首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >The shape of things to come: woodland herb niche contraction begins during recruitment in mesic forest microhabitat
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The shape of things to come: woodland herb niche contraction begins during recruitment in mesic forest microhabitat

机译:事物的形状:林地草本生态位收缩在中生森林微生境募集期间开始

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摘要

Natural abundance is shaped by the abiotic requirements and biotic interactions that shape a species' niche, yet these influences are rarely decoupled. Moreover, most plant mortality occurs during early life stages, making seed recruitment critical in structuring plant populations. We find that natural abundance of two woodland herbs, Hexastylis arifolia and Hepatica nobilis, peaks at intermediate resource levels, a pattern probably formed by concurrent abiotic and biotic interactions. To determine how this abundance patterning reflects intrinsic physiological optima and extrinsic biotic interactions, we translocate adults and seeds to novel locations across experimentally extended abiotic gradients. These experiments indicate that the plant distributions probably reflect biotic interactions as much as physiological requirements, and that adult abundance provides a poor indication of the underlying niche requirements. The positive response exhibited by adult transplants in the wettest conditions is offset by increased fungal attack on buried seeds consistent with peak natural abundance where soil moisture is intermediate. This contraction of niche space is best described by Connell's model—species are limited by physiological tolerances where resources are low and biotic interactions where resources are high.
机译:自然丰富度由塑造物种生态位的非生物需求和生物相互作用所决定,但这些影响很少分离。而且,大多数植物死亡发生在生命的早期,因此种子募集对于结构化植物种群至关重要。我们发现,两种林地草药(Hexastylis arifolia和Hepatica nobilis)的自然丰度在中间资源水平达到峰值,这种模式可能是由非生物和生物同时相互作用形成的。为了确定这种丰富的模式如何反映出内在的生理最佳状态和外在生物相互作用,我们将成虫和种子通过实验扩展的非生物梯度转移到新的位置。这些实验表明,植物的分布可能反映了生物相互作用以及生理需求,而成年后的丰度不足以表明潜在的生态位需求。在最湿的条件下,成年移植物表现出的阳性反应被对地下种子的真菌侵袭增加所抵消,这与土壤水分介于中间的自然丰度峰值一致。生态位空间的这种收缩最好用Connell的模型来描述-物种受到资源低的生理耐受性和资源高的生物相互作用的限制。

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