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Preliminary considerations on the external morphology Plantago major L. leaves from natural populations exposed to different environmental conditions

机译:对暴露于不同环境条件下自然种群的车前大叶车前草外部形态的初步考虑

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摘要

Background and purpose: Allometry is the study of the relationship ofbody size to shape, anatomy, physiology and behavior. Plants displaying allometric relationships between certain traits across different environments should have higher relative fitness then plants lacking these allometric relationships. We hypothesized that there are differences in external morphology between Plantago major L. (ssp. major) leaves exposed to different environmental conditions with variations for the leaf characters analysed.Materials and methods: Seven, linear dimensions on each leaf: leafblade apical width (AW), leaf-blade length (LL), leaf size (LS), leaf width (LW), leaf shape (LW/LL), the distance from the midrib to the neighboring vein (MV) and vein distances within a leaf (VD) were analysed. Here, besides analyzing allometric relationships between the common plantain leaves exposed to different environmental conditions, morphological data were also used for a regression analysis and for a cluster analysis.Results: In the reference area (Vinci village) leaves have significantlylonger LL and they are significantly broader compared with leaves from polluted site (Pančevo). At both sites, LL decreased relatively to LS (i.e. negative allometry is character specific). This study also revealed that VD and LW/LL are developmentally and functionally integrated P. major leaf characters. Moreover, VD is under more selective pressure to adapt to current environmental conditions than LW/LL.Conclusions: Obtained data showed that leaf size is significantly related to both, developmental and environmental conditions. This indicates that plant species such as Plantago major L. (ssp. major) should be considered as reliable bioindicators in environmental quality monitoring studies.
机译:背景与目的:异速测量法是研究人体大小与形状,解剖学,生理学和行为之间关系的研究。在不同环境中,某些性状之间表现出异形关系的植物应比缺乏这些异形关系的植物具有更高的相对适应性。我们假设暴露于不同环境条件下的车前大叶(Ssp。major)叶片的外部形态存在差异,并分析了叶片的性状特征。材料和方法:七,每片叶片的线性尺寸:叶片的叶尖宽度(AW ),叶片的长度(LL),叶片的大小(LS),叶片的宽度(LW),叶片的形状(LW / LL),中肋到邻近静脉的距离(MV)以及叶片内的静脉距离(VD) )进行了分析。在这里,除了分析暴露在不同环境条件下的普通车前草叶片之间的异形关系外,还使用形态学数据进行回归分析和聚类分析。结果:在参考区域(Vinci村),叶片的LL明显更长,并且它们的与来自污染地点(Pančevo)的叶子相比,范围更广。在这两个位置上,LL相对于LS都降低了(即负异形是特定于字符的)。这项研究还表明,VD和LW / LL是在发育和功能上整合的P.主要叶片特征。此外,VD比LW / LL具有更大的选择性压力来适应当前的环境条件。结论:获得的数据表明叶的大小与发育和环境条件均显着相关。这表明在环境质量监测研究中,应将植物种(如大车前草(Plantago major L.))视为可靠的生物指示剂。

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