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More cells, bigger cells or simply reorganization? Alternative mechanisms leading to changed internode architecture under contrasting stress regimes

机译:更多的单元,更大的单元还是仅仅是重组?在相反的压力条件下导致节点间架构发生变化的替代机制

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Shading and mechanical stress (MS) modulate plant architecture by inducing different developmental pathways. Shading results in increased stem elongation, often reducing whole-plant mechanical stability, while MS inhibits elongation, with a concomitant increase in stability. Here, we examined how these organ-level responses are related to patterns and processes at the cellular level by exposing Impatiens capensis to shading and MS. Shading led to the production of narrower cells along the vertical axis. By contrast, MS led to the production of fewer, smaller and broader cells. These responses to treatments were largely in line with genetic differences found among plants from open and closed canopy sites. Shading- and MS-induced plastic responses in cellular characteristics were negatively correlated: genotypes that were more responsive to shading were less responsive to MS and vice versa. This negative correlation, however, did not scale to mechanical and architectural traits. Our data show how environmental conditions elicit distinctly different associations between characteristics at the cellular level, plant morphology and biomechanics. The evolution of optimal response to different environmental cues may be limited by negative correlations of stress-induced responses at the cellular level.
机译:遮光和机械应力(MS)通过诱导不同的发育途径来调节植物的结构。遮荫导致茎伸长增加,常常降低整株机械稳定性,而MS抑制伸长,并随之增加稳定性。在这里,我们通过将凤仙花暴露于阴影和MS中,研究了这些器官水平的反应如何与细胞水平的模式和过程相关。阴影导致沿垂直轴产生较窄的单元格。相比之下,MS导致产生更少,更小和更宽的细胞。这些对处理的反应在很大程度上与在开放和封闭的树冠部位的植物之间发现的遗传差异相符。遮光和MS诱导的细胞特征中的塑性反应呈负相关:对遮光反应更强的基因型对MS的反应较弱,反之亦然。但是,这种负相关关系并未适应机械和建筑特征。我们的数据表明环境条件如何在细胞水平,植物形态和生物力学之间引发明显不同的关联。最佳应答对不同环境线索的演变可能受到细胞水平上应激诱导应答的负相关性的限制。

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