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Competition and facilitation may lead to asymmetric range shift dynamics with climate change

机译:竞争和促进可能导致气候变化的非对称范围变速动态

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Forecasts of widespread range shifts with climate change stem from assumptions that climate drives species' distributions. However, local adaptation and biotic interactions also influence range limits and thus may impact range shifts. Despite the potential importance of these factors, few studies have directly tested their effects on performance at range limits. We address how population-level variation and biotic interactions may affect range shifts by transplanting seeds and seedlings of western North American conifers of different origin populations into different competitive neighborhoods within and beyond their elevational ranges and monitoring their performance. We find evidence that competition with neighboring trees limits performance within current ranges, but that interactions between adults and juveniles switch from competitive to facilitative at upper range limits. Local adaptation had weaker effects on performance that did not predictably vary with range position or seed origin. Our findings suggest that competitive interactions may slow species turnover within forests at lower range limits, whereas facilitative interactions may accelerate the pace of tree expansions upward near timberline.
机译:广泛的范围变化与气候变化的偏移源于气候驱动物种分布的假设。然而,局部适应和生物相互作用也影响范围限制,因此可能会影响范围偏移。尽管这些因素有可能重要性,但很少有研究已经直接测试了它们在范围限制的性能上的影响。我们解决了人口级别变异和生物相互作用如何影响范围,通过将不同原点群体的西北美洲针织机的种子和幼苗移植到其在其升高范围内外的不同竞争性社区和监测其表现中。我们发现证据表明,与邻近树木的竞争限制了当前范围内的性能,但成人和青少年之间的相互作用从竞争力的上限限制。局部适应对不可预测地随着范围位置或种子来源而变化的性能影响较弱。我们的研究结果表明,竞争性互动可能在较低范围限制的森林内慢慢种类营业额,而促进相互作用可能会加速树木线上的树木膨胀的速度。

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