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Network analysis of tree crowns distinguishes functional groups of Cerrado species

机译:树冠的网络分析可区分塞拉多物种的功能组

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Deciduous, semideciduous and evergreen leaf phenological groups of Cerrado trees were studied using a representative network composed of nodes and links to uncover the structural traits of the crown. A node denotes the origin of a branch, and a link represents the branch emerging from a lateral bud. The network representation usually resulted in a graph with three links per node and twice as many links as nodes for each leaf phenological group. It was possible to identify four kinds of nodes according to the position and the number of links: initial, regular, emission and final nodes. The numbers of links and nodes and the distance between two kinds of nodes decreased from evergreen to deciduous species. A crown with a few nodes and links and a short distance between the kinds of nodes could facilitate the unfolding of foliage on leafless branches at the end of the dry season in deciduous trees. In contrast, foliage persistence in evergreens could facilitate the mass flow to new leaves produced during the entire year in a crown with a high number of links and nodes and with a large distance between nodes. There is a clear interdependence between the degree of leaf deciduousness and the crown structural traits in Cerrado tree species. Therefore, there are functional groups of trees in Cerrado vegetation that are characterized by a set of structural traits in the crown, which is associated with leaf deciduousness.
机译:使用由节点和链接组成的代表性网络研究了Cerrado树的落叶,半落叶和常绿叶片物候群,以揭示树冠的结构特征。节点表示分支的起源,链接表示从侧芽出现的分支。网络表示通常会产生一个图,其中每个节点具有三个链接,而每个叶子物候群的链接数量是节点的两倍。根据链接的位置和数量可以识别四种节点:初始,常规,发射和最终节点。链接和结点的数目以及两种结点之间的距离从常绿到落叶物种减少。在干旱季节结束时,落叶乔木中具有少量节和链接的树冠,节点之间的距离较短,可以促进无叶树枝上的叶子展开。相比之下,常绿植物中的叶子持久性可以促进大量通向节间和节间且节间距离较大的树冠向全年新叶片的质量流动。塞拉多树种的叶片落叶程度和树冠结构性状之间存在明显的相互依存关系。因此,塞拉多植被中有一些功能树,这些树的特征是树冠中的一组结构特征,这些特征与落叶有关。

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