Department of Botany, University of Wyoming, Laramie, WY, 82071, USA.
Harvard Forest, Harvard University, Petersham, MA, 01366, USA.
New Phytol. 2023 Dec;240(5):1774-1787. doi: 10.1111/nph.19276. Epub 2023 Sep 24.
Evolutionary radiations of woody taxa within arid environments were made possible by multiple trait innovations including deep roots and embolism-resistant xylem, but little is known about how these traits have coevolved across the phylogeny of woody plants or how they jointly influence the distribution of species. We synthesized global trait and vegetation plot datasets to examine how rooting depth and xylem vulnerability across 188 woody plant species interact with aridity, precipitation seasonality, and water table depth to influence species occurrence probabilities across all biomes. Xylem resistance to embolism and rooting depth are independent woody plant traits that do not exhibit an interspecific trade-off. Resistant xylem and deep roots increase occurrence probabilities in arid, seasonal climates over deep water tables. Resistant xylem and shallow roots increase occurrence probabilities in arid, nonseasonal climates over deep water tables. Vulnerable xylem and deep roots increase occurrence probabilities in arid, nonseasonal climates over shallow water tables. Lastly, vulnerable xylem and shallow roots increase occurrence probabilities in humid climates. Each combination of trait values optimizes occurrence probabilities in unique environmental conditions. Responses of deeply rooted vegetation may be buffered if evaporative demand changes faster than water table depth under climate change.
在干旱环境中,木本类群的进化辐射是通过多种特征创新实现的,包括深根和抗栓塞木质部,但人们对这些特征在木本植物的系统发育中是如何共同进化的,以及它们如何共同影响物种的分布知之甚少。我们综合了全球特征和植被图数据集,以研究 188 种木本植物物种的根系深度和木质部脆弱性如何与干旱、降水季节性和地下水位深度相互作用,从而影响所有生物群落中物种的出现概率。木质部抗栓塞能力和根系深度是独立的木本植物特征,它们之间没有种间权衡关系。在深水位条件下,抗栓塞的木质部和深根系增加了干旱、季节性气候条件下的物种出现概率。在深水位条件下,抗栓塞的木质部和浅根系增加了干旱、非季节性气候条件下的物种出现概率。在浅水位条件下,脆弱的木质部和深根系增加了干旱、非季节性气候条件下的物种出现概率。最后,在潮湿气候条件下,脆弱的木质部和浅根系增加了物种出现的概率。每种特征值的组合都在独特的环境条件下优化了出现概率。如果在气候变化下,蒸发需求的变化速度快于地下水位深度,那么深根植被的反应可能会得到缓冲。