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亚南极物种自然种群中次生代谢产物的变异表明功能冗余和多功能性。

Variations of Secondary Metabolites among Natural Populations of Sub-Antarctic Species Suggest Functional Redundancy and Versatility.

作者信息

Labarrere Bastien, Prinzing Andreas, Dorey Thomas, Chesneau Emeline, Hennion Françoise

机构信息

UMR 6553 ECOBIO, Université de Rennes 1, OSUR, CNRS, Av du Général Leclerc, F-35042 Rennes, France.

Institut für Systematische und Evolutionäre Botanik, Zollikerstrasse 107, 8008 Zürich, Switzerland.

出版信息

Plants (Basel). 2019 Jul 19;8(7):234. doi: 10.3390/plants8070234.

Abstract

Plants produce a high diversity of metabolites which help them sustain environmental stresses and are involved in local adaptation. However, shaped by both the genome and the environment, the patterns of variation of the metabolome in nature are difficult to decipher. Few studies have explored the relative parts of geographical region versus environment or phenotype in metabolomic variability within species and none have discussed a possible effect of the region on the correlations between metabolites and environments or phenotypes. In three sub-Antarctic species, we examined the role of region in metabolite differences and in the relationship between individual compounds and environmental conditions or phenotypic traits. Populations of three species were sampled across similar environmental gradients in two distinct geographical regions in îles Kerguelen. Two metabolite classes were studied, amines (quantified by high-performance liquid chromatography and fluorescence spectrophotometry) and flavonols (quantified by ultra-high-performance liquid chromatography with triple quadrupole mass spectrometry). Depending on regions, the same environment or the same trait may be related to different metabolites, suggesting metabolite redundancy within species. In several cases, a given metabolite showed different or even opposite relations with the same environmental condition or the same trait across the two regions, suggesting metabolite versatility within species. Our results suggest that metabolites may be functionally redundant and versatile within species, both in their response to environments and in their relation with the phenotype. These findings open new perspectives for understanding evolutionary responses of plants to environmental changes.

摘要

植物产生种类繁多的代谢产物,这些代谢产物有助于它们抵御环境压力并参与局部适应。然而,受基因组和环境的双重影响,自然界中代谢组的变异模式难以解读。很少有研究探讨地理区域与环境或表型在物种内代谢组变异性方面的相对作用,也没有研究讨论区域对代谢产物与环境或表型之间相关性的可能影响。在三种亚南极物种中,我们研究了区域在代谢产物差异以及单个化合物与环境条件或表型特征之间关系中的作用。在凯尔盖朗群岛的两个不同地理区域,对三种物种的种群沿着相似的环境梯度进行了采样。研究了两类代谢产物,胺类(通过高效液相色谱和荧光分光光度法定量)和黄酮醇类(通过超高效液相色谱与三重四极杆质谱法定量)。取决于区域,相同的环境或相同的性状可能与不同的代谢产物相关,这表明物种内存在代谢产物冗余。在几种情况下,给定的代谢产物在两个区域与相同的环境条件或相同的性状表现出不同甚至相反的关系,这表明物种内存在代谢产物多功能性。我们的结果表明,代谢产物在物种内对环境的响应及其与表型的关系方面可能在功能上是冗余的且具有多功能性。这些发现为理解植物对环境变化的进化响应开辟了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05f7/6681328/5668c53137ab/plants-08-00234-g001.jpg

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