首页> 外文OA文献 >Comparative floral structure and systematics in Rhizophoraceae, Erythroxylaceae and the potentially related Ctenolophonaceae, Linaceae, Irvingiaceae and Caryocaraceae (Malpighiales)
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Comparative floral structure and systematics in Rhizophoraceae, Erythroxylaceae and the potentially related Ctenolophonaceae, Linaceae, Irvingiaceae and Caryocaraceae (Malpighiales)

机译:根瘤菌科,赤藓科和潜在相关的蕨科,亚麻科,欧文科和毛状科的比较花卉结构和系统学

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摘要

Within the rosid order Malpighiales, Rhizophoraceae and Erythroxylaceae (1) are strongly supported as sisters in molecular phylogenetic studies and possibly form a clade with either Ctenolophonaceae (2) or with Linaceae, Irvingiaceae and Caryocaraceae (less well supported) (3). In order to assess the validity of these relationships from a floral structural point of view, these families are comparatively studied for the first time in terms of their floral morphology, anatomy and histology. Overall floral structure reflects the molecular results quite well and Rhizophoraceae and Erythroxylaceae are well supported as closely related. Ctenolophonaceae share some unusual floral features (potential synapomorphies) with Rhizophoraceae and Erythroxylaceae. In contrast, Linaceae, Irvingiaceae and Caryocaraceae are not clearly supported as a clade, or as closely related to Rhizophoraceae and Erythroxylaceae, as their shared features are probably mainly symplesiomorphies at the level of Malpighiales or a (still undefined) larger subclade of Malpighales, rather than synapomorphies. Rhizophoraceae and Erythroxylaceae share (among other features) conduplicate petals enwrapping stamens in bud, antepetalous stamens longer than antesepalous ones, a nectariferous androecial tube with attachment of the two stamen whorls at different positions: one whorl on the rim, the other below the rim of the tube, the ovary shortly and abruptly dorsally bulged and the presence of a layer of idioblasts (laticifers?) in the sepals and ovaries. Ctenolophonaceae share with Rhizophoraceae and/or Erythroxylaceae (among other features) sepals with less than three vascular traces, a short androgynophore, an ovary septum thin and severed or completely disintegrating during development, leading to a developmentally secondarily unilocular ovary, a zigzag-shaped micropyle and seeds with an aril. Special features occurring in families of all three groupings studied here are, for example, synsepaly, petals not retarded and thus forming protective organs in floral bud, petals postgenitally fused or hooked together in bud, androecial tube and petals fusing above floral base, androecial corona, apocarpous unifacial styles, nucellus thin and long, early disintegrating (before embryo sac is mature), and nectaries on the androecial tube. Some of these features may be synapomorphies for the entire group, if it forms a supported clade in future molecular studies, or for subgroups thereof. Others may be plesiomorphies, as they also occur in other Malpighiales or also in Celastrales or Oxalidales (COM clade). The occurrence of these features within the COM clade is also discussed.
机译:在分子系统发生学研究中,在腐泥阶中,马尔皮果科,根瘤菌科和赤藓科(1)得到了姐妹的大力支持,并可能与Ctenolophonaceae(2)或Linaceae,Irvingiaceae和Caryocaraceae(不太支持)(3)形成分支。为了从花卉结构的角度评估这些关系的有效性,首次对这些科的花卉形态,解剖学和组织学进行了比较研究。整体花的结构很好地反映了分子结果,并且根瘤菌科和赤藓科紧密相关。蕨科与根科和红木科共有一些不同寻常的花特征(潜在的亚同形)。相反,没有明确支持亚麻科,欧文科和钩藤科作为进化枝,或与根瘤菌科和赤藓科密切相关,因为它们的共同特征可能主要是在马鞭草科或马鞭草的(仍未定义)较大的亚纲水平上的单形。比突触形态。根瘤菌科和红血球科共享(除其他特征外)使花瓣包被雄蕊,芽生的雄蕊长于花蕊的雄蕊,花蜜的雄蕊管附有两个雄蕊轮在不同的位置:一个轮缘在轮缘上,另一个轮缘在轮缘之下输卵管,子房不久后突然子房膨大,并且在萼片和卵巢中有一层成纤维细胞(laticifers?)。矢车菊科与根瘤菌科和/或Erythroxylaceae(除其他特征外)的萼片具有少于三个血管痕迹,短的雌雄同体,子房间隔薄且在发育过程中被切断或完全崩解,从而导致继发于单眼卵巢,锯齿形的微型和假种皮的种子。在这里研究的所有三个组的家庭中出现的特殊特征是,例如,同心,花瓣没有滞后,因此在花蕾中形成保护器官,花瓣在花瓣中后生融合或钩在一起,雄性花序管和花瓣融合在花基上方,雄性日冕,掌骨单面样式,核薄而长,早解体(在胚囊成熟之前),雄蕊管上的蜜腺。如果某些特征在将来的分子研究中形成了支持的进化枝,或者对于它们的亚群,则其中的某些特征可能是整个群体的同型。其他的可能是古怪的,因为它们也发生在其他的马尔皮古勒星系中,或者也出现在Celastrales或Oxalidales(COM进化枝)中。还讨论了COM分支中这些功能的出现。

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  • 作者

    Matthews, M L; Endress, P K;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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