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Class I KNOX Is Related to Determinacy during the Leaf Development of the Fern Mickelia scandens (Dryopteridaceae)

机译:I级Knox与蕨类植物股票斯科登斯叶片发展期间的决定性有关(Dryophteridaceae)

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摘要

Unlike seed plants, ferns leaves are considered to be structures with delayed determinacy, with a leaf apical meristem similar to the shoot apical meristems. To better understand the meristematic organization during leaf development and determinacy control, we analyzed the cell divisions and expression of Class I KNOX genes in Mickelia scandens, a fern that produces larger leaves with more pinnae in its climbing form than in its terrestrial form. We performed anatomical, in situ hybridization, and qRT-PCR experiments with histone H4 (cell division marker) and Class I KNOX genes. We found that Class I KNOX genes are expressed in shoot apical meristems, leaf apical meristems, and pinnae primordia. During early development, cell divisions occur in the most distal regions of the analyzed structures, including pinnae, and are not restricted to apical cells. Fern leaves and pinnae bear apical meristems that may partially act as indeterminate shoots, supporting the hypothesis of homology between shoots and leaves. Class I KNOX expression is correlated with indeterminacy in the apex and leaf of ferns, suggesting a conserved function for these genes in euphyllophytes with compound leaves.
机译:与种子植物不同,蕨类植物叶子被认为是具有延迟的结构,其中叶顶均匀与拍摄顶端商品类似。为了更好地了解叶片开发和确定性控制期间的共同组织,我们分析了Mickelia Scandens中的I类knox基因的细胞分裂和表达,该蕨类植物在其攀爬形式中产生较大的叶片,比其陆地形式更大。我们用组蛋白H4(细胞分裂标记)和I类Knox基因进行解剖学,原位杂交和QRT-PCR实验。我们发现I类Knox基因以芽为顶端商品,叶形半球分类和脊髓原基表示。在早期发展期间,细胞分裂发生在分析结构的最远端区域,包括脊肉,并且不限于顶端细胞。蕨类植物叶子和圆形熊顶端商品可以部分充当不确定芽,支持枝条和叶之间的同源性的假设。 I类Knox表达与蕨顶点和叶片中的不确定关系相关,这表明在具有复合叶片的野外野生植物中的这些基因的保守功能。

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