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首页> 外文期刊>Applications in plant sciences. >Inferring the impacts of evolutionary history and ecological constraints on spore size and shape in the ferns
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Inferring the impacts of evolutionary history and ecological constraints on spore size and shape in the ferns

机译:推断进化史和生态限制对蕨类植物孢子尺寸和形状的影响

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Premise In the ferns, cell size has been explored with spores, which are largely uniform within species, produced in abundance, and durable. However, spore size and shape have been variously defined, and the relationship of these traits to genome size has not been well established. Here, we explore the variation in fern spore size and shape by ploidy level and genome size. Methods Measurements of spore dimensions for two study sets of ferns, Polystichum and Adiantum , both including diploid and tetraploid taxa, provided the basis for computing estimates of shape and size as defined here. These traits were compared between and within ploidy levels and regressed with genome size estimates from flow cytometry analysis. Results All size traits were strongly correlated with genome size; the shape trait was weakly correlated. Tetraploids were larger than diploids as expected; the spores of some closely related diploid species were also significantly different in size. Discussion Researchers with access to a student‐grade compound microscope can develop a valid estimate of relative genome size for ferns. These estimates provide enough resolution to infer ploidy level and explore the relationship between genome size, habitat, and physiological constraints for species within ploidy level.
机译:蕨类植物中的前提是,细胞尺寸已被孢子探讨,这些孢子在很大程度上在物种中均匀,丰富,耐用。然而,孢子尺寸和形状已经不同地定义,并且这些性状对基因组大小的关系尚未得到很好的建立。在这里,我们通过倍增性水平和基因组大小探索蕨孢子尺寸和形状的变化。方法为两项研究蕨类植物,多斯特氏素和Adiantum的孢子尺寸测量,包括二倍体和四倍体分类群,为计算了这里定义的形状和尺寸的估计提供了基础。在倍率水平之间和倍率水平之间的比较这些性状,并从流式细胞术分析中与基因组大小估计来回归。结果所有尺寸的性状与基因组大小强烈相关;形状特征弱相关。四倍体比预期的二倍体大于二倍体;一些密切相关的二倍体物种的孢子的尺寸也明显不同。具有访问学生级复合显微镜的讨论研究人员可以开发蕨类植物相对基因组大小的有效估计。这些估计提供了足够的分辨率来推断倍率水平,并探讨基因组大小,栖息地和物种在倍增性水平内的生理限制之间的关系。

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