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A morphometric analysis of the Banksia spinulosa complex (Proteaceae) and its complex taxonomic implications

机译:山龙眼复合体(Proteaceae)的形态计量学分析及其复合生物分类学意义

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摘要

Specimens of all known taxa and putative entities belonging to the Banksia spinulosa complex were collected from Kuranda in northern Queensland, western to central Queensland and down the eastern coast of Australia to Wilsons Promontory in southern Victoria. These specimens were used to investigate morphological variation in habit, stems, leaves, inflorescences, fruits and seeds in the complex. Phenetic analysis (unweighted pair-group method with arithmetic mean, UPGMA, clustering and semi-strong hybrid multi-dimensional scaling, SSH-MDS, ordination) was performed on the full dataset of 233 entities using 33 characters (18 quantitative, two binary and 13 multistate). To facilitate visualisation of patterns in both clustering and ordination, we also analysed subgroups based on the results of the phenogram from the full dataset. The results showed that the five known and described taxa are phenetically distinct, viz. B. collina sens. str., B. cunninghamii sens. str., B. neoanglica, B. spinulosa and B. vincentia, and provided support for a further 12 morphometrically diagnosable entities, four of which could not be diagnosed with simple combinations of character states and require further investigation. The present study has highlighted that there is much more hidden morphological diversity in the B. spinulosa complex than has previously been recognised in any of the current competing taxonomies.
机译:属于Banksia spinulosa复合体的所有已知分类单元和推定实体的标本均从昆士兰州北部的库兰达,昆士兰州中西部到昆士兰州的中部,以及澳大利亚的东海岸到维多利亚州南部的威尔逊岬(Wilsons Promontory)采集。这些标本用于研究复合物中习性,茎,叶,花序,果实和种子的形态变化。使用33个字符(18个定量,两个二进制和30个字符)对233个实体的完整数据集进行了物物分析(算术平均值,UPGMA,聚类和半强混合多维缩放,SSH-MDS,排序的非加权成对方法) 13多州)。为了促进聚类和排序中模式的可视化,我们还基于来自完整数据集的物候图的结果分析了子组。结果表明,五个已知的和描述的分类单元在形态上是不同的,即。 B. Collina sens。 str。,B. cunninghamii sens。 Str。,B。neoanglica,B。spinulosa和B. vincentia,并为另外12个可通过形态计量学诊断的实体提供了支持,其中四个无法通过字符状态的简单组合进行诊断,需要进一步研究。本研究强调,与目前任何竞争性分类法中以前所认识的相比,棘孢杆菌复合物中存在更多的隐藏形态多样性。

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