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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Specialization to Extremely Low-Nutrient Soils Limits the Nutritional Adaptability of Plant Lineages
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Specialization to Extremely Low-Nutrient Soils Limits the Nutritional Adaptability of Plant Lineages

机译:极低养分土壤的专业化限制了植物谱系的营养适应性

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摘要

Specialization to extreme selective situations promotes the acquisition of traits whose coadaptive integration may compromise evolutionary flexibility and adaptability. We test this idea in the context of the foliar stoichiometry of plants native to the South African Cape. Whereas foliar concentrations of nitrogen, phosphorus (P), potassium (K), calcium, magnesium, and sodium showed strong phylogenetic signal, as did the foliar ratios of these nutrients to P, the same was not true of the corresponding soil values. In addition, although foliar traits were often related to soil values, the coefficients of determination were consistently low. These results identify foliar stoichiometry as having a strong genetic component, with variation in foliar nutrient concentrations, especially [P] and [K], being identified as potentially adaptive. Comparison of stoichiometric variation across 11 similarly aged clades revealed consistently low foliar nutrient concentrations in lineages showing specialization to extremely low-nutrient fynbos heathlands. These lineages also display lower rates of evolution of these traits as well as a reduced tendency for foliar [P] to track soil [P]. Reduced evolutionary lability and adaptability in the nutritional traits of fynbos-specialist lineages may explain the floristic distinctness of the fynbos flora and implies a reduced scope for edaphically driven ecological speciation.
机译:极端选择性情况的专业促进了采集的特征,其共存整合可能会损害进化灵活性和适应性。我们在原产于南非海角的植物的叶面化学计量的背景下测试这个想法。虽然含氮浓度,磷(p),钾(k),钙,镁和钠显示出强大的系统发育信号,因此这些营养物的叶状率与p的叶状率相同,但相应的土壤值也不是真的。此外,虽然叶状性状往往与土壤值相关,但测定系数始终低。这些结果鉴定了具有强遗传成分的叶酸化学计量,具有叶状营养浓度的变化,特别是[p]和[K],被鉴定为潜在的适应性。在11种同样老化的曲线上的化学计量变异的比较揭示了显示出极低营养的Fynbos Heathlands专业化的统一性低叶面营养浓度。这些谱系也显示了这些特征的较低的演化率以及叶面以跟踪土壤的降低趋势[p]。在Fynbos-Specialist谱系的营养特征中降低了进化的持续性和适应性,可以解释Fynbos Flora的植物区明显,并且意味着宏观驱动的生态形态的范围降低。

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