首页> 美国卫生研究院文献>Journal of Experimental Botany >Aquaporin gene expression and apoplastic water flow in bur oak (Quercus macrocarpa) leaves in relation to the light response of leaf hydraulic conductance
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Aquaporin gene expression and apoplastic water flow in bur oak (Quercus macrocarpa) leaves in relation to the light response of leaf hydraulic conductance

机译:柏栎(Quercus macrocarpa)叶片水通道蛋白基因表达和质外性水流量与叶片水力传导的光响应相关

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摘要

It has previously been shown that hydraulic conductance in bur oak leaves (Quercus macrocarpa Michx.), measured with the high pressure flow meter technique (HPFM), can significantly increase within 30 min following exposure to high irradiance. The present study investigated whether this increase could be explained by an increase in the cell-to-cell pathway and whether the response is linked to changes in the transcript level corresponding to aquaporin genes. Four cDNA sequences showing high similarity to members of the aquaporin gene family from other plant species were characterized from bur oak leaves and the expression levels of these cDNA sequences were examined in leaves by quantitative real-time PCR (QRT-PCR). No change was found in the relative transcript abundance corresponding to these four putative aquaporin genes in leaves with light-induced high hydraulic conductance (exposed to high irradiance) compared to leaves with low hydraulic conductance (exposed to low irradiance). However, in sun leaves that were exposed to different light levels prior to leaf collection (full sunlight, shade, and covered with aluminium foil for 16 h), the relative transcript levels of two of the putative aquaporin genes increased several-fold in shaded leaves compared to the sun-exposed or covered leaves. When the leaves were pressure-infiltrated with the apoplastic tracer dye trisodium 3-hydroxy-5,8,10-pyrenetrisulphonate (PTS3, 0.02%), there was no change in the PTS3 concentration of leaf exudates collected in ambient light or in high irradiance, but there was a small apoplastic acidification. There was also no change in PTS3 concentration between the leaves infiltrated under high irradiance with 0.02% PTS3 or with 0.1 mM HgCl2 in 0.02% PTS3. The results suggest that the putative aquaporin genes that were identified in the present study probably do not play a role in the light responses of hydraulic conductance at the transcript level, but they may function in regulating water homeostasis in leaves adapted to different light conditions. In addition, it is shown that high irradiance induced changes in the pH of the apoplast and that there does not appear to be a significant shift to the cell-to-cell mediated water transport in bur oak leaves exposed to high irradiance as measured by the apoplastic tracer dye.
机译:以前已经证明,用高压流量计技术(HPFM)测量的bur橡树叶(Quercus macrocarpa Michx。)中的水力传导率可以在暴露于高辐照后30分钟内显着增加。本研究调查了这种增加是否可以通过细胞间通路的增加来解释,以及该反应是否与与水通道蛋白基因相对应的转录水平的变化有关。从bur橡树叶中鉴定了四个与其他植物的水通道蛋白基因家族成员高度相似的cDNA序列,并通过实时定量PCR(QRT-PCR)检测了这些cDNA序列在叶片中的表达水平。与水力传导率低(暴露于低辐照度)的叶片相比,光诱导的高水力传导率(暴露于高辐照度)的叶片中与这四个推定的水通道蛋白基因相对应的相对转录丰度没有变化。但是,在收集叶片之前暴露于不同光照水平的阳光下(充满阳光,遮荫并用铝箔覆盖16小时),两个假定的水通道蛋白基因的相对转录水平在遮荫的叶子中增加了数倍。与阳光照射或遮盖的叶子相比。当叶片被质外性示踪染料3-羟基-5,8,10-吡咯烷磺酸三钠(PTS3,0.02%)压力浸润时,在环境光或高辐照度下收集的叶片分泌物的PTS3浓度没有变化。 ,但是有少量的质外性酸化。在高辐照度下加入0.02%PTS3或在0.02%PTS3中使用0.1 mM HgCl2浸透的叶片之间的PTS3浓度也没有变化。结果表明,在本研究中确定的假定的水通道蛋白基因可能在转录水平上对水力传导的光响应不起作用,但它们可能在调节适应不同光照条件的叶片中的水稳态中起作用。此外,还表明,高辐照度可引起质外体pH值的变化,而暴露于高辐照度的bur橡树叶中的细胞间介导的水传输似乎没有显着变化,通过质外生示踪染料。

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