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Correlated evolution of leaf and root anatomic traits in Dendrobium (Orchidaceae)

机译:石斛中叶片和根部解剖学性状的相关演变(兰科)

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The whole-plant economic spectrum concept predicts that leaf and root traits evolve in coordination to cope with environmental stresses. However, this hypothesis is difficult to test in many species because their leaves and roots are exposed to different environments, above- and below-ground. In epiphytes, both leaves and roots are exposed to the atmosphere. Thus, we suspect there are consistent water conservation strategies in leaf and root traits of epiphytes due to similar selection pressures. Here, we measured the functional traits of 21 species in the genus Dendrobium, which is one of the largest epiphytic taxa in the family Orchidaceae, and used phylogenetically independent contrasts to test the relationships among traits, and between traits and the environment. Our results demonstrate that species with a thicker velamen tended to have thicker roots, a thicker root cortex and vascular cylinder, and a larger number of vessels in the root. Correspondingly, these species also had higher leaf mass per area, and thicker leaf lower cuticles. Leaf and root traits associated with water conservation showed significantly positive relationships. The number of velamen layers, leaf density and the ratio of vascular cylinder radius to root radius were significantly affected by the species’ differing environments. Thus, traits related to water conservation and transport may play an important role in helping Dendrobium cope with the cool and dry conditions found at high elevations. These findings confirmed the hypothesis that leaf and root traits have evolved in coordination, and also provide insights into trait evolution and ecological adaptation in epiphytic orchids.
机译:全植物经济频谱概念预测叶子和根特征在协调方面发展,以应对环境压力。然而,这种假设难以在许多物种中进行测试,因为它们的叶子和根部暴露于不同的环境,高于和地下。在腰果中,叶子和根部都暴露在大气中。因此,由于相似的选择压力,我们怀疑叶片和根部性状的叶片和根特征存在一致的水养策略。在这里,我们测量了石斛中的21种物种的功能性状,这是家庭兰科的最大的肉瘤分类群之一,并使用系统源独立对比,以测试特征之间的关系,以及特征和环境之间的关系。我们的结果表明,具有较厚Velamen的物种倾向于具有较厚的根,较厚的根皮层和血管滚筒,以及根部中的较大的血管。相应地,这些物种的叶片质量较高,叶片较厚的下叶。与水资源相关的叶子和根特征显示出显着的正相关关系。 velamen层,叶密度和血管气缸半径与根部半径的比值的数量由该物种的不同环境下被显著影响。因此,与水养护和运输有关的特征可能在帮助Dendrobium处理高升高的凉爽和干燥条件方面发挥重要作用。这些调查结果证实了叶子和根特征在协调中发展的假设,并提供了对果实兰花的特质演化和生态适应的见解。

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