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术业有专攻:新热带灌木九节属和玉叶金花属(茜草科)果实、叶片和根部中次生代谢产物化学多样性及系统发育离散的对比

Different tools for different trades: contrasts in specialized metabolite chemodiversity and phylogenetic dispersion in fruit, leaves, and roots of the neotropical shrubs Psychotria and Palicourea (Rubiaceae).

作者信息

Schneider G F, Beckman N G

机构信息

Department of Biology, Utah State University, Logan, Utah, USA.

Department of Biology and Ecology Center, Utah State University, Smithsonian Tropical Research Institute, Panama, Republic of Panama.

出版信息

Plant Biol (Stuttg). 2025 Aug;27(5):681-697. doi: 10.1111/plb.70013. Epub 2025 Mar 22.

DOI:10.1111/plb.70013
PMID:40120124
Abstract

Plants produce an astonishingly diverse array of specialized metabolites. A crucial step in understanding the origin of such chemodiversity is describing how chemodiversity manifests across the spatial and ontogenetic scales relevant to plant-biotic interactions. Focusing on 21 sympatric species of Psychotria and Palicourea sensu lato (Rubiaceae), we describe patterns of specialized metabolite diversity across spatial and ontogenetic scales using a combination of field collections, untargeted metabolomics, and ecoinformatics. We compare α, β, and γ diversity of specialized metabolites in expanding leaves, unripe pulp, immature seed, ripe pulp, mature seed, and fine roots. Within species, fruit tissues from across ontogenetic stages had ≥α diversity than leaves, and ≤β diversity than leaves. Pooled across species, fruit tissues and ontogenetic stages had the highest γ diversity of all organs, and fruit tissues and ontogenetic stages combined had a higher incidence of organ-specific mass spectral features than leaves. Roots had ≤α diversity than leaves and the lowest β and γ diversity of all organs. Phylogenetic correlations of chemical distance varied by plant organ and chemical class. Our results describe patterns of specialized metabolite diversity across organs and species and provide support for organ-specific contributions to plant chemodiversity. This study contributes to the growing understanding within plant evolutionary ecology of the biological scales of specialized metabolite diversification. Future studies combining our data on specialized metabolite diversity with biotic interaction data and experiments can test existing hypotheses on the roles of ecological interactions in the evolution of chemodiversity.

摘要

植物产生了种类惊人的多种特殊代谢产物。理解这种化学多样性起源的关键一步是描述化学多样性如何在与植物 - 生物相互作用相关的空间和个体发育尺度上表现出来。以21种同域分布的九节属和广义玉叶金花属(茜草科)植物为研究对象,我们结合野外采集、非靶向代谢组学和生态信息学,描述了特殊代谢产物多样性在空间和个体发育尺度上的模式。我们比较了正在展开的叶片、未成熟果肉、未成熟种子、成熟果肉、成熟种子和细根中特殊代谢产物的α、β和γ多样性。在物种内部,来自不同个体发育阶段的果实组织比叶片具有更高的α多样性,比叶片具有更低的β多样性。综合所有物种来看,果实组织和个体发育阶段在所有器官中具有最高的γ多样性,并且果实组织和个体发育阶段组合比叶片具有更高的器官特异性质谱特征发生率。根的α多样性比叶片低,在所有器官中具有最低的β和γ多样性。化学距离的系统发育相关性因植物器官和化学类别而异。我们的结果描述了特殊代谢产物多样性在器官和物种间的模式,并为器官对植物化学多样性的特异性贡献提供了支持。这项研究有助于在植物进化生态学领域中,人们对特殊代谢产物多样化的生物学尺度的理解不断加深。未来将我们关于特殊代谢产物多样性的数据与生物相互作用数据及实验相结合的研究,可以检验关于生态相互作用在化学多样性进化中作用的现有假说。

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