首页> 美国卫生研究院文献>other >A Comparison of Petiole Hydraulics and Aquaporin Expression in an Anisohydric and Isohydric Cultivar of Grapevine in Response to Water-Stress Induced Cavitation
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A Comparison of Petiole Hydraulics and Aquaporin Expression in an Anisohydric and Isohydric Cultivar of Grapevine in Response to Water-Stress Induced Cavitation

机译:水分胁迫引起的空缺和等渗葡萄品种叶柄水力学和水通道蛋白表达的比较

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摘要

We report physiological, anatomical and molecular differences in two economically important grapevine (Vitis vinifera L.) cultivars cv. Grenache (near-isohydric) and Chardonnay (anisohydric) in their response to water-stress induced cavitation. The aim of the study was to compare organ vulnerability (petiole and stem) to cavitation by measuring ultrasonic acoustic emissions (UAE) and percent loss of conductance of potted grapevines subject to the onset of water-stress. Leaf (ψL) and stem water potential (ψS), stomatal conductance (gs), transpiration (E), petiole hydraulics (KPet), and xylem diameter were also measured. Chardonnay displayed hydraulic segmentation based on UAE, with cavitation occurring at a less negative ψL in the petiole than in the stem. Vulnerability segmentation was not observed in Grenache, with both petioles and stems equally vulnerable to cavitation. Leaf water potential that induced 50% of maximum UAE was significantly different between petioles and stems in Chardonnay (ψ50Petiole = -1.14 and ψ50Stem = -2.24 MPa) but not in Grenache (ψ50Petiole = -0.73 and ψ50Stem = -0.78 MPa). Grenache stems appeared more susceptible to water-stress induced cavitation than Chardonnay stems. Grenache displayed (on average) a higher KPet likely due to the presence of larger xylem vessels. A close relationship between petiole hydraulic properties and vine water status was observed in Chardonnay but not in Grenache. Transcriptional analysis of aquaporins in the petioles and leaves (VvPIP1;1, VvPIP2;1, VvPIP2;2 VvPIP2;3, VvTIP1;1, and VvTIP2;1) showed differential regulation diurnally and in response to water-stress. VvPIP2;1 showed strong diurnal regulation in the petioles and leaves of both cultivars with expression highest predawn. Expression of VvPIP2;1 and VvPIP2;2 responded to ψL and ψS in both cultivars indicating the expression of these two genes are closely linked to vine water status. Expression of several aquaporin genes correlated with gas exchange measurements, however, these genes differed between cultivars. In summary, the data shows two contrasting responses in petiole hydraulics and aquaporin expression between the near-isohydric cultivar, Grenache and anisohydric cultivar, Chardonnay.
机译:我们报告了两个经济上重要的葡萄品种(Vitis vinifera L.)简历的生理,解剖和分子差异。歌海娜(近等羟)和霞多丽(等羟)对水胁迫引起的空化的反应。这项研究的目的是通过测量受水分胁迫影响的盆栽葡萄的超声波发射(UAE)和电导率损失百分比,比较器官脆弱性(叶柄和茎)与空化的关系。还测量了叶片(ψL)和茎水势(ψS),气孔导度(gs),蒸腾作用(E),叶柄水力学(KPet)和木质部直径。霞多丽表现出基于阿拉伯联合酋长国的水力分割,在叶柄中出现的空化作用比叶柄中的负ψL小。在歌海娜(Grenache)中未观察到脆弱性分割,叶柄和茎同样容易受到气蚀。霞多丽的叶柄和茎之间的叶水势(最大50%的最大阿联酋)显着不同(ψ50ti = -1.14和ψ50Stem= -2.24 MPa),但在歌海娜中则没有。(ψ50ti = 0.73和ψ50Stem= -0.78 MPa)。与霞多丽茎相比,歌海娜茎似乎更容易受到水分胁迫的空化作用。歌海娜平均表现出较高的KPet,这可能是由于存在较大的木质部血管所致。在霞多丽中观察到叶柄水力学特性与藤蔓水分状况之间的密切关系,而在歌海娜娜中则没有。对叶柄和叶片中水通道蛋白(VvPIP1; 1,VvPIP2; 1,VvPIP2; 2 VvPIP2; 3,VvTIP1; 1和VvTIP2; 1)的转录分析显示昼夜和对水分胁迫的差异调节。 VvPIP2; 1在两个黎明前表达最高的品种的叶柄和叶片中均表现出强烈的昼夜调控。 VvPIP2; 1和VvPIP2; 2的表达均响应两个品种的ψL和ψS,表明这两个基因的表达与藤本植物的水分状况密切相关。几种水通道蛋白基因的表达与气体交换测量相关,但是,这些基因在不同品种之间有所不同。总而言之,数据显示了在近等渗性品种Grenache和等渗性品种霞多丽之间叶柄水力学和水通道蛋白表达的两个对比响应。

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