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花粉限制下多年生植物的资源分配与种子大小选择

Resource Allocation and Seed Size Selection in Perennial Plants under Pollen Limitation.

作者信息

Huang Qiaoqiao, Burd Martin, Fan Zhiwei

出版信息

Am Nat. 2017 Sep;190(3):430-441. doi: 10.1086/692543. Epub 2017 Jun 19.

Abstract

Pollen limitation may affect resource allocation patterns in plants, but its role in the selection of seed size is not known. Using an evolutionarily stable strategy model of resource allocation in perennial iteroparous plants, we show that under density-independent population growth, pollen limitation (i.e., a reduction in ovule fertilization rate) should increase the optimal seed size. At any level of pollen limitation (including none), the optimal seed size maximizes the ratio of juvenile survival rate to the resource investment needed to produce one seed (including both ovule production and seed provisioning); that is, the optimum maximizes the fitness effect per unit cost. Seed investment may affect allocation to postbreeding adult survival. In our model, pollen limitation increases individual seed size but decreases overall reproductive allocation, so that pollen limitation should also increase the optimal allocation to postbreeding adult survival. Under density-dependent population growth, the optimal seed size is inversely proportional to ovule fertilization rate. However, pollen limitation does not affect the optimal allocation to postbreeding adult survival and ovule production. These results highlight the importance of allocation trade-offs in the effect pollen limitation has on the ecology and evolution of seed size and postbreeding adult survival in perennial plants.

摘要

花粉限制可能会影响植物的资源分配模式,但其在种子大小选择中的作用尚不清楚。我们利用多年生反复结实植物资源分配的进化稳定策略模型表明,在密度独立的种群增长条件下,花粉限制(即胚珠受精率降低)应会增加最优种子大小。在任何花粉限制水平下(包括无花粉限制),最优种子大小能使幼苗存活率与生产一粒种子所需资源投入(包括胚珠生产和种子供应)的比率最大化;也就是说,最优值能使单位成本的适合度效应最大化。种子投入可能会影响繁殖后成年个体存活的资源分配。在我们的模型中,花粉限制会增加单个种子的大小,但会降低总体繁殖分配,因此花粉限制也应会增加繁殖后成年个体存活的最优分配。在密度依赖的种群增长条件下,最优种子大小与胚珠受精率成反比。然而,花粉限制并不影响繁殖后成年个体存活和胚珠生产的最优分配。这些结果凸显了分配权衡在花粉限制对多年生植物种子大小生态和进化以及繁殖后成年个体存活的影响中的重要性。

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