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热带树木叶片代谢组中诱导性、个体发育性和种间变异来源的比较。

A comparison of inducible, ontogenetic, and interspecific sources of variation in the foliar metabolome in tropical trees.

作者信息

Sedio Brian E, Durant Archibold Armando, Rojas Echeverri Juan Camilo, Debyser Chloé, Boya P Cristopher A, Wright S Joseph

机构信息

Smithsonian Tropical Research Institute, Balboa, Ancón, Republic of Panama.

Center for Biodiversity and Drug Discovery, Instituto de Investigaciones Científicas y Servicios de Alta Tecnología-AIP, Ciudad del Saber, Republic of Panama.

出版信息

PeerJ. 2019 Sep 20;7:e7536. doi: 10.7717/peerj.7536. eCollection 2019.

Abstract

Plant interactions with other organisms are mediated by chemistry, yet chemistry varies among conspecific and within individual plants. The foliar metabolome-the suite of small-molecule metabolites found in the leaf-changes during leaf ontogeny and is influenced by the signaling molecule jasmonic acid. Species differences in secondary metabolites are thought to play an important ecological role by limiting the host ranges of herbivores and pathogens, and hence facilitating competitive coexistence among plant species in species-rich plant communities such as tropical forests. Yet it remains unclear how inducible and ontogenetic variation compare with interspecific variation, particularly in tropical trees. Here, we take advantage of novel methods to assemble mass spectra of all compounds in leaf extracts into molecular networks that quantify their chemical structural similarity in order to compare inducible and ontogenetic chemical variation to among-species variation in species-rich tropical tree genera. We ask (i) whether young and mature leaves differ chemically, (ii) whether jasmonic acid-inducible chemical variation differs between young and mature leaves, and (iii) whether interspecific exceeds intraspecific chemical variation for four species from four hyperdiverse tropical tree genera. We observed significant effects of the jasmonic acid treatment for three of eight combinations of species and ontogenetic stage evaluated. Three of the four species also exhibited large metabolomic differences with leaf ontogenetic stage. The profound effect of leaf ontogenetic stage on the foliar metabolome suggests a qualitative turnover in secondary chemistry with leaf ontogeny. We also quantified foliar metabolomes for 45 congeners of the four focal species. Chemical similarity was much greater within than between species for all four genera, even when within-species comparisons included leaves that differed in age and jasmonic acid treatment. Despite ontogenetic and inducible variation within species, chemical differences among congeneric species may be sufficient to partition niche space with respect to chemical defense.

摘要

植物与其他生物的相互作用是由化学物质介导的,然而化学物质在同种植物个体之间以及单个植物内部都存在差异。叶代谢组——叶片中发现的小分子代谢物集合——在叶片个体发育过程中会发生变化,并受到信号分子茉莉酸的影响。次生代谢物的物种差异被认为通过限制食草动物和病原体的宿主范围,从而促进物种丰富的植物群落(如热带森林)中植物物种之间的竞争共存,发挥着重要的生态作用。然而,目前尚不清楚诱导性和个体发育变异与种间变异相比如何,尤其是在热带树木中。在这里,我们利用新方法将叶提取物中所有化合物的质谱组装成分子网络,以量化它们的化学结构相似性,从而比较诱导性和个体发育化学变异与物种丰富的热带树木属中的种间变异。我们提出以下问题:(i)幼叶和成熟叶在化学组成上是否不同;(ii)茉莉酸诱导的化学变异在幼叶和成熟叶之间是否不同;(iii)来自四个高度多样化的热带树木属的四个物种的种间化学变异是否超过种内化学变异。我们观察到,在所评估的物种和个体发育阶段的八种组合中,有三种组合受到茉莉酸处理的显著影响。四个物种中的三个在叶个体发育阶段也表现出较大的代谢组差异。叶个体发育阶段对叶代谢组的深远影响表明,次生化学物质随着叶个体发育发生了质的转变。我们还对四个重点物种的45个同属物种的叶代谢组进行了量化。对于所有四个属来说,种内的化学相似性远大于种间,即使种内比较包括了年龄和茉莉酸处理不同的叶片。尽管物种内部存在个体发育和诱导变异,但同属物种之间的化学差异可能足以在化学防御方面划分生态位空间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5e6/6756142/c9aaec0cc123/peerj-07-7536-g001.jpg

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