Hochberg Uri, Degu Asfaw, Gendler Tanya, Fait Aaron, Rachmilevitch Shimon
Albert Katz International School, Beer-Sheva, Israel.
The French Associates Institute for Agriculture and Biotechnology of Drylands (FAAB), the Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, 84990 Sede Boqer, Israel.
Funct Plant Biol. 2015 Apr;42(4):357-365. doi: 10.1071/FP14167.
Grapevine cultivars possess large variability in their response to water availability, and are therefore considered as a good model to study plant hydraulic adjustments. The current research compared the petiole anatomy of two grapevine (Vitis vinifera L.) cultivars, Shiraz and Cabernet Sauvignon, in respect to hydraulic properties. Hydraulic differences between the cultivar petioles were tested over 3 years (2011-2013). Anatomical differences, hydraulic conductivity and embolism were tested under terminal drought conditions. Additionally, xylem differentiation under well watered (WW) and water deficit (WD) conditions was compared. Shiraz was shown to possess larger xylem vessels that resulted in a significantly higher theoretical specific hydraulic conductivity (Kts), leaf hydraulic conductivity (Kleaf) and maximal petiole hydraulic conductivity (Kpetiole). Under WD, smaller vessels were developed, more noticeably in Shiraz. Results confirmed a link between petiole hydraulic architecture and hydraulic behaviour, providing a simple mechanistic explanation for the higher transpiration rates commonly measured in Shiraz. Smaller xylem vessels in Cabernet Sauvignon could imply on its adaptation to WD, and explains its better performances under such conditions.
葡萄品种对水分供应的反应具有很大的变异性,因此被认为是研究植物水力调节的良好模型。目前的研究比较了两个葡萄(Vitis vinifera L.)品种设拉子和赤霞珠在叶柄解剖结构方面的水力特性。在3年(2011 - 2013年)期间对品种叶柄之间的水力差异进行了测试。在极端干旱条件下测试了解剖差异、水力传导率和栓塞情况。此外,还比较了在充分浇水(WW)和水分亏缺(WD)条件下木质部的分化情况。结果表明,设拉子的木质部导管较大,导致其理论比水力传导率(Kts)、叶片水力传导率(Kleaf)和最大叶柄水力传导率(Kpetiole)显著更高。在水分亏缺条件下,会形成较小的导管,在设拉子中更为明显。结果证实了叶柄水力结构与水力行为之间的联系,为设拉子通常较高的蒸腾速率提供了一个简单的机理解释。赤霞珠中较小的木质部导管可能意味着其对水分亏缺的适应性,并解释了它在这种条件下更好的表现。