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红斑凤梨的驯化是否需要阳生和阴生型解剖结构?

Are sun- and shade-type anatomy required for the acclimation of Neoregelia cruenta?

作者信息

Reinert Fernanda, Leal-Costa Marcos V, Junqueira Nícia E, Tavares Eliana S

机构信息

Departamento de Botânica, Instituto de Biologia, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brasil.

出版信息

An Acad Bras Cienc. 2013 Apr-Jun;85(2):561-73. doi: 10.1590/S0001-37652013005000034.

Abstract

Sun and shade plants are often discriminated by a number of sun- and shade-type anatomies. Nonetheless, we propose that among tank-bromeliads, changes in rosette architecture satisfy the requirements for coping with contrasting light levels. The tank-bromeliad Neoregelia cruenta naturally colonises sub-habitats ranging from full exposure to direct sunlight, to shaded environments in sand ridge plains. We quantified anatomical and morphological traits of leaves and rosettes of N. cruenta grown under sun and shade conditions. Cells with undulated lateral walls within the water parenchyma are for the first time described for the family. Under high light, leaf blades were wider, shorter, and yellowish. The rosette diameter of sun plants was less than half that of shade plants. Sun leaves overlapped with neighbouring leaves for most of their length, forming a cylindrical rosette where water accumulates. Shade leaves only overlapped in the centre of the rosette. Most anatomical traits were similar under both growth conditions. Stomata were absent from the base of sun leaves, which is probably explained by limited gas exchange at the base of the tight sun-type rosette. Data suggest that the ability of N. cruenta to acclimate to sun and shade is better explained by changes in rosette architecture than by leaf anatomy.

摘要

阳生植物和阴生植物通常通过一些阳生和阴生类型的解剖结构来区分。尽管如此,我们提出在凤梨科植物中,莲座状结构的变化满足了应对不同光照水平的要求。凤梨科植物红杯凤梨自然生长在从完全暴露于直射阳光到沙丘平原阴凉环境等不同的亚栖息地。我们对在阳光和阴凉条件下生长的红杯凤梨的叶片和莲座状结构的解剖学和形态学特征进行了量化。首次在该科植物中描述了水薄壁组织内具有波浪状侧壁的细胞。在强光下,叶片更宽、更短且呈淡黄色。阳生植物的莲座直径不到阴生植物的一半。阳生叶在其大部分长度上与相邻叶片重叠,形成一个积水的圆柱形莲座。阴生叶仅在莲座中心重叠。在两种生长条件下,大多数解剖学特征相似。阳生叶基部没有气孔,这可能是由于紧密的阳生型莲座基部气体交换有限所致。数据表明,红杯凤梨适应阳光和阴凉环境的能力,用莲座状结构的变化比用叶片解剖结构来解释更好。

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