Metlen Kerry L, Aschehoug Erik T, Callaway Ragan M
Division of Biological Sciences, The University of Montana, 32 Campus Drive-DBS/HS 104, Missoula, MT 59812, USA.
Plant Cell Environ. 2009 Jun;32(6):641-53. doi: 10.1111/j.1365-3040.2008.01910.x. Epub 2008 Nov 13.
Behaviour is in part the ability to respond rapidly and reversibly in response to environmental stimuli during the lifetime of an individual. Plants and animals both exhibit behaviour, but plant behaviour is most often examined in the context of morphologically plastic growth. Rapid and reversible secondary metabolite production and release is also a key mechanism by which plants behave. Here, we review plant biochemical plasticity as plant behaviour, and explicitly focus on evidence for responses that display rapid induction, reversibility and ecological relevance. Rapid induction and attenuation of plant secondary metabolites occur as chemically mediated root foraging, plant defence, allelochemistry and to regulate mutualistic relationships. We describe a wealth of information on the induction of various plant biochemical responses to environmental stimuli but found a limited body of literature on the reversibility of induced biochemical responses. Understanding the full cycle of dynamic plasticity in secondary metabolites is an important niche for future research. Biochemical behaviours extend beyond the plant kingdom; however, they clearly illustrate the capacity for plants to behave in ways that closely mirror the classic definitions and research approaches applied to behaviour in animals.
行为在一定程度上是个体在其生命周期内对环境刺激做出快速且可逆反应的能力。植物和动物都表现出行为,但植物行为通常是在形态可塑性生长的背景下进行研究的。快速且可逆的次生代谢产物的产生和释放也是植物表现行为的关键机制。在此,我们将植物生化可塑性视为植物行为进行综述,并明确聚焦于那些显示出快速诱导、可逆性和生态相关性的反应的证据。植物次生代谢产物的快速诱导和衰减表现为化学介导的根系觅食、植物防御、化感作用以及调节共生关系。我们描述了大量关于各种植物生化反应对环境刺激的诱导的信息,但发现关于诱导生化反应可逆性的文献有限。了解次生代谢产物动态可塑性的完整循环是未来研究的一个重要领域。生化行为不仅存在于植物界;然而,它们清楚地表明了植物具有以与应用于动物行为的经典定义和研究方法极为相似的方式表现行为的能力。