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首页> 外文期刊>Functional Ecology >Chemical ecology of tannins and other phenolics: we need a change in approach. (Special Issue: Evolutionary ecology of plant defences against herbivores.)
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Chemical ecology of tannins and other phenolics: we need a change in approach. (Special Issue: Evolutionary ecology of plant defences against herbivores.)

机译:单宁酸和其他酚类的化学生态:我们需要改变方法。 (特刊:植物防御草食动物的进化生态学。)

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Tannins are one of the most studied groups of plant secondary metabolites in research related to chemical ecology. They are traditionally thought to form an important factor of plant defence against herbivorous insects. For a long time, tannins' anti-herbivore activity was thought to derive from their protein precipitation capacity that rendered plant tissues non-nutritious and unpalatable for herbivores. Recent evidence suggests that tannin activity cannot be explained quite this simply, as tannin oxidation should also be taken into account as a defence mechanism for plants. Tannins show very high variability in their structures with several hundred unique molecules detected in plants. These molecules are unevenly distributed in the plant kingdom and only very seldom - if ever - do two plant species share the same tannin pool. In many cases tannin composition varies even within organs of the same plant species and individual. Still, the overall tannin composition of many plant species is as of yet unknown. Chemical ecology of tannins is challenging due to its multi-disciplinary nature. To facilitate research on tannins, we must provide ecologists and chemists with methodological and collaborative alternatives that enable the true and holistic investigation of all important questions that may arise from the field. So far this has not been possible with the tannin oxidation hypothesis, since simple and widely usable methods have not been available. The aim of this review is to give a clear but detailed view of the chemical ecology of tannins and the methodology used to study them. In addition, we introduce a new method to estimate the oxidative activity of all types of tannins and other phenolics that might cause oxidative stress to herbivores. Hopefully our arguments and method will lead to clear changes in the approaches we take to tannins and their exciting biological activities, and we will witness a new era of flourishing and productive research in the chemical ecology of tannins.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2435.2010.01826.x
机译:单宁酸是与化学生态学相关的研究中最受研究的植物次生代谢物之一。传统上认为它们是植物防御草食性昆虫的重要因素。长期以来,单宁的抗草食动物活性被认为是由于它们的蛋白质沉淀能力而致使植物组织没有营养,对草食动物也不宜。最近的证据表明,单宁活性不能完全用这种方法来解释,因为单宁氧化也应被视为植物的防御机制。单宁在植物中显示出数百种独特分子,其结构表现出很高的变异性。这些分子在植物界中分布不均匀,只有很少(如果有的话)两种植物具有相同的单宁池。在许多情况下,单宁的组成甚至在同一植物物种和个体的器官内也不同。尽管如此,许多植物的整体丹宁酸成分仍是未知的。单宁的多学科性质使其化学生态学面临挑战。为了促进单宁的研究,我们必须为生态学家和化学家提供方法和协作的替代方法,以使他们能够对来自该领域的所有重要问题进行真正而全面的调查。到目前为止,单宁氧化假说还无法实现,因为尚无简单且可广泛使用的方法。这篇综述的目的是对单宁的化学生态学及其研究方法给出清晰而详细的看法。此外,我们引入了一种新方法来估算可能导致草食动物氧化应激的所有类型单宁和其他酚类物质的氧化活性。希望我们的论证和方法将导致我们对单宁及其激动人心的生物活性所采取的方法的明确改变,并且我们将见证单宁化学生态学蓬勃发展和富有成果的研究的新时代。数字对象标识符http:// dx .doi.org / 10.1111 / j.1365-2435.2010.01826.x

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