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手掌茎解剖结构与计算机辅助鉴定:鱼尾葵族(棕榈科)。

Palm stem anatomy and computer-aided identification: the Coryphoideae (Arecaceae).

机构信息

Muséum national d'Histoire naturelle-UMR 7207 CNRS-MNHN-UPMC Centre de recherche sur la paléobiodiversité et les paléoenvironnements, Département histoire de la Terre; 57, rue Cuvier, 75005 Paris, France.

出版信息

Am J Bot. 2013 Feb;100(2):289-313. doi: 10.3732/ajb.1200242. Epub 2013 Jan 24.

Abstract

PREMISE OF THE STUDY

Through a comparative study of the anatomy of palm stems and the development of an interactive web-based tool, the present paper aims to provide a method of identifying palm stems. The stem determination will allow specialists in archaeology and paleontology to better exploit palm fossils for paleoenvironmental interpretations. The precise anatomical description also provides new systematic data tested in phylogenetic analyses (new anatomical characters, stratigraphic calibrations).

METHODS

Stem samples were collected, including representatives from each tribe of the five palm subfamilies, and 25 descriptors (with 78 states) were defined within 37 taxa and registered in Xper(2), a management tool for taxonomic description that allows editing of standardized descriptions. Some descriptors were used for the first time in this work; others were compiled from the existing literature. While all the palm subfamilies were included in the present study, the focus here is on the Coryphoideae.

KEY RESULTS

Descriptors were mainly based on the general organization of the transverse section and the structure of the fibrovascular bundles as well as ground parenchyma. Coryphoideae have 1, 2, or more metaxylem elements, whereas the other subfamilies systematically present only 1 or 1 and 2 metaxylem elements. The centrifugal differentiation of the sheath of phloem fibers is described in other subfamilies but is not found in the Coryphoideae (except in Caryoteae).

CONCLUSION

Some tribes are easy to identify (Borasseae, Cryosophileae, Phoeniceae, Caryoteae); others are rather heterogeneous and more difficult to define (Chuniophoeniceae, Trachycarpeae). Caryoteae presents some unique states of the Arecoideae.

摘要

研究前提

通过对掌状茎解剖结构的比较研究和交互式网络工具的开发,本文旨在提供一种鉴定掌状茎的方法。茎的确定将使考古学和古生物学领域的专家能够更好地利用棕榈化石进行古环境解释。精确的解剖描述还为系统学数据提供了新的信息,这些数据在系统发育分析中得到了检验(新的解剖特征、地层校准)。

方法

收集了茎样本,包括五个掌状科亚科的每个部落的代表,在 37 个分类单元中定义了 25 个描述符(具有 78 种状态),并在 Xper(2)中进行了登记,这是一个用于分类描述管理的工具,允许对标准化描述进行编辑。在这项工作中,一些描述符是首次使用的,而另一些则是从现有文献中汇编的。虽然所有的掌状科亚科都包含在本研究中,但这里的重点是 Coryphoideae。

主要结果

描述符主要基于横切面的总体组织和纤维血管束以及基质组织的结构。Coryphoideae 有 1、2 或更多的木质部元素,而其他亚科系统地只有 1 或 1 和 2 个木质部元素。韧皮纤维鞘的离心分化在其他亚科中有所描述,但在 Coryphoideae 中没有发现(除了 Caryoteae 中)。

结论

一些部落很容易识别(Borasseae、Cryosophileae、Phoeniceae、Caryoteae);其他部落则比较混杂,更难定义(Chuniophoeniceae、Trachycarpeae)。Caryoteae 具有一些 Arecoideae 的独特状态。

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