Gauslaa Yngvar, Hollinger Jason, Goward Trevor, Asplund Johan
Faculty of Environmental Sciences and Natural Resource Management, Norwegian University of Life Sciences, P.O. Box 5003, 1432, Ås, Norway.
Herbarium, Department of Biology, Western Carolina University, Cullowhee, NC, 28723, USA.
Oecologia. 2024 Dec 7;207(1):4. doi: 10.1007/s00442-024-05641-9.
This study aims to elucidate the connection between the phylogeny of epiphytic macrolichens and their chemical niches. We analyzed published floristic and environmental data from 90 canopies of Picea glauca x engelmannii across various forest settings in British Columbia. To explore the concordance between a principal coordinates analysis of the cladistic distance matrix and a global non-metric multidimensional scaling of the ecological distance matrix, we used Procrustean randomization tests. The findings uncover a robust association between large-scale macrolichen phylogeny and canopy throughfall chemistry. The high calcium-scores of the studied species effectively distinguished members of the Peltigerales from those of the Lecanorales, although parameters linked with Ca such as Mn, Mg, K, bark-, and soil-pH, may contribute to the niche partitioning along the oligotrophic-mesotrophic gradient. The substantial large-scale phylogenetic variation in the macrolichens' Ca-scores is consistent with an ancient adaptation to specialized chemical environments. Conversely, the minor variation in Ca-scores within families and genera likely stems from more recent adaptation. This study highlights crucial functional and chemical differences between members of the Lecanorales and Peltigerales. The deep phylogenetic connection to the chemical environment underscores the value of lichens as transferable bioindicators for the chemical environment and emphasizes the importance of elucidating the intricate interplay between chemical factors and lichen evolution.
本研究旨在阐明附生大型地衣的系统发育与其化学生态位之间的联系。我们分析了来自不列颠哥伦比亚省不同森林环境中90个白云杉×恩氏云杉树冠层已发表的植物区系和环境数据。为了探究分支距离矩阵的主坐标分析与生态距离矩阵的全局非度量多维尺度分析之间的一致性,我们使用了普罗克汝斯忒随机化检验。研究结果揭示了大规模大型地衣系统发育与树冠穿透水化学之间的紧密关联。尽管与钙相关的参数(如锰、镁、钾、树皮和土壤pH值)可能有助于沿着贫营养 - 中营养梯度进行生态位划分,但所研究物种的高钙得分有效地将肺衣目成员与茶渍目成员区分开来。大型地衣钙得分的大量大规模系统发育变异与对特殊化学环境的古老适应相一致。相反,科和属内钙得分的微小变异可能源于更近的适应。本研究突出了茶渍目和肺衣目成员之间关键的功能和化学差异。与化学环境的深层系统发育联系强调了地衣作为化学环境可转移生物指示物的价值,并强调了阐明化学因素与地衣进化之间复杂相互作用的重要性。