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风及机械刺激对欧洲蒲公英叶片特性有不同的影响。

Wind and mechanical stimuli differentially affect leaf traits in Plantago major.

机构信息

Ecology and Biodiversity, Institute of Environmental Biology, Utrecht University, Utrecht, the Netherlands.

出版信息

New Phytol. 2010 Oct;188(2):554-64. doi: 10.1111/j.1469-8137.2010.03379.x. Epub 2010 Jul 20.

Abstract

• Analysing plant phenotypic plasticity in response to wind is complicated as this factor entails not only mechanical stress but also affects leaf gas and heat exchange. • We exposed Plantago major plants to brushing (mechanical stress, MS) and wind (MS and air flow) and determined the effects on physiological, morphological and mechanical characteristics of leaf petioles and laminas as well as on growth and biomass allocation at the whole-plant level. • Both MS and wind similarly reduced growth but their effects on morphological and mechanical plant traits were different. MS induced the formation of leaves with more slender petioles, and more elliptic and thinner laminas, while wind tended to evoke the opposite response. These morphological and mechanical changes increased lamina and petiole flexibility in MS plants, thus reducing mechanical stress by reconfiguration of plant structure. Responses to wind, on the other hand, seemed to be more associated with reducing transpiration. • These results show that responses to mechanical stress and wind can be different and even in the opposite direction. Plant responses to wind in the field can therefore be variable depending on overall environmental conditions and plant characteristics.

摘要

• 分析植物对风的表型可塑性较为复杂,因为该因素不仅涉及机械胁迫,还会影响叶片的气体和热交换。 • 我们将车前草暴露在刷(机械胁迫,MS)和风(MS 和气流)下,以确定其对叶片叶柄和叶片的生理、形态和机械特性以及整体植株水平的生长和生物量分配的影响。 • MS 和风同样降低了生长,但它们对形态和机械植物特征的影响不同。MS 诱导形成叶柄更细长、叶片更椭圆和更薄的叶片,而风则倾向于引起相反的反应。这些形态和机械变化增加了 MS 植物叶片和叶柄的柔韧性,从而通过植物结构的重新配置减轻机械胁迫。另一方面,对风的反应似乎与减少蒸腾作用更为相关。 • 这些结果表明,对机械胁迫和风的反应可能不同,甚至方向相反。因此,植物在野外对风的反应可能会因整体环境条件和植物特征而异。

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