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Water Stress Inhibits Hydraulic Conductance and Leaf Growth in Rice Seedlings but Not the Transport of Water via Mercury-Sensitive Water Channels in the Root

机译:水分胁迫抑制水力传导和 叶片生长 在水稻幼苗中但不是 通过水运输 汞敏感 根中的水通道

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摘要

The mechanisms by which moderate water stress (adding polyethylene glycol 6000 to the root medium) induces a sustained inhibition of growth in emerging first leaves of intact rice (Oryza sativa) seedlings was investigated under growth-chamber conditions. Early (24 h) inhibition of leaf growth was not related to changes in root size or in osmotic potential gradients and cell wall-yielding characteristics in the leaf-expansion zone of stressed seedlings. However, reductions in root-to-leaf hydraulic conductance (L) were measured in two rice cultivars after 4 or 24 h at various levels of water stress, and these reductions correlated well with the inhibition of leaf growth. We assayed L by a psychrometric method and, in intact seedlings, by a novel osmotic-jump method. The addition of 0.5 mm HgCl2 to the root medium to inhibit water transport through Hg-sensitive water channels in the roots did not inhibit leaf growth in unstressed seedlings. However, both leaf growth and L were additionally reduced (by 49% and 43%, respectively) within minutes of adding HgCl2 to roots of water-stressed seedlings. Water stress therefore appeared to increase the transport of water via Hg-sensitive water channels. Other mechanisms were apparently involved in inhibiting overall L and leaf growth.
机译:在生长室条件下,研究了适度的水分胁迫(向根系培养基中添加聚乙二醇6000)诱导完整稻(Oryza sativa)幼苗出苗的初生叶中持续抑制生长的机理。早期(24 h)抑制叶片生长与胁迫胁迫的幼苗叶片扩展区的根大小或渗透势梯度的变化以及细胞壁的形成特征无关。然而,在两个或两个水稻品种中,在不同水平的水分胁迫下,在4或24 h后,根到叶的水力传导率(L)降低,这些降低与叶片生长的抑制作用密切相关。我们通过干湿法测定了L,在完整的幼苗中通过新颖的渗透跳跃法测定了L。在根系培养基中添加0.5 mm HgCl2以抑制水分通过根系中对Hg敏感的水通道的运输不会抑制无胁迫幼苗的叶片生长。但是,叶片的生长和L都另外减少了(分别减少了49%和43%, 在将HgCl2添加到 水分胁迫的幼苗。因此,水分胁迫似乎增加了 通过对汞敏感的水通道的水运输。其他 机制显然参与了整体抑制 L和叶子生长。

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