Hargreaves Anna L, Germain Rachel M, Bontrager Megan, Persi Joshua, Angert Amy L
Am Nat. 2020 Mar;195(3):395-411. doi: 10.1086/707323. Epub 2020 Jan 30.
Adaptation to local conditions can increase species' geographic distributions and rates of diversification, but which components of the environment commonly drive local adaptation-particularly the importance of biotic interactions-is unclear. Biotic interactions should drive local adaptation when they impose consistent divergent selection; if this is common, we expect transplant experiments to detect more frequent and stronger local adaptation when biotic interactions are left intact. We tested this hypothesis using a meta-analysis of transplant experiments from >125 studies (mostly of plants). Overall, local adaptation was common, and biotic interactions affected fitness. Nevertheless, local adaptation was neither more common nor stronger when biotic interactions were left intact, either between experimental treatments within studies (control vs. biotic interactions experimentally manipulated) or between studies that used natural versus biotically altered transplant environments. However, the effect of ameliorating negative interactions varied with latitude, suggesting that interactions may promote local adaptation more often in tropical than in temperate ecosystems, although few tropical studies were available to test this. Our results suggest that biotic interactions often fail to drive local adaptation even though they strongly affect fitness, perhaps because temperate biotic environments are unpredictable at the spatiotemporal scales required for local adaptation.
适应当地环境可以扩大物种的地理分布范围并提高其多样化速率,但是环境中的哪些因素通常会推动局部适应——尤其是生物相互作用的重要性——尚不清楚。当生物相互作用施加一致的趋异选择时,它们应该会推动局部适应;如果这种情况很常见,我们预计在生物相互作用保持完整的情况下,移植实验能够检测到更频繁、更强的局部适应。我们通过对来自125多项研究(主要是植物研究)的移植实验进行荟萃分析来检验这一假设。总体而言,局部适应很常见,并且生物相互作用会影响适合度。然而,无论是在研究中的实验处理之间(对照与经过实验操纵的生物相互作用),还是在使用自然移植环境与生物改变的移植环境的研究之间,当生物相互作用保持完整时,局部适应既不更常见也不更强。但是,改善负面相互作用的效果随纬度而变化,这表明生物相互作用在热带生态系统中可能比在温带生态系统中更常促进局部适应,尽管可供检验此情况的热带研究很少。我们的结果表明,生物相互作用尽管对适合度有强烈影响,但往往无法推动局部适应,这可能是因为温带生物环境在局部适应所需的时空尺度上不可预测。