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防御性代谢产物的定量和定性变化定义了热带树木属印加树叶片发育过程中的化学防御投入。

Quantitative and qualitative shifts in defensive metabolites define chemical defense investment during leaf development in Inga, a genus of tropical trees.

作者信息

Wiggins Natasha L, Forrister Dale L, Endara María-José, Coley Phyllis D, Kursar Thomas A

机构信息

Department of Biology University of Utah Salt Lake City Utah; School of Biological Sciences University of Tasmania Hobart Tas.Australia.

Department of Biology University of Utah Salt Lake City Utah.

出版信息

Ecol Evol. 2016 Jan 8;6(2):478-92. doi: 10.1002/ece3.1896. eCollection 2016 Jan.

Abstract

Selective pressures imposed by herbivores are often positively correlated with investments that plants make in defense. Research based on the framework of an evolutionary arms race has improved our understanding of why the amount and types of defenses differ between plant species. However, plant species are exposed to different selective pressures during the life of a leaf, such that expanding leaves suffer more damage from herbivores and pathogens than mature leaves. We hypothesize that this differential selective pressure may result in contrasting quantitative and qualitative defense investment in plants exposed to natural selective pressures in the field. To characterize shifts in chemical defenses, we chose six species of Inga, a speciose Neotropical tree genus. Focal species represent diverse chemical, morphological, and developmental defense traits and were collected from a single site in the Amazonian rainforest. Chemical defenses were measured gravimetrically and by characterizing the metabolome of expanding and mature leaves. Quantitative investment in phenolics plus saponins, the major classes of chemical defenses identified in Inga, was greater for expanding than mature leaves (46% and 24% of dry weight, respectively). This supports the theory that, because expanding leaves are under greater selective pressure from herbivores, they rely more upon chemical defense as an antiherbivore strategy than do mature leaves. Qualitatively, mature and expanding leaves were distinct and mature leaves contained more total and unique metabolites. Intraspecific variation was greater for mature leaves than expanding leaves, suggesting that leaf development is canalized. This study provides a snapshot of chemical defense investment in a speciose genus of tropical trees during the short, few-week period of leaf development. Exploring the metabolome through quantitative and qualitative profiling enables a more comprehensive examination of foliar chemical defense investment.

摘要

食草动物施加的选择压力通常与植物在防御方面的投入呈正相关。基于进化军备竞赛框架的研究增进了我们对植物物种间防御数量和类型为何不同的理解。然而,在叶片的生命周期中,植物物种会受到不同的选择压力,以至于正在展开的叶片比成熟叶片遭受更多来自食草动物和病原体的损害。我们推测,这种不同的选择压力可能导致在野外受到自然选择压力影响的植物在防御投入的数量和质量上形成对比。为了描述化学防御的变化,我们选择了六种印加属植物,这是一个种类繁多的新热带树木属。重点研究的物种代表了多样的化学、形态和发育防御特征,且均采集自亚马逊雨林的一个单一地点。通过重量法以及对正在展开和成熟叶片的代谢组进行表征来测定化学防御。在印加属植物中确定的主要化学防御类别酚类和皂苷类,其在正在展开叶片中的定量投入比成熟叶片更大(分别占干重的46%和24%)。这支持了这样一种理论,即由于正在展开的叶片受到食草动物更大的选择压力,它们比成熟叶片更依赖化学防御作为一种抗食草动物策略。在质量方面,成熟叶片和正在展开的叶片有所不同,成熟叶片含有更多的总代谢物和独特代谢物。成熟叶片的种内变异比正在展开的叶片更大,这表明叶片发育是受限制的。这项研究提供了在叶片发育的短短几周时间内,一个种类繁多的热带树木属植物化学防御投入的概况。通过定量和定性分析来探索代谢组,能够更全面地研究叶片化学防御投入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4de/4729263/ea8abdb33156/ECE3-6-478-g001.jpg

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