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首页> 外文期刊>Plant and cell physiology >Aquaporins and leaf hydraulics: poplar sheds new light.
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Aquaporins and leaf hydraulics: poplar sheds new light.

机译:水通道蛋白和叶片水力学:白杨树发出了新的光芒。

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摘要

To help understand leaf hydraulic conductance (Kleaf) modulation under high irradiance, well-watered poplars (Populus trichocarpa Torr. & Gray ex Hook and Populus nigra L.) were studied diurnally at molecular and ecophysiological scales. Transcriptional and translational modulations of plasma membrane intrinsic protein (PIP) aquaporins were evaluated in leaf samples during diurnal time courses. Among the 15 poplar PIP genes, a subset of two PIP1s and seven PIP2s are precociously induced within the first hour of the photoperiod concomitantly with a Kleaf increase. Since expression patterns were cyclic and reproducible over several days, we hypothesized that endogenous signals could be involved in PIP transcriptional regulation. To address this question, plants were submitted to forced darkness during their subjective photoperiod and compared with their control counterparts, which showed that some PIP1s and PIP2s have circadian regulation while others did not. Promoter analysis revealed that a large number of hormone, light, stress response and circadian elements are present. Finally, involvement of aquaporins is supported by the reduction of Kleaf by HgCl2 treatment.
机译:为了帮助理解高辐照下的叶片水力传导率(K leaf )调节,每天在分子和生态尺度上研究了水分充足的杨树(Populus trichocarpa Torr。&Gray ex Hook和Populus nigra L.)。在昼夜时间过程中评估了叶片样品中质膜内在蛋白(PIP)水通道蛋白的转录和翻译调节。在15个杨树PIP基因中,两个PIP1和7个PIP2的一个子集在光周期的第一个小时内就被早熟地诱导,并伴随K leaf 的增加。由于表达模式是循环的并且可在几天内重现,因此我们假设内源性信号可能参与PIP转录调控。为了解决这个问题,植物在主观光周期中处于强迫黑暗状态,并与对照对照相比较,这表明某些PIP1和PIP2具有昼夜节律,而其他PIP1和PIP2没有昼夜节律。启动子分析表明存在大量的激素,光照,应激反应和昼夜节律元素。最后,HgCl 2 处理可减少K ,从而支持水通道蛋白的参与。

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