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解析影响花香的生物和气候因素:花香挥发物排放的系统综述

Deciphering the Biotic and Climatic Factors That Influence Floral Scents: A Systematic Review of Floral Volatile Emissions.

作者信息

Farré-Armengol Gerard, Fernández-Martínez Marcos, Filella Iolanda, Junker Robert R, Peñuelas Josep

机构信息

Department of Biosciences, University of Salzburg, Salzburg, Austria.

CSIC, Global Ecology Unit CREAF-CSIC-UAB, Barcelona, Spain.

出版信息

Front Plant Sci. 2020 Jul 31;11:1154. doi: 10.3389/fpls.2020.01154. eCollection 2020.

Abstract

Currently, a global analysis of the information available on the relative composition of the floral scents of a very diverse variety of plant species is missing. Such analysis may reveal general patterns on the distribution and dominance of the volatile compounds that form these mixtures, and may also allow measuring the effects of factors such as the phylogeny, pollination vectors, and climatic conditions on the floral scents of the species. To fill this gap, we compiled published data on the relative compositions and emission rates of volatile organic compounds (VOCs) in the floral scents of 305 plant species from 66 families. We also gathered information on the groups of pollinators that visited the flowers and the climatic conditions in the areas of distribution of these species. This information allowed us to characterize the occurrence and relative abundances of individual volatiles in floral scents and the effects of biotic and climatic factors on floral scent. The monoterpenes trans-β-ocimene and linalool and the benzenoid benzaldehyde were the most abundant floral VOCs, in both ubiquity and predominance in the floral blends. Floral VOC richness and relative composition were moderately preserved traits across the phylogeny. The reliance on different pollinator groups and the climate also had important effects on floral VOC richness, composition, and emission rates of the species. Our results support the hypothesis that key compounds or compounds originating from specific biosynthetic pathways mediate the attraction of the main pollinators. Our results also indicate a prevalence of monoterpenes in the floral blends of plants that grow in drier conditions, which could link with the fact that monoterpene emissions protect plants against oxidative stresses throughout drought periods and their emissions are enhanced under moderate drought stress. Sesquiterpenes, in turn, were positively correlated with mean annual temperature, supporting that sesquiterpene emissions are dominated mainly by ambient temperature. This study is the first to quantitatively summarise data on floral-scent emissions and provides new insights into the biotic and climatic factors that influence floral scents.

摘要

目前,尚缺乏对各种植物花卉香味相对成分的现有信息进行全球分析。这种分析可能会揭示构成这些混合物的挥发性化合物的分布和优势的一般模式,还可能有助于衡量系统发育、授粉媒介和气候条件等因素对物种花香的影响。为了填补这一空白,我们汇编了来自66个科的305种植物花卉香味中挥发性有机化合物(VOCs)的相对成分和排放率的已发表数据。我们还收集了访问这些花朵的传粉者群体以及这些物种分布区域的气候条件的信息。这些信息使我们能够描述花香中单个挥发物的出现情况和相对丰度,以及生物和气候因素对花香的影响。单萜类化合物反式-β-罗勒烯、芳樟醇和苯类化合物苯甲醛是花香中最丰富的挥发性有机化合物,在花香混合物中普遍存在且占主导地位。花香挥发性有机化合物的丰富度和相对组成在整个系统发育中是中等保守的性状。对不同传粉者群体的依赖和气候也对物种的花香挥发性有机化合物丰富度、组成和排放率有重要影响。我们的结果支持这样的假设,即关键化合物或源自特定生物合成途径的化合物介导了主要传粉者的吸引力。我们的结果还表明,在较干燥条件下生长的植物的花香混合物中,单萜类化合物普遍存在,这可能与单萜类化合物排放可在干旱期间保护植物免受氧化应激影响且在中度干旱胁迫下其排放会增强这一事实有关。相反,倍半萜类化合物与年均温度呈正相关,这表明倍半萜类化合物的排放主要受环境温度影响。这项研究首次对花香排放数据进行了定量总结,并为影响花香的生物和气候因素提供了新的见解。

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