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The biophysics of leaf growth in salt-stressed barley. A study at the cell level

机译:盐胁迫大麦叶片生长的生物物理学。在细胞水平上的研究

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Biophysical parameters potentially involved in growth regulation were studied at the single-cell level in the third leaf of barley (Hordeum vulgare) after exposure to various degrees of NaCl stress for 3 to 5 d. Gradients of elongation growth were measured, and turgor pressure, osmolality, and water potentials (psi) were determined (pressure probe and picoliter osmometry) in epidermal cells of the elongation zone and the mature blade. Cells in the elongation zone adjusted to decreasing external psi through increases in cell osmolality that were accomplished by increased solute loads and reduced water contents. Cell turgor changed only slightly. In contrast, decreases in turgor also contributed significantly to psi adjustment in the mature blade. Solute deposition rates in the elongation zone increased at moderate stress levels as compared with control conditions, but decreased again at more severe NaCl exposure. Growth-associated psi gradients between expanding epidermal cells and the xylem were significant under control and moderate stress conditions (75 mm NaCl) but seemed negligible at severe stress (120 mm NaCl). We conclude that leaf cell elongation in NaCl-treated barley is probably limited by the rate at which solutes can be taken up to generate turgor, particularly at high NaCl levels. [References: 51]
机译:在暴露于不同程度的NaCl胁迫3到5 d后,在大麦第三片(大麦)的单细胞水平上研究了可能参与生长调节的生物物理参数。测量了伸长区域和成熟刀片的表皮细胞中伸长增长的梯度,并确定了膨胀压力,重量摩尔渗透压浓度和水势(psi)(压力探针和皮升渗透压法)。延长区域中的细胞通过增加溶质负荷和减少水含量来实现渗透压增加,从而降低外部psi。细胞膨胀仅略有变化。相比之下,膨胀的降低也明显有助于成熟刀片的psi调节。与对照条件相比,在中等应力水平下,伸长区的溶质沉积速率增加,但在更严重的NaCl暴露下,溶质沉积速率再次降低。在对照和中等应力条件下(75 mm NaCl),在膨胀的表皮细胞和木质部之间的与生长相关的psi梯度显着,而在严重应力(120 mm NaCl)下,其可忽略不计。我们得出的结论是,经NaCl处理的大麦的叶细胞伸长率可能受溶质产生膨胀的速率的限制,特别是在高NaCl水平下。 [参考:51]

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