optima and experiencing average constraints and trade-offs that influence their fitness in a standardized way. However, populations and communities consist of individuals belonging to different sexes, each with specific nutritional demands and limitations. Taking this into account, we used the ecological stoichiometry framework to study sexual differences in the stoichiometric phenotypes, reflecting stoichiometric niches, of four spider taxa differing in the hunting mode. The species and sexes differed fundamentally in their elemental phenotypes, including elements beyond those most commonly studied (C, N and P). Both species and sexes were distinguished by the C:N ratio and concentrations of Cu, K and Zn. Species additionally differed in concentrations of Na, Mg and Mn. Phosphorous was not involved in this differentiation. Sexual dimorphism in spiders’ elemental phenotypes, related to differences in their stoichiometric niches, suggests different nutritional optima and differences in nutritional limitation experienced by different sexes and species. This may influence the structure and functioning of spider populations and communities.
机译:营养局限可以塑造生物体的种群和社区。这种现象通常通过将人群和社区视为具有平均营养最佳的常规个人和体验平均限制以及以标准化方式影响其健康的折衷和权衡的群体来研究。然而,人口和社区由属于不同性别的个人组成,每个人都具有特定的营养需求和局限性。考虑到这一点,我们使用了生态化学计量框架来研究化学计量表型的性差异,反映了在狩猎模式下不同的四个蜘蛛分类群。物种和性别从根本上不同地不同于它们的元素表型,包括超出最常见的元素(C,N和P)。各种各样的物种和性别均由C:N比和Cu,K和Zn的浓度区分开。物种含有Na,Mg和Mn的浓度不同。磷没有参与这种分化。蜘蛛的性二态性与其化学计量效力的差异有关,表明不同性别和物种所经历的不同营养最佳和营养限制的差异。这可能影响蜘蛛群体和社区的结构和运作。

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