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Reduced plant competition among kin can be explained by Jensen's inequality

机译:亲戚之间植物竞争的减少可以用詹森的不平等来解释

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AbstractPlants often compete with closely related individuals due to limited dispersal, leading to two commonly invoked predictions on competitive outcomes. Kin selection, from evolutionary theory, predicts that competition between relatives will likely be weaker. The niche partitioning hypothesis, from ecological theory, predicts that competition between close relatives will likely be stronger. We tested for evidence consistent with either of these predictions by growing an annual legume in kin and nonkin groups in the greenhouse. We grew plant groups in treatments of symbiotic nitrogen fixing bacteria differing in strain identity and composition to determine if differences in the microbial environment can facilitate or obscure plant competition patterns consistent with kin selection or niche partitioning. Nonkin groups had lower fitness than expected, based on fitness estimates of the same genotypes grown among kin. Higher fitness among kin groups was observed in mixtures of N-fixing bacteria strains compared to single inoculations of bacteria strains present in the soil, which increased fitness differences between kin and nonkin groups. Lower fitness in nonkin groups was likely caused by increased competitive asymmetry in nonkin groups due to genetic differences in plant size combined with saturating relationships with plant size and fitness- i.e. Jensen's inequality. Our study suggests that microbial soil symbionts alter competitive dynamics among kin and nonkin. Our study also suggests that kin groups can have higher fitness, as predicted by kin selection theory, through a commonly heritable trait (plant size), without requiring kin recognition mechanisms.
机译:摘要由于分散性有限,植物经常与亲缘关系密切的个体竞争,从而导致两种通常被称为竞争结果的预测。从进化理论来看,亲属选择预测亲戚之间的竞争可能会减弱。来自生态学理论的利基分配假说预测,近亲之间的竞争可能会更强。我们通过在温室中的亲属和非亲属群体中种植一年生豆类来测试与这些预测中的任何一个一致的证据。我们在处理菌株特性和组成不同的共生固氮细菌的过程中培育了植物群,以确定微生物环境的差异是否能够促进或掩盖与亲缘选择或生态位分配相一致的植物竞争模式。根据亲属中生长的相同基因型的适应性估计,非亲属群体的适应性低于预期。与土壤中存在的单菌种接种相比,固氮菌菌株混合物中亲属群体的适应性更高,这增加了亲族和非亲族群体的适应性差异。非亲属群体的适应性较低可能是由于非亲缘性群体中竞争性不对称性的增加所致,这是由于植物大小的遗传差异以及与植物大小和适应性的饱和关系(即詹森不等式)所致。我们的研究表明,微生物土壤共生体会改变亲属和非亲属之间的竞争动态。我们的研究还表明,按照亲属选择理论的预测,亲属群体可以通过通常可遗传的性状(植物大小)具有更高的适应性,而无需亲属识别机制。

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