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Anatomical Patterns of Aerenchyma in Aquatic and Wetland Plants

机译:水生和湿地植物气孔的解剖模式

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A well-developed aerenchyma is a major characteristic of aquatic plants. However, because such tissues are also found in wetland and terrestrial plants, it is not always possible to use their presence or absence to distinguish aquatic species. Whereas patterns of aerenchyma in roots have been studied in detail, those of the shoots have not. We collected and tested 110 species of various aquatic and wetland plants, including ferns (5), basal angiosperms (5), monocots (65), and eudicots (35). Three common and two rare types of aerenchyma were observed in their roots (three schizogeny and two lysigeny), plus five types of schizogeny in their shoots. We re-confirmed that, although a well-developed aerenchyma is more common in most organs of aquatic plants than in wetland plants, this presence cannot be used as strict evidence for the aquatic quality of vascular plants. Here, aerenchyma patterns were stable at the genus level, and the consistency of pattern was stronger in the roots than in the shoots. Furthermore, significant trends were verified in several higher taxa, and those consistencies of patterns partially coincided with their phylogeny.
机译:发达的气孔瘤是水生植物的主要特征。但是,由于在湿地和陆生植物中也发现了这种组织,因此,并非总是可以利用它们的存在与否来区分水生物种。尽管已经详细研究了根部的气孔模式,但是没有对芽的模式进行研究。我们收集并测试了110种各种水生和湿地植物,包括蕨类(5),基被子植物(5),单子叶植物(65)和真双子叶植物(35)。在其根部观察到三种常见的和两种罕见的气生瘤类型(三种精神分裂症和两种溶菌性),其芽中还观察到五种类型的精神分裂症。我们再次确认,尽管发达的气孔瘤在大多数水生植物器官中比在湿地植物中更为普遍,但是这种存在不能被用作维管植物水生质量的严格证据。在这里,气孔模式在属水平上是稳定的,并且根部的模式一致性强于芽。此外,在几个较高的分类单元中,已经证实了显着的趋势,并且这些模式的一致性部分与其系统发育相吻合。

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