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首页> 外文期刊>Trees. Structure and Function >Morpho-anatomical studies on the leaf reduction in Casuarina: the ecology of xeromorphy
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Morpho-anatomical studies on the leaf reduction in Casuarina: the ecology of xeromorphy

机译:Casuarina叶片减少的Morpho解剖学研究:Xeromorphy的生态学

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The ontogenetic changes in the foliage of two Casuarina species were investigated. While the cotyledons are flattened linear structures, all other leaf-types are strongly reduced. Except for the two primary leaves, all subsequent leaves are strongly fused to each other and also to the shoot axis, except for the leaf tips; the shoot axis is completely surrounded by photosynthetic leaf tissue and the branchlet is not made up of cladodes but of extended leaf sheaths which are a novel strategy for achieving reduced photosynthetic area. In seedlings there are four leaves per node, forming four shallow vertical furrows where light-exposed and non-encrypted stomata are developed. These features are also developed in the adult foliage within the strictly scleromorphic genus Gymnostoma, clearly the most mesic of the present day genera of Casuarinaceae and very likely to include the ancestral types. Thus, we assume that the Casuarina-seedling leaves reflect the ancestral scleromorphic condition. In the adult foliage, the number of leaves per node is strongly increased, which leads to the formation of several nearly closed vertical furrows on the shoot, where stomata are shaded and strongly encrypted. Thus, the adult foliage shows several xeromorphic features that are absent in the juvenile foliage. Our morpho-anatomical data mapped on ecological and palaeobotanical data show that within Casuarinaceae the foliage shifted from scleromorphic to xeromorphic. Thus, the adult xeromorphic foliage in Casuarina is the derived, advanced state.
机译:研究了两种Casuarina物种叶子的植入变化。虽然子叶是扁平的线性结构,但所有其他叶片类型都被强烈降低。除了两个主要叶子外,除了叶尖外,所有后续叶子都彼此强烈融合,并还融合到射线轴上;射线轴完全被光合叶片组织包围,并且管道不是由存放的组成,而是具有延长的叶子护套,这是实现降低光合区域的新策略。在幼苗中,每个节点有四个叶子,形成四个浅垂直沟,在打开曝光和非加密的气孔。这些特征也是在严格的硬晶属的Gendnostoma内的成人叶子中开发,显然是本今患有血清菊属的最多的迷人,并且很可能包括祖先类型。因此,我们假设Casuarina-幼苗叶子反映了祖先的硬质形态条件。在成人叶子中,每个节点的叶片数量强烈增加,这导致在拍摄时形成几个几乎闭合的垂直沟槽,气孔被阴影并强烈加密。因此,成年叶子显示出在少年叶子中不存在的几个Xeromorphic特征。我们的Morpho-解剖数据映射了生态和古典型的数据,表明Casuarinaceae内的叶子从硬晶到Xeromorphic转移。因此,Casuarina的成年Xeromorphic叶子是衍生的先进状态。

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