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首页> 外文期刊>Physiologia plantarum >Plasticity of vulnerability to leaf hydraulic dysfunction during acclimation to drought in grapevines: an osmotic-mediated process
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Plasticity of vulnerability to leaf hydraulic dysfunction during acclimation to drought in grapevines: an osmotic-mediated process

机译:葡萄适应干旱过程中叶片水力功能障碍的可塑性:渗透介导的过程

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摘要

Previous studies have reported correlation of leaf hydraulic vulnerability with pressure-volume parameters related to cell turgor. This link has been explained on the basis of the effects of turgor on connectivity among cells and tissue structural integrity, which affect leaf water transport. In this study, we tested the hypothesis that osmotic adjustment to water stress would shift the leaf vulnerability curve toward more negative water potential ((leaf)) by increasing turgor at low (leaf). We measured leaf hydraulic conductance (K-leaf), K-leaf vulnerability [50 and 80% loss of K-leaf (P-50 and P-80); |(leaf)| at 50 and 80% loss of K-leaf, respectively), bulk leaf water relations, leaf gas exchange and sap flow in two Vitis vinifera cultivars (Tempranillo and Grenache), under two water treatments. We found that P-50, P-80 and maximum K-leaf decreased seasonally by more than 20% in both cultivars and watering treatments. However, K-leaf at -2MPa increased threefold, while osmotic potential at full turgor and turgor loss point decreased. Our results indicate that leaf resistance to hydraulic dysfunction is seasonally plastic, and this plasticity may be mediated by osmotic adjustment.
机译:先前的研究报道了叶片水力脆弱性与与细胞膨大相关的压力-体积参数的相关性。已经基于膨胀对细胞之间的连通性和组织结构完整性的影响来解释了这种联系,这些影响叶水的运输。在这项研究中,我们测试了以下假设:渗透胁迫对水分胁迫的调节将通过增加低位(叶片)的膨胀来使叶片脆弱性曲线向更负的水势((叶片))移动。我们测量了叶片的水导率(K-叶),K-叶脆弱性[50和80%的K-叶损失(P-50和P-80); |(叶)|在两种水处理下,两种葡萄(Tempranillo和Grenache)的叶片分别损失了50%和80%的K叶片,叶片的水分关系,叶片气体交换和汁液流动。我们发现,在品种和浇水处理中,P-50,P-80和最大K叶均季节性减少20%以上。然而,在-2MPa下的K叶增加了三倍,而在完全膨胀和膨胀损失点的渗透势降低了。我们的结果表明,叶片对水力功能障碍的抵抗力是季节性的,并且这种可塑性可能是通过渗透调节来介导的。

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