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首页> 外文期刊>South African Journal of Botany >Causes of secondary sexual differences in plants - evidence from extreme leaf dimorphism in Leucadendron (Proteaceae).
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Causes of secondary sexual differences in plants - evidence from extreme leaf dimorphism in Leucadendron (Proteaceae).

机译:植物继发性差异的原因- Leucadendron (Proteaceae)的极端叶片二态性的证据。

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摘要

In extreme cases leaves in male plants of the dioecious genus Leucadendron (Proteaceae) are up to an order of magnitude smaller than female leaves. This secondary sexual dimorphism (SSD) in leaf size has previously been suggested to be due to intra-male sexual selection, leading to an increase in male allocation to reproduction in dimorphic species. After critically evaluating previous data provided to support this hypothesis, I suggest on both theoretical grounds and on re-analysis that this argument is unlikely and unsupported. Leaf size dimorphism could theoretically evolve directly due to disruptive ecological selection between genders, leading to niche dimorphism either within or between habitats. I test this ecological causation hypothesis by providing data on specific leaf area (sla) and water use efficiency ( delta 13C) of leaves from males and females of several Leucadendron species. Results confirm the expectation of minimal gender differences. I argue that leaf dimorphism is a consequence of selection on flower size and architecture.
机译:在极端情况下,雌雄异株 Leucadendron (Proteaceae)的雄性植物的叶片最多比雌性叶片小一个数量级。先前已经有人提出,这种叶片大小的继发性二态性(SSD)是由于雄性内的性别选择所致,导致雄性对二态性物种繁殖的分配增加。在批判性地评估了为支持该假设而提供的先前数据之后,我从理论上和重新分析的角度提出了这一论点是不可能且不受支持的。理论上,由于性别之间的破坏性生态选择,叶大小双态可能直接演变,从而导致生境内或生境之间的生态位双态。通过提供有关几种 Leucadendron 的雄性和雌性叶片的比叶面积(sla)和水分利用效率(delta 13 C)的数据,我测试了这种生态因果假设。结果证实了对性别差异最小的期望。我认为叶片的二态性是选择花朵大小和结构的结果。

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